Bibliography
Abraham, E.G., H. Sezutsu, T. Kanda, T. Sugasaki, T. Shimada, & T. Tamura (2000). Identification and characterisation of a silkworm ABC transporter gene homologous to Drosophila white. Mol. Gen. Genet. 264 (1-2), 11-19.
Alexander, B.A. (1990). A cladistic analysis of the nomadine bees. Systematic Entomology 15: 121-152.
Alexander, B.A. & C.D. Michener (1995). Phylogenetic studies of the families of short-tongued bees (Hymenoptera: Apoidea). Univ. Kansas Sci. Bull. 55(11):377-424.
Alexander, B., & J.G. Rozen, Jr. (1987). Ovaries, ovarioles and oocytes in parasitic bees (Hymenoptera: Apoidea). Pan-Pacific Entomologist 63: 155-164.
Ascher, J.S. (2001). Hylaeus hyalinatus Smith, a European bee new to North America, with notes on other adventive bees (Hymenoptera: Apoidea). Proc. Entomol. Soc. Wash. 103(1): 184-190.
Ascher, J.S. (2004). Systematics of the bee family Andrenidae (HymenopteraApoidea). PhD thesis, Cornell University, Ithaca, NY.
Ascher, J.A., B.N. Danforth, & S. Ji (2001). Phylogenetic utility of the major opsin in bees (Hymenoptera: Apoidea): a reassessment. Mol. Phylo. Evol. 19:76-93.
Astruc, C., J.F. Julien, C. Errard, & A. Lenoir (2004). Phylogeny of the ants (Formicidae) based on morphology and DNA sequence data. Mol. Phylogenet. Evol. 31(3): 880-893.
Baker, R.H. & DeSalle (1997). Multiple sources of character information and the phylogeny of Hawaiian drosophilids. Syst. Biol. 46:654-673.
Baker, R.H., G.S. Wilkinson, & R. DeSalle (2001). Phylogenetic utility of different types of data used to infer evolutionary relationships among stalk-eyed flies (Diopsidae). Syst. Biol. 50:87-105.
Barrett, P.M. (2000). Evolutionary consequences of dating the Yixian Formation. Trends Ecol. Evol. 15:99-103.
Barth, F.G. (1991). Insects and Flowers: the Biology of a Partnership. Princeton University Press. Princeton, NJ.
Batra, S.W.T (1980). Ecology, behavior, pheromones, parasites and management of the sympatric vernal bees Colletes inaequalis, C. thoracicus, and C. validus. J. Kansas Entomol. Soc. 53:509-538.
Belshaw, R. & D.L.J. Quicke (2002). Robustness of ancestral character state estimates: evolution of life history strategy in ichneumonoid parasitoids. Syst. Biol. 51(3): 450-477.
Bohart, R.M. & A.S. Menke (1976). Sphecid Wasps of the World. University of California Press, Berkeley, CA.
Besansky, N.J. & G.T. Fahey (1997). Utility of white gene in estimating phylogenetic relationships among mosquitoes (Diptera: Culicidae). Mol. Biol. Evol. 14(4): 442-454.
Besansky, N.J., J.A. Bedell, M.Q. Benedict, O. Mukabayire, D. Hilfiker, & F.H. Collins (1995). Cloning and characterization of the white gene from Anopheles gambiae. Insect Mol. Biol. 4 (4), 217-231.
Brady, S.G. (2003). Evolution of the army ant syndrome: the origin and long-term evolutionary stasis of a complex of behavioral and reproductive adaptations. Proc. Natl. Acad. Sci. (USA) 100(11): 6575-6579.
Brady, S.G. & B.N. Danforth (2004). Recent intron gain in elongation factor-1alpha (EF-1alpha) of colletid bees (Hymenoptera: Colletidae). Mol. Biol. Evol. 21(4):691-696.
Briscoe, A.D. (1999). Intron splice sites of Papilio glaucus PglRh3 corroborate insect opsin phylogeny. Gene 230:101-109.
Bromham, L., A. Rambaut, R. Fortey, A. Cooper, & D. Penny (1998). Testing the Cambrian explosion hypothesis by using a molecular dating technique. Proc. Nat. Acad. Sci., USA 95:12386-12389.
Brothers, D.J. (1975). Phylogeny and classification of the aculeate Hymenoptera, with special reference to Mutillidae. Univ. Kansas Sci. Bull. 50:483-643.
Brothers, D.J. & J. Carpenter (1993). Phylogeny of Aculeata: Chrysidoidea and Vespoidea (Hymenoptera). J. Hym. Res. 2:227-304.
Brower, A.V.Z. (2000). Phylogenetic relationships among the Nymphalidae (Lepidoptera) inferred from partial sequences of the wingless gene. Proc. Royal Soc. Lond., Series B (Biol. Sci.) 267:1201-1211.
Brower, A.V.Z. & R. DeSalle. (1994). Practical and theoretical considerations for choice of a DNA sequence region in insect molecular systematics, with a short review of published studies using nuclear gene regions. Ann. Entomol. Soc. Am. 87:702-716.
Brower, A.V.Z. & R. DeSalle (1998). Patterns of mitochondrial versus nuclear DNA sequence divergence among nymphalid butterflies: the utility of wingless as a source of characters for phylogenetic inference. Insect. Mol. Biol. 7:73-82.
Brower, A.V.Z. & M.G. Egan (1997). Cladistic analysis of Heliconius butterflies and relatives (Nymphalidae: Heliconiiti): a revised phylogenetic position for Eueides based on sequences from mtDNA and a nuclear gene. Proc. Royal Soc. Lond., Series B (Biol. Sci.) 264:969-977.
Browne, G.J. & C.G. Proud (2004). A novel mTOR-regulated phosphorylation site in Elongation Factor 2 Kinase modulates the activity of the kinase and its binding to calmodulin. Mol. Cell. Biol. 24(7): 2986-2997.
Buchmann, S.L. (1987). The ecology of oil flowers and their bees. Ann. Rev. Ecol. Syst. 18:343-369.
Buchmann, S.L. & G.P. Nabhan (1996). Forgotten Pollinators. Island Press, Washington, DC.
Bull. N.J., M.P. Schwarz & S.J.B. Cooper (2003). Phylogenetic divergence of the Australian allodapine bees (Hymenoptera: Apidae). Mol. Phylogen. Evol. 27 (2): 212-222.
Cameron, S. A. (1993). Multiple origins of advanced eusociality in bees inferred from mitochondrial DNA sequences. Proc. Natl. Acad. Sci. USA 90: 8687-8691.
Cameron, S. A. (2004). Phylogeny and biology of neotropical orchid bees (Euglossini). Ann. Rev. Entomol. 49: 377-404.
Cameron, S.A. & P. Mardulyn (2001). Multiple molecular data sets suggest independent origins of highly eusocial behavior in bees (Hymenoptera: Apinae). Syst. Biol. 50(2):192-214.
>>download .pdf
Cameron, S.A. & P.H. Williams (2003). Phylogeny of bumble bees in the New World subgenus Fervidobombus (Hymenoptera: Apidae): congruence of molecular and morphological data. Mol. Phylo. Evol. 28(3): 552-563
Campbell, D.L., A.V.Z. Brower, N.E. Pierce (2000). Molecular evolution of the wingless gene and its implications for the phylogenetic placement of the butterfly family Riodinidae (Lepidoptera: Papilionoidea). Mol. Biol. Evol. 17: 684-696.
Cardale, J.C. (1993). Hymenoptera: Apoidea. In: Houston, W.W.K. & Maynard, G.V. (Eds.) Zoological Catalogue of Australia. Canberra: AGPS Vol. 10
Carpenter, J.M. (1988). Choosing among multiple equally parsimonious cladograms. Cladistics 4:291-296.
Caterino, M.S., S. Cho, F.A.H. Sperling (2000). The current state of insect molecular systematics: a thriving Tower of Babel. Ann. Rev. Entomol. 45:1-54.
Chalwatzis, N., Hauf, J., Van de Peer, Y., Kinzelbach, R., Zimmermann, F. (1996). 18S Ribosomal RNA Genes of Insects: Primary Structure of the Genes and Molecular Phylogeny of the Holometabola. Ann. Ent. Soc. Am. 89(6): 788-803
>>download .pdf
Chang, B.S.W., & D.L. Campbell (2000). Bias in phylogenetic reconstruction of vertebrate rhodopsin sequences. Mol. Biol. Evol. 17: 1220-1231.
Chang, B. S. W., D. Ayers, W.C. Smith, & N.E. Pierce (1996). Cloning of the gene encoding honeybee long-wavelength rhodopsin: a new class of insect visual pigments. Gene 173: 215-219.
Chavarría, G., and Carpenter, J.M. (1994). total evidence and the evolution of highly social bees. Cladistics 10: 229-258.
Cho, S., A. Mitchell, J.C. Regier, C. Mitter, R.W. Poole, T.P. Friedlander, S. Zhao. (1995). A highly conserved nuclear gene for low-level phylogenetics: elongation factor 1-alpha recovers morphology-based tree for heliothine moths. Mol. Biol. Evol. 12:650-656.
Clark, D.V. & S. Henikoff (1992). Unusual organization features of the Drosophila Gart locus are not conserved within Diptera. J. Mol. Evol. 35:51-59.
Coates,C.J., T.L. Schaub, N.J. Besansky, F.H. Collins, and AA. James (1997). The white gene from the yellow fever mosquito, Aedes aegypti. Insect Mol. Biol. 6(3), 291-299.
Cramer, P. et. al. (2001). Structural basis of transcription: RNA polymerase II at 2.8 angstrom resolution. Science 292: 1863-1876.
Crane, P.R. E.M. Friis, and K.R. Pedersen (1995). The origin and early diversification of the angiosperms. Nature 374: 27-33.
Crepet, W.L. (1983). The role of insect pollination in the evolution of the angiosperms. Pp. 29-50 in L. Real (Ed.). Pollination Biology. Academic Press, Orlando, Florida.
Crepet, W.L. (1995). Timing in the evolution of derived floral characters: Upper Cretaceous (Turonian) taxa with tricolpate and tricolpate-derived pollen. Review of paleobotany and palynology 90:339-359.
Crepet, W.L. (1996). Timing in the evolution of derived floral characters: Upper Cretaceous (Turonian) taxa with tricolpate and tricolpate-derived pollen. Reviews of Paleobotany and Palynology 90:339-359.
Crepet, W.L. (1998). The abominable mystery. Science 282: 1653-1654.
Crepet, W.L. (2000). Progress in understanding angiosperm history, success and relationships: Darwin's abominably "perplexing phenomenon". Proc. Nat. Acad. Sci., USA 97 (24):12939-12941.
Crepet, W.L. & E.M. Friis. (1987). The evolution of insect pollination in angiosperms. Pp. 181-201 in E.M. Friis, W.G. Chaloner, and P.R. Crane (Eds.). The Origins of Angiosperms and their Biological Consequences. Cambridge University Press, Cambridge.
Crepet, W.L., E.M. Friis, & K.C. Nixon. (1991). Fossil evidence for the evolution of biotic pollination. Phil. Trans. R. Soc. Lond. B 333:187-195.
Crepet, W.L. & K.C. Nixon. (1998). Fossil Clusiaceae from the late Cretaceous (Turonian) of New Jersey and implications regarding the history of bee pollination. American J. Bot. 85:1122-1133.
Cryan, J.R., J.K. Liebherr, J.W. Fetzner, Jr., & M.F. Whiting (2001). Evaluation of relationships within the endemic Hawaiian Platynini (Coleoptera: Carabidae) based on molecular and morphological evidence. Mol. Phylogen. Evol. 21(1): 72-85.
Danforth, B.N. (2002). Evolution of sociality in a primitively eusocial lineage of bees. Proc. Natl. Acad. Sci, USA 99(1): 286-290.
Danforth, B.N. & S. Ji (1998). Elongation factor-1alpha occurs as two copies in bees: Implications for phylogenetic analysis of EF-1alpha sequences in insects. Mol. Biol. Evol. 15(3):225-235.
>> download .pdf
Danforth, B.N. & S. Ji (2001). Australian Lasioglossum + Homalictus form a monophyletic group: resolving the "Australian enigma." Syst. Biol. 50(2):268-283.
Danforth, B.N., H. Sauquet, & L. Packer (1999). Phylogeny of the bee genus Halictus (Hymenoptera: Halictidae) based on parsimony and likelihood analyses of nuclear EF-1alpha sequence data. Mol. Phylo. Evol. 13(3):605-618.
Danforth, B.N., S.G. Brady, S.D. Sipes & A. Pearson (2004). Single copy nuclear genes recover Cretaceous age divergences in bees. Syst. Biol. 53(2): 309-326.
>> download .pdf
Daly, H.V. & K.N. Magnacca (2003). Insects of Hawaii, vol. 17, Hawaiian Hylaeus (Nesoprosopis) bee (Hymenoptera: Apoidea). Univ. Hawaii Press, Honolulu, 234 pp.
Davidson, J.N. & M.L. Peterson (1997). Origin of genes encoding multi-enzymatic proteins in eukaryotes. Trends Genet. 13(7): 281-285.
Day, M.C. (1984). The enigmatic genus Heterogyna Nagy (Hymenoptera: Sphecidae; Heterogyninae). Syst. Entomol. 9:193-307.
DeMenten, L., H. Niculita, M. Gilbert, D. Delneste & S. Aron (2003). Fluorescence in situ hybridization: a new method for determining primary sex ratio in ants. Mol. Ecol. 12:1637-1648.
Dietrich, C.H. R.A. Rakitov, J.L. Holmes, & W.C. Black (2001). Phylogeny of the major lineages of Membracoidea (Insecta: Hemiptera: Cicadomorpha) based on 28S rDNA sequences. Mol. Phylogenet. Evol. 18(2): 293-305.
Dilcher, D. (2000). Toward a new synthesis: Major evolutionary trends in the angiosperm fossil record. Proc. Nat. Acad. Sci., USA 97:7030-7036.
Dilcher, D.L. (2001). Paleobotany some aspects of non-flowering and flowering plant evolution. Taxon 50: 697-711.
Dowton, M. & A.D. Austin. (1994). Molecular phylogeny of the insect order Hymenoptera: Apocritan relationships. Proc. Nat. Acad. Sci., USA 91:9911-9915.
Doyle, J.A. (1994). Origin of the angiosperm flower: A phylogenetic perspective. Pp. 7-29 in Plant Systematics and Evolution Supplementum; Early evolution of flowers. P.K. Endress & E.M. Friis (Eds). Springer-Verlag, Heidelberg.
Doyle, J.A. & M.J. Donoghue (1993). Phylogenies and angiosperm diversification. Paleobiology 19:141-167.
Doyle, J.J. & J.L. Doyle (1987). A rapid DNA isolation procedure for small quantities of fresh leaf tissue. Phytochemical Bulletin 19:11-15.
Doyle, J.J. & J.L. Doyle (1990). A rapid total DNA preparation procedure for fresh plant tissue. Focus 12:13-15.
Eeckhaut, I., D. McHugh, P. Mardulyn, R. Tiedemann, D. Monteyne, M. Jangoux, & M. Milinkovitch (2000). Myzostomida: A link between trochozoans and flatworms? Proc. Royal Soc. Lond., Series B (Biol. Sci.) 267:1383-1392.
Eickwort, G.C. (1969a). Tribal positions of western Hemisphere green sweat bees, with comments on their nest architecture (Hymenoptera: Halictidae). Ann. Entomol. Soc. Am. 62(3):652-660.
Eickwort, G.C. (1969b). A comparative morphological study and generic revision of the augochlorine bees (Hymenoptera: Halictidae). Univ. Kansas Science Bull. 48:325-52.
Emery, A.M., Billingsley, P.F., Ready, P.D., and Djamgoz, M.B.A. (1998) Review: Insect Na+/K+-ATPase. J. Insec. Phys. 44: 197-209.
>>download .pdf
Engel, M.S. (1996). New augochlorine bees (Hymenoptera: Halictidae) in Dominican amber, with a brief review of fossil Halictidae. J. Kansas Entomol. Soc. 69 (Suppl.): 334-345.
Engel, M.S. (1999). The taxonomy of recent and fossil honey bees (Hymenoptera: Apidae; Apis) J. Hymenoptera. Res. 8: 165-196.
Engel, M.S. (2000a). A new interpretation of the oldest fossil bee (Hymenoptera: Apidae). Amer. Mus. Novitates no. 3296, 11 pp.
Engel, M.S. (2000b). Fossils and phylogeny: A paleontological perspective on social bee evolution. In "Anais do IV Encontro Sobre Abelhas" (M.M.G. and K. Hartfelder, Eds.), pp. 217-224. Univ. de Sao Paulo, Ribeirao Preto.
Engel, M.S. (2001a). Monophyly and extensive extinction of advanced eusocial bees: Insights from an unexpected Eocene diversity. Proc. Natl. Acad. Sci. USA 98(4): 1661-1664.
Engel, M.S. (2001b). A monograph on the Baltic amber bees and evolution of the Apoidea (Hymenoptera). Bull. Amer. Mus. Natural History 259:1-192.
Engel, M.S. (2002). Phylogeny of the bee tribe Fideliini (Hymenoptera: Megachilidae), with a description of a new genus from southern Africa. African Entomol. 10(2): 305-313.
Eriksson, O. & B. Bremer (1992). Pollination systems, dispersal modes, life forms, and diversification rates in angiosperm families. Evolution 46:258-266.
Espelie, K.E., J.H. Cane, & D.S. Himmelsbach (1992). Nest cell lining of the solitary bee Hylaeus bisinuatus. Experientia 48:414-416.
Faegri, K., & van der Pijl, L. (1966). The Principles of Pollination Ecology. Pergamon Press, Oxford, UK.
Fagan, M.J. and Saier Jr., M.H. (1993) P-type ATPases of Eukaryotes and Bacteria: Sequence Analyses and Construction of Phylogenetic Trees. J. Mol. Evol. 38: 57-99.
Fang, Q.Q., S. Cho, J.C. Regier, C. Mitter, M. Mathews, R.W. Poole, T.P. Friedlander, & S. Zhao (1997). A new nuclear gene for insect phylogenetics: dopa decarboxylase is informative of relationships within Heliothinae (Lepidoptera: Noctuidae). Syst. Biol. 46:269-283.
Fang, Q.Q., A. Mitchell, J.C. Regier, C. Mitter, T.P. Friedlander, & R.W. Poole (2000). Phylogenetic utility of the nuclear gene dopa decarboxylase in noctuoid moths (Insecta: Lepidoptera: Noctuoidea). Mol. Phylo. Evol. 15:473-486.
Farris, J.S. (1969). A successive approximations approach to character weighting. Syst. Zool. 18:374-385.
Farris, J.S., M. Kallersjol, A.G. Kluge, & C. Bult (1995). Testing significance of incongruence. Cladistics 10: 315-319.
Felsenstein, J. (1978). Cases in which parsimony or compatibility methods will be positively misleading. Syst. Zool. 27:49-62.
Felsenstein, J. (1981). Evolutionary trees from DNA sequences: a maximum likelihood approach. J. Mol. Evol. 17:368-376.
Felsenstein, J. (1985) Confidence limits on phylogenies: an approach using the bootstrap. Evolution 39:783-791.
Freund, J.N. & B.P. Jarry (1987). The rudimentary gene of Drosophila melanogaster encodes four enzymic functions. J. Mol. Biol. 193: 1-13.
Friedlander, T.P., K.R. Horst, J.C. Regier, C. Mitter, R.S. Peigler, & Q.Q. Fang (1998). Two nuclear genes yield concordant relationships within Attacini (Lepidoptera: Saturniidae). Mol. Phylogen. Evol. 9:131-140.
Friedlander, T.P., J.C. Regier, & C. Mitter (1992). Nuclear gene sequences for higher level phylogenetic analysis: 14 promising candidates. Syst. Biol. 41:483-490.
Friedlander, T.P. J.C. Regier, & C. Mitter (1994). Phylogenetic information content of five nuclear gene sequences in animals: Initial assessment of character sets from concordance and divergence studies. Syst. Biol. 43:511-525.
Friedlander, T.P., J.C. Regier, & C. Mitter. (1997). Initial assessment of character sets from five nuclear gene sequences in animals. Pp. 301-320 in M.L. Reaka-Kudla, D.E. Wilson & E.O. Wilson (Eds.). Biodiversity II. Joseph Henry Press, Washington, DC.
Friedlander, T.P., J.C. Regier, C. Mitter, & D.L. Wagner (1996). A nuclear gene for higher level phylogenetics: Phosphoenolpyruvate carboxykinase tracks Mesozoic-age divergences within Lepidoptera (Insecta). Mol. Biol. Evol. 13:594-604.
Friedlander, T.P., J.C. Regier, C. Mitter, D.L. Wagner, & Q.Q. Fang (2000). Evolution of heteroneuran Lepidoptera (Insecta) and the utility of dopa decarboxylase for Cretaceous-age phylogenetics. Zool. J. Linn. Soc. 130:213-234.
Friis, E.M. & W.L. Crepet. (1987). Time of appearance of floral features. Pp. 145-179 in E.M. Friis, W.G. Chaloner, & P.R. Crane (Eds.). The Origins of Angiosperms and Their Biological Consequences. Cambridge University Press, Cambridge.
Friis, E.M., Pedersen K.R., & P.R. Crane. (2000). Reproductive structure and organization of basal angiosperms from the early Cretaceous (Barremian or Aptian) of western Portugal. International Journal of Plant Sciences 161 (6 supplement):S169-S182.
Friis, E.M., K.R. Pedersen, & P.R. Crane (2001). Fossil evidence of water lilies (Nymphaeales) in the Early Cretaceous. Nature 410:357-360.
Gandolfo, M.A. K.C. Nixon, & W.L. Crepet (1998). A phylogenetic analysis of modern and cretaceous Triuridaceae (Monocotyledoneae). American J. Bot. 85:131.
Garcia,R.L., H.D. Perkins and A.J. Howells (1996). The structure, sequence and developmental pattern of expression of the white gene in the blowfly Lucilia cuprina. Insect Mol. Biol. 5(4): 251-260.
Gauld, I.G. & B. Bolton (1988). The Hymenoptera. Oxford University Press, Oxford.
Giribet, G., G.D. Edgecomb & W.C. Wheeler (2001). Arthropod phylogeny based on eight molecular loci and morphology. Nature 413:157-161.
Goloboff, P.A. (1993). Estimating character weights during tree search. Cladistics 9:83-91.
Goloboff, P.A. (1997). Self-weighted optimization: Tree searches and character state reconstructions under implied transformation costs. Cladistics 13:225-245.
Gomulski, L.M., R. J. Pitts, S. Costa, G. Saccone, C. Torti, L. C. Polito, G. Gasperi, A. R. Malacrida, F. C. Kafatos, and L. J. Zwiebel (2001). Genomic Organization and Characterization of the white Locus of the Mediterranean Fruitfly, Ceratitis capitata, Genetics 157: 1245-1255.
Goremykin, V., V. Bobrova, J. Pahnke, A .Troitsky, A. Antonov, and W. Martin. (1996). Noncoding sequences from the slowly evolving chloroplast inverted repeat in addition to rbcL data do not support gnetalean affinities of angiosperms. Mol. Biol. Evol. 13(2):383-396.
Graybeal, A. (1994). Evaluating the phylogenetic utility of genes: a search for genes informative about deep divergences among vertebrates. Syst. Biol. 43:174-193.
Graybeal, A. (1998). Is it better to add taxa or characters to a difficult phylogenetic problem? Syst. Biol. 47(1):9-17.
Grimaldi, D. (1999). The co-radiations of pollinating insects and angiosperms in the Cretaceous. Annals of the Missouri Botanical Garden 86:373-406.
Hasegawa, M., T. Hashimoto, J. Adachi, N. Iwabe, & T. Miyata. (1993). Early branchings in the evolution of eukaryotes: ancient divergence of entamoeba that lacks mitochondria revealed by protein sequence data. J. Mol. Evol. 36:380-388.
Hefetz, A, H.M. Fales, & S.W.T. Batra (1979). Natural polyesters: Dufour's gland macrocyclic lactones from brood cell laminesters in Colletes bees. Science 204:415-417.
Henikoff, S. & M.K. Eghtedarzadeh (1987). Conserved arrangement of nested genes at Drosophila Gart locus. Genetics 117:711-725.
Henikoff, S., M.A. Keene, K. Fechtel, & J.W. Fristom (1986a). Gene within a gene: nested Drosophila genes encode unrelated proteins on opposite DNA strands. Cell 44:33-42.
Henikoff, S., M.A. Keene, J.S. Sloan, J. Bleskan, R. Hards, & D. Patterson (1986b). Multiple purine pathway enzyme activities are encoded at a single genetic locus in Drosophila. Proc. Natl. Acad. Sci (USA) 83: 720-724.
Herendeen, P.S., W.L. Crepet, & K.C. Nixon (1994). Fossil flowers and pollen of Lauraceae from the Upper Cretaceous of New Jersey. Plant Syst. Evol. 189:29-40.
Herrera, C. M. (1988). Variation in mutualisms: the spatio-temporal mosaic of a pollinator assemblage. Biol. J. Linn. Soc. 35:95-125.
Hickson et al. (2000) [REFERENCE MISSING]
Hillis, D.M. & M.T. Dixon (1991). Ribsomal DNA: molecular evolution and phylogenetic inference. Quart Rev. Biol. 66(4): 411-453.
Hillis, D. B.K. Mable, & C. Moritz (1996). Applications of molecular systematics: the state of the field and a look to the future. Pp. 515-543 in D.M. Hillis, C. Moritz, and B.K. Mable. Molecular Systematics, 2nd Ed. Sinauer Assoc. Sunderland, MA.
Holzinger, F. and Wink, M. (1996) Mediation of cardiac glycoside insensitivity in the monarch butterfly (Danaus plexippus): role of an amino acid substitution in the ouabain binding site of Na+,K+-ATPase. J. Chem. Ecol. 22: 1921-1937.
Houston, T.F. (1969). Observations on the nests and behavior of some euryglossine bees (Hymenoptera: Colletidae). J. Aust. Entomol. Soc. 8:1-10.
Houston, T.F. (1975). Nests, behavior and larvae of the bee Stenotritus pubescens (Smith) and behavior of some related species (Hymenoptera: Apoidea: Stentotrinae). J. Aust. Entomol. Soc. 14:145-154.
Houston, T.F. (1989). Leioproctus bees associated with Western Australian smoke bushes (Conospermum spp.) and their adaptations for foraging and concealment (Hymenoptera: Colletidae: Paracolletini). Rev. West. Aust. Mus. 14:274-292.
Houston, T.F. (1999). Three new, monolectic species of Euryglossa (Euhesma) from Western Australia (Hymenoptera: Colletidae). Rec. West. Aust. Mus. 15:719-728.
Hovemann, B., S. Richter, U. Walldorf, & C. Cziepluch. (1988). Two genes encode related cytoplasmic elongation factors 1alpha (EF-1alpha) in Drosophila melanogaster with continuous and stage specific expression. Nucl. Acids Res. 16:3175-3194.
Hovmöller, R. T. Pape, & M. Kallersjol (2002). Palaeoptera problem: Basal pterygote phylogeny inferred from 18S and 28S rDNA sequences. Cladistics 18(3): 313-323.
Hsu, R., A.D. Briscoe, B.S.W. Chang, & N.E. Pierce (2001). Molecular evolution of a long wavelength-sensitive opsin in mimetic Heliconius butterflies (Lepidoptera: Nymphalidae). Biol. J. Linn. Soc. 72: 435-449.
Huber, A., S. Schulz, J. Bentrop, C. Groell, U. Wolfrum & R. Paulsen (1997). Molecular cloning of Drosophila Rh6 rhodopsin: the visual pigment of a subset of R8 photoreceptor cells. FEBS Lett. 406 (1-2): 6-10.
Huelsenbeck, J.P. & K.A. Crandall (1997). Phylogeny estimation and hypothesis testing using maximum likelihood. Ann. Rev. Ecol. Syst. 28:437-466.
Huelsenbeck, J.P., & F. Ronquist (2001). MRBAYES: Bayesian inference of phylogenetic trees. Bioinformatics (Oxford) 17 (8): 754-755.
Huelsenbeck, J.P. B. Rannala, & B. Larget (2000). A Bayesian framework for the analysis of cospeciation. Evolution 54 (2): 352-364.
Hurd, P.D., Jr. & E.G. Linsley (1976). The bee family Oxaidae with a revision of the North American species. Smithsonian Contrib. Zool. no. 220. Washington, DC. 75 pp.
Janzen, D. H. (1980). When is it coevolution? Evolution 34:611-612.
Johnson, S. D., & Steiner, K. E. (2000). Generalization versus specializaton in plant pollination systems. Trends Ecol. Evol. 15:140-143.
Kamaishi, T., T. Hashimoto, Y. Nakamura, F. Nakamura, S. Murata, N. Okada, K.I. Okamoto, M. Shimizu, & M. Hasegawa (1996). Protein phylogeny of translation elongation factor EF-1alpha suggests microsporidians are extremely ancient eukaryotes. J. Mol. Evol. 42:257-263.
Kawakita, A., T. Sota, J.S. Ascher, M. Ito, H. Tanaka, & M. Kato (2003). Evolution and phylogenetic utility of alignment gaps within intron sequences of three nuclear genes in bumble bees (Bombus). Mol. Biol. Evol. 20(1): 87-92.
>> download .pdf
Kawakita, A., T. Sota, M. Ito, J.S. Ascher, H. Tanaka, M. Kato, & D.W. Roubik (2004). Phylogeny, historical biogeography, and character evolution in bumble bees (Bombus: Apidae) based on simultaneous analysis of three nuclear gene sequences. Mol. Phylo. Evol. 31(2) 799-804
Kim, H., R.E. Kelly, & D.R. Evans (1992). The structural organization of the hamster multifunctional protein CAD. J. Biol. Chem. 267(10): 7177-7184.
Kirby, W. (1802). Monographia Apum Angliae. Vol. 1:xxii+258pp.; Vol. 2:388pp., 18 pls. Ipswich, U.K., privately published.
Kishino, H., J.L. Thorne, & W.J. Bruno (2001). Performance of a divergence time estimation method under a probabilistic model of rate evolution. Mol. Biol. Evol. 18:352-361.
Kjer, K.M. (2004). Aligned 18S and insect phylogeny. Syst. Biol. 53(3): 506-514.
>> download .pdf.
Kjer, K.M., R.J. Blahnik, & R.W. Holzenthal. (2001). Phylogeny of Trichoptera (Caddisflies): characterization of signal and noice within multiple data sets. Syst. Biol. 50(6): 781-816.
Kojima, S., T. Hashimoto, M. Hasegawa, S. Murata, S. Ohta, H. Seki, & N. Okada. (1993). Close phylogenetic relationship between Vestimentifera (tube worms) and Annelida revealed by the amino acid sequence of elongation factor-1 alpha. J. Mol. Evol. 37:66- 70.
Kjer, K.M. (2004). Aligned 18S and insect phylogeny. Syst. Biol. 53(3): 506-514.
Koulianos, S., R. Schmid-Hempel, D.W. Roubik, and P. Schmid-Hempel (1999). Phylogenetic relationships within the corbiculate Apinae (Hymenoptera) and the evolution of eusociality. J. Evol. Biol. 12: 380-384.
Krombein, K.V., P.D. Hurd, D.R. Smith, & B.D. Burks (1979). Catalog of Hymenoptera in America North of Mexico (3 vols.). Smithsonian Institution Press, Washington, DC.
Krzywinski, J., Wilkerson, R. C., Besansky, N. J. (2001). Toward understanding Anophelinae (Diptera, Culicidae) phylogeny: Insights from nuclear single copy genes and the weight of evidence. Syst. Biol. 50: 540-556.
Krzywinski, J. & Besansky, N. J. (2002). Frequent intron loss in the white gene: A cautionary tale for phylogeneticists. Mol. Biol. Evol. 19: 362-366.
Kucharski, R. & R. Maleszka (1998). Arginine kinase is highly expressed in the compound eye of the honey bee, Apis mellifera. Gene 211: 343-349.
Kullnig-Gradinger, C.M., Szakacs, G., Kubicek, C.P. (2002). Phylogeny and evolution of the genus Trichoderma: a multigene approach. Mycological Research. 106(7): 757-767.
Labandeira, C.C. (1997). Insect mouthparts: ascertaining the paleobiology of insect feeding. Ann. Rev. Ecol. Syst. 28:153-193.
Labeyrie, E. and Dobler, S. (2004) Molecular adaptation of Chrysochus leaf beetles to toxic compounds in their food plants. Mol. Biol. Evol. 21(2): 218-221.
Laroche, J. P. Li, & J. Bousquet (1995). Mitochondrial DNA and monocot-dicot divergence time. Mol. Biol. Evol. 12:1151-1156.
Laroca, S., C.D. Michener, & R.M. Hoffmeister (1989). Long mouthparts among "short-tongued" bees and the fine structure of the labium in Niltonia. J. Kansas Entomol. Soc. 62:400-410.
Leys, R. (2000). Evolution of the large carpenter bees (Xylocopa): molecular phylogenies, historical biogeography, mating strategies and sociality. PhD Thesis, Flinders University, Bedford Park, South Australia.
Leys, R., S.J.B. Cooper, & M.P. Schwarz (2000). Molecular phylogeny of the large carpenter bees, genus Xylocopa (Hymenoptera: Apidae), based on mitochondrial DNA sequences. Mol. Phylo. Evol. 17(3): 407-418.
Leys, R., S.J.B. Cooper, & M.P. Schwarz (2002). Molecular phylogeny and historical biogeography of the large carpenter bees, genus Xylocopa (Hymenoptera: Apidae). Biol. J. Linn. Soc. 77: 249-266.
>> download .pdf
Li, W.-H. (1997). Molecular Evolution. Sinauer, Sunderland, MA
Lin, C.P. & B.N. Danforth (2004). How do insect nuclear and mitochondrial gene substitution patterns differ? Insights from Bayesian analyses of combined data sets. Mol. Phylo. Evol. 30: 686-702.
Linsley, E. G. (1958). The ecology of solitary bees. Hilgardia 27:543-599.
Liu, Y.J. et al. (1999). Phylogenetic relationships among Ascomycetes: Evidence from an RNA Polymerase II subunit. Mol. Biol. Evol. 16(12): 1799-1808.
Lomholdt, O. (1982). On the origin of the bees (Hymenoptera: Apidae, Sphecidae). Entomol. Scandinav. 13:185-190.
Maddison, W.P. & D.R. Maddison (1997). MacClade Version 3.07: Analysis of Phylogeny and Character Evolution. Sinauer Associates, Sunderland, MA.
Mardulyn, P., & S.A. Cameron (1999). The major opsin in bees (Insecta: Hymenoptera): a promising nuclear gene for higher level phylogenetics. Mol. Phylogenet. Evol. 12:168-176.
>> download .pdf
Maroni, G. (1993). An Atlas of Drosophila Genes. Oxford University Press, Oxford.
Mathews, S. & M.J. Donoghue (1999). The root of angiosperm phylogeny inferred from duplicate phytochrome genes. Science 286:947-950.
McGinley, R.J. (1980). Glossal morphology of the Colletidae and recognition of the Stenotritidae at the family level. J. Kansas Entomol. Soc. 53:539-552.
McGinley, R.J. (1981). Systematics of the Colletidae based on mature larvae with phenetic analysis of apoid larvae, Hymenoptera: Apoidea. Univ. Calif. Publ. Entomol. 91:i-xvi, 1-307.
McGinley, R.J. & J.G. Rozen, Jr. (1987). Nesting biology, immature states, and phylogenetic placement of the palearctic bee Pararhophites. Amer. Mus. Novitates no. 2903, 21 pp.
McHugh, D. (1997). Molecular evidence that echiurans and pogonophorans are derived annelids. Proc. Nat. Acad. Sci., USA 94:8006-8009.
McHugh, D. (2000). Molecular phylogeny of the Annelida. Can. J. Zool. 78:1873-1884.
Melo, G.A.R. (1999). Phylogenetic relationships and classification of the major lineages of Apoidea (Hymenoptera), with emphasis on the crabronid wasps. Scientific Papers, University of Kansas Natural History Museum 14:1-55
Michel-Salzat, A., S.A. Cameron, & M.L. Oliveira (2004). Phylogeny of the orchid bees (Hymenoptera: Apinae: Euglossini): DNA and morphology yield equivalent patterns. Mol. Phylogen. Evol. 32(1): 309-323
Michener, C.D. (1944). Comparative external morphology, phylogeny, and a classification of the bees. Bull. American Mus. Nat. Hist. 82:151-326.
Michener, C.D. (1965a). A classification of the bees of the Australian and South Pacific regions. Bull. Amer. Mus. Nat. Hist. 130:1-362.
Michener, C.D. (1965b). A generic review of the Dufoureinae of the Western Hemisphere. Ann. Entomol. Soc. Am. 58:321-326.
Michener, C.D. (1966). The classification of the Diphaglossinae and North American species of the genus Caupolicana. Univ. Kansas Sci. Bull. 46:717-751.
Michener, C.D. (1974). The Social Behavior of Bees: A Comparative Study, Harvard Univ. Press, Cambridge, MA.
Michener, C.D. (1978a). The parasitic groups of the Halictidae (Hymenoptera: Apoidea). Univ. Kansas Sci. Bull. 51:291-339.
Michener, C.D. (1978b). The classification of halictine bees: tribes and old world nonparasitic genera with strong venation. Univ. Kansas Sci. Bull. 51:501-538.
Michener, C.D. (1979). Biogeography of the bees. Ann. Missouri Bot. Gard. 66:277-347.
Michener, C.D. (1981). Classification of the bee family Melittidae with a review of species of Meganomiinae. Contr. Amer. Entomol. Inst. 18(3): i+iii, 1-135.
Michener, C.D. (1985a). A comparative study of the mentum and lorum of bees. J. Kansas Entomol. Soc. 57:705-714.
Michener, C.D. (1986a). Family-group names among bees. J. Kansas Entomol. Soc. 59(2):219-234.
Michener, C.D. (1990). Classification of the Apidae (Hymenoptera). Univ. Kans. Sci. Bull. 54:75-164.
Michener, C.D. (1997). Genus-group names of bees and supplemental Family-group names. Scientific Papers, University of Kansas Natural History Museum no. 1, pp. 1-81.
Michener, C.D. (2000). The Bees of the World. Johns Hopkins University Press, Baltimore, MD.
Michener, C.D. & R.W. Brooks (1984). Comparative study of the glossae of bees. Contr. Amer. Entomol. Inst. 22:1-73.
Michener, C.D. & A. Fraser (1978). A comparative anatomical study of mandibular structure in bees. Univ. Kansas Sci. Bull. 51:463-482.
Michener, C.D. & L. Greenberg (1980). Ctenoplectridae and the origin of long-tongued bees. Zool. J. Linn. Soc. (London) 69:183-203.
Michener, C.D. & L. Greenberg (1985). The fate of the lacinia in the Halictidae and Oxaeidae (Hymenoptera, Apoidea). J. Kansas Entomol. Soc. 58:137-141.
Michener, C.D. & D.A. Grimaldi. (1988a). A Trigona from Late Cretaceous amber of New Jersey (Hymenoptera: Apidae: Meliponinae). Am. Mus. Novitates no. 2917, 10pp.
Michener, C.D. & D.A. Grimaldi. (1988b). The oldest fossil bee: apoid history, evolutionary stasis, and antiquity of social behavior. Proc. Natl. Acad. Sci. 85; 6424-6426.
Minckley, R.L. (1998). A cladistic analysis and classification of the subgenera and genera of the large carpenter bees, tribe Xylocopini (Hymenoptera: Apidae). Scientific Papers, University of Kansas Natural History Museum 9:1-47.
Mitchell, A., S. Cho, J.C. Regier, C. Mitter, R.W. Poole, & M. Mathews. (1997). Phylogenetic utility of Elongation Factor-1alpha in Noctuoidea (Insecta: Lepidoptera): the limits of synonymous substitution. Mol. Biol. & Evol. 14:381-390.
Mitchell, W., C. Mitter, & J.C. Regier (2000). More taxa or more characters revisited: Combining data from nuclear protein-encoding genes for phylogenetic analyses of Noctuoidea (Insecta: Lepidoptera). Syst. Biol. 49:202-224.
Moore, L.V. and Scudder, G.G.E. (1986) Ouabain-resistant Na,K-ATPases and cardenolide tolerance in the large milkweed bug, Oncopeltus fasciatus. J. Insect. Physiol. 32: 27-33.
Moriyama, E.N. & T. Gojobori (1989). Evolution of nested genes with special references to cuticle proteins in Drosophila melanogaster. J. Mol. Evol. 28(5): 391-397.
Moulton, J.K. (2000). Molecular sequence data resolves basal divergences within Simuliidae (Diptera). Syst. Entomol. 25:95-113.
Moulton, J.K. (2003). Can the current molecular arsenal adequately track rapid divergence events within Simuliidae (Diptera)? Mol. Phylogen. Evol. 27:45-57.
Moulton, J.K. & B.M. Wiegmann (2004). Evolution and phylogenetic utility of CAD (rudimentary) among Mesozoic-aged Eremoneuran Diptera (Insecta). Mol. Phylogen. Evol. 31(1): 363-378.
>> download .pdf
Moure, J.C. & P.D. Hurd, Jr. (1987). An Annotated Catalog of the Halictid Bees of the Western Hemisphere (Hymenoptera: Halictidae). Smithsonian Institution Press, Washington, DC.
Muller, A. (1996). Host-plant specialization in western palearctic anthidiine bees (Hymenoptera: Apoidea: Megachilidae). Ecol. Monogr. 66:235-257.
Naylor, G.J.P, & W.M. Brown (1998). Amphioxus mitochondrial DNA, chordate phylogeny, and the limits of inference based on comparisons of sequences. Syst. Biol. 47:61-76.
Newfeld, S.J., R.W. Padgett, S.D. Findley, B.G. Richter, M. Sanicola, M. DeCuevas, and W.M. Gelbart (1997). Molecular evolution at the decapentaplegic locus in Drosophila. Genetics 145(2): 297-309.
Niculita, H., J.-F. Julien, E. Petrochilo (2001). A molecular study of Abdominal-A in the ant Myrmica rubra reveals lineage dependant evolutionary rates for a developmental gene. Insect Mol. Biol. 10(5): 513-521.
Nixon, K.C. & W.L. Crepet (1993). Late Cretaceous fossil flowers of ericalean affinity. Am. J. Bot. 80:616-623.
Noll, R.B. (2001). Behavioral phylogeny of corbiculate Apidae (Hymenoptera: Apinae), with special reference to social behavior. Cladistics 18(2): 137-153.
Nylander, J.A.A., F. Ronquist, J.P. Huelsenbeck & J.L. Nieves-Aldrey (2004). Bayesian phylogenetic analysis of combined data. Syst. Biol. 53(1): 47-67.
Ogden, T.H. & M.F. Whiting (2003). The problem with "the Paleoptera problem:" sense and sensitivity. Cladistics 19:432-442.
Ortiz-Rivas, B., A. Moya & D. Martinez-Torres (2003). Molecular systematics of aphids (Homoptera: Aphididae): new insights from the long-wavelength opsin gene. Mol. Phylo. Evol. 30(1): 24-37
Pedersen, B.V. (1996). A phylogenetic analysis of cuckoo bumblebees (Psithyrus Lepeletier) and bumblebees (Bombus Latreille) inferred from sequences of the mitochondrial gene cytochrome oxidase I. Mol. Phylogen. Evol. 5(2): 289-297.
Pedersen, B.V. (2002). European bumblebees (Hymenoptera: Bombini): Phylogenetic relationships inferred from DNA sequences. Insect Syst. & Evol. 33(4): 361-386.
Pellmyr, O. (1992). Evolution of insect pollination and angiosperm diversification. Trends Ecol. Evol. 7:46-49.
Pepling, M. & S.M. Mount (1990). Sequence of a cDNA from the Drosophila melanogaster white gene. Nucleic Acids Res. 18(6): 1633.
Pesenko, Y.A. (1999). Phylogeny and classification of the family Halictidae revised (Hymenoptera: Apoidea). J. Kansas Entomol. Soc. 72:104-123.
Pietrantonio, P.V., S.P. Holmes, C. Jagge, & S.K. Frazier (2002). Cloning of troponin C and other gene fragments from the red imported fire ant Solenopsis invicta Buren (Hymenoptera: Formicidae). Southwestern Entomologist 25(Supplement): 89-96.
Plant, J. & H.F. Paulus (1987). Comparative morphology of the postementum of bees (Hymenoptera: Apoidea) with special remarks on the evolution of the lorum. Zeit. Zool. Syst. Evol. 25:81-103.
Popp, M.P., R. Grisshammer, P.A. Hargrave, & W. Smith (1996). Ant opsins: sequences from the Saharan silver ant and the carpenter ant. Invert. Neuroscience 1:323-329.
Prentice M. (1991). Morphological analysis of the tribes of Apidae. In Diversity in the genus Apis (D.R. Smith, Ed.) pp. 51-69. Westview Press, Boulder, CO.
Qiu, Y.-L., J. Lee, F. Bernasconi-Quadroni, D.E. Soltis, P.S. Soltis, M. Zanis, E.A. Zimmer, Z. Chen, V. Savolainen, M.W. Chase (1999). The earliest angiosperms: evidence from mitochondrial plastid and nuclear genomes. Nature 402:404-407.
Radchenko, V.G. & Y.A. Pesenko (1994a). Biology of Bees. St. Petersburg: Russian Academy of Sciences. (in Russian; English summary pp. 314-331).
Radchenko, V.G. & Y.A. Pesenko (1994b). Protobee and its nests: a new hypothesis concerning the early evolution of the Apoidea. Entomologischeskoe Obozrenie 73:913-933 (translation in: Entomological Review 75:140-162).
Rasnitsyn, A.P. & C.D. Michener (1991). Miocene fossil bumble bee from the Soviet far east with comments on the chronology and distribution of fossil bees. Ann. Entomol. Soc. Am. 84:583-589.
Raven, P.H. & D.I. Axelrod (1974). Angiosperm biogeography and past continental movements. Ann. Missouri Bot. Gard. 61:539-673.
Reeves, S.A. and Yamanaka, M. (1993) Cloning and sequence analysis of the alpha subunit of the cat flea sodium pump. Insect. Biochem. Molec. Biol. 23(7): 809-814.
Regier, J.C. & J.W. Shultz (1997). Molecular phylogeny of the major arthropod groups indicates polyphyly of crustaceans and a new hypothesis for the origin of hexapods. Mol. Biol. Evol. 14:902-913.
Regier, J.C. & J.W. Shultz (1998). Molecular phylogeny of arthropods and the significance of the Cambrian "explosion" for molecular systematics. Amer. Zool. 38:918-928.
Regier, J.C. & J.W. Shultz (2001). Elongation factor-2: A useful gene for arthropod phylogenetics. Mol. Phylogenet. Evol. 20 (1): 136-148.
>> download .pdf
Regier, J.C., Q.Q. Fang, C. Mitter, R.S. Peigler, T.P. Friedlander, & M.-A. Solis (1998). Evolution and phylogenetic utility of the period gene in Lepidoptera. Mol. Biol. Evol. 15:1172-1182.
Regier, J.C. C. Mitter, R.S. Peigler, & T.P. Friedlander (2000). Phylogenetic relationships in Lasiocampidae (Lepidoptera): Initial evidence from elongation factor-1alpha sequences. Insect Syst. Evol. 31:179-186.
Ren, D. (1998). Flower-associated Brachycera flies as fossil evidence for Jurassic angiosperm origins. Science 280:85-88.
Reyes, S.G., S.J.B. Cooper, & M.P. Schwarz (1999). Species phylogeny of the bee genus Exoneurella Michener (Hymenoptera: Apidae: Allodapini): Evidence from molecular and morphological data sets. Ann. Entomol. Soc. America 92(1): 20-29.
Ricklefs, R.E. & S.S. Renner (1994). Species richness within families of flowering plants. Evolution 48:1619-1636.
Rijsewijk, F., M. Schuermann, E. Wagenaar, P. Parren, D. Weigel, & R. Nusse (1987). The Drosophila homolog of the mouse mammary oncogene int-1 is identical to the segment polarity gene wingless. Cell 50:649-657.
Robertson, C. (1928). Flowers and Insects: Lists of Visitors to Four Hundred and Fifty-Three Flowers. C. Robertson, Carlinville, IL.
Roig-Alsina, A. (1991). Cladistic analysis of the Nomadinae s. str. with description of a new genus. J. Kansas Entomol. Soc. 64: 23-37.
Roig-Alsina, A. & C.D. Michener. (1993). Studies of the phylogeny and classification of long-tongued bees (Hymenoptera: Apoidea). Univ. Kansas Sci. Bull. 55:123-173.
Rokas, A., J.A.A. Nylander, F. Ronquist, & G.N. Stone (2002). A maximum-likelihood analysis of eight phylogenetic markers in gallwasps (Hymenoptera: Cynipidae): Implications for insect phylogenetic studies. Mol. Phylo. Evol. 22(2):206-219.
Rolfs, A., I. Schuller, U. Finckh, & I. Weber-Rolfs (1992). PCR: Clinical Diagnostics and Research. Berlin: Springer-Verlag.
Rozen, Jr. J.G. (1973). Immature stages of lithurgine bees with descriptions of the Megachilidae and Fideliidae based on mature larvae. Amer. Mus. Novitates 2527:1-14.
Rozen, Jr., J.G. (2000). Systematic and geographic distributions of neotropical cleptoparasitic bees, with notes on their modes of parasitism. In: Encontro sobre Abelhas, M. M. G. Bitondi, K. Hartfelder, et al. (eds.). Brazil: Ribeirão Preto, An. IV.
Rozen, Jr., J.G. (2003a). Ovarian formula, mature oocyte, and egg index of the bee Ctenoplectra (Hymenoptera: Apoidea: Apidae). J. Kansas Entomol. Soc. 76(4). 640-642.
Rozen, J.G., Jr. (2003b). A new tribe, genus, and species of South American panurgine bee (Andrenidae, Panurginae), oligolectic on Nolana (Nolanaceae). In: G.A.R. Melo & I. Alves-dos-Santos (pp. 93-108), Apoidea Neotropica: Homenagem aos 90 Anos de Jesus Santiago Moure. Editora UNESC, Criciuma.
Rozen, Jr., J.G. & H. Özbek (2003). Oocytes, eggs, and ovarioles of some long-tongued bees (Hymenoptera: Apoidea). Amer. Mus. Novitates 3393: 1-35.
Rozen, J.G., Jr. & R.J. McGinley (1974). Phylogeny and systematics of Melittidae based on the mature larvae (Insecta, Hymenoptera, Apoidea). Amer. Mus. Novitates no. 2545, 31 pp.
Ryazanov et al. (1997). Identification of a new class of protein kinases represented by eukaryotic elongation factor-2 kinase. Proc. Natl. Acad. Sci. USA. 94: 4884-4889.
Sanchez_Salazar, J., M.T. Pletcher, R.L. Bennett, S.J. Brown, T.J. Dandamudi, R.E. Denell, J.S. Doctor (1996). The Tribolium decapentaplegic gene is similar in sequence, structure, and expression to the Drosophila dpp gene. Develop. Genes and Evol. 2006(4): 237-246.
Sanderson, M.J. (1997). A nonparametric approach to estimating divergence times in the absence of rate constancy. Mol. Biol. Evol. 14:1218-1231.
Sanderson, M.J. (1998). Estimating the rate and time in molecular phylogenies: beyond the molecular clock? Pp. 242-264 in D.E. Soltis, P.S. Soltis, & J.J. Doyle (Eds.). Molecular Systematics of plants II: DNA sequencing. Chapman Hall, New York.
Sanderson, M.J. (2002). Estimating absolute rates of molecular evolution and divergence times: a penalized likelihood approach. Mol. Biol. Evol. 19: 101-109
Sanderson, M.J. & M.J. Donoghue. (1994). Shifts in diversification rate with the origin of angiosperms. Science 264:1590-1594.
Sanderson, M.J. and J.A. Doyle. 2001. Sources of error and confidence intervals in estimating the age of angiosperms from rbcL and 18S rDNA data. American Journal of Botany 88(8)1499-1516.
Sakagami, S.F. & C.D. Michener (1987). Tribes of the Xylocopinae and origin of the Apidae. Ann. Entomol. Soc. Am. 80:439-450.
Schmitz, J. & R.F.A. Moritz (1998). Molecular phylogeny of Vespidae (Hymenoptera) and the evolution of sociality in wasps. Mol. Phylogenet. Evol. 9(2): 183-191.
Schoonhoven, L.M., T. Jermy, & J.J.A. van Loon (1998). Insect-Plant Biology: From Physiology to Evolution. Chapman & Hall, London.
Schubert, M., L.Z. Holland, N.D. Holland, & D.K. Jacobs (2000). A phylogenetic tree of the Wnt genes based on all available full-length sequences, including five from the cephalochordate Amphioxus. Mol. Biol. Evol. 17:1896-1903.
Schultz, T.R., M.S. Engel, & M. Prentice (1999). Resolving conflict between morphological and molecular evidence for the origin of eusociality in the corbiculate bees (Hymenoptera: Apidae): A hypothesis-testing approach. Univ. Kansas Nat. Hist. Mus. Spec. Publ. 24: 110-123.
Schwarz, M.P., N.J. Bull, & S.J.B. Cooper (2003). Molecular phylogenetics of allodapine bees, with implications for the evolution of sociality and progressive rearing. Syst. Biol. 52(1): 1-14.
Schwarz, M.P., S.M. Tierney, S.J.B. Cooper & N.J. Bull (2004). Molecular phylogenetics of the allodapine bee genus Braunsapis: A/T bias and heterogeneous substitution parameters. Mol. Phylogen. Evol. 32 (1): 110-122.
Scott, V. (1996). Pollen selection by three species of Hylaeus in Michigan (Hymenoptera: Colletidae). J. Kansas Entomol. Soc. 69 (4 suppl.):195-200.
Serrao (2001). A comparative study of the proventricular structure in corbiculate Apinae (Hymenoptera, Apidae). Micron 32(4): 379-385.
Sheppard, W.W. & McPheron, B.A. (1991). Ribosomal DNA diversity in Apidae. In "Diversity of the genus Apis." (D.R. Smith, Ed.), pp. 89-102. Westview Press, Boulder, Co.
Shultz, J.W. & J.C. Regier (2000). Phylogenetic analysis of arthropods using two nuclear protein-encoding genes supports a crustacean + hexapod clade. Proc. Royal Soc. Lond., Series B (Biol. Sci.) 267:1011-1019.
>> download .pdf
Sidow, A. (1992). Diversification of the Wnt gene family on the ancestral lineage of vertebrates. Proc. Natl. Acad. Sci., USA 89:5098-5102.
Sidow, A., & Thomas, W.K. (1994). A molecular evolutionary framework for eukaryotic model organisms. Curr. biol. 4: 596-603.
Silveira, F.A. (1993a). Phylogenetic relationships of the Exomalopsini and Ancylini (Hymenoptera: Apoidea). Univ. Kansas Sci. Bull. 55:163-173.
Silveira, F.A. (1993b) The mouthparts of Ancyla and the reduction of the labiomaxillary complex among long-tongued bees. Entomol. Scandinavica 24:293-300.
Silveira, F.A. (1995). Phylogenetic relationships and classification of the Exomalopsini with a new tribe, Tetratognathini (Hymenoptera: Apoidea). Univ. Kansas Sci. Bull. 55:425-454.
Simon, C., F. Frati, A. Beckenbach, B. Crespi, H. Liu, & P. Flook. (1994). Evolution, weighting, and phylogenetic utility of mitochondrial gene sequences and a compilation of conserved polymerase chain reaction primers. Ann. Entomol. Soc. Am. 87:651-701.
Sipes, S.D. & P.G. Wolf (2001). Phylogenetic relationships within Diadasia, a group of specialist bees. Mol. Phylo. Evol. 19:144-156.
Smith, A.G., D.G. Smith & B.M. Funnel (1994). Atlas of Mesozoic and Cenozoic coastlines. Cambridge University Press, Cambridge, UK. x + 99 pp.
Soltis, P.S., D.E. Soltis, & M.W. Chase (1999). Angiosperm phylogeny inferred from multiple genes as a tool for comparative biology. Nature 402:402-404.
Soltis, P.S., D.E. Soltis, M.J. Zanis, & K. Sangtae (2000). Basal lineages of angiosperms: relationships and implications for floral evolution. International Journal of Plant Sciences 161 (6 supplement):S97-S107.
Soltis, D.E., P.S. Soltis, M.E. Mort, M.W. Chase, V. Savolainen, S.B. Hoot, & C.M. Morton (1998). Inferring complex phylogenies using parsimony: an empirical approach using three large DNA data sets for angiosperms. Syst. Biol. 47:32-42.
Sota, T. & A.P. Vogler (2001). Incongruence of mitochondrial and nuclear gene trees in the carabid beetles Ohomopterus. Syst. Biol. 50:39-59. [16S, ND5, wingless, PEPCK, anonymous locus]
Strong, D.R., J.H. Lawton, & R. Southwood (1984). Insects on Plants. Harvard University Press. Cambridge, MA
Sumitani, M., D.S. Yamamoto, J.M. Lee, & M. Hatekayama (2005). Isolation of white gene orthologue of the sawfly, Athalia rosae (Hymenoptera) and its functional analysis using RNA interference. Insect Biochem. & Mol. Biology 35: 231-240.
>>download .pdf
Sun, G., D.L. Dilcher, S. Zheng, & Z. Zhou. (1998). In search of the first flower: a Jurassic angiosperm, Archaefructus, from Northeast China. Science 282:1692-1695.
Sun, G., Q. Ji, D.L. Dilcher, S. Zheng, & K. Nixon (2002). Archaefructaceae, a new basal angiosperm family. Science 296: 899-904.
Swofford, D.L. (1999). PAUP*. Phylogenetic Analysis Using Parsimony (and other methods), v. 4.0b8. Sinauer Associates, Sunderland, MA.
Swofford, D.L., G.J. Olsen, P.J. Waddell, & D.M. Hillis (1996). Phylogenentic inference. Pp. 407-514 in D.M. Hillis, C. Moritz, & B.K. Mable. Molecular Systematics, 2nd Ed. Sinauer, Sunderland, MA.
Tepedino, V.J., & N.L. Stanton (1980). Spatiotemporal variation in phenology and abundance of floral resources on shortgrass prairie. Great Basin Nat. 40:197-215.
Thien, L.B., Azuma H., and S. Kawano. (2000). New perspectives on the pollination biology of basal angiosperms. International Journal of Plant Science 161 (6 supplement):S225-S235.
Thorne, J.L., H. Kishino, & I.S. Painter (1998). Estimating the rate of evolution of the rate of molecular evolution. Mol. Biol. Evol. 15:1647-1657.
Torchio (1984). [REFERENCE MISSING]
Towner, P., & W. Gärtner (1994). The primary stucture of mantid opsin. Gene 143: 227-231.
Towson, S.M., B.S.W. Chang, E. Salcedo, L.V. Chadwell, N.E. Pierce, & S.G. Britt (1998). Honeybee blue- and ultraviolet-sensitive opsins: cloning, heterologous expression in Drosophila, and physiological characterization. J. Neuroscience 18: 2412-2422.
Ulrich, W. (1924). Die Mundwerkzeuge der Spheciden (Hym. Foss.). Zeitschr. Morph. Okol. 1:539-636.
Uzvölgyi, E., I. Kiss, A. Pitt, S. Arsenian, S. Ingvarsson, A. Udvardy, M. Hamada, G. Klein, & J. Sumegi (1988). Drosophila homolog of the murine Int-1 protooncogene. Proc. Natl. Acad. Sci., USA 85:3034-3038.
Vaughan, G.L. and Jungreis, A.M. (1977) Insensitivity of lepidopteran tissues to ouabain: physiological mechanisms for protection from cardiac glycosides. J. Insect. Physiol. 23: 585-589.
Wahlberg, N., E. Weingartner, & S. Nylin (2003). Towards a better understanding of the higher systematics of Nymphalidae (Lepidoptera: Papilionoidea). Mol. Phylogen. Evol. 28: 473-484.
Walldorf, U. & B.T. Hovemann. (1990). Apis mellifera cytoplasmic elongation factor 1-alpha (EF-1alpha) is closely related to Drosophila melanogaster EF-1alpha. FEBS 267:245-249.
Walldorf, U., F. Richard, W.J. Gehring (1989). Comparison of homeobox-containing genes of the honeybee and Drosophila. Proc. Natl. Acad. Sci USA 86: 9971-9975.
Ward, P.S. & D.A. Downie (2005). The ant subfamily Pseudomyrmecinae (Hymenoptera: Formicidae): phylogeny and evolution of the big-eyed arboreal ants. Syst. Entomol. 30: 310-335.
>> download .pdf
Waser, N. M., L. Chittka, M.V. Price, N.V. Williams, & J. Ollerton (1996). Generalization in pollination systems, and why it matters. Ecology 77:1043-1060.
Wcislo, W.T. & J.H. Cane (1996). Floral resource utilization by solitary bees (Hymenoptera: Apoidea) and exploitation of their stored foods by natural enemies. Ann. Rev. Entomol. 41:257-286.
Williams, P.H. (1998). An annotated checklist of bumble bees with an analysis of patterns of description (Hymenoptera: Apidae, Bombini). Bull. Nat. Hist. Mus. Lond. (Entomol.) 67: 79-152.
Wheeler, W.C., Whiting, M., Wheeler, Q.D., & J.M. Carpenter. (2001). The phylogeny of the extant hexapod orders. Cladistics 17: 113-169.
Whitehead, V.B., & C.D. Eardley (2003). African Fideliini: Genus Fidelia Friese (Hymenoptera: Apoidea: Megachilidae: Fideliinae). J. Kansas Entomol. Soc. 76(2): 250-276.
Whiting, M.F. (2002). Phylogeny of the holometabolous insect orders: Molecular evidence. Zoologica Scripta. 31(1): 3-15.
Whiting, M.F., J.C. Carpenter, Q.D. Wheeler, & W.C. Wheeler. (1997). The Strepsiptera problem: phylogeny of the holometabolous insect orders inferred from 18S and 28S ribosomal DNA sequences and morphology. Syst. Biol. 46: 1-68.
Wikström, N., V. Savolainen, & M.W. Chase (2001). Evolution of angiosperms: calibrating the family tree. Proc. R. Soc. Lond. B 268:2211-2220.
Wiegmann, B.M., C. Mitter, J.C. Regier, T.P. Friedlander, D.M. Wagner, & E.S. Nielsen (2000). Nuclear genes resolve Mesozoic-aged divergences in the insect order Lepidoptera. Mol. Phylo. Evol. 15:242-259.
Winston, M.L. (1979). The proboscis of of the long-tongued bees: a comparative study. Univ. Kansas Sci. Bull. 51:631-667.
Wolfe, K.H., M. Gouy, Y.-W. Yang, P.M. Sharp, & W.-L. Li (1989). Date of the monocot-dicot divergence estimated from chloroplast DNA sequence data. Proc. Nat. Acad. Sci., USA 86:6201-6205.
Yamamoto,D.S., M. Sumitani, K. Tojo, J.M. Lee and M. Hatakeyama (2004). Cloning of a decapentaplegic orthologue from the sawfly, Athalia rosae (Hymenoptera), and its expression in the embryonic appendages. Dev. Genes Evol. 214 (3), 128-133.
>> download .pdf.
Zwiebel,L.J., G. Saccone, A. Zacharopoulou, N.J. Besansky, G. Favia, F.H. Collins, C. Louis, & F.C. Kafatos (1995). The white gene of Ceratitis capitata: a phenotypic marker for germline transformation. Science 270 (5244): 2005-2008.
