Biology Reference
In-Depth Information
Bandi, C., Damiani, G., Magrassi, L., Grigolo, A., Fani, R., and Sacchi, L. (1994). Flavobacteria as intracellular
symbionts in cockroaches. Proc. R. Soc. London (B) 257: 43Ï48.
Bandi, C., Sironi, M., Damiani, G., Magrassi, L., Nalepa, C.A., Laudani, U., and Sacchi, L. (1995). The
establishment of intracellular symbiosis in an ancestor of cockroaches and termites. Proc. R. Soc.
London (B) 259: 293Ï299.
Baumann, P., Munson, M.A., Lai, C-Y., Clark, M.A., Baumann, L., Moran, N.A., and Campbell, B.C. (1993).
Origin and properties of bacterial endosymbionts of aphids, whiteÞies, and mealybugs. ASM News ,
59: 21Ï24.
Baumann, P., Baumann, L., and Clark, M.A. (1996). Levels of Buchnera aphidicola chaperonin GroEL during
growth of the aphid Schizaphis graminum . Curr. Microbiol. 32: 279Ï285.
Bechnel, J.J. and Sweeney, A.W. (1990). Amblyospora trinus n. sp. (Microsporida: Amblyosporidae) in the
Australia mosquito Culex halifaxi (Diptera: Cullicidae). J. Protozool. 37: 584Ï592.
Bracke, J.W., Cruden, D.L., and Markovetz, A.J. (1979). Intestinal microbial Þora of the American cockroache
Periplaneta americana L. Appl. Environ. Microbiol. 38: 945Ï955.
Braig, H.R., Zhou, W., Doubson, S.L., and OÔNeill, S.L. (1998). Cloning and characterization of a gene
encoding the major surface protein of the bacterial endosymbiont Wolbachia pipientis . J. Bacteriol.
180: 2373Ï2378.
Breznak, J.A. (1982). Intestinal microbiota of termites and other xylophagous insects. Annu. Rev. Microbiol.
36: 323Ï343.
Breznak, J.A. (1984). Biochemical aspects of symbiosis between termites and their intestinal microbiota. In
InvertebrateÏMicrobial Interactions (J.M. Anderson, A.D.M. Rayer, and D.W.H. Walton, Eds.),
pp. 173Ï204. Cambridge University Press, Cambridge, U.K.
Breeuwer, J.A.J. and Werren, J.H. (1990). Microorganisms associated with chromosome destruction and
reproductive isolation between two insect species. Nature 346: 558Ï560.
Brooks, M.A. (1963). Symbiosis and aposymbiosis in arthropods. Symp. Soc. Gen. Microbiol. 13: 200Ï231.
Buchner, P. (1965). Endosymbiosis of Animals with Plant Microorganisms . Interscience Publishers, New York.
Campbell, B.C., Bragg, T.S., and Turner C.E. (1992). Phylogeny of symbiotic bacteria of four weevil species
(Coleoptera: Curculionidae) based on analysis of 16S ribosomal RNA. Insect Biochem. Mol. Biol.
22: 415Ï421.
Charles, H. and Ishikawa, H. (1999). Physical and genetic map of the genome of Buchnera , the primary
endosymbiont of the pea aphid Acyrthosiphon pisum . J. Mol. Evol. 48: 142Ï150.
Charles, H., Heddi, A., Guillaud, J., Nardon, C., and Nardon, P. (1997a). A molecular aspect of symbiotic
interactions between the weevil Sitophilus oryzae and its endosymbiotic bacteria: overexpression of
a chaperonin. Biochem. Biophys. Res. Commun. 239: 769Ï774.
Charles, H., Condemine, G., Nardon, C., and Nardon, P. (1997b). Genome size characterization of the principal
endocellular symbiotic bacteria of the weevil Sitophilus oryzae , using pulse Ýeld gel electrophoresis.
Insect Biochem. Mol. Biol. 27: 345Ï350.
Chen, C.C., Cheng, L.-L., and Hou, R.F. (1981). Studies on the intracellular yeast-like symbionts in the brown
planthopper, Nilaparvata lugens Stal. II. Effects of antibiotics and elevated temperature on the sym-
biotes and their host. Z. Angew. Entomol. 92: 440Ï449.
Chen, D.Q., Campbell, B.C., and Purcell, A.H. (1996). A new Rickettsia from a herbivorous insect, the pea
aphid Acyrthosiphon pisum (Harris). Curr. Microbiol. 33: 123Ï128.
Chen, D.Q., Montllor, C.B., and Purcell, A.H. (2000). Fitness effects of two endosymbiotic bacteria on the
pea aphid, Acyrthosiphon pisum , and the blue alfalfa aphid A. kondoi . Entomol. Exp. Appl. 95:
315Ï323.
Clark, M.A., Baumann, P., Munson, M.A., Baumann, P., Campbell, B.C., Duffus, J.E., Osborne, J.S., and
Moran, N.A. (1992). The eubacterial endosymbionts of whiteÞies (Homoptera: Aleyrodoidea) consti-
tute a lineage separate from the endosymbionts of aphids and mealybugs. Curr. Microbiol. 25:
119Ï123.
Clark, M.A., Moran, N.A., and Baumann, P. (1999). Sequence evolution in bacterial endosymbionts having
extreme base compositions. Mol. Biol. Evol. 16: 1586Ï1598.
Clark, M.A., Baumann, L. Thao, M.L., Moran, N.A., and Baumann, P. (2001). Degenerative minimalism in
the genome of a psyllid endosymbiont. J. Bacteriol. 183: 1853Ï1861.
Cohen, A.J., Williamson, D.L., and Oishi, K. (1987). SpV3 viruses of Drosophila spiroplasmas. Isr. J. Med.
Sci. 23: 429Ï433.
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