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Cockroach as the Earliest Eusocial Animal

Cockroach as the Earliest Eusocial Animal
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摘要 A completely preserved cockroach Socialaperlucida gen. et sp. nov. (Blattida: Socialidae faro. nov.) is described from the Mesozoic (Albian Early Cretaceous) amber of Archingeay in France. It is categorized within the new family Socialidae, originating from the Mesozoic cockroach family Liberiblattinidae, and representing the sister group to the most basal known eutermite families. Numerous direct and indirect morphological evidence (such as a unique narrow body and pronotum with reduced coloration, legs without carination and with numerous sensillar pitts (forelegs) as adaptations to life in nests analogical to the living termitophillous species; enlarged head, long palps for communication, a general venation modified in a direction towards termites (subcosta and radial vein [R] approximated, R branches approximated, simplified, cross-veins reduced), and possibly also the development of the breaking forewing sutura for detaching wings after marriage flight), suggest its eusocial mode of life. Thus, the first eusociality originated within cockroaches, prior to giving birth to termites; termites and Cryptocercus are not directly related. The group of eusocial cockroaches makes termite morphotaxon polyphyletic, but also in this case, the erection of a new order for mastotermites (including Cratomastotermitidae) and/or the inclusion of eusocial, morphological cockroaches within termites appears counterproductive, thus an example of such a general exception to the taxonomical procedure is provided. A completely preserved cockroach Socialaperlucida gen. et sp. nov. (Blattida: Socialidae faro. nov.) is described from the Mesozoic (Albian Early Cretaceous) amber of Archingeay in France. It is categorized within the new family Socialidae, originating from the Mesozoic cockroach family Liberiblattinidae, and representing the sister group to the most basal known eutermite families. Numerous direct and indirect morphological evidence (such as a unique narrow body and pronotum with reduced coloration, legs without carination and with numerous sensillar pitts (forelegs) as adaptations to life in nests analogical to the living termitophillous species; enlarged head, long palps for communication, a general venation modified in a direction towards termites (subcosta and radial vein [R] approximated, R branches approximated, simplified, cross-veins reduced), and possibly also the development of the breaking forewing sutura for detaching wings after marriage flight), suggest its eusocial mode of life. Thus, the first eusociality originated within cockroaches, prior to giving birth to termites; termites and Cryptocercus are not directly related. The group of eusocial cockroaches makes termite morphotaxon polyphyletic, but also in this case, the erection of a new order for mastotermites (including Cratomastotermitidae) and/or the inclusion of eusocial, morphological cockroaches within termites appears counterproductive, thus an example of such a general exception to the taxonomical procedure is provided.
出处 《Acta Geologica Sinica(English Edition)》 SCIE CAS CSCD 2010年第4期793-808,共16页 地质学报(英文版)
基金 supported by UNESCO-AMBA,UNESCO-IGCP 458,Schwarz stipend, VEGA 6002 and 2/0125/09,MVTS,and the Literarny Fond. a contribution to the CNRS ANR program"AMBRACE"(project no.BLAN07-1-184190)
关键词 FOSSIL INSECT Mesozoic amber Blattida EUSOCIALITY termite origin polyphyletic taxon new family fossil, insect, Mesozoic amber, Blattida, eusociality, termite origin, polyphyletic taxon, new family
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  • 1Abe, T., 1987. Evolution of life types in termites. In: Kawano, S., Connell, J.H., and Hidaka. T., (eds.) Evolution and Coadaptation in Biotic Communities. Tokyo: University of Tokyo Press, 125-148.
  • 2Abe, T., 1991. Ecological factors associated with the evolution of worker and soldier castes in termites. Ann. Entomol. 9: 101-107.
  • 3Alexander, R.D., Noonan, K.M., and Crespi, B.J., 1991. The evolution of eusociality. In: Sherman, P.W., Jarvis, J.U.M. and Alexander, R.D. (eds.): The Biology of the Naked Mole Rat, Princeton: Univ. Press, 3-44.
  • 4Alford, D.V., 1968. The biology and immature stages of Syntretus splendidus (Marshall) Hymenoptera: Braconidae, Euphorinae), a parasite of adult bumblebees. Transactions of the Royal Entomological Society, London, 120: 375-393.
  • 5Aoki, S., 1977. Colophina clematis (Homoptera, Pemphigidae), an aphid species with "soldiers". Kontyu, 45: 276--282.
  • 6Bechly, G., 2007. Isoptera: termites. In: MartiU, D.M., Bechly, G., and Loveridge, R.F., (eds), The Crato fossil beds of Brazil: window into an ancient world. Cambridge: University Press, 249-262.
  • 7Bell, W.J., Roth, L.M,, and Nalepa, C.A., 2007. Cockroaches: Ecology, Behavior, and Natural History. Baltimore: The Johns Hopkins University Press, 230pp.
  • 8Bobyleva, N.N., 1975. Morphology and evolution of intestinal parasitic tlagelLates oI the lar eastern roach Sryptocercus relictus. Acta Protozoologica, 14:109-160.
  • 9Bolton, A., Sumner, S., Shreeves, G., Casiraghi, M., and Field, J., 2006. Colony genetic structure in a facultatively eusocial hover wasp. Behavioral Ecology, 17(6): 873-880.
  • 10Brady, S.G., Sipes, S., Pearson, A., and Danforth, B.N., 2006. Recent and simultaneous origins of eusociality in halictid bees. Proceedings of the Royal Society B- Biological Sciences, 273(1594): 1643-1649.

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