Evolutionary trends in the chromosome numbers of swarm-founding social wasps
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  • 作者:R. S. T. Menezes ; A. F. Carvalho ; J. P. S. O. Correia ; T. S. Silva…
  • 关键词:Chromosome evolution ; CMA3 + bands ; Fluorochromes ; Polistinae ; Epiponini ; rDNA
  • 刊名:Insectes Sociaux
  • 出版年:2014
  • 出版时间:November 2014
  • 年:2014
  • 卷:61
  • 期:4
  • 页码:385-393
  • 全文大小:655 KB
  • 参考文献:1. Araújo S.M.R., Pompolo S.G., Dergam J.A.S. and Campos L.A.O. 2000. The B chromosome system of / Trypoxylon ( / Trypargilum) / albitarse (Hymenoptera, Sphecidae). 1. Banding analysis. / Cytobios 101: 7-3
    2. Arévalo E., Zhu Y., Carpenter J.M. and Strassmann J.E. 2004. The phylogeny of the social wasp subfamily Polistinae: evidence from microsatellite flanking sequences, mitochondrial COI sequence, and morphological characters.? / BMC Evol. Biol. 4: 1-
    3. Avelar A.T., Perfeito L., Gordo I. and Ferreira M.G. 2013. Genome architecture is a selectable trait that can be maintained by antagonistic pleiotropy. / Nat. Commun. 4: 2235
    4. Brito R.M., Pompolo S.G., Martins M.F., Barros E.G. and Hojo E.T.S. 2005. Cytogenetic characterization of two / Partamona species (Hymenoptera, Apinae, Meliponini) by fluorochrome staining and localization of 18 rDNA clusters by FISH. / Cytologia 4: 373-80
    5. Cabral-de-Mello D.C., Moura R.D.C., Souza M.A. and Martins C. 2011. Evolutionary dynamics of heterochromatin in the genome of / Dichotomius beetles based on chromosomal analysis.? / Genetica?139: 315-25
    6. Carpenter J.M. 1991. Phylogenetic relationships and the origin of social behavior in the Vespidae. In: / The Social Biology of Wasps (Ross K.G. and Matthews R.W., Eds). Cornell University Press, Ithaca. pp 7-2
    7. Carpenter J.M., Strassmann J.E., Turillazzi S., Hughes C.R., Solis C.R. and Cervo R. 1993. Phylogenetic relationships among paper wasp social parasites and their hosts (Hymenoptera: Vespidae; Polistinae). / Cladistics 9: 129-46
    8. Carpenter J.M., Kojima J.I. and Wenzel J.W. 2000. / Polybia, paraphyly, and polistine phylogeny.? / Am. Mus. Novitates 1-4
    9. Carpenter J.M. 2004. Synonymy of the genus? / Marimbonda?Richards, 1978, with? / Leipomeles?M?bius, 1856 (Hymenoptera: Vespidae; Polistinae), and a new key to the genera of paper wasps of the new world. / Am. Mus. Novitates 3465: 1-6
    10. Cristiano M.P., Cardoso D.C. and Fernandes-Salom?o T.M. (2013) Cytogenetic and molecular analyses reveal a divergence between / Acromyrmex striatus (Roger, 1863) and other congeneric species: Taxonomic implications. / PloS One 8: 1-
    11. Duarte O.M.P., Martins C.C.C., Waldschmidt A.M. and Costa M.A. 2009. Occurrence of multiple nucleolus organizer regions and intraspecific karyotype variation in / Scaptotrigona xanthotricha Moure (Hymenoptera, Meliponini).? / Genet. Mol. Res.?8: 831-39
    12. Edgar R.C. 2004. MUSCLE: multiple sequence alignment with high accuracy and high throughput. / Nucleic Acids Res 32: 1792-797
    13. Gokhman V.E. 2006. Karyotypes of parasitic Hymenoptera: Diversity, evolution and taxonomic significance. / Insect Science?13: 237-41
    14. Gomes L.F., Pompolo S.G., Campos L.A.O. 1995. Cytogenetic analysis of three species of / Trypoxylon ( / Trypoxylon) (Hymenoptera, Sphecidae, Larrinae). / Rev. Bras. Genet. 18: 173-76
    15. Goodisman M.A.D., Kovacs J.L. and Hunt B.G. 2008. Functional genetics and genomics in ants (Hymenoptera: Formicidae): The interplay of genes and social life. / Myrmecol. News 11: 107-17
    16. Goodpasture C. 1974. Cytological data and classification of the Hymenoptera. Ph.D. Thesis, Univ. Calif., Davis. 178p. In: Pompolo S.G. and Takahashi C.S. 1990b. Chromosome numbers and C banding in two species of the genus / Polistes (Hymenoptera, Polistinae, Polistinii). / Insect. Soc. 37: 251-57
    17. Guerra M. and Souza M.J. 2002. Como observar cromossomos: um guia de técnicas em citogenética vegetal, animal e humana.?FUNPEC, Ribeir?o Preto.
    18. Hoshiba H., Matsuura M. and Imai H.T. 1989. Karyotype evolution in the social wasps (Hymenoptera, Vespidae). / Jpn J. Genet. 64: 209-22
    19. Hung A.C.F., Reed H.C. and Vinson S.B. 1981. Chromosomes of four species of / Polistes wasps (Hymenoptera: Vespidae). / Caryologia 34: 225-30
    20. Imai H.T., Taylor R.W., Crosland M.W. and Crozier R.H. 1988. Modes of spontaneous chromosomal mutation and karyotype evolution in ants with reference to the minimum interaction hypothesis. / Jpn J. Genet. 63: 159-85
    21. Imai H.T., Taylor R.W. and Crozier R.H. 1994. Experimental bases for the minimum interaction theory. I. Chromosome evolution in ants of the / Myrmecia pilosula species complex (Hymenoptera: Formicidae: Myrmeciinae). / Jpn J. Genet. 69: 137-82
    22. Kandul N.P., Lukhtanov V.A. and Pierce N.E. 2007. Karyotypic diversity and speciation in / Agrodiaetus butterflies. / Evolution 61: 546-59
    23. Kerr W.E. 1952. A varia??o do número de cromossomos na evolu??o dos Hymenoptera. / Scientia Genet. 4: 182-190. In: Pompolo S.G., Takahashi C.S. 1990b. Chromosome numbers and C banding in two species of the genus / Polistes (Hymenoptera, Polistinae, Polistinii). / Insect. Soc. 37: 251-57
    24. Levan A., Fredga K. and Sonberg A. 1964. Nomenclature for centromeric position on chromosomes. / Hereditas 52: 201-20
    25. Matthey R. 1973. The chromosome formulae of eutherian mammals. In: / Cytotaxonomy and Vertebrate Evolution (Chiarelli A.B. and Capanna E., Eds), London: Academic Press. pp 531-16
    26. Mayrose I., Backer M.S. and Otto S.P. 2010. Probabilistic models of chromosome number evolution and the inference of polyploidy. / Syst. Biol. 59: 132-44
    27. Menezes R.S.T., Carvalho A.F., Silva J.G. and Costa M.A. 2011. Molecular characterization of constitutive heterochromatin in three species of / Trypoxylon (Hymenoptera, Crabronidae, Trypoxylini) by CMA3/DAPI staining.? / Comp. Cytogenet.?5: 71-0
    28. Menezes R.S.T., Silva T.M., Carvalho A.F., Andrade-Souza V., Silva J.G. and Costa M.A. 2013. Numerical and structural chromosome variation in the swarm-founding wasp / Metapolybia decorata Gribodo 1896 (Hymenoptera, Vespidae). / Genetica 141: 273-80
    29. Misra J.S. and Srivastava M.D.L. 1971. Chromosomal changes correlated with differentiation during embryonic development of / Polistes hebraeus (Family Vespidae: Order Hymenoptera). / Proc Natl Acad Sci India 41:97-112. In: Pompolo SG, Takahashi CS. (1990b) Chromosome numbers and C banding in two species of the genus / Polistes (Hymenoptera, Polistinae, Polistinii). / Insect. Soc. 37: 251-57
    30. Noll F.B. 2013. “Marimbondos- a review on the neotropical swarm-founding polistines. / Sociobiology 60: 347-54
    31. Nylander J.A.A. 2004. MrModeltest, version 2.3. Program distributed by the author. Evolutionary Biology Centre, Uppsala University. Uppsala, Sweden.
    32. Pardi L. 1942. Ricerche sui Polistini. 8: La spermatogenesi di / Polistes gallicus (L.) e di / P. ( / Leptopolistes) / omissus (Weyrauch). / Sci Genet 3: 14-22. In: Pompolo S.G. and Takahashi C.S. 1990b. Chromosome numbers and C banding in two species of the genus / Polistes (Hymenoptera, Polistinae, Polistinii). / Insect. Soc. 37: 251-57
    33. Pickett K.M. and Carpenter J.M. 2010. Simultaneous analysis and the origin of eusociality in the Vespidae (Insecta: Hymenoptera).? / Arthropod Syst. Phyl. 68: 3-3
    34. Pompolo S.G. and Takahashi C.S. 1986. Karyotype of the species of wasps of the genus / Polistes (Polistinae: Hymenoptera). / Insect. Soc. 33: 142-48
    35. Pompolo S.G. and Takahashi C.S. 1987. Cytogenetics of Brazilian Polybiini wasps (Hymenoptera, Vespidae, Polistinae). / Rev Brasil Genet 10: 483-96
    36. Pompolo S.G. and Takahashi C.S. 1990a. Karyotype of ten species of social wasps (Hymenoptera, Polistinae, Polybiini). / Rev Brasil Genet 13: 469-77
    37. Pompolo S.G. and Takahashi C.S. 1990b. Chromosome numbers and C banding in two species of the genus / Polistes (Hymenoptera, Polistinae, Polistinii). / Insect Soc. 37: 251-57
    38. Rambaut A. and Drummond A.J. 2007. / Tracer Version 1. 4. Available at: http://beast.bio.ed.ac.uk/Tracer.
    39. Richards O.W. and Richards M.J. 1951. Observations on the social wasps of South America (Hymenoptera, Vespidae). / Trans. R. Entomol. Soc. London 102: 1-70
    40. Richards O.W. 1978. / The Social Wasps of the Americas excluding the Vespinae. London: British Museum Natural History.
    41. Rocha M.P., Pompolo S.G., Dergam J.A., Fernandes A. and Campos L.A.O. 2002. DNA characterization and karyotypic evolution in the bee genus / Melipona (Hymenoptera, Meliponini). / Hereditas 136: 19-7
    42. Rocha M.P., Cruz M.P., Fernandes A., Waldschmidt A.M., Silva‐Junior J.C. and Pompolo S.D.G. 2003. Longitudinal differentiation in / Melipona / mandacaia (Hymenoptera, Meliponini) chromosomes.? / Hereditas 138: 133-37
    43. Ronquist F. and Huelsenbeck J.P. 2003. MrBayes 3: Bayesian phylogenetic inference under mixed models.? / Bioinformatics?19: 1572-574
    44. Ross K.G. and Matthews R.W. 1991. / The Social Biology of Wasps. Ithaca, Cornell University Press.
    45. Santos I.S., Costa M.A., Mariano C.S.F., Delabie J.H.C., Andrade-Souza V. and Silva J.G. 2010. A cytogenetic approach to the study of neotropical / Odontomachus and / Anochetus ants (Hymenoptera: Formicidae). / Ann. Entomol. Soc. Am. 103: 424-29
    46. Silva A.E.B., Marques A., Santos K.G. and Guerra M. 2010. The evolution of CMA bands in / Citrus and related genera.? / Chromosome Res. 18: 503-14
    47. Schwarzacher T. and Heslop-Harrison P. 2000.? / Practical in situ / Hybridization. BIOS Scientific Publishers Ltd, Oxford.
    48. Schweizer D. 1976. Reverse fluorescent chromosome banding with chromomycin and DAPI. / Chromosoma 58: 307-24
    49. Sumner A.T. 2003. / Chromosomes: Organization and Function. North Berwick,United Kingdom: Blackwell Publishing Co.
    50. Tamura K., Peterson D., Peterson D., Stecher G., Nei M. and Kumar S. 2011. MEGA5: Molecular evolutionary genetics analysis using maximum likelihood, evolutionary distance, and maximum parsimony method. / Mol. Biol. Evol. 28: 2731-739
    51. Todd N.B. 1970. Karyotypic fissioning and canid phylogeny. / J. Theor. Biol. 26: 445-80
    52. Todd N.B. 1975. Chromosomal mechanisms in the evolution of artiodactyls. / Paleobiology 1: 175-88
    53. Ward P.S. and Downie D.A. 2005. The ant subfamily Pseudomyrmecinae (Hymenoptera: Formicidae): phylogeny and evolution of big‐eyed arboreal ants. / Syst. Entomol.?30: 310-35
    54. Wenzel J.W. and Carpenter J.M. 1994. Comparing methods: adaptive traits and tests of adaptation.? / Phylogenet. Ecol. 17: 79
    55. West-Eberhard M.J. 1978. Reinas temporales en las avispas? / Metapolybia? Auxiliares no reproductoras sin altruismo? / Ecol. Evol. Trop. 254-58
    56. White M.J.D. 1954. / Animal Cytology and Evolution, 2nd edn. London: Cambridge University Press.
    57. White M.J.D. 1973. / Animal Cytology and Evolution, 3rd edn. London: Cambridge University Press.
  • 作者单位:R. S. T. Menezes (1)
    A. F. Carvalho (2)
    J. P. S. O. Correia (1)
    T. S. Silva (1)
    A. Somavilla (3)
    M. A. Costa (1)

    1. Departamento de Ciências Biológicas, Universidade Estadual de Santa Cruz, Rodovia Jorge Amado, Km 16, Ilhéus, Bahia, Brazil
    2. Departamento de Genética Evolutiva e Biologia Molecular, Universidade Federal de S?o Carlos, Rodovia Washington Luís, Km 235, S?o Carlos, S?o Paulo, Brazil
    3. Coordena??o de Biodiversidade, Instituto Nacional de Pesquisas da Amaz?nia, 2936, Avenida André Araújo, Petrópolis, Manaus, Amazonas, Brazil
  • ISSN:1420-9098
文摘
Chromosome number and morphology are relevant aspects of genomic organization of eukaryotes and are considered key components to comprehend evolutionary mechanisms and karyotypic differentiation. Social wasps belonging to the tribe Epiponini show complex social characteristics that make these insects interesting models for genetic and evolutionary studies. However, there is a paucity of genetic information in social wasps as a whole. Aiming to investigate the process of chromosomal evolution of the social Epiponini wasps, chromosomes of ten species of this group were analyzed using Giemsa and fluorochrome staining techniques and fluorescence in situ hybridization in two species. In this study a high variation in the chromosome number and morphology was found and the previous range of chromosome number of Epiponini was broadened from n?=?8-2 to n?=?5-3. We also suggest that chromosomal segments with high GC content must have had a key role in the karyotype diversification of these wasps. Moreover, based on a phylogenetic background we find evidence of a main role of chromosomal fusion in the occurrence of gradual decrease of chromosome number in Epiponini during its chromosomal evolutionary history.

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