Published February 16, 2021 | Version v1
Journal article Restricted

New insights into the six decades of Mesa's hypothesis of chromosomal evolution in Ommexechinae grasshoppers (Orthoptera: Acridoidea)

Description

Santander, Mylena D., Cabral-De-Mello, Diogo C., Taffarel, Alberto, Martí, Emiliano, Martí, Dardo A., Palacios-Gimenez, Octavio M., Castillo, Elio Rodrigo D. (2021): New insights into the six decades of Mesa's hypothesis of chromosomal evolution in Ommexechinae grasshoppers (Orthoptera: Acridoidea). Zoological Journal of the Linnean Society 193 (4): 1141-1155, DOI: 10.1093/zoolinnean/zlaa188, URL: https://doi.org/10.1093/zoolinnean/zlaa188

Files

Restricted

The record is publicly accessible, but files are restricted to users with access.

Linked records

Additional details

Identifiers

LSID
urn:lsid:plazi.org:pub:A20CFFBDFFC42F5D0B29FF835176FFFE

References

  • Anjos A, Ruiz-Ruano FJ, Camacho JPM, Loreto V, Cabrero J, De Souza MJ, Cabral-de-Mello DC. 2015. U1 snDNA clusters in grasshoppers: chromosomal dynamics and genomic organization. Heredity 114: 207-219.
  • Anjos A, Paladini A, Evangelista O, Cabral-de-Mello DC. 2019. Insights into chromosomal evolution of Cicadomorpha using fluorochrome staining and mapping 18S rRNA and H3 histone genes. Journal of Zoological Systematic Research 57: 314-322.
  • Bachtrog D. 2013. Y-chromosome evolution: emerging insights into processes of Y-chromosome degeneration. Nature Reviews Genetics 14: 113-124.
  • Bardella VB, Pita S, Vanzela ALL, Galvao C, Panzera F. 2016. Heterochromatin base pair composition and diversification in holocentric chromosomes of kissing bugs (Hemiptera, Reduviidae). Memorias do Instituto Oswaldo Cruz 111: 614-624.
  • Bolzan AD, Bianchi MS. 2006. Telomeres, interstitial telomeric repeat sequences, and chromosomal aberrations. Mutation Research/Reviews in Mutation Research 612: 189-214.
  • Bueno D, Palacios-Gimenez OM, Cabral-de-Mello DC. 2013. Chromosomal mapping of repetitive DNAs in the grasshopper Abracris flavolineata reveal possible ancestry of the B chromosome and H3 histone spreading. PLoS One 8: e66532.
  • Cabral-de-Mello DC, Moura RC, Martins C. 2010. Chromosomal mapping of repetitive DNAs in the beetle Dichotomius geminatus provides the first evidence for an association of 5S rRNA and histone H3 genes in insects, and repetitive DNA similarity between the B chromosome and A complement. Heredity 104: 393-400.
  • Cabral-de-Mello DC, Cabrero J, Lopez-Leon MD, Camacho JPM. 2011a. Evolutionary dynamics of 5S rDNA location in acridid grasshoppers and its relationship with H3 histone gene and 45S rDNA location. Genetica 139: 921-931.
  • Cabral-de-Mello DC, Oliveira SG, De Moura RC, Martins C. 2011b. Chromosomal organization of the 18S and 5S rRNAs and histone H3 genes in Scarabaeinae coleopterans: insights into the evolutionary dynamics of multigene families and heterochromatin. BMC Genetics 12: 88.
  • Cabrero J, Camacho JPM. 1986. Cytogenetic studies in gomphocerine grasshoppers. I. Comparative analysis of chromosome C-banding pattern. Heredity 56: 365.
  • Cabrero J, Camacho JPM. 2008. Location and expression of ribosomal RNA genes in grasshoppers: abundance of silent and cryptic loci. Chromosome Research 16: 595-607.
  • Cabrero J, Lopez-Leon MD, Teruel M, Camacho JPM. 2009. Chromosome mapping of H3 and H4 histone gene clusters in 35 species of acridid grasshoppers. Chromosome Research 17: 397-404.
  • Carvalho DB, Rocha MF, Loreto V, Silva AE, Souza MJ. 2011 . Ommexecha virens ( Thunberg , 1824) and Descampsacris serrulatum (Serville, 1831) (Orthoptera, Ommexechidae): karyotypes, constitutive heterochromatin and nucleolar organizing regions. Comparative Cytogenetics 5: 123-132.
  • Castillo ER, Marti DA, Bidau CJ. 2010. Sex and neo-sex chromosomes in Orthoptera: a review. Journal of Orthoptera Research 19: 213-231.
  • Castillo ER, Taffarel A, Marti DA. 2011. Una tecnica alternativa para el cariotipado mitotico en saltamontes: bandeo C y fluorescente en Adimantus ornatissimus (Orthoptera: Acrididae). Revista de Ciencia y Tecnologia 16: 30-34.
  • Castillo ERD, Taffarel A, Mariottini Y, Fernandez- Arhex V , Marti DA , Bidau CJ. 2016. Neo-sex chromosomes in the Maculipennis species group (Dichroplus: Acrididae, Melanoplinae): the cases of D. maculipennis and D. vittigerum. Zoological Science 33: 303-310.
  • Castillo ERD, Taffarel A, Maronna MM, Cigliano MM, Palacios-Gimenez OM, Cabral-de-Mello DC, Marti DA. 2017. Phylogeny and chromosomal diversification in the Dichroplus elongatus species group (Orthoptera, Melanoplinae). PLoS One 12: e0172352.
  • Cigliano MM, Braun H, Eades DC, Otte D. 2020. Ommexechidae. Orthoptera species file, v. 5.0/5.0. Available at http://Orthoptera.SpeciesFile.org (accessed 3 August 2020).
  • Colgan DJ, Mclauchlan A, Wilson GD, Livingston SP, Edgecombe GD, Macaranas J, Cassis G, Gray MR. 1998. Histone H3 and U2 snRNA DNA sequences and arthropod molecular evolution. Australian Journal of Zoology 46: 419-437.
  • Colombo P, Cigliano MM, Sequeira AS, Lange CE, Vilardi JC, Confalonieri VA. 2005. Phylogenetic relationships in Dichroplus Stal (Orthoptera: Acrididae: Melanoplinae) inferred from molecular and morphological data: testing karyotype diversification. Cladistics 21: 375-389.
  • De Franca Rocha M, Pine MB, Dos Santos Oliveira EFA, Loreto V,Gallo RB,Da Silva CR,Campos de Domenico F, Da Rosa R. 2015. Spreading of heterochromatin and karyotype differentiation in two Tropidacris Scudder, 1869 species (Orthoptera, Romaleidae). Comparative Cytogenetics 9: 435.
  • Faria R, Navarro A. 2010. Chromosomal speciation revisited: rearranging theory with pieces of evidence. Trends in Ecology & Evolution 25: 660-669.
  • Ferretti ABSM, Ruiz-Ruano FJ, Milani D, Loreto V, Marti DA, Ramos E, Martins C, Cabral-de-Mello DC. 2019. How dynamic could be the 45S rDNA cistron? An intriguing variability in a grasshopper species revealed by integration of chromosomal and genomic data. Chromosoma 128: 165-175.
  • Ferretti AB, Milani D, Palacios-Gimenez OM, Ruiz- Ruano FJ, Cabral-de-Mello DC. 2020. High dynamism for neo-sex chromosomes: satellite DNAs reveal complex evolution in a grasshopper. Heredity 125: 124-137.
  • Guerrero RF, Rousset F, Kirkpatrick M. 2012. Coalescent patterns for chromosomal inversions in divergent populations. Philosophical Transactions of the Royal Society B: Biological Sciences 367: 430-438.
  • Hewitt GM. 1979. Insecta 1: Orthoptera. Grasshoppers and crickets. In: John B, Bauer H, Kayano H, Levan A, White M, eds. Animal cytogenetics 3. Berlin: Gebruder Borntraeger.
  • IJdo JW, Wells RA, Baldini A, Reeders ST. 1991. Improved telomere detection using a telomere repeat probe (TTAGGG) n generated by PCR. Nucleic Acids Research 19: 4780.
  • Jetybayev IY, Bugrov AG, Unal M, Buleu OG, Rubtsov NB. 2017a. Molecular cytogenetic analysis reveals the existence of two independent neo-XY sex chromosome systems in Anatolian Pamphagidae grasshoppers. BMC Evolutionary Biology 17: 1-12.
  • Jetybayev IY, Bugrov AG, Buleu, OG, Bogomolov AG, Rubtsov NB. 2017b. Origin and evolution of the neosex chromosomes in Pamphagidae grasshoppers through chromosome fusion and following heteromorphization. Genes 8: 323.
  • John B. 1988. The biology of heterochromatin. In: Verma RS, ed. Heterochromatin Molecular and Structural Aspects. Cambridge: Cambridge University Press, 1-47.
  • John B, King M, Schweizer D, Mendelak M. 1985. Equilocality of heterochromatin distribution and heterochromatin heterogeneity in acridid grasshoppers. Chromosoma 91: 185-200.
  • Kirkpatrick M. 2010. How and why chromosome inversions evolve. PLoS Biology 8: e1000501.
  • Kirov I, Khrustaleva L, Van Laere K, Soloviev A, Meeus S, Romanov D, Fesenko I. 2017. DRAWID: user-friendly java software for chromosome measurements and idiogram drawing. Comparative Cytogenetics 11: 747-757.
  • Leavitt JR, Hiat KD, Whiting MF, Song H. 2013. Searching for the optimal data partitioning strategy in mitochondrial phylogenomics: a phylogeny of Acridoidea (Insecta: Orthoptera: Caelifera) as a case study. Molecular Phylogenetics and Evolution 67: 494-508.
  • Levan A, Fredga K, Sandberg AA. 1964. Nomenclature for centromeric position on chromosomes. Hereditas 52: 201-220.
  • Lin KW, Yan J. 2008. Endings in the middle: current knowledge of interstitial telomeric sequences. Mutation Research/Reviews in Mutation Research 658: 95-110.
  • Mesa A. 1961. Morfologia falica y cariologia de Neuquenina fictor (Rehn) (Orthoptera-Acridoidea). Comunicacion Zoologica del Museo de Historia Natural de Montevideo 5: 1-11.
  • Mesa A. 1963. Acerca de la cariologia de Ommexechidae (Orthoptera-Acridoidea). Revista de la Sociedad Uruguaya de Entomologia 5: 37-43.
  • Mesa A. 1964. Los cromosomas de Pachyossa sp. (Orthoptera, Ommexechidae). Revista de la Sociedad Uruguaya de Entomologia 6: 49-54.
  • Mesa A, Ferreira A. 1977. Cytological studies in family Ommexechidae (Orthoptera-Acridoidea). Acrida 6: 261-271.
  • Mesa A, Ferreira A, Carbonell CS. 1982. Cariologia de los acridoideos neotropicales: estado actual de su conocimiento y nuevas contribuciones. Annales de la Societe Entomologique de France 18: 507-526.
  • Mesa A, Fontanetti CS, Costa H. 1990. The karyotype of the grasshopper Spathalium helios Rehn 1918 (Orthoptera, Acridoidea, Ommexechidae). Revista Brasileira de Genetica 13: 705-710.
  • Nguyen P, Sahara K, Yoshido A, Marec F. 2010. Evolutionary dynamics of rDNA clusters on chromosomes of moths and butterflies (Lepidoptera). Genetica 138: 343-354.
  • Nunez O. 1968. An acetic-haematoxylin squash method for small chromosomes. Caryologia 21: 115-119.
  • Palacios-Gimenez OM, Castillo ER, Marti DA, Cabral-de- Mello DC. 2013. Tracking the evolution of sex chromosome systems in Melanoplinae grasshoppers through chromosomal mapping of repetitive DNA sequences. BMC Evolutionary Biology 13: 167.
  • Palomeque T, Lorite P. 2008. Satellite DNA in insects: a review. Heredity 100: 564-573.
  • Pita S, Lorite P, Nattero J, Galvao C, Alevi KCC, Teves SC, Azeredo-Oliveira MTV, Panzera F. 2016. New arrangements on several species subcomplexes of Triatoma genus based on the chromosomal position of ribosomal genes (Hemiptera - Triatominae). Infection, Genetics and Evolution 43: 225-231.
  • Salanitro LB, Massaccesi AC, Urbisaglia S, Bressa MJ, Chirino MG. 2017. A karyotype comparison between two species of bordered plant bugs (Hemiptera, Heteroptera, Largidae) by conventional chromosome staining, C-banding and rDNA-FISH. Comparative Cytogenetics 11: 239-248.
  • Sambrook J, Russel DW. 2001. Molecular cloning. A laboratory manual, 3rd edn. New York: Cold Spring Harbor Laboratory Press.
  • Santos JL, Arana P, Giraldez R. 1983. Chromosome C-banding patterns in Spanish Acridoidea. Genetica 61: 65-74.
  • Schweizer D. 1980. Simultaneous fluorescent staining of R bands and specific heterochromatic regions (DA-DAPI bands) in human chromosomes. Cytogenetics and Genome Research 27: 190-193.
  • Slijepcevic P. 1998. Telomeres and mechanisms of Robertsonian fusion. Chromosoma 107: 136-140.
  • Souza TE, Silva-Neto LC, Santos JF, Loreto V, Rieger TT. 2015. A small B chromosome in the grasshopper Ommexecha virens (Ommexechidae). Genetics and Molecular Research 14: 17505-17510.
  • Sumner AT. 1972. A simple technique for demonstrating centromeric heterochromatin. Experimental Cell Research 75: 304-306.
  • Warchalowska-Sliwa E, Maryanska-Nadachowska A, Grzywacz B, Karamysheva T , Lehmann AW , Lehmann GU, Heller KG. 2011. Changes in the numbers of chromosomes and sex determination system in bushcrickets of the genus Odontura (Orthoptera: Tettigoniidae: Phaneropterinae). European Journal of Entomology 108: 183-195.
  • White MJD. 1940. The origin and evolution of multiple sex-chromosome mechanisms. Journal of Genetics 40: 303-333.
  • White MJD. 1949. A cytological survey of wild populations of Trimerotropis and Circotettix (Orthoptera, Acrididae). I. The chromosomes of twelve species. Genetics 34: 537.
  • White MJD. 1973. Animal cytology and evolution, 3rd edn. Cambridge: Cambridge University Press.
  • White MJD, Blackith RE, Blackith RM, Cheney J. 1967. Cytogenetics of the viatica group morabine grasshoppers. I. The coastal species. Australian Journal of Zoology 15: 263-302.