ESTABILIDADE GENÔMICA EM TRITICALE: RELAÇÃO ENTRE COMPORTAMENTO MEIÓTICO E ANORMALIDADES MITÓTICAS

Detalhes bibliográficos
Autor(a) principal: Giacomin, Renata Mussoi
Data de Publicação: 2014
Tipo de documento: Dissertação
Idioma: por
Título da fonte: Biblioteca Digital de Teses e Dissertações do UNICENTRO
Texto Completo: http://localhost:8080/tede/handle/tede/414
Resumo: Triticale (X Triticosecale Wittimarck ) is an intergeneric hybrid derived from a cross between wheat and rye. It is widely used as food energy in animal feed and for making breads and biscuits. Triticale can present chromosome number n = 42 (hexaploid) or n = 56 (octaploides). Being a newly created allopolyploid, it may present instabilities during the meiotic process, which may result in loss of fertility. Cytogenetic analysis of meiotic behaviour, pollen fertility and genomic stability are important tools used to assist plant breeding programs to select stable genotypes. The objective of this study was to analyze the cytogenetic of triticale genotypes belonging to four generations P1, P2, F1, F2, RC1 and RC2, developed in the Genetic Improvement Program of Embrapa Trigo. The genotypes were cultivated in the experimental station of the Universidade Estadual do Centro Oeste, Brazil. For the cytogenetic analysis of meiotic behaviour, spikelets were collected during an early stage of development. The collected material was fixed in Carnoy and kept in 70% alcohol. Slides were prepared by crushing and staining spikelets with 1 % propionic carmine and analyzed by optical microscopy. 100 cells from each stage of meiosis were analyzed, obtained from six plants of each genotype. The meiotic index was calculated using the following formula: number of normal tetrads/total number of tetrads x 100. To analyze pollen viability the same technique was used, but with 1 % acetic carmine dye. GISH analyses were performed according to the pattern found in the literature using genomic DNA as a probe of rye and wheat as blocking. In general all genotypes presented instability during meiosis, with variation within genotypes. The backcrosses RC1 and RC2 showed the lowest average of abnormalities in meiotic stages and the largest meiotic index demonstrating high stability. The most common chromosome abnormalities were early rise chromosome, laggard chromosome, adhesions and bridges, and the presence of micronuclei. It was also shown a high rate of pollen viability in all analyzed genotypes, which means that the instability during meiosis is not affecting the fertility of plants analyzed. Through GISH analysis, it was identified the presence of a chromosomal translocation in one of the genotypes analyzed: Embrapa 53. However further investigations on the possibility of this translocation be interfering in the cultivar genomic stability are suggested.
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spelling Silva, Paulo Roberto daCPF:45784657467Brammer, Sandra PatussiCPF:00000000113http://lattes.cnpq.br/0831352052358625Carvalho, Carlos EgydioCPF:00000000114não encontradoCPF:04397072930http://lattes.cnpq.br/1266917616108598Giacomin, Renata Mussoi2016-09-20T12:29:27Z2016-02-042014-01-01GIACOMIN, Renata Mussoi. Genomic Stability in triticale: relation between meiotic behavior and mitotic abnormalities. 2014. 55 f. Dissertação (Mestrado em Biologia Evolutiva) - UNICENTRO - Universidade Estadual do Centro Oeste, Guarapuava, 2014.http://localhost:8080/tede/handle/tede/414Triticale (X Triticosecale Wittimarck ) is an intergeneric hybrid derived from a cross between wheat and rye. It is widely used as food energy in animal feed and for making breads and biscuits. Triticale can present chromosome number n = 42 (hexaploid) or n = 56 (octaploides). Being a newly created allopolyploid, it may present instabilities during the meiotic process, which may result in loss of fertility. Cytogenetic analysis of meiotic behaviour, pollen fertility and genomic stability are important tools used to assist plant breeding programs to select stable genotypes. The objective of this study was to analyze the cytogenetic of triticale genotypes belonging to four generations P1, P2, F1, F2, RC1 and RC2, developed in the Genetic Improvement Program of Embrapa Trigo. The genotypes were cultivated in the experimental station of the Universidade Estadual do Centro Oeste, Brazil. For the cytogenetic analysis of meiotic behaviour, spikelets were collected during an early stage of development. The collected material was fixed in Carnoy and kept in 70% alcohol. Slides were prepared by crushing and staining spikelets with 1 % propionic carmine and analyzed by optical microscopy. 100 cells from each stage of meiosis were analyzed, obtained from six plants of each genotype. The meiotic index was calculated using the following formula: number of normal tetrads/total number of tetrads x 100. To analyze pollen viability the same technique was used, but with 1 % acetic carmine dye. GISH analyses were performed according to the pattern found in the literature using genomic DNA as a probe of rye and wheat as blocking. In general all genotypes presented instability during meiosis, with variation within genotypes. The backcrosses RC1 and RC2 showed the lowest average of abnormalities in meiotic stages and the largest meiotic index demonstrating high stability. The most common chromosome abnormalities were early rise chromosome, laggard chromosome, adhesions and bridges, and the presence of micronuclei. It was also shown a high rate of pollen viability in all analyzed genotypes, which means that the instability during meiosis is not affecting the fertility of plants analyzed. Through GISH analysis, it was identified the presence of a chromosomal translocation in one of the genotypes analyzed: Embrapa 53. However further investigations on the possibility of this translocation be interfering in the cultivar genomic stability are suggested.O Triticale (X Triticosecale Wittimarck) é um híbrido intergenérico oriundo do cruzamento entre o trigo e o centeio. É amplamente utilizado como alimento energético em rações animais e para fabricação de pães e biscoitos. O triticale pode apresentar numero cromossômico n=42 (hexaplóides) ou n=56 (octaploides). Por ser um alopoliploide recentemente criado pode apresentar instabilidades durante o processo meiótico, o que pode acarretar na perda da fertilidade da planta. O objetivo deste trabalho foi a análise citogenética de genótipos de triticale pertencentes a quatro gerações P1, P2, F1, F2, RC1 e RC2, oriundos do Programa de Melhoramento Genético da Embrapa Trigo. Estes genótipos foram plantados em Guarapuava-PR. Para análise do comportamento meiótico foram coletadas espiguetas em fase inicial de desenvolvimento e fixadas em Carnoy. As lâminas foram preparadas pela técnica de esmagamento, coradas com Carmim Propiônico 1% e analisadas em microscópio ótico. Foram analisadas 100 células de cada fase da meiose, de seis plantas de cada genótipo. O índice meiótico foi calculado e a viabilidade polínica determinada utilizando Carmim Acético 1%. As análises de GISH foram realizadas segundo o padrão apresentado na literatura utilizando DNA genômico de centeio como sonda e de trigo como bloqueio. Todos os genótipos apresentaram instabilidade durante a meiose. Os retrocruzamentos RC1 e RC2 apresentaram a menor média de anormalidades nas fases meióticas e o maior índice meiótico, demonstrando maior estabilidade. As anormalidades mais comuns foram cromossomos em ascensão precoce, cromossomos retardatários, a presença de aderências e pontes cromossômicas, e micronúcleos. O IM foi abaixo do normal para todos os genótipos. Em geral, todos os genótipos apresentaram alto índice de viabilidade polínica, o que pode inferir que a instabilidade durante a meiose não está afetando a fertilidade das plantas analisadas. A GISH evidenciou uma possível translocação cromossômica no genótipo utilizado como progenitor, Embrapa 53. Porém, sugere-se estudos posteriores para constatar em que cromossomo se encontra e se esta translocação pode estar interferindo da estabilidade genômica da cultivar.Made available in DSpace on 2016-09-20T12:29:27Z (GMT). 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dc.title.por.fl_str_mv ESTABILIDADE GENÔMICA EM TRITICALE: RELAÇÃO ENTRE COMPORTAMENTO MEIÓTICO E ANORMALIDADES MITÓTICAS
dc.title.alternative.eng.fl_str_mv Genomic Stability in triticale: relation between meiotic behavior and mitotic abnormalities
title ESTABILIDADE GENÔMICA EM TRITICALE: RELAÇÃO ENTRE COMPORTAMENTO MEIÓTICO E ANORMALIDADES MITÓTICAS
spellingShingle ESTABILIDADE GENÔMICA EM TRITICALE: RELAÇÃO ENTRE COMPORTAMENTO MEIÓTICO E ANORMALIDADES MITÓTICAS
Giacomin, Renata Mussoi
Triticosecale
Meiose
GISH
viabilidade polínica
translocações cromossômicas
Triticosecale
Meiosis
GISH
pollen viability
chromosomal translocations
CIENCIAS BIOLOGICAS::BIOLOGIA GERAL
title_short ESTABILIDADE GENÔMICA EM TRITICALE: RELAÇÃO ENTRE COMPORTAMENTO MEIÓTICO E ANORMALIDADES MITÓTICAS
title_full ESTABILIDADE GENÔMICA EM TRITICALE: RELAÇÃO ENTRE COMPORTAMENTO MEIÓTICO E ANORMALIDADES MITÓTICAS
title_fullStr ESTABILIDADE GENÔMICA EM TRITICALE: RELAÇÃO ENTRE COMPORTAMENTO MEIÓTICO E ANORMALIDADES MITÓTICAS
title_full_unstemmed ESTABILIDADE GENÔMICA EM TRITICALE: RELAÇÃO ENTRE COMPORTAMENTO MEIÓTICO E ANORMALIDADES MITÓTICAS
title_sort ESTABILIDADE GENÔMICA EM TRITICALE: RELAÇÃO ENTRE COMPORTAMENTO MEIÓTICO E ANORMALIDADES MITÓTICAS
author Giacomin, Renata Mussoi
author_facet Giacomin, Renata Mussoi
author_role author
dc.contributor.advisor1.fl_str_mv Silva, Paulo Roberto da
dc.contributor.advisor1ID.fl_str_mv CPF:45784657467
dc.contributor.advisor-co1.fl_str_mv Brammer, Sandra Patussi
dc.contributor.advisor-co1ID.fl_str_mv CPF:00000000113
dc.contributor.advisor-co1Lattes.fl_str_mv http://lattes.cnpq.br/0831352052358625
dc.contributor.advisor-co2.fl_str_mv Carvalho, Carlos Egydio
dc.contributor.advisor-co2ID.fl_str_mv CPF:00000000114
dc.contributor.advisor-co2Lattes.fl_str_mv não encontrado
dc.contributor.authorID.fl_str_mv CPF:04397072930
dc.contributor.authorLattes.fl_str_mv http://lattes.cnpq.br/1266917616108598
dc.contributor.author.fl_str_mv Giacomin, Renata Mussoi
contributor_str_mv Silva, Paulo Roberto da
Brammer, Sandra Patussi
Carvalho, Carlos Egydio
dc.subject.por.fl_str_mv Triticosecale
Meiose
GISH
viabilidade polínica
translocações cromossômicas
topic Triticosecale
Meiose
GISH
viabilidade polínica
translocações cromossômicas
Triticosecale
Meiosis
GISH
pollen viability
chromosomal translocations
CIENCIAS BIOLOGICAS::BIOLOGIA GERAL
dc.subject.eng.fl_str_mv Triticosecale
Meiosis
GISH
pollen viability
chromosomal translocations
dc.subject.cnpq.fl_str_mv CIENCIAS BIOLOGICAS::BIOLOGIA GERAL
description Triticale (X Triticosecale Wittimarck ) is an intergeneric hybrid derived from a cross between wheat and rye. It is widely used as food energy in animal feed and for making breads and biscuits. Triticale can present chromosome number n = 42 (hexaploid) or n = 56 (octaploides). Being a newly created allopolyploid, it may present instabilities during the meiotic process, which may result in loss of fertility. Cytogenetic analysis of meiotic behaviour, pollen fertility and genomic stability are important tools used to assist plant breeding programs to select stable genotypes. The objective of this study was to analyze the cytogenetic of triticale genotypes belonging to four generations P1, P2, F1, F2, RC1 and RC2, developed in the Genetic Improvement Program of Embrapa Trigo. The genotypes were cultivated in the experimental station of the Universidade Estadual do Centro Oeste, Brazil. For the cytogenetic analysis of meiotic behaviour, spikelets were collected during an early stage of development. The collected material was fixed in Carnoy and kept in 70% alcohol. Slides were prepared by crushing and staining spikelets with 1 % propionic carmine and analyzed by optical microscopy. 100 cells from each stage of meiosis were analyzed, obtained from six plants of each genotype. The meiotic index was calculated using the following formula: number of normal tetrads/total number of tetrads x 100. To analyze pollen viability the same technique was used, but with 1 % acetic carmine dye. GISH analyses were performed according to the pattern found in the literature using genomic DNA as a probe of rye and wheat as blocking. In general all genotypes presented instability during meiosis, with variation within genotypes. The backcrosses RC1 and RC2 showed the lowest average of abnormalities in meiotic stages and the largest meiotic index demonstrating high stability. The most common chromosome abnormalities were early rise chromosome, laggard chromosome, adhesions and bridges, and the presence of micronuclei. It was also shown a high rate of pollen viability in all analyzed genotypes, which means that the instability during meiosis is not affecting the fertility of plants analyzed. Through GISH analysis, it was identified the presence of a chromosomal translocation in one of the genotypes analyzed: Embrapa 53. However further investigations on the possibility of this translocation be interfering in the cultivar genomic stability are suggested.
publishDate 2014
dc.date.issued.fl_str_mv 2014-01-01
dc.date.accessioned.fl_str_mv 2016-09-20T12:29:27Z
dc.date.available.fl_str_mv 2016-02-04
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dc.identifier.citation.fl_str_mv GIACOMIN, Renata Mussoi. Genomic Stability in triticale: relation between meiotic behavior and mitotic abnormalities. 2014. 55 f. Dissertação (Mestrado em Biologia Evolutiva) - UNICENTRO - Universidade Estadual do Centro Oeste, Guarapuava, 2014.
dc.identifier.uri.fl_str_mv http://localhost:8080/tede/handle/tede/414
identifier_str_mv GIACOMIN, Renata Mussoi. Genomic Stability in triticale: relation between meiotic behavior and mitotic abnormalities. 2014. 55 f. Dissertação (Mestrado em Biologia Evolutiva) - UNICENTRO - Universidade Estadual do Centro Oeste, Guarapuava, 2014.
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dc.publisher.department.fl_str_mv Unicentro::Departamento de Biologia
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