Genotyping of hexaploid wheat varieties from different Russian regions
We used molecular-genetic and molecular-cytology approaches to characterize the genomes of 20 varieties of wheat created in different regions of Russia. A molecular-genetic analysis was performed using 29 SSR-markers covering the entire genome, and 41 ISBP-markers localized on chromosome 5B. Analysi...
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Institute of Cytology and Genetics of Siberian Branch of the Russian Academy of Sciences
2016-03-01
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doaj-567b3a0d1f0d48028d61ccb6e4c54a182021-09-11T08:41:16ZengInstitute of Cytology and Genetics of Siberian Branch of the Russian Academy of SciencesVavilovskij Žurnal Genetiki i Selekcii2500-04622500-32592016-03-01201445010.18699/VJ16.107444Genotyping of hexaploid wheat varieties from different Russian regionsI. G. Adonina0I. N. Leonova1E. D. Badaeva2E. A. Salina3Institute of Cytology and Genetics SB RAS, Novosibirsk, RussiaInstitute of Cytology and Genetics SB RAS, Novosibirsk, RussiaVavilov Institute of General Genetics RAS, Moscow, RussiaInstitute of Cytology and Genetics SB RAS, Novosibirsk, RussiaWe used molecular-genetic and molecular-cytology approaches to characterize the genomes of 20 varieties of wheat created in different regions of Russia. A molecular-genetic analysis was performed using 29 SSR-markers covering the entire genome, and 41 ISBP-markers localized on chromosome 5B. Analysis of genetic similarity based on the results of molecular genotyping showed that the winter wheat varieties form a common cluster, regardless of the origin or area of cultivation. This is primarily due to the fact that the varieties originating from the European part of Russia were used to establish winter wheat varieties for West Siberia. Comparative analysis of individual dendrograms constructed using 1–2 markers per chromosome, and with the involvement of a larger number of 5B-chromosome markers allowed us to identify varieties with rearrangements of this chromosome and to assess genetic diversity. We found that winter wheat Vassa and spring wheat Chelyaba 75 were clustered closely together. This is an indirect confirmation of the use of winter wheat varieties in the breeding to improve the productive potential of spring wheat. Molecular-cytology analysis by C-banding and fluorescence in situ hybridization (FISH) revealed various chromosomal rearrangements in 8 of 20 cultivars studied, including translocations from S. cereale, Ae. speltoides and Th. intermedium. Thus, a combination of the two approaches allowed us to better characterize genomes of wheat varieties of various origin.https://vavilov.elpub.ru/jour/article/view/523triticum aestivumwinter and spring varietiesgenotypingssr- and isbp-markersc-bandingfluorescence in situ hybridization (fish). |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
I. G. Adonina I. N. Leonova E. D. Badaeva E. A. Salina |
spellingShingle |
I. G. Adonina I. N. Leonova E. D. Badaeva E. A. Salina Genotyping of hexaploid wheat varieties from different Russian regions Vavilovskij Žurnal Genetiki i Selekcii triticum aestivum winter and spring varieties genotyping ssr- and isbp-markers c-banding fluorescence in situ hybridization (fish). |
author_facet |
I. G. Adonina I. N. Leonova E. D. Badaeva E. A. Salina |
author_sort |
I. G. Adonina |
title |
Genotyping of hexaploid wheat varieties from different Russian regions |
title_short |
Genotyping of hexaploid wheat varieties from different Russian regions |
title_full |
Genotyping of hexaploid wheat varieties from different Russian regions |
title_fullStr |
Genotyping of hexaploid wheat varieties from different Russian regions |
title_full_unstemmed |
Genotyping of hexaploid wheat varieties from different Russian regions |
title_sort |
genotyping of hexaploid wheat varieties from different russian regions |
publisher |
Institute of Cytology and Genetics of Siberian Branch of the Russian Academy of Sciences |
series |
Vavilovskij Žurnal Genetiki i Selekcii |
issn |
2500-0462 2500-3259 |
publishDate |
2016-03-01 |
description |
We used molecular-genetic and molecular-cytology approaches to characterize the genomes of 20 varieties of wheat created in different regions of Russia. A molecular-genetic analysis was performed using 29 SSR-markers covering the entire genome, and 41 ISBP-markers localized on chromosome 5B. Analysis of genetic similarity based on the results of molecular genotyping showed that the winter wheat varieties form a common cluster, regardless of the origin or area of cultivation. This is primarily due to the fact that the varieties originating from the European part of Russia were used to establish winter wheat varieties for West Siberia. Comparative analysis of individual dendrograms constructed using 1–2 markers per chromosome, and with the involvement of a larger number of 5B-chromosome markers allowed us to identify varieties with rearrangements of this chromosome and to assess genetic diversity. We found that winter wheat Vassa and spring wheat Chelyaba 75 were clustered closely together. This is an indirect confirmation of the use of winter wheat varieties in the breeding to improve the productive potential of spring wheat. Molecular-cytology analysis by C-banding and fluorescence in situ hybridization (FISH) revealed various chromosomal rearrangements in 8 of 20 cultivars studied, including translocations from S. cereale, Ae. speltoides and Th. intermedium. Thus, a combination of the two approaches allowed us to better characterize genomes of wheat varieties of various origin. |
topic |
triticum aestivum winter and spring varieties genotyping ssr- and isbp-markers c-banding fluorescence in situ hybridization (fish). |
url |
https://vavilov.elpub.ru/jour/article/view/523 |
work_keys_str_mv |
AT igadonina genotypingofhexaploidwheatvarietiesfromdifferentrussianregions AT inleonova genotypingofhexaploidwheatvarietiesfromdifferentrussianregions AT edbadaeva genotypingofhexaploidwheatvarietiesfromdifferentrussianregions AT easalina genotypingofhexaploidwheatvarietiesfromdifferentrussianregions |
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