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Genetic diversity revealed by genomic SSR and EST-SSR markers among common wheat, spelt and compectum
引用本文:YANG Xinquan,LIU Peng,HAN Zongfu,NI Zhongfu,SUN Qixin. Genetic diversity revealed by genomic SSR and EST-SSR markers among common wheat, spelt and compectum[J]. 自然科学进展(英文版), 2005, 15(1): 24-33
作者姓名:YANG Xinquan  LIU Peng  HAN Zongfu  NI Zhongfu  SUN Qixin
作者单位:Department of Plant Genetics & Breeding, State Key Laboratory for Agrobiotechnology, China Agricultural University, Beijing 100094,China,Department of Plant Genetics & Breeding, State Key Laboratory for Agrobiotechnology, China Agricultural University, Beijing 100094,China,Department of Plant Genetics & Breeding, State Key Laboratory for Agrobiotechnology, China Agricultural University, Beijing 100094,China,Department of Plant Genetics & Breeding, State Key Laboratory for Agrobiotechnology, China Agricultural University, Beijing 100094,China,Department of Plant Genetics & Breeding, State Key Laboratory for Agrobiotechnology, China Agricultural University, Beijing 100094,China
基金项目:Supported by National High-Tech Research Programs (Grant Nos. 2001AA241042 and 2002AA207004) and the Major State Basic Research Development Program of China (2001CB1088)
摘    要:In this study, two SSR molecular markers, named genomic-SSR and EST-SSR, are used to measure the genetic diversity among three hexaploid wheat populations, which include 28 common wheat ( Triticum aestivum L. ), 13 spelt ( Triticum spelta L. ),and 11 compactum ( Triticum compactum Host. ). The results show that common wheat has the highest genetic polymorphism, followed by spelt and then compactum. The mean genetic distance between the populations is higher than that within a population, and similar tendency is detected for individual genomes A, B and D. Therefore, spelt and compactum can be used as potential germplasms for wheat breeding, especially for enriching the genetic variation in genome D. As compared with spelt, the genetic diversity between common wheat and compactum is much smaller, indicating a closer consanguine relationship between these two species. Although the polymorphism revealed by EST-SSR is lower than that by genomic-SSR, it can effectively differentiate diverse genotypes as well. Together with our present results, it is concluded that EST-SSR marker is an ideal marker for assessing the genetic diversity in wheat. Meanwhile, the origin and evolution of hexaploid wheat is also analyzed and discussed.

关 键 词:common wheat   spelt   copactum   genomic-SSR   EST-SSR   gentic diversity

Genetic diversity revealed by genomic SSR and EST-SSR markers among common wheat, spelt and compectum
YANG Xinquan,LIU Peng,HAN Zongfu,NI Zhongfu,SUN Qixin. Genetic diversity revealed by genomic SSR and EST-SSR markers among common wheat, spelt and compectum[J]. Progress in Natural Science, 2005, 15(1): 24-33
Authors:YANG Xinquan  LIU Peng  HAN Zongfu  NI Zhongfu  SUN Qixin
Affiliation:Department of Plant Genetics & Breeding, State Key Laboratory for Agrobiotechnology, China Agricultural University, Beijing 100094,China,Department of Plant Genetics & Breeding, State Key Laboratory for Agrobiotechnology, China Agricultural University, Beijing 100094,China,Department of Plant Genetics & Breeding, State Key Laboratory for Agrobiotechnology, China Agricultural University, Beijing 100094,China,Department of Plant Genetics & Breeding, State Key Laboratory for Agrobiotechnology, China Agricultural University, Beijing 100094,China,Department of Plant Genetics & Breeding, State Key Laboratory for Agrobiotechnology, China Agricultural University, Beijing 100094,China
Abstract:In this study, two SSR molecular markers, named genomic-SSR and EST-SSR, are used to measure the genetic diversity among three hexaploid wheat populations, which include 28 common wheat ( Triticum aestivum L. ), 13 spelt ( Triticum spelta L. ),and 11 compactum ( Triticum compactum Host. ). The results show that common wheat has the highest genetic polymorphism, followed by spelt and then compactum. The mean genetic distance between the populations is higher than that within a population, and similar tendency is detected for individual genomes A, B and D. Therefore, spelt and compactum can be used as potential germplasms for wheat breeding, especially for enriching the genetic variation in genome D. As compared with spelt, the genetic diversity between common wheat and compactum is much smaller, indicating a closer consanguine relationship between these two species. Although the polymorphism revealed by EST-SSR is lower than that by genomic-SSR, it can effectively differentiate diverse genotypes as well. Together with our present results, it is concluded that EST-SSR marker is an ideal marker for assessing the genetic diversity in wheat. Meanwhile, the origin and evolution of hexaploid wheat is also analyzed and discussed.
Keywords:common wheat   spelt   copactum   genomic-SSR   EST-SSR   gentic diversity
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