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An Integrated High-density Linkage Map of Soybean with RFLP SSR STS and AFLP Markers Using A Single F2 Population

机译:使用单个F2种群的带有RFLPSSRSTS和AFLP标记的大豆集成高密度连锁图

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摘要

Soybean [Glycine max (L.) Merrill] is the most important leguminous crop in the world due to its high contents of high-quality protein and oil for human and animal consumption as well as for industrial uses. An accurate and saturated genetic linkage map of soybean is an essential tool for studies on modern soybean genomics. In order to update the linkage map of a F2 population derived from a cross between Misuzudaizu and Moshidou Gong 503 and to make it more informative and useful to the soybean genome research community, a total of 318 AFLP, 121 SSR, 108 RFLP, and 126 STS markers were newly developed and integrated into the framework of the previously described linkage map. The updated genetic map is composed of 509 RFLP, 318 SSR, 318 AFLP, 97 AFLP-derived STS, 29 BAC-end or EST-derived STS, 1 RAPD, and five morphological markers, covering a map distance of 3080 cM (Kosambi function) in 20 linkage groups (LGs). To our knowledge, this is presently the densest linkage map developed from a single F2 population in soybean. The average intermarker distance was reduced to 2.41 from 5.78 cM in the earlier version of the linkage map. Most SSR and RFLP markers were relatively evenly distributed among different LGs in contrast to the moderately clustered AFLP markers. The number of gaps of more than 25 cM was reduced to 6 from 19 in the earlier version of the linkage map. The coverage of the linkage map was extended since 17 markers were mapped beyond the distal ends of the previous linkage map. In particular, 17 markers were tagged in a 5.7 cM interval between CE47M5a and Satt100 on LG C2, where several important QTLs were clustered. This newly updated soybean linkage map will enable to streamline positional cloning of agronomically important trait locus genes, and promote the development of physical maps, genome sequencing, and other genomic research activities.
机译:大豆[Glycine max(L.)Merrill]是世界上最重要的豆类作物,由于其高含量的高质量蛋白质和油脂可用于人类和动物以及工业用途。准确,饱和的大豆遗传连锁图谱是研究现代大豆基因组学的重要工具。为了更新源自Misuzudaizu和Moshidou Gong 503之间的杂交的F2种群的连锁图,并使它对大豆基因组研究界更有意义,更有用,共有318 AFLP,121 SSR,108 RFLP和126 STS标记是新开发的,并已整合到先前描述的连锁图的框架中。更新的遗传图谱由509 RFLP,318 SSR,318 AFLP,97 AFLP衍生的STS,29 BAC末端或EST衍生的STS,1 RAPD和5个形态标记组成,覆盖了3080 cM的图谱距离(Kosambi函数)中的20个链接组(LG)。据我们所知,这是目前从大豆中单个F2种群形成的最紧密的连锁图。在链接图的早期版本中,平均标记间距离从5.78 cM减少到2.41。与中等聚类的AFLP标记相比,大多数SSR和RFLP标记在不同LG之间相对均匀地分布。在链接图的早期版本中,超过25 cM的缺口数从19减少到6。由于将17个标记映射到先前链接图的远端之外,因此扩展了链接图的覆盖范围。特别是,在LG C2上CE47M5a和Satt100之间的5.7 cM间隔内标记了17个标记,其中几个重要的QTL聚集在其中。这个新近更新的大豆连锁图谱将能够简化农学上重要的性状基因座基因的位置克隆,并促进物理图谱,基因组测序和其他基因组研究活动的发展。

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