首页> 外文期刊>Theoretical and Applied Genetics: International Journal of Breeding Research and Cell Genetics >Genome-wide identification of intron fragment insertion mutations and their potential use as SCAR molecular markers in the soybean
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Genome-wide identification of intron fragment insertion mutations and their potential use as SCAR molecular markers in the soybean

机译:全基因组内含子片段插入突变的鉴定及其在大豆中作为SCAR分子标记的潜在用途

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摘要

Introns often have a high probability of mutation as a result of DNA insertions and deletions (indels). In this study, 503 introns with exon-derived insertions were identified using a comprehensive search of the soybean genome. Of the 375 pairs of PCR primer sets designed for the loci in question, 161 primer sets amplified length polymorphism among nine soybean varieties and were identified as soybean gene-intron-driven functional sequence characterized amplified region (SCAR) markers. These SCAR markers are distributed among all 20 of the soybean chromosomes, and they developed from numerous genes involved in various physiological and biochemical processes that influence important agronomic traits of the soybean. The development of these novel gene-driven functional SCAR markers was fast and cost effective, and their use will facilitate molecular-assisted breeding of the soybean.
机译:内含子通常由于DNA插入和缺失(indels)而具有很高的突变可能性。在这项研究中,使用大豆基因组的全面搜索,鉴定出503个内含子为外显子的内含子。在为上述基因座设计的375对PCR引物对中,有161个引物对在9个大豆品种中扩增了长度多态性,并被确定为大豆基因-内含子驱动的功能性序列特征性扩增区(SCAR)标记。这些SCAR标记分布在大豆的所有20条染色体中,它们是由涉及影响大豆重要农艺性状的各种生理和生化过程的众多基因形成的。这些新型基因驱动的功能性SCAR标记的开发快速且具有成本效益,它们的使用将促进大豆的分子辅助育种。

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