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Identification Of Snps In Rna-seq Data Of Two Cultivars Of Glycine Max (soybean) Differing In Drought Resistance.

机译:在两个抗旱性不同的大豆最大品种(大豆)的Rna-seq数据中鉴定snps。

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摘要

The legume Glycine max (soybean) plays an important economic role in the international commodities market, with a world production of almost 260 million tons for the 2009/2010 harvest. The increase in drought events in the last decade has caused production losses in recent harvests. This fact compels us to understand the drought tolerance mechanisms in soybean, taking into account its variability among commercial and developing cultivars. In order to identify single nucleotide polymorphisms (SNPs) in genes up-regulated during drought stress, we evaluated suppression subtractive libraries (SSH) from two contrasting cultivars upon water deprivation: sensitive (BR 16) and tolerant (Embrapa 48). A total of 2,222 soybean genes were up-regulated in both cultivars. Our method identified more than 6,000 SNPs in tolerant and sensitive Brazilian cultivars in those drought stress related genes. Among these SNPs, 165 (in 127 genes) are positioned at soybean chromosome ends, including transcription factors (MYB, WRKY) related to tolerance to abiotic stress.
机译:豆科植物大豆大豆在国际商品市场上起着重要的经济作用,2009/2010年收获的世界产量近2.6亿吨。过去十年中干旱事件的增加导致最近的收成减产。考虑到大豆在商业和发展品种之间的差异,这一事实迫使我们了解大豆的耐旱机制。为了鉴定干旱胁迫期间上调的基因中的单核苷酸多态性(SNP),我们在缺水时评估了两个相反品种的抑制消减文库(SSH):敏感(BR 16)和耐受(Embrapa 48)。两个品种中总共有2,222个大豆基因上调。我们的方法在这些干旱胁迫相关基因中鉴定了耐性和敏感性巴西品种中的6,000多个SNP。在这些SNP中,有165个(共127个基因)位于大豆染色体末端,包括与非生物胁迫耐受性相关的转录因子(MYB,WRKY)。

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