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Mapping of QTLs associated with biological nitrogen fixation traits in soybean.

机译:与大豆生物固氮性状相关的QTL定位

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摘要

Biological nitrogen fi xation (BNF) is a key process, but despite the economic and environmental importance, few studies about quantitative trait loci (QTL) controlling BNF traits are available, even in the economically important crop soybean Glycine max (L.) Merr. In this study, a population of 157 F 2:7 RILs derived from crossing soybean cultivars Bossier (high BNF capacity) and Embrapa 20 (medium BNF capacity) was genotyped with 105 simple sequence repeat markers (SSRs). The genetic map obtained has 1231.2 cM and covers about 50% of the genome, with an average interval of 18.1 cM. Three traits, nodule number (NN), the ratio nodule dry weight (NDW)/NN and shoot dry weight (SDW) were used to evaluate BNF performance. A composite interval mapping for multiple traits method (mCIM) analysis mapped two QTLs for SDW (LGs E and L), three for NN (LGs B1, E and I), and one for NDW/NN (LG I); all QTLs were of small effect (R 2 -values ranging from 1.7% to 10.0%) and explained 15.4%, 13.8% and 6.5% of total variation for these three traits, respectively.
机译:生物固氮(BNF)是关键过程,但是尽管在经济和环境方面具有重要意义,但即使在经济上重要的农作物大豆Glycine max(L.)Merr中,也很少有关于控制BNF性状的数量性状基因座(QTL)的研究。在这项研究中,使用105个简单序列重复标记(SSR)对来自杂交大豆品种Bossier(高BNF容量)和Embrapa 20(中等BNF容量)的157 F 2:7 RIL群体进行了基因分型。获得的遗传图谱为1231.2 cM,覆盖约50%的基因组,平均间隔为18.1 cM。结节数(NN),结节干重比(NDW)/ NN和枝干重(SDW)这三个性状用于评价BNF的性能。用于多特征方法的复合区间映射(mCIM)分析映射了SDW的两个QTL(LG E和L),NN的三个QTL(LG B1,E和I)和NDW / NN的LGL(LG I);所有QTL的影响均较小(R 2值范围为1.7%至10.0%),并分别解释了这三个性状的总变异的15.4%,13.8%和6.5%。

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