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首页> 外文期刊>Journal of Agricultural Science >Additional Quantitative Trait Loci and Candidate Genes for Seed Isoflavone Content in Soybean
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Additional Quantitative Trait Loci and Candidate Genes for Seed Isoflavone Content in Soybean

机译:大豆种子中异黄酮含量的其他定量性状位点和候选基因

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Seed isoflavone content of soybean ( Glycine max L. Merr.) is a trait of moderate heritablity and an ideal target for marker selection. To date over 20 QTL have been identified underlying this trait among seven populations. The objectives of this study were to identify additional QTL and candidate genes controlling isoflavone content in a set of recombinant inbred line (RIL) populations of soybean grown in two different seasons. Variations of isoflavones namely daidzein, glycitein and genistein contents over two growing seasons and locations suggests that isoflavones are influenced by both genes and environments. Six QTL were identified on five different chromosomes (Chr) or linkage groups (LG) that controlled daidzein (Chr_2/LG-M; Chr_17a/LG-D2), glycitein (Chr_2/LG-D1b; Chr_8/LG-A2) and genistein (Chr_8/LG-A2; Chr_12/LG-H) respectively in the seeds grown in season 2010. Two QTL were identified for daidzein (Chr_6/LG-C2; Chr_13b/LG-F), two QTLs for glycitein (Chr_1/LG-D1a; Chr_17c/LG-D2) and five QTLs for genistein (Chr_3/ LG-N; Chr_8/LG-A2; Chr_9/LG-K; Chr_18/LG-G) in the seeds of the 2011 growing season. Genes located within QTL confidence intervals were retrieved and gene ontology (GO) terms were used to identify those related to the flavonoid biosynthesis process. Twenty six candidate genes were identified that may be involved in isoflavones accumulation in soybean seeds.
机译:大豆(Glycine max L. Merr。)的种子异黄酮含量是中等遗传性状,是选择标记的理想靶标。迄今为止,已经在七个人群中鉴定出20个以上的QTL。这项研究的目的是确定在两个不同季节生长的一组重组大豆自交系(RIL)群体中控制异黄酮含量的其他QTL和候选基因。异黄酮在两个生长季节和生长地点的变化,即大豆苷元,糖蛋白和染料木黄酮的含量,表明异黄酮受基因和环境的影响。在控制大豆苷元(Chr_2 / LG-M; Chr_17a / LG-D2),糖蛋白(Chr_2 / LG-D1b; Chr_8 / LG-A2)和染料木黄酮的五个不同染色体(Chr)或连锁组(LG)上鉴定出六个QTL (Chr_8 / LG-A2; Chr_12 / LG-H)分别在2010季节种植的种子中。黄豆苷元(Chr_6 / LG-C2; Chr_13b / LG-F)鉴定出两个QTL,糖蛋白(Chr_1 / LG)鉴定出两个QTL。 -D1a; Chr_17c / LG-D2)和五个金雀异黄素的QTL(Chr_3 / LG-N; Chr_8 / LG-A2; Chr_9 / LG-K; Chr_18 / LG-G)。检索位于QTL置信区间内的基因,并使用基因本体论(GO)术语来识别与类黄酮生物合成过程相关的基因。确定了二十六个候选基因,这些基因可能与大豆种子中的异黄酮积累有关。

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