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首页> 外文期刊>Plant Biotechnology Journal >Nested‐association mapping (NAM)‐based genetic dissection uncovers candidate genes for seed and pod weights in peanut (Arachis hypogaea)
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Nested‐association mapping (NAM)‐based genetic dissection uncovers candidate genes for seed and pod weights in peanut (Arachis hypogaea)

机译:基于嵌套关联的映射(NAM)基础的遗传解剖,在花生(Arachis hypogaea)中揭开种子和荚重量的候选基因

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Multiparental genetic mapping populations such as nested‐association mapping (NAM) have great potential for investigating quantitative traits and associated genomic regions leading to rapid discovery of candidate genes and markers. To demonstrate the utility and power of this approach, two NAM populations, NAM_Tifrunner and NAM_Florida‐07, were used for dissecting genetic control of 100‐pod weight (PW) and 100‐seed weight (SW) in peanut. Two high‐density SNP‐based genetic maps were constructed with 3341 loci and 2668 loci for NAM_Tifrunner and NAM_Florida‐07, respectively. The quantitative trait locus (QTL) analysis identified 12 and 8 major effect QTLs for PW and SW, respectively, in NAM_Tifrunner, and 13 and 11 major effect QTLs for PW and SW, respectively, in NAM_Florida‐07. Most of the QTLs associated with PW and SW were mapped on the chromosomes A05, A06, B05 and B06. A genomewide association study (GWAS) analysis identified 19 and 28 highly significant SNP–trait associations (STAs) in NAM_Tifrunner and 11 and 17 STAs in NAM_Florida‐07 for PW and SW, respectively. These significant STAs were co‐localized, suggesting that PW and SW are co‐regulated by several candidate genes identified on chromosomes A05, A06, B05, and B06. This study demonstrates the utility of NAM population for genetic dissection of complex traits and performing high‐resolution trait mapping in peanut.
机译:嵌套关联映射(NAM)等万周遗传映射群具有巨大的潜力,用于调查定量性状和相关的基因组区域,从而快速发现候选基因和标记。为了证明这种方法的效用和力量,两个NAM群体,Nam_tifrunner和Nam_Florida-07用于解剖100-Pod重量(PW)和100种种子重量(SW)的遗传控制。两个高密度SNP基因映射分别构造了3341个基因座和2668个基因座,分别用于NAM_TIFRUNNER和NAM_FLORIDA-07。定量特性轨迹(QTL)分析分别在Nam_Frifrunner和SW中分别在Nam_tifrunner和13和11的主要作用QTL中鉴定为12和8个主要效果QTL,分别在NAM_FLORIDA-07中PW和SW。与PW和SW相关的大多数QTL被映射在染色体A05,A06,B05和B06上。对于PW和SW分别为PW和SW的Nam_Frifrunner和11和17STA中鉴定了19和28个高度重要的SNP-Trait关联(STA)中的19和28个高度重要的SNP-Trait关联(STA)。这些显着的STA是共同定位的,表明PW和SW被染色体A05,A06,B05和B06上鉴定的几种候选基因共调节。本研究证明了NAM人口对复杂性状的遗传解剖和在花生中进行高分辨率性状测绘的效用。

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