首页> 外文期刊>Gene: An International Journal Focusing on Gene Cloning and Gene Structure and Function >An abiotic stress response gene TaSnRK2.7-B in wheat accessions: genetic diversity analysis and gene mapping based on SNPs.
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An abiotic stress response gene TaSnRK2.7-B in wheat accessions: genetic diversity analysis and gene mapping based on SNPs.

机译:小麦品种中的非生物胁迫响应基因TaSnRK2.7-B:基于SNP的遗传多样性分析和基因定位。

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摘要

TaSnRK2.7, a SnRK2 (sucrose non-fermenting1-related protein kinase 2) member of wheat, confers enhanced multi-stress tolerance in carbohydrate metabolism. Here, the nucleotide diversity of TaSnRK2.7 was investigated in 60 wheat accessions with different stress-tolerant features. One copy, named TaSnRK2.7-B, was detected in 32 accessions, which mainly exhibited stress tolerance. The TaSnRK2.7-B evolutionary dynamics were examined in these cultivars, which have been subjected to population bottlenecks and intensive selection in breeding. Nucleotide diversity (pi) in the entire TaSnRK2.7-B region was 0.00148. Sliding-window analysis demonstrated that 3932-4535bp was a variation-enriched region, covering the eighth intron, the ninth exon and the 3'-flanking region. As predicted, neutrality tests revealed that the TaSnRK2.7-B protein was relatively conservative, and population bottlenecks or purifying selection may have acted on TaSnRK2.7-B. Furthermore, linkage disequilibrium between SNP loci extends across the entire TaSnRK2.7-B region. A SNP marker of TaSnRK2.7-B was developed and mapped on chromosome 2AL flanked by WMC179.4 and WMC401, which were co-located in the same or adjacent chromosome intervals with QTLs for phosphorus utilization efficiency and accumulation efficiency of stem water-soluble carbohydrates.
机译:TaSnRK2.7是小麦的SnRK2(非发酵型蔗糖相关蛋白激酶2)成员,可增强碳水化合物代谢中的多重压力耐受性。在这里,在60种具有不同耐性特征的小麦种质中研究了TaSnRK2.7的核苷酸多样性。在32个种质中检出了一份名为TaSnRK2.7-B的拷贝,主要表现出胁迫耐受性。在这些品种中检测了TaSnRK2.7-B的进化动力学,这些品种在种群中一直受到瓶颈和密集选择的影响。 TaSnRK2.7-B整个区域的核苷酸多样性(pi)为0.00148。滑动窗口分析表明3932-4535bp是一个富含变异的区域,覆盖了第八个内含子,第九个外显子和3'侧翼区域。如预期的那样,中性测试表明TaSnRK2.7-B蛋白相对保守,TaSnRK2.7-B可能存在种群瓶颈或纯化选择。此外,SNP基因座之间的连锁不平衡延伸到整个TaSnRK2.7-B区域。开发了TaSnRK2.7-B的SNP标记并将其定位在WMC179.4和WMC401侧翼的2AL染色体上,这些染色体与QTL位于相同或相邻的染色体区间内,以提高磷的利用率和茎干水溶性物质的积累效率碳水化合物。

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