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Copy Number Variation of Cytokinin Oxidase Gene Tackx4 Associated with Grain Weight and Chlorophyll Content of Flag Leaf in Common Wheat

机译:细胞分裂素氧化酶基因Tackx4拷贝数的变化与普通小麦旗叶粒重和叶绿素含量的关系

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摘要

As the main pigment in photosynthesis, chlorophyll significantly affects grain filling and grain weight of crop. Cytokinin (CTK) can effectively increase chlorophyll content and chloroplast stability, but it is irreversibly inactivated by cytokinin oxidase (CKX). In this study, therefore, twenty-four pairs of primers were designed to identify variations of wheat CKX (Tackx) genes associated with flag leaf chlorophyll content after anthesis, as well as grain weight in 169 recombinant inbred lines (RIL) derived from Triticum aestivum Jing 411 × Hongmangchun 21. Results indicated variation of Tackx4, identified by primer pair T19-20, was proven to significantly associate with chlorophyll content and grain weight in the RIL population. Here, two Tackx4 patterns were identified: one with two co-segregated fragments (Tackx4-1/Tackx4-2) containing 618 bp and 620 bp in size (as in Jing 411), and another with no PCR product. The two genotypes were designated as genotype-A and genotype-B, respectively. Grain weight and leaf chlorophyll content at 5~15 days after anthesis (DAA) were significantly higher in genotype-A lines than those in genotype-B lines. Mapping analysis indicated Tackx4 was closely linked to Xwmc169 on chromosome 3AL, as well as co-segregated with a major quantitative trait locus (QTL) for both grain weight and chlorophyll content of flag leaf at 5~15 DAA. This QTL explained 8.9~22.3% phenotypic variations of the two traits across four cropping seasons. Among 102 wheat varieties, a third genotype of Tackx4 was found and designated as genotype-C, also having two co-segregated fragments, Tackx4-2 and Tackx4-3 (615bp). The sequences of three fragments, Tackx4-1, Tackx4-2, and Tackx4-3, showed high identity (>98%). Therefore, these fragments could be considered as different copies at Tackx4 locus on chromosome 3AL. The effect of copy number variation (CNV) of Tackx4 was further validated. In general, genotype-A contains both significantly higher grain weight and flag leaf chlorophyll content at 5~15 DAA than those in genotype-B and genotype-C, among 102 varieties under various environments.
机译:叶绿素作为光合作用中的主要色素,会显着影响作物的籽粒充实和粒重。细胞分裂素(CTK)可以有效增加叶绿素含量和叶绿体稳定性,但会被细胞分裂素氧化酶(CKX)不可逆地灭活。因此,在本研究中,设计了二十四对引物,以鉴定与花后旗叶叶绿素含量相关的小麦CKX(Tackx)基因的变异,以及来自小麦的169个重组自交系(RIL)的粒重Jing 411×Hongmangchun 21.结果表明,经引物对T19-20鉴定的Tackx4变异与RIL群体中的叶绿素含量和谷物重量显着相关。在这里,鉴定出两个Tackx4模式:一个带有两个共分离的片段(Tackx4-1 / Tackx4-2),它们的大小分别为618 bp和620 bp(如Jing 411),另一个没有PCR产物。这两个基因型分别称为基因型A和基因型B。基因型A系花后5〜15天(DAA)的粒重和叶片叶绿素含量显着高于基因型B系。映射分析表明,Tackx4与3AL染色体上的Xwmc169密切相关,并且与5〜15 DAA旗叶的粒重和叶绿素含量的主要定量性状基因座(QTL)共同分离。该QTL解释了在四个种植季节中两个性状的表型变异8.9〜22.3%。在102个小麦品种中,发现了Tackx4的第三个基因型,命名为C型,也有两个共同分离的片段,即Tackx4-2和Tackx4-3(615bp)。 Tackx4-1,Tackx4-2和Tackx4-3这三个片段的序列显示出高度同一性(> 98%)。因此,这些片段可被认为是3AL染色体上Tackx4基因座的不同拷贝。 Tackx4的拷贝数变异(CNV)的影响得到了进一步验证。通常,在各种环境下的102个变种中,基因型A在5〜15 DAA时均具有明显高于基因型B和基因型C的粒重和旗叶叶绿素含量。

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