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QTL detection for wheat kernel size and quality and the responses of these traits to low nitrogen stress

机译:小麦粒大小和品质的QTL检测及其对低氮胁迫的响应

摘要

Key message QTLs for kernel characteristics and tolerance to N stress were identified, and the functions of ten known genes with regard to these traits were specified. Kernel size and quality characteristics in wheat (Triticum aestivum L.) ultimately determine the end use of the grain and affect its commodity price, both of which are influenced by the application of nitrogen (N) fertilizer. This study characterized quantitative trait loci (QTLs) for kernel size and quality and examined the responses of these traits to low-N stress using a recombinant inbred line population derived from Kenong 9204 x Jing 411. Phenotypic analyses were conducted in five trials that each included low- and high-N treatments. We identified 109 putative additive QTLs for 11 kernel size and quality characteristics and 49 QTLs for tolerance to N stress, 27 and 14 of which were stable across the tested environments, respectively. These QTLs were distributed across all wheat chromosomes except for chromosomes 3A, 4D, 6D, and 7B. Eleven QTL clusters that simultaneously affected kernel size- and quality-related traits were identified. At nine locations, 25 of the 49 QTLs for N deficiency tolerance coincided with the QTLs for kernel characteristics, indicating their genetic independence. The feasibility of indirect selection of a superior genotype for kernel size and quality under high-N conditions in breeding programs designed for a lower input management system are discussed. In addition, we specified the functions of Glu-A1, Glu-B1, Glu-A3, Glu-B3, TaCwi-A1, TaSus2, TaGS2-D1, PPO-D1, Rht-B1, and Ha with regard to kernel characteristics and the sensitivities of these characteristics to N stress. This study provides useful information for the genetic improvement of wheat kernel size, quality, and resistance to N stress.
机译:确定了关键信息的QTLs,这些QTLs具有籽粒特性和对N胁迫的耐受性,并指定了十个已知基因与这些特性有关的功能。小麦(Triticum aestivum L.)的籽粒大小和品质特性最终决定了谷物的最终用途并影响其商品价格,这两者均受氮肥施用的影响。这项研究表征了数量性状基因座(QTL)的核大小和品质,并使用来自Kenong 9204 x Jing 411的重组近交系群体研究了这些性状对低氮胁迫的响应。在五项试验中进行了表型分析,每项试验均包括低氮和高氮治疗。我们确定了109个假定的附加QTL,这些QTL具有11个仁大小和品质特征,以及49个QTL对N胁迫的耐受性,其中27个和14个在测试环境中稳定。这些QTL分布在除小麦3A,4D,6D和7B染色体外的所有小麦染色体上。确定了同时影响籽粒大小和品质相关性状的11个QTL簇。在9个地点,氮缺乏耐受性的49个QTL中有25个与籽粒特性的QTL吻合,表明它们的遗传独立性。讨论了在高氮条件下为低输入管理系统设计的育种程序中,间接选择优质基因型以获得籽粒大小和品质的可行性。此外,我们针对内核特性和特性指定了Glu-A1,Glu-B1,Glu-A3,Glu-B3,TaCwi-A1,TaSus2,TaGS2-D1,PPO-D1,Rht-B1和Ha的功能。这些特性对氮胁迫的敏感性。这项研究为遗传改良小麦籽粒大小,品质和抗氮胁迫提供了有用的信息。

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