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QTL mapping for benzoxazinoid content, preharvest sprouting, α-amylase activity, and leaf rust resistance in rye (Secale cereale L.)

机译:黑麦(Secale graine L.)中苯并恶嗪类化合物含量,收获前发芽,α-淀粉酶活性和叶片防锈性的QTL定位

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摘要

Mapping population of recombinant inbred lines (RILs) representing 541 × Ot1-3 cross exhibited wide variations of benzoxazinoid (BX) content in leaves and roots, brown rust resistance, α-amylase activity in the grain, and resistance to preharvest sprouting. QTL mapping of major BX species using a DArT-based map revealed a complex genetic architecture underlying the production of these main secondary metabolites engaged in stress and allelopathy responses. The synthesis of BX in leaves and roots was found to be regulated by different QTL. The QTL for the BX content, rust resistance, α-amylase activity, and preharvest sprouting partially overlapped; this points to their common genetic regulation by a definite subset of genes. Only one QTL for BX located on chromosome 7R coincided with the loci of the ScBx genes, which were mapped as two clusters on chromosomes 5RS (Bx3-Bx5) and 7R (Bx1-Bx2). The QTL common for several BX species, rust resistance, preharvest sprouting, and α-amylase activity are interesting objects for further exploration aimed at developing common markers for these important agronomic traits.
机译:代表541×Ot1-3杂交的重组自交系(RIL)的作图群体显示出叶和根中苯并嗪类(BX)含量的广泛变化,耐棕色锈蚀性,谷物中的α-淀粉酶活性以及对收获前发芽的抗性。使用基于DArT的图谱对主要BX物种的QTL作图揭示了复杂的遗传结构,这些结构是参与应激和化感作用反应的这些主要次生代谢产物的基础。发现叶和根中BX的合成受不同QTL的调节。 BX含量,抗锈性,α-淀粉酶活性和收获前发芽的QTL部分重叠;这表明它们是由一定的基因子集共同调控的。仅一个位于QR 7R上的BX的QTL与ScBx基因的基因座相吻合,后者被定位为5RS(Bx3-Bx5)和7R(Bx1-Bx2)染色体上的两个簇。几个BX物种共有的QTL,耐锈性,收获前的发芽和α-淀粉酶活性是有趣的对象,它们是进一步研究的重点,目的是开发这些重要农艺性状的通用标记。

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