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Identification and validation of a major QTL conferring crown rot resistance in hexaploid wheat

机译:六倍体小麦冠冠抗性的主要QTL鉴定与验证

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Crown rot (CR), caused by various Fusarium species, is a chronic wheat disease in Australia. As part of our objective of improving the efficiency of breeding CR resistant wheat varieties, we have been searching for novel sources of resistance. This paper reports on the genetic control of one of these newly identified resistant genotypes, CSCR6'. A population derived from a cross between CSCR6 and an Australian variety Lang' was analyzed using two Fusarium isolates belonging to two different species, one Fusarium pseudograminearum and the other Fusarium graminearum. The two isolates detected QTL with the same chromosomal locations and comparable magnitudes, indicating that CR resistance is not species-specific. The resistant allele of one of the QTL was derived from CSCR6'. This QTL, designated as Qcrs.cpi-3B, was located on the long arm of chromosome 3B and explains up to 48.8% of the phenotypic variance based on interval mapping analysis. Another QTL, with resistant allele from the variety Lang', was located on chromosome 4B. This QTL explained up to 22.8% of the phenotypic variance. A strong interaction between Qcsr.cpi-3B and Qcsr.cpi-4B was detected, reducing the maximum effect of Qcrs.cpi-3B to 43.1%. The effects of Qcrs.cpi-3B were further validated in four additional populations and the presence of this single QTL reduced CR severity by up to 42.1%. The fact that significant effects of Qcrs.cpi-3B were detected across all trials with different genetic backgrounds and with the use of isolates belonging to two different Fusarium species make it an ideal target for breeding programs as well as for further characterization of the gene(s) involved in its resistance.
机译:由各种镰刀菌引起的冠腐病(CR)是澳大利亚的一种慢性小麦疾病。作为提高抗CR小麦品种育种效率的目标的一部分,我们一直在寻找新的抗性来源。本文报道了这些新近鉴定的抗性基因型之一CSCR6'的遗传控制。使用属于两个不同物种的两个镰刀菌分离株(一个镰刀菌和另一个镰刀镰刀菌)分析了CSCR6和澳大利亚品种Lang'杂交后的种群。这两个分离株检测到的QTL具有相同的染色体位置和可比较的大小,表明CR抗性不是物种特异性的。 QTL之一的抗性等位基因源自CSCR6'。命名为Qcrs.cpi-3B的QTL位于3B染色体的长臂上,根据区间作图分析可解释多达48.8%的表型变异。具有来自Lang'变种的抗性等位基因的另一个QTL位于染色体4B上。这个QTL解释了多达22.8%的表型差异。 Qcsr.cpi-3B和Qcsr.cpi-4B之间检测到强相互作用,从而将Qcrs.cpi-3B的最大作用降低到43.1%。 Qcrs.cpi-3B的作用在另外四个人群中得到进一步验证,并且该单个QTL的存在将CR严重程度降低了高达42.1%。在具有不同遗传背景的所有试验中均检测到Qcrs.cpi-3B的显着效果,并使用属于两个不同镰刀菌属的分离株,使其成为育种计划以及基因进一步表征的理想靶标( s)参与其抵抗。

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