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国际玉米小麦改良中心面包小麦品系Soru#1中赤霉病抗性的QTL特征分析

QTL Characterization of Fusarium Head Blight Resistance in CIMMYT Bread Wheat Line Soru#1.

作者信息

He Xinyao, Lillemo Morten, Shi Jianrong, Wu Jirong, Bjørnstad Åsmund, Belova Tatiana, Dreisigacker Susanne, Duveiller Etienne, Singh Pawan

机构信息

International Maize and Wheat Improvement Center (CIMMYT), Texcoco, Edo. de México, Mexico.

Department of Plant Sciences, Norwegian University of Life Sciences, Ås, Norway.

出版信息

PLoS One. 2016 Jun 28;11(6):e0158052. doi: 10.1371/journal.pone.0158052. eCollection 2016.

Abstract

Fusarium head blight (FHB) resistant line Soru#1 was hybridized with the German cultivar Naxos to generate 131 recombinant inbred lines for QTL mapping. The population was phenotyped for FHB and associated traits in spray inoculated experiments in El Batán (Mexico), spawn inoculated experiments in Ås (Norway) and point inoculated experiments in Nanjing (China), with two field trials at each location. Genotyping was performed with the Illumina iSelect 90K SNP wheat chip, along with a few SSR and STS markers. A major QTL for FHB after spray and spawn inoculation was detected on 2DLc, explaining 15-22% of the phenotypic variation in different experiments. This QTL remained significant after correction for days to heading (DH) and plant height (PH), while another QTL for FHB detected at the Vrn-A1 locus on 5AL almost disappeared after correction for DH and PH. Minor QTL were detected on chromosomes 2AS, 2DL, 4AL, 4DS and 5DL. In point inoculated experiments, QTL on 2DS, 3AS, 4AL and 5AL were identified in single environments. The mechanism of resistance of Soru#1 to FHB was mainly of Type I for resistance to initial infection, conditioned by the major QTL on 2DLc and minor ones that often coincided with QTL for DH, PH and anther extrusion (AE). This indicates that phenological and morphological traits and flowering biology play important roles in resistance/escape of FHB. SNPs tightly linked to resistance QTL, particularly 2DLc, could be utilized in breeding programs to facilitate the transfer and selection of those QTL.

摘要

将抗镰刀菌穗腐病(FHB)品系Soru#1与德国品种Naxos杂交,以产生131个重组自交系用于QTL定位。在墨西哥埃尔巴坦的喷雾接种试验、挪威奥斯的麦粒接种试验和中国南京的点接种试验中,对该群体进行了FHB及相关性状的表型分析,每个地点进行了两次田间试验。使用Illumina iSelect 90K SNP小麦芯片以及一些SSR和STS标记进行基因分型。在2DLc上检测到一个喷雾和麦粒接种后FHB的主要QTL,在不同试验中解释了15 - 22%的表型变异。在校正抽穗天数(DH)和株高(PH)后,该QTL仍然显著,而在5AL上Vrn - A1位点检测到的另一个FHB QTL在校正DH和PH后几乎消失。在2AS、2DL、4AL、4DS和5DL染色体上检测到了次要QTL。在点接种试验中,在单一环境中鉴定出了2DS、3AS、4AL和5AL上的QTL。Soru#1对FHB的抗性机制主要是I型抗初始感染,由2DLc上的主要QTL和常与DH、PH及花药伸出(AE)QTL重合的次要QTL决定。这表明物候、形态性状和开花生物学在FHB的抗性/逃避中起重要作用。与抗性QTL紧密连锁的SNP,特别是2DLc,可用于育种计划,以促进这些QTL的转移和选择。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9c00/4924825/70b1a2473fd5/pone.0158052.g001.jpg

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