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黄瓜自交系WI7120(PI 330628)霜霉病抗性的QTL定位

QTL mapping for downy mildew resistance in cucumber inbred line WI7120 (PI 330628).

作者信息

Wang Yuhui, VandenLangenberg Kyle, Wehner Todd C, Kraan Peter A G, Suelmann Jos, Zheng Xiangyang, Owens Ken, Weng Yiqun

机构信息

Horticulture Department, University of Wisconsin, Madison, WI, 53706, USA.

Horticultural Science Department, North Carolina State University, Raleigh, NC, 27695, USA.

出版信息

Theor Appl Genet. 2016 Aug;129(8):1493-505. doi: 10.1007/s00122-016-2719-x. Epub 2016 May 4.

Abstract

Host resistance in WI7120 cucumber to prevailing downy mildew pathogen field populations is conferred by two major-effect, one moderate-effect and two minor-effect QTL. Downy mildew (DM) caused by the obligate oomycete Pseudoperonospora cubensis is the most devastating fungal disease of cucumber worldwide. The molecular mechanism of DM resistance in cucumber is poorly understood, and use of marker-assisted breeding for DM resistance is not widely available. Here, we reported QTL mapping results for DM resistance with 243 F2:3 families from the cross between DM-resistant inbred line WI7120 (PI 330628) and susceptible '9930'. A linkage map was developed with 348 SSR and SNP markers. Phenotyping of DM inoculation responses were conducted in four field trails in 2 years at three locations. Four QTL, dm2.1, dm4.1, dm5.1, and dm6.1 were consistently and reliably detected across at least three of the four environments which together could explain 62-76 % phenotypic variations (R (2)). Among them, dm4.1 and dm5.1 were major-effect QTL (R (2) = 15-30 %) with only additive effects; dm2.1 (R (2) = 5-15 %) and dm6.1 (R (2) = 4-8 %) had moderate and minor effects, respectively. Epistatic effects were detected for dm2.1 and dm6.1 with both dm4.1 and dm5.1. One additional minor-effect QTL, dm6.2 (R (2) = 3-5 %) was only detectable with the chlorosis rating criterion. All alleles contributing to DM resistance were from WI7120. This study revealed two novel QTL for DM resistance and the unique genetic architecture of DM resistance in WI7120 conferring high level resistance to prevailing DM populations in multiple countries. The effects of disease rating scales, rating time and criteria, population size in phenotyping DM resistance on the power of QTL detection, and the use of DM resistance in WI7120 in cucumber breeding were discussed.

摘要

WI7120黄瓜对霜霉病病原菌田间流行种群的抗性由两个主效、一个中效和两个微效QTL决定。由专性卵菌古巴假霜霉菌引起的霜霉病(DM)是全球黄瓜最具毁灭性的真菌病害。黄瓜中抗霜霉病的分子机制了解甚少,利用标记辅助育种培育抗霜霉病品种尚未广泛应用。在此,我们报道了用抗霜霉病自交系WI7120(PI 330628)与感病品种‘9930’杂交得到的243个F2:3家系进行霜霉病抗性QTL定位的结果。构建了一个包含348个SSR和SNP标记的连锁图谱。在3个地点的4个田间试验中对霜霉病接种反应进行了表型分析,为期2年。在4个环境中的至少3个环境中一致且可靠地检测到4个QTL,即dm2.1、dm4.1、dm5.1和dm6.1,它们共同可解释62%-76% 的表型变异(R²)。其中,dm4.1和dm5.1是主效QTL(R² = 15%-30%),只有加性效应;dm2.1(R² = 5%-15%)和dm6.1(R² = 4%-8%)分别具有中效和微效。检测到dm2.1和dm6.1与dm4.1和dm5.1之间存在上位性效应。另一个微效QTL,dm6.2(R² = 3%-5%)仅在褪绿评级标准下可检测到。所有有助于霜霉病抗性的等位基因均来自WI7120。本研究揭示了两个新的霜霉病抗性QTL以及WI7120中霜霉病抗性独特的遗传结构,使其对多个国家的霜霉病流行种群具有高水平抗性。讨论了病害评级量表、评级时间和标准、霜霉病抗性表型分析中的群体大小对QTL检测效力的影响,以及WI7120的霜霉病抗性在黄瓜育种中的应用。

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