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瓜类蚜虫和粉虱抗性 QTL 的定位与验证。

Mapping and validation of QTLs for resistance to aphids and whiteflies in melon.

机构信息

Génétique et Amélioration des Fruits et Légumes, INRA, UR1052, B.P. 94 F-84143, Montfavet cedex, France.

出版信息

Theor Appl Genet. 2010 Jun;121(1):9-20. doi: 10.1007/s00122-010-1287-8. Epub 2010 Feb 24.

Abstract

Aphis gossypii and Bemisia tabaci are severe hemipteran pests of melon crops and breeding for resistance to both insects is required to reduce pesticide use. Resistance was evaluated for its effect on behaviour and biotic potential of both hemipterans in a population of recombinant inbred lines (RILs) derived from the cross Védrantais x PI 161375. Insect variability was considered using two A. gossypii clones and two B. tabaci populations. Two additive QTLs affected the whiteflies. Four additive QTLs and two couples of epistatic QTLs affected the aphids. Amongst them, a major QTL affects both behaviour and biotic potential of A. gossypii and therefore a same R gene induces both antixenosis and antibiosis. This major QTL colocalizes with the Vat gene belonging to the NBS-LRR gene family. No loci affected both aphids and whiteflies contrary to what was observed for the Mi1.2 gene, a NBS-LRR gene in tomato. Original populations with different allelic compositions at QTLs affecting A. gossypii were built by one inter-crossing of RILs used for the mapping process. The genetic background was shown homogeneous between these populations what allowed validating QTLs and investigating the effect of allelic combinations at QTLs. Effects of QTLs were stronger than expected and some QTLs had a wider spectrum than expected. This strategy of validation appeared rapid and low cost.

摘要

棉蚜和烟粉虱是瓜类作物的严重半翅目害虫,需要培育对这两种昆虫的抗性以减少农药使用。为了评估其对源于 Védrantais x PI 161375 杂交的重组自交系(RIL)群体中这两种半翅目昆虫的行为和生物潜能的影响,进行了抗性评估。使用两个棉蚜克隆和两个烟粉虱种群来考虑昆虫变异性。两个加性 QTL 影响粉虱,四个加性 QTL 和两对上位性 QTL 影响蚜虫。其中,一个主要的 QTL 影响棉蚜的行为和生物潜能,因此一个相同的 R 基因同时诱导抗生性和抗生性。这个主要的 QTL 与 Vat 基因共定位,Vat 基因属于 NBS-LRR 基因家族。与在番茄中属于 NBS-LRR 基因的 Mi1.2 基因不同,没有一个位点同时影响蚜虫和粉虱。通过对用于作图过程的 RIL 进行一次互交,构建了具有不同等位基因组成的影响棉蚜的 QTL 的原始群体。这些群体之间的遗传背景表现出均匀性,这使得 QTL 的验证和研究 QTL 等位基因组合的影响成为可能。QTL 的影响比预期的要强,并且一些 QTL 的谱比预期的要宽。这种验证策略似乎快速且低成本。

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