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Unlinked genetic loci control the reduced transcription of aminopeptidase N 1 and 3 in the European corn borer and determine tolerance to Bacillus thuringiensis Cry1Ab toxin

机译:无关联的遗传基因座控制欧洲玉米bore中氨基肽酶N 1和3的转录减少,并确定对苏云金芽孢杆菌Cry1Ab毒素的耐受性

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摘要

Transgenic expression of Bacillus thuringiensis (Bt) crystalline (Cry) toxins by crop plants result in reduced insect feeding damage, but sustainability is threatened by the development of resistance traits in target insect populations. We investigated Bt toxin resistance trait in a laboratory colony of the European corn borer, Ostrinia nubilalis, selected for increased survival when exposed to Cry1Ab and correlated survival on Cry1Ab toxin with a constitutive ∼146.2 ± 17.3-fold reduction in midgut aminopeptidase N1 (apn1) transcript levels. A 7.1 ± 1.9-fold reduction apn3 transcript level was also correlated with Cry1Ab resistance. Quantitative trait locus (QTL) mapping identified a single major genome region controlling Cry1Ab resistance on linkage group 24 (LG24), and a minor QTL on LG27. Both QTL were independent of apn1 and apn3 loci on LG02. Positional mapping identified genetic markers that may assist in the identification of causal gene(s) within QTL intervals. This study indicates that genetic factor(s) may act in trans to reduce both apn1 andapn3 expression in Cry1Ab resistant O. nubilalis larvae, and suggest that gene regulatory pathways can influence Bt resistance traits. These findings show that gene interactions (epistasis) may influence Bt resistance in target insect populations.
机译:农作物对苏云金芽孢杆菌(Bt)晶体(Cry)毒素的转基因表达可减少昆虫的摄食损害,但可持续性受到目标昆虫种群抗性性状的威胁。我们在欧洲玉米bore的实验室菌落中研究了Bt毒素抗性特征,选择暴露于Cry1Ab时可提高存活率,并将Cry1Ab毒素的存活率与中肠氨肽酶N1(apn1)降低约146.2±17.3倍相关成绩单水平。 apn3转录水平降低7.1±1.9倍也与Cry1Ab抗性相关。数量性状基因座(QTL)定位图确定了一个主要的基因组区域,该区域控制连锁24(LG24)上的Cry1Ab抗性,而一个较小的QTL在LG27上。两个QTL均独立于LG02上的apn1和apn3基因座。位置作图鉴定了遗传标记,这些遗传标记可能有助于鉴定QTL间隔内的因果基因。这项研究表明,遗传因素可以反式降低Cry1Ab耐性链球菌幼虫中apn1和apn3的表达,并暗示基因调控途径可影响Bt抗性性状。这些发现表明,基因相互作用(epistasis)可能会影响目标昆虫种群中的Bt抗性。

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