首页> 外文期刊>Theoretical and Applied Genetics: International Journal of Breeding Research and Cell Genetics >Influence of day-length and isolates of Phytophthora infestans on field resistance to late blight of potato
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Influence of day-length and isolates of Phytophthora infestans on field resistance to late blight of potato

机译:马铃薯疫霉菌日长和分离株对田间抗晚疫病的影响

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摘要

Main and interaction effects of day-length and pathogen isolate on the reaction and expression of field resistance to Phytophthora infestans were analyzed in a sample of standard clones for partial resistance to potato late blight, and in the BCT mapping population derived from a backcross of Solanum berthaultii to Solanum tuberosum. Detached leaves from plants grown in field plots exposed to short- and long day-length conditions were independently inoculated with two P. infestans isolates and incubated in chambers under short- and long photoperiods, respectively. Lesion growth rate (LGR) was used for resistance assessment. Analysis of variance revealed a significant contribution of genotype c isolate c day-length interaction to variation in LGR indicating that field resistance of genotypes to foliar late blight under a given day-length depended on the infecting isolate. An allele segregating from S. berthaultii with opposite effects on foliar resistance to late blight under long- and short day-lengths, respectively, was identified at a quantitative trait locus (QTL) that mapped on chromosome 1. This allele was associated with positive (decreased resistance) and negative (increased resistance) additive effects on LGR, under short- and long day-length conditions, respectively. Disease progress on whole plants inoculated with the same isolate under field conditions validated the direction of its effect in short day-length regimes. The present study suggests the occurrence of an isolate-specific QTL that displays interaction with isolate behavior under contrasting environments, such as those with different day-lengths. This study highlights the importance of exposing genotypes to a highly variable population of the pathogen under contrasting environments when stability to late blight resistance is to be assessed or marker-assisted selection is attempted for the manipulation of quantitative resistance to late blight.
机译:在对马铃薯晚疫病有部分抗性的标准克隆样品中以及从茄属回交产生的BCT作图种群中,分析了整日和病原体分离株对疫霉菌感染的反应和田间抗性表达的主要和相互作用影响berthaultii到马铃薯。将暴露于短日和长日间条件下的田间田地中生长的植物的离体叶片分别接种两种致病疫霉菌,并分别在短期和长期光周期下于培养箱中孵育。病变生长率(LGR)用于抵抗力评估。方差分析显示,基因型c分离株c日间相互作用对LGR的变化具有重要作用,表明在给定的日长下基因型对叶晚疫病的田间抗性取决于感染株。分别在长短日间和短日长上从berthaultii分离的等位基因分别对叶对晚疫病的抗性具有相反的作用,该位点位于1号染色体上的一个定量性状位点(QTL)。该等位基因与阳性(分别在短期和长期日照条件下对LGR的负电阻(负电阻降低)和负电阻(电阻增加)的加性效应。在田间条件下,用同一分离株接种的整株植物的病害进展证实了其在短日照期间的作用方向。本研究表明,在不同环境下(如日长不同),分离株特异性QTL的出现与分离株行为具有相互作用。这项研究突显了在评估环境对晚疫病抗性的稳定性或尝试使用标记物辅助选择来操纵对晚疫病的定量抗性时,在对比环境下将基因型暴露于病原体高度可变的种群的重要性。

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