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Association Analysis of Stem Solidness and Wheat Stem Sawfly Resistance in a Panel of North American Spring Wheat Germplasm

机译:一组北美春季小麦种质的茎实心度与小麦茎抗锯齿性的关联分析

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摘要

The expanding geographical range of wheat stem sawfly (WSS) damage, coupled with the limited number of effective control measures, calls for a need to better characterize and explore the genetic variability for resistance in wheat (Triticum aestivum L.) germplasm from North America. An association-mapping analysis for stem solidness and wheat stem sawfly resistance was conducted using a set of 244 elite spring wheat lines from 10 North American breeding programs. Three previously identified quantitative trait loci (QTL) for resistance were confirmed, including QTL for stem solidness, heading date, and stem cutting. Three new QTL on chromosomes 2A, 3A, and 5B were identified to be associated with larval mortality and a QTL associated with early stem solidness was identified on chromosome 5D. Genetic variation for late stem solidness is mainly determined by the solid-stem QTL on chromosome 3B, while variation for early solidness is affected by chromosomal regions on 1B, 3B, and 5D. Potential sources of a novel resistance mechanism causing larval mortality were identified among the panel lines. Favorable alleles for stem solidness and other resistance traits are available within North American wheat germplasm, but only Montana and South Dakota breeding programs appear to have favorable alleles for all QTLs detected in this study. Improvements in wheat stem sawfly management, for both historically impacted areas and for regions first experiencing damage, may be obtained using alleles that already exist in elite germplasm.
机译:小麦茎锯蝇(WSS)损害的地理范围不断扩大,再加上有效控制措施的数量有限,因此需要更好地表征和探索北美小麦(Triticum aestivum L.)种质的抗性遗传变异。使用一组来自北美10个育种计划的244株优质春小麦品系,对茎的固性和小麦茎的抗性进行了关联映射分析。确认了三个先前确定的抗性数量性状基因座(QTL),包括用于茎硬度,抽穗期和切茎的QTL。染色体2A,3A和5B上的三个新QTL被鉴定为与幼虫死亡率相关,而染色体5D上已鉴定出与早期茎坚实度相关的QTL。后期茎固性的遗传变异主要由3B染色体上的固茎QTL决定,而早期茎固性的变异则受1B,3B和5D染色体区域的影响。小组中确定了引起幼虫死亡的新型耐药机制的潜在来源。在北美小麦种质中可获得有利于茎硬度和其他抗性性状的等位基因,但只有蒙大拿州和南达科他州的育种计划看来对本研究中检测到的所有QTL均具有有利的等位基因。使用历史悠久的地区和最先遭受破坏的地区,可以使用精英种质中已经存在的等位基因来改善小麦茎锯蝇的管理。

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