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Pathogenic diversity of Phytophthora sojae and breeding strategies to develop Phytophthora-resistant soybeans

机译:大豆疫霉菌的致病性多样性和抗疫病大豆的育种策略

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摘要

Phytophthora stem and root rot, caused by Phytophthora sojae, is one of the most destructive diseases of soybean [Glycine max (L.) Merr.], and the incidence of this disease has been increasing in several soybean-producing areas around the world. This presents serious limitations for soybean production, with yield losses from 4 to 100%. The most effective method to reduce damage would be to grow Phytophthora-resistant soybean cultivars, and two types of host resistance have been described. Race-specific resistance conditioned by single dominant Rps (“resistance to Phytophthora sojae”) genes and quantitatively inherited partial resistance conferred by multiple genes could both provide protection from the pathogen. Molecular markers linked to Rps genes or quantitative trait loci (QTLs) underlying partial resistance have been identified on several molecular linkage groups corresponding to chromosomes. These markers can be used to screen for Phytophthora-resistant plants rapidly and efficiently, and to combine multiple resistance genes in the same background. This paper reviews what is currently known about pathogenic races of P. sojae in the USA and Japan, selection of sources of Rps genes or minor genes providing partial resistance, and the current state and future scope of breeding Phytophthora-resistant soybean cultivars.
机译:由大豆疫霉引起的疫霉茎和根腐病是大豆中最具破坏性的疾病之一[Glycine max(L.)Merr。],该疾病的发病率在世界上几个大豆生产地区都在增加。这给大豆生产带来了严重的局限性,产量损失了4%至100%。减少损害的最有效方法是种植抗疫霉的大豆品种,并且已经描述了两种类型的寄主抗性。由单个优势Rps(“大豆疫霉菌”的抗性)基因调节的种族特异性抗性和多个基因赋予的定量遗传的部分抗性都可以提供对病原体的保护。已在与染色体相对应的几个分子连锁基团上鉴定了与Rps基因或部分抗性的定量性状基因座(QTL)相关的分子标记。这些标记可用于快速有效地筛选抗疫霉菌的植物,并在同一背景下组合多个抗性基因。本文综述了美国和日本的大豆疫霉病原体的现状,Rps基因或提供部分抗性的次要基因的来源选择,以及抗疫霉的大豆育种的现状和未来范围。

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