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鉴定和遗传特征分析表现出抗生性和抗生性的大豆品种对豆蚜(半翅目:蚜科)的抗性。

Identification and Genetic Characterization of Soybean Accessions Exhibiting Antibiosis and Antixenosis Resistance to Aphis glycines (Hemiptera: Aphididae).

机构信息

Roy J. Carver Department of Biochemistry, Biophysics and Molecular Biology, Iowa State University, Ames, IA.

Department of Agronomy, Iowa State University, Ames, IA.

出版信息

J Econ Entomol. 2019 May 22;112(3):1428-1438. doi: 10.1093/jee/toz017.

Abstract

Cultivation of aphid-resistant soybean varieties can reduce yield losses caused by soybean aphids. However, discovery of aphid biotypes that are virulent on resistant soybean greatly threatens sustained utilization of host plant resistance to control soybean aphids. The objective of this study was to identify and genetically characterize aphid resistant soybean accessions in a diverse collection of 308 plant introductions in maturity groups (MG) I and II. In large-scale screening experiments conducted in the greenhouse, we identified 12 soybean accessions (10 aphid-resistant and 2 moderately resistant), including nine previously not reported for resistance against soybean aphids. Three accessions (PI 578374, PI 612759C, and PI 603546A) and the Rag3 resistant check (PI 567543C) were susceptible when infested with a high initial aphid level but resistant when infested with a low initial aphid level, a phenomenon termed as density-dependent aphid resistance. Six accessions (PI 054854, PI 378663, PI 578374, PI 612759C, PI 540739, and PI 603546A) conferred antibiosis, five (PI 438031, PI 603337A, PI 612711B, PI 437950, and PI 096162) conferred both antibiosis and antixenosis, while one (PI 417513B) had neither when tested in no-choice and pairwise choice experiments. Molecular genotyping of the 12 accessions using single-nucleotide polymorphism (SNP) markers linked to known aphid resistance (Rag) genes revealed that PI 578374 and PI 540739 did not have any tested marker variants and could potentially carry unreported Rag genes. Genome-wide association analyses for MG I accessions identified genomic regions associated with aphid resistance on chromosomes 10 and 12 for each level of initial aphid colonization.

摘要

培育抗蚜虫大豆品种可以减少大豆蚜虫造成的产量损失。然而,发现对抗性大豆具有毒力的蚜虫生物型极大地威胁了利用寄主植物抗性持续控制大豆蚜虫。本研究的目的是鉴定和遗传表征在成熟组(MG)I 和 II 的 308 个植物引种中多样化的抗蚜虫大豆引种。在温室中进行的大规模筛选实验中,我们鉴定出 12 个大豆引种(10 个抗蚜虫和 2 个中度抗蚜虫),其中包括 9 个以前未报道过抗大豆蚜虫的引种。当用高初始蚜虫水平感染时,3 个引种(PI 578374、PI 612759C 和 PI 603546A)和 Rag3 抗性对照(PI 567543C)易感,但当用低初始蚜虫水平感染时,它们是抗性的,这种现象称为密度依赖性蚜虫抗性。当在非选择和成对选择实验中进行测试时,6 个引种(PI 054854、PI 378663、PI 578374、PI 612759C、PI 540739 和 PI 603546A)赋予了抗生性,5 个引种(PI 438031、PI 603337A、PI 437950、PI 096162 和 PI 612711B)赋予了抗生性和抗生性,而 1 个引种(PI 417513B)既没有抗生性也没有抗生性。使用与已知抗蚜虫(Rag)基因相关的单核苷酸多态性(SNP)标记对 12 个引种进行分子基因分型表明,PI 578374 和 PI 540739 没有任何测试的标记变体,可能携带未报道的 Rag 基因。对 MG I 引种的全基因组关联分析确定了与每个初始蚜虫定殖水平相关的染色体 10 和 12 上的抗蚜虫基因组区域。

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