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首页> 外文期刊>Journal of Economic Entomology >Identification of novel sources of host plant resistance to known soybean aphid biotypes
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Identification of novel sources of host plant resistance to known soybean aphid biotypes

机译:确定寄主植物对已知大豆蚜虫生物型抗性的新来源

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While soybean cultivars with resistance to the soybean aphid (Aphis glycines Matsumura) have been commercially released, the presence of virulent biotypes capable of overcoming plant resistance threatens the durability of host plant resistance as a stable management tactic. Novel sources of host plant resistance are needed to combat rapid biotype evolution. In this study, we screened 1,061 soybean plant introductions (PIs) for resistance to three known biotypes of A. glycines. Based on a series of growth chamber and field screenings, we identified 11 PIs that showed resistance to biotype 1 of A. glycines. Among these 11 PIs, 7 PIs were resistant to biotype 2 and 5 PIs were resistant to biotype 3. Further, two PIs (PI 606390A from Vietnam and PI 340034 from South Korea) showed resistance to all three biotypes of A. glycines. We also identified 11 PIs that were potentially tolerant to A. glycines, illustrated by no adverse impact on plant quality because of A. glycines infestation. As resistant PIs identified in this study belong to maturity group II-IV, they can be readily crossed to early maturing cultivars adapted to north-central states of the United States, where A. glycines is a major pest. The genetic characterization of resistance in these PIs and incorporation of novel resistant genes into elite soybean cultivars will broaden the defense against multiple biotypes of A. glycines.
机译:虽然已经对大豆蚜虫(Aphis glycines Matsumura)具有抗性的大豆品种已经商业化发布,但是作为一种稳定的管理策略,能够克服植物抗性的有毒生物型的存在威胁到宿主植物抗性的持久性。需要宿主植物抗性的新来源来对抗快速的生物型进化。在这项研究中,我们筛选了1,061株大豆植株(PIs)对三种已知生物型A.甘氨酸的抗性。基于一系列的生长室和现场筛选,我们确定了11个对A.甘氨酸生物型1表现出抗性的PI。在这11个PI中,有7个PI对生物型2具有抗性,而5个PI对生物型3具有抗性。此外,两个PI(越南的PI 606390A和韩国的PI 340034)对A.甘氨酸的所有三种生物型均具有抗性。我们还确定了11种可能耐受A.甘氨酸的PI,这可以通过对A.甘氨酸的侵染对植物质量没有不利影响来说明。由于在这项研究中鉴定出的抗性PI属于成熟组II-IV,因此它们可以很容易地与适应美国中北部州的早期成熟品种杂交,其中甘氨酸曲霉是主要害虫。这些PI中抗性的遗传特征以及将新的抗性基因整合到优良大豆品种中将扩大对多种生物型甘氨酸曲霉的防御能力。

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