首页> 美国卫生研究院文献>Breeding Science >Fine mapping of foxglove aphid (Aulacorthum solani) resistance gene Raso1 in soybean and its effect on tolerance to Soybean dwarf virus transmitted by foxglove aphid
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Fine mapping of foxglove aphid (Aulacorthum solani) resistance gene Raso1 in soybean and its effect on tolerance to Soybean dwarf virus transmitted by foxglove aphid

机译:大豆毛地黄蚜抗性基因Raso1的精细定位及其对毛地黄蚜传播的大豆矮化病毒耐性的影响

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摘要

Soybean dwarf virus (SbDV) causes serious dwarfing, yellowing and sterility in soybean (Glycine max). The soybean cv. Adams is tolerant to SbDV infection in the field and exhibits antibiosis to foxglove aphid (Aulacorthum solani), which transmits SbDV. This antibiosis (termed “aphid resistance”) is required for tolerance to SbDV in the field in segregated progenies of Adams. A major quantitative trait locus, Raso1, is reported for foxglove aphid resistance. Our objectives were to fine map Raso1 and to reveal whether Raso1 alone is sufficient to confer both aphid resistance and SbDV tolerance. We introduced Raso1 into cv. Toyomusume by backcrossing and investigated the degree of aphid antibiosis to foxglove aphid and the degree of tolerance to SbDV in the field. All Raso1-introduced backcross lines showed aphid resistance. Interestingly, only one Raso1-introduced backcross line (TM-1386) showed tolerance to SbDV in the field. The results demonstrated Raso1 alone is sufficient to confer aphid resistance but insufficient for SbDV tolerance. Tolerance to SbDV was indicated to require additional gene(s) to Raso1. Additionally, Raso1 was mapped to a 63-kb interval on chromosome 3 of the Williams 82 sequence assembly (Glyma1). This interval includes a nucleotide-binding site–leucine-rich repeat encoding gene and two other genes in the Williams 82 soybean genome sequence.
机译:大豆矮化病毒(SbDV)导致大豆(Glycine max)严重矮化,变黄和不育。大豆简历。亚当斯在野外对SbDV感染具有耐受性,并且对传播SbDV的毛地黄蚜(Aulacorthum solani)表现出抗菌作用。在亚当斯的分离后代中,这种抗生菌(称为“蚜虫抗性”)是耐受SbDV所必需的。一个主要的数量性状基因座,Raso1,被报告为毛地黄蚜的抗药性。我们的目标是对Raso1进行精细映射,并揭示Raso1是否足以赋予蚜虫抗性和SbDV耐受性。我们将Raso1引入了简历。丰寿通过回交并在田间调查了蚜虫对毛地黄蚜的抗菌程度和对SbDV的耐受程度。 Raso1引入的所有回交系均显示出抗蚜虫性。有趣的是,在野外只有一条引入Raso1的回交系(TM-1386)表现出对SbDV的耐受性。结果表明,单独的Raso1足以赋予蚜虫抗性,但不足以耐受SbDV。对SbDV的耐受性表明Raso1需要其他基因。此外,Raso1被映射到Williams 82序列程序集(Glyma1)的3号染色体上一个63kb的间隔。该间隔包括Williams 82大豆基因组序列中的核苷酸结合位点-富含亮氨酸的重复编码基因和其他两个基因。

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