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Identification of a Second Asian Soybean Rust Resistance Gene in Hyuuga Soybean

机译:静态大豆第二亚洲大豆铁锈基因的鉴定

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摘要

Asian soybean rust (ASR) is an economically significant disease caused by the fungus Phakopsora pachyrhizi. The soybean genes Rpp3 and Rpp?(Hyuuga) confer resistance to specific isolates of the pathogen. Both genes map to chromosome 6 (Gm06) (linkage group [LG] C2). We recently identified 12 additional soybean accessions that harbor ASR resistance mapping to Gm06, within 5 centimorgans of Rpp3 and Rpp?(Hyuuga). To further characterize genotypes with resistance on Gm06, we used a set of eight P. pachyrhizi isolates collected from geographically diverse areas to inoculate plants and evaluate them for differential phenotypic responses. Three isolates elicited different responses from soybean accessions PI 462312 (Ankur) (Rpp3) and PI 506764 (Hyuuga) (Rpp?[Hyuuga]). In all, 11 of the new accessions yielded responses identical to either PI 462312 or Hyuuga and 1 of the new accessions, PI 417089B (Kuro daizu), differed from all others. Additional screening of Hyuuga-derived recombinant inbred lines indicated that Hyuuga carries two resistance genes, one at the Rpp3 locus on Gm06 and a second, unlinked ASR resistance gene mapping to Gm03 (LG-N) near Rpp5. These findings reveal a natural case of gene pyramiding for ASR resistance in Hyuuga and underscore the importance of utilizing multiple isolates of P. pachyrhizi when screening for ASR resistance.
机译:亚洲大豆锈病(ASR)是由真菌引起的豆薯层锈菌的经济显著疾病。大豆基因RPP3和病原体的特定菌株RPP?(Hyuuga)赋予抗性。这两个基因映射到6号染色体(Gm06)(连接基团[LG] C2)。我们最近发现RPP3和RPP?(Hyuuga)的5厘摩内增加12个大豆种质窝藏ASR性映射Gm06。为了与Gm06性进一步确定基因型,我们用一组来自不同地区的地区采集接种植物8个豆薯层锈菌菌株,并评估他们差的表型反应。三个菌株引起从大豆种质PI 462312(ANKUR)(RPP3)和PI 506764(Hyuuga)不同的响应(RPP?[Hyuuga])。总之,新加入的11产生相同的反应要么PI 462312或Hyuuga和新加入的1,PI 417089B(九郎傣族),来自所有其他不同。的Hyuuga来源的重组自交系额外筛选表明Hyuuga携带两个抗性基因,一个在上Gm06和第二,未连接的ASR抗性基因映射到GM03(LG-N)Rpp5靠近RPP3轨迹。这些发现揭示基因聚合在Hyuuga ASR性和下划线筛选ASR抗性时利用P.锈菌的多个分离的重要性的自然情况。

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