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A novel locus for soybean aphid resistance

机译:大豆蚜虫抗性的新基因座

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The soybean aphid (Aphis glycines Matsumura) is an important pest on soybean [Glycine max (L.) Merr.] in North America. Aphid resistance has recently been found on plant introduction (PI) 567543C, but little is known about its genetic control. The objectives of this study were to identify the resistance genes in PI 567543C with molecular markers and validate them in a different genetic background. A mapping population of 249 F derived lines from a cross between PI 567543C and a susceptible parent was investigated for aphid resistance in both the greenhouse and the field. The broad sense heritability of aphid resistance in the field trial was over 0.95. The segregation of aphid resistance in this population suggests a major gene controlling the resistance. Bulked segregant analysis with molecular markers revealed a potential genomic region. After saturating this putative region with more markers, a genetic locus was mapped in an interval between Sat_339 and Satt414 on chromosome 16 (linkage group J) using the composite interval mapping method. This locus explained the majority of the phenotypic variation ranging from 84.7% in the field trial to 90.4% in the greenhouse trial. Therefore, the aphid resistance in PI 567543C could be mainly controlled by this gene. This aphid resistance gene was mapped on a different chromosome than the other resistance genes reported previously from other resistant germplasms. This gene appears to be additive based on the aphid resistance of the heterozygous lines at this locus. Thus, a new symbol Rag3 is used to designate this gene. Moreover, Rag3 was confirmed in a validation population. This new aphid-resistance gene could be valuable in breeding aphid resistant cultivars.
机译:大豆蚜虫(Aphis glycines Matsumura)是北美大豆上的重要害虫(Glycine max(L.)Merr。]。最近在植物引入(PI)567543C上发现了蚜虫抗性,但对其遗传控制知之甚少。这项研究的目的是使用分子标记物鉴定PI 567543C中的抗性基因,并在不同的遗传背景下对其进行验证。研究了来自PI 567543C和易感亲本之间杂交的249 F衍生系的作图种群在温室和田间的蚜虫抗性。在田间试验中,蚜虫抗性的广义遗传力超过0.95。在该种群中蚜虫抗性的分离表明控制抗性的主要基因。带有分子标记的大量分离子分析揭示了潜在的基因组区域。在用更多的标记使该推定区域饱和后,使用复合区间作图方法在16号染色体上的Sat_339与Satt414之间的一个区间(连锁群J)中定位了一个遗传基因座。该基因座解释了大多数表型变异,从田间试验的84.7%到温室试验的90.4%。因此,PI 567543C中的蚜虫抗性可能主要受该基因控制。该蚜虫抗性基因与先前从其他抗性种质中报道的其他抗性基因位于不同的染色体上。基于该基因座杂合系的蚜虫抗性,该基因似乎是可加的。因此,使用新符号Rag3来指定该基因。此外,在验证人群中证实了Rag3。这种新的抗蚜虫基因在育种抗蚜虫品种中可能有价值。

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