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首页> 外文期刊>Genetics and molecular biology: publication of the Sociedade Brasileira de Genetica >New soybean (Glycine max Fabales, Fabaceae) sources of qualitative genetic resistance to Asian soybean rust caused by Phakopsora pachyrhizi (Uredinales, Phakopsoraceae)
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New soybean (Glycine max Fabales, Fabaceae) sources of qualitative genetic resistance to Asian soybean rust caused by Phakopsora pachyrhizi (Uredinales, Phakopsoraceae)

机译:定性遗传对菜豆(Phakopsora pachyrhizi)(Uredinales,Phakopsoraceae)引起的亚洲大豆锈病的定性遗传抗性的新大豆(Glycine max Fabales,豆科)

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摘要

Asian soybean rust (ASR), caused by the phytopathogenic fungi Phakopsora pachyrhizi, has caused large reductions in soybean (Glycine max) yield in most locations in Brazil where it has occurred since it was first reported in May 2001. Primary efforts to combat the disease involve the development of resistant cultivars, and four dominant major genes (Rpp1, Rpp2, Rpp3 and Rpp4) controlling resistance to ASR have been reported in the literature. To develop new long-lasting soybean ASR resistance genes, we used field experiments to assess ASR leaf lesion type in 11 soybean genotypes (BR01-18437, BRS 184, BRS 231, BRS 232, BRSGO Chapad?es, DM 339, Embrapa 48, PI 200487, PI 230970, PI 459025-A and PI 200526) and the 55 F_2 generations derived from their biparental diallel crosses. The results indicated that PI 200487 and PI 200526 carry different dominant resistance major genes which are both different from Rpp2 through Rpp4. Furthermore, resistance to ASR in BR01-18437 is controlled by a single recessive major gene, also different from Rpp1 through Rpp4 and different from the genes in PI 200487 and PI 200526.
机译:自植物病原真菌Phakopsora pachyrhizi引起的亚洲大豆锈病(ASR),已导致巴西大多数地区的大豆单产下降,自2001年5月首次报道以来,大豆单产一直在下降。抗击该病的主要努力涉及抗性品种的发展,并且文献中已经报道了控制ASR抗性的四个主要主要基因(Rpp1,Rpp2,Rpp3和Rpp4)。为了开发新的持久性大豆ASR抗性基因,我们使用田间实验评估了11种大豆基因型(BR01-18437,BRS 184,BRS 231,BRS 232,BRSGO Chapad?es,DM 339,Emrapa 48, PI 200487,PI 230970,PI 459025-A和PI 200526)以及由其双亲二叉杂种杂交衍生的55 F_2代。结果表明,PI 200487和PI 200526携带不同的显性抗性主要基因,两者均与Rpp2至Rpp4不同。此外,BR01-18437对ASR的抗性由单个隐性主要基因控制,该基因也不同于Rpp1至Rpp4,也不同于PI 200487和PI 200526中的基因。

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