首页> 美国卫生研究院文献>Journal of Experimental Botany >Additive effects of two quantitative trait loci that confer Rhopalosiphum maidis (corn leaf aphid) resistance in maize inbred line Mo17
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Additive effects of two quantitative trait loci that confer Rhopalosiphum maidis (corn leaf aphid) resistance in maize inbred line Mo17

机译:赋予玉米自交系Mo17玉米红蚜抗性的两个数量性状基因座的加性效应

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摘要

Plants show considerable within-species variation in their resistance to insect herbivores. In the case of Zea mays (cultivated maize), Rhopalosiphum maidis (corn leaf aphids) produce approximately twenty times more progeny on inbred line B73 than on inbred line Mo17. Genetic mapping of this difference in maize aphid resistance identified quantitative trait loci (QTL) on chromosomes 4 and 6, with the Mo17 allele reducing aphid reproduction in each case. The chromosome 4 QTL mapping interval includes several genes involved in the biosynthesis of DIMBOA (2,4-dihydroxy-7-methoxy-1,4-benzoxazin-3-one), a maize defensive metabolite that also is required for callose accumulation in response to aphid feeding. Consistent with the known association of callose with plant defence against aphids, R. maidis reproduction on B73×Mo17 recombinant inbred lines was negatively correlated with both DIMBOA content and callose formation. Further genetic mapping, as well as experiments with near-isogenic lines, confirmed that the Mo17 allele causes increased DIMBOA accumulation relative to the B73 allele. The chromosome 6 aphid resistance QTL functions independently of DIMBOA accumulation and has an effect that is additive to that of the chromosome 4 QTL. Thus, at least two separate defence mechanisms account for the higher level of R. maidis resistance in Mo17 compared with B73.
机译:植物对昆虫食草动物的抗性表现出明显的种内差异。在玉米(栽培玉米)的情况下,自交系B73产生的后代玉米(Rhoopalosiphum maidis)后代的产量比自交系Mo17高约二十倍。玉米蚜虫抗性差异的遗传图谱鉴定了4号和6号染色体上的数量性状基因座(QTL),而Mo17等位基因在每种情况下均降低了蚜虫繁殖。 4号染色体QTL定位区间包括几个与DIMBOA(2,4-dihydroxy-7-methoxy-1,4-benzoxazin-3-one)生物合成有关的基因,玉米防御代谢产物也是call质积累响应所必需的喂蚜虫。与已知的of质与植物对蚜虫的防御相关联,B73×Mo17重组自交系上的R. maidis繁殖与DIMBOA含量和call质形成均呈负相关。进一步的遗传作图以及近等基因系的实验证实,相对于B73等位基因,Mo17等位基因引起DIMBOA积累增加。 6号染色体蚜虫抗性QTL的功能独立于DIMBOA的积累,并具有与4号染色体QTL相加的作用。因此,与B73相比,Mo17中至少两个单独的防御机制导致了更高的R. maidis抵抗力。

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