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QTL mapping for Mediterranean corn borer resistance in European flint germplasm using recombinant inbred lines

机译:利用重组自交系对欧洲fl石种质中地中海玉米bore抗性的QTL定位

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Background Ostrinia nubilalis (ECB) and Sesamia nonagrioides (MCB) are two maize stem borers which cause important losses in temperate maize production, but QTL analyses for corn borer resistance were mostly restricted to ECB resistance and maize materials genetically related (mapping populations derived from B73). Therefore, the objective of this work was to identify and characterize QTLs for MCB resistance and agronomic traits in a RILs population derived from European flint inbreds. Results Three QTLs were detected for stalk tunnel length at bins 1.02, 3.05 and 8.05 which explained 7.5% of the RILs genotypic variance. The QTL at bin 3.05 was co-located to a QTL related to plant height and grain humidity and the QTL at bin 8.05 was located near a QTL related to yield. Conclusions Our results, when compared with results from other authors, suggest the presence of genes involved in cell wall biosynthesis or fortification with effects on resistance to different corn borer species and digestibility for dairy cattle. Particularly, we proposed five candidate genes related to cell wall characteristics which could explain the QTL for stalk tunnelling in the region 3.05. However, the small proportion of genotypic variance explained by the QTLs suggest that there are also many other genes of small effect regulating MCB resistance and we conclude that MAS seems not promising for this trait. Two QTLs detected for stalk tunnelling overlap with QTLs for agronomic traits, indicating the presence of pleitropism or linkage between genes affecting resistance and agronomic traits.
机译:背景玉米Ost(ECB)和芝麻(Sesamia nonagrioides(MCB))是两个玉米temper虫,它们在温带玉米生产中造成重要损失,但玉米TL抗性的QTL分析主要限于ECB抗性和与遗传相关的玉米材料(来自B73的作图群体) )。因此,这项工作的目的是鉴定和表征源自欧洲fl石近亲的RILs群体中对MCB抗性和农艺性状的QTL。结果在仓位1.02、3.05和8.05处检测到三个QTL的茎长,这解释了RILs基因型变异的7.5%。仓位3.05处的QTL与与植物高度和谷物湿度有关的QTL位于同一位置,仓位8.05处的QTL位于与产量相关的QTL附近。结论与其他作者的结果相比,我们的结果表明存在参与细胞壁生物合成或强化的基因,这些基因会影响对不同玉米bore的抵抗力和奶牛的消化率。特别地,我们提出了五个与细胞壁特征有关的候选基因,这些候选基因可以解释在3.05区域中进行茎秆隧穿的QTL。然而,由QTL解释的基因型变异的一小部分表明,还有许多其他基因对MCB耐药性的调节作用较小,因此我们得出结论,MAS对于该性状似乎没有希望。检测到的两个用于茎秆隧穿的QTL与农艺性状的QTL重叠,表明存在多效性或影响抗性和农艺性状的基因之间存在连锁。

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