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首页> 外文期刊>TAG Theoretical and Applied Genetics >Use of selection with recurrent backcrossing and QTL mapping to identify loci contributing to southern leaf blight resistance in a highly resistant maize line
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Use of selection with recurrent backcrossing and QTL mapping to identify loci contributing to southern leaf blight resistance in a highly resistant maize line

机译:使用选择与循环回交和QTL作图来鉴定有助于高抗性玉米品系抗南方叶枯病的基因座

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摘要

B73 is a historically important maize line with excellent yield potential but high susceptibility to the foliar disease southern leaf blight (SLB). NC292 and NC330 are B73 near-isogenic lines (NILs) that are highly resistant to SLB. They were derived by repeated backcrossing of an elite source of SLB resistance (NC250P) to B73, with selection for SLB resistance among and within backcross families. The goal of this paper was to characterize the loci responsible for the increased SLB resistance of NC292 and NC330 and to determine how many of the SLB disease resistance quantitative trait loci (dQTL) were selected for in the development of NC292 and NC330. Genomic regions that differentiated NC292 and NC330 from B73 and which may contribute to NC292 and NC330s enhanced SLB resistance were identified. Ten NC250P-derived introgressions were identified in both the NC292 and NC330 genomes of which eight were shared between genomes. dQTL were mapped in two F2:3 populations derived from lines very closely related to the original parents of NC292 and NC330—(B73rhm1 × NC250A and NC250A × B73). Nine SLB dQTL were mapped in the combined populations using combined SLB disease data over all locations (SLB AllLocs). Of these, four dQTL precisely colocalized with NC250P introgressions in bins 2.05–2.06, 3.03, 6.01, and 9.02 and three were identified near NC250P introgressions in bins 1.09, 5.05–5.06, and 10.03. Therefore the breeding program used to develop NC292 and NC330 was highly effective in selecting for multiple SLB resistance alleles.
机译:B73是历史上重要的玉米品系,具有极好的单产潜力,但对叶面病南方叶枯病(SLB)的敏感性很高。 NC292和NC330是高度抗SLB的B73近等基因系(NIL)。它们是通过将优良的SLB抗性来源(NC250P)与B73反复回交而得到的,并选择了回交家族之间和之内的SLB抗性。本文的目的是鉴定导致NC292和NC330的SLB抗性增加的基因座,并确定在NC292和NC330的开发中选择了多少SLB疾病抗性定量性状基因座(dQTL)。确定了基因组区域,该区域可将NC292和NC330与B73区别开来,并可能有助于NC292和NC330s增强SLB抗性。在NC292和NC330基因组中鉴定出10个源自NC250P的基因渗入,其中8个在基因组之间共享。将dQTL定位在两个F 2:3 种群中,这些种群的来源与与NC292和NC330的原始亲本密切相关的品系(B73rhm1×NC250A和NC250A×B73)。使用组合的SLB疾病数据在所有位置(SLB AllLocs)在组合的人群中绘制了9个SLB dQTL。其中,有四个dQTL与2.05–2.06、3.03、6.01和9.02箱中的NC250P渗入物精确共定位,而其中三个dQTL在1.09、5.05-5.06和10.03中的NC250P渗入物附近被确定。因此,用于开发NC292和NC330的育种程序在选择多个SLB抗性等位基因方面非常有效。

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