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调控玉米对玉米球腔菌引起的玉米球腔菌叶斑病抗性的数量性状位点

Quantitative Trait Loci Conditioning Resistance to Phaeosphaeria Leaf Spot of Maize Caused by Phaeosphaeria maydis.

作者信息

Carson M L, Stuber C W, Senior M L

机构信息

USDA-ARS, Cereal Disease Laboratory, St. Paul, MN 55108.

USDA-ARS, Plant Science Research Unit, Raleigh, NC 27695.

出版信息

Plant Dis. 2005 Jun;89(6):571-574. doi: 10.1094/PD-89-0571.

Abstract

Phaeosphaeria leaf spot (PLS) is a potentially important disease of maize (Zea mays) that has appeared in winter breeding nurseries in southern Florida. Inbred lines related to B73 are particularly susceptible to Phaeosphaeria leaf spot, whereas inbreds related to Mo17 are highly resistant. A previous study of the inheritance of resistance to Phaeosphaeria leaf spot in the cross B73 × Mo17 found that resistance is highly heritable and controlled by mostly additive gene action at three or four loci. In this study, we used 158 recombinant inbred (RI) lines derived from the cross B73 × Mo17 to map quantitative trait loci (QTL) governing resistance. The RI lines along with the parent inbred lines and the F were evaluated for PLS resistance in replicated trials over two winter growing seasons in southern Florida. Using the composite interval mapping (CIM) function of PLABQTL software, five QTL on four different chromosomes were found to control PLS resistance in Mo17. In addition, the × additive interaction between two of these QTL was found to be significant. Our results are in close agreement with the previous study, where generation mean analysis was used to study the inheritance of resistance to PLS.

摘要

球腔菌叶斑病(PLS)是玉米(Zea mays)一种潜在的重要病害,已出现在佛罗里达州南部的冬季育种苗圃中。与B73相关的自交系对球腔菌叶斑病特别敏感,而与Mo17相关的自交系则高度抗病。之前一项关于B73×Mo17杂交组合中对球腔菌叶斑病抗性遗传的研究发现,抗性具有高度遗传性,且在三到四个位点主要受加性基因作用控制。在本研究中,我们利用从B73×Mo17杂交组合衍生而来的158个重组自交(RI)系来定位控制抗性的数量性状位点(QTL)。在佛罗里达州南部两个冬季生长季节的重复试验中,对RI系以及亲本自交系和F进行了PLS抗性评估。利用PLABQTL软件的复合区间作图(CIM)功能,发现在四条不同染色体上的五个QTL控制着Mo17中的PLS抗性。此外,还发现其中两个QTL之间的×加性互作显著。我们的结果与之前的研究密切一致,之前的研究使用世代均值分析来研究对PLS抗性的遗传。

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