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小麦-外源物种衍生物对小麦黄斑病和颖枯病的抗性

Resistance to Tan Spot and Stagonospora nodorum Blotch in Wheat-Alien Species Derivatives.

作者信息

Oliver R E, Cai X, Wang R-C, Xu S S, Friesen T L

机构信息

Department of Plant Sciences, North Dakota State University, Fargo 58105.

United States Department of Agriculture-Agricultural Research Service (USDA-ARS), Forage and Range Research Laboratory, Logan, UT 84322.

出版信息

Plant Dis. 2008 Jan;92(1):150-157. doi: 10.1094/PDIS-92-1-0150.

Abstract

Tan spot (caused by Pyrenophora tritici-repentis) and Stagonospora nodorum blotch (SNB) (caused by Stagonospora nodorum) are destructive fungal diseases of wheat (Triticum aestivum) throughout the world. Host plant resistance is thought to be an efficient and economical method of control. The objective of the present study was to identify novel sources of tan spot and SNB resistance in wheat genotypes derived from the crosses between wheat and alien species. Evaluations were conducted at the seedling stage in a growth chamber with 100% relative humidity. For each genotype, three replications were used for each disease. Among the 199 wheat-alien species derivatives evaluated, 65 exhibited resistance to tan spot and 30 showed resistance to SNB similar to BR34, a Brazilian wheat line used as the resistant control. Eleven derivatives were resistant to both diseases. Reactions of the derivatives and their respective wheat parents to tan spot and SNB suggest that resistance genes in the derivatives are derived from alien species. These derivatives can serve as desirable bridges for introgression of resistance genes from alien species to cultivated wheat, and could contribute novel and effective tan spot and SNB resistance to wheat breeding.

摘要

条斑病(由小麦黄斑叶枯病菌引起)和小麦颖枯病(由颖枯壳针孢引起)是全球范围内对小麦(普通小麦)具有毁灭性的真菌病害。寄主植物抗性被认为是一种有效且经济的防治方法。本研究的目的是在小麦与外来物种杂交产生的小麦基因型中鉴定条斑病和小麦颖枯病抗性的新来源。在相对湿度为100%的生长室中于幼苗期进行评估。对于每种基因型,每种病害使用三个重复。在评估的199个小麦-外来物种衍生物中,65个对条斑病表现出抗性,30个对小麦颖枯病表现出抗性,类似于用作抗性对照的巴西小麦品种BR34。11个衍生物对两种病害均具有抗性。这些衍生物及其各自的小麦亲本对条斑病和小麦颖枯病的反应表明,衍生物中的抗性基因源自外来物种。这些衍生物可作为将外来物种的抗性基因导入栽培小麦的理想桥梁,并可为小麦育种贡献新的、有效的条斑病和小麦颖枯病抗性。

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