生物
丁香假单胞菌
遗传学
拉图卡
霜霉病
等位基因
基因
毒力
过敏反应
混合的
不育
植物抗病性
植物
作者
Marieke J. W. Jeuken,Ningwen W. Zhang,Leah K. McHale,K.T.B. Pelgrom,Erik Böer,Pim Lindhout,Richard W. Michelmore,Richard G. F. Visser,Rients E. Niks
出处
期刊:The Plant Cell
[Oxford University Press]
日期:2009-10-01
卷期号:21 (10): 3368-3378
被引量:152
标识
DOI:10.1105/tpc.109.070334
摘要
Abstract Some inter- and intraspecific crosses may result in reduced viability or sterility in the offspring, often due to genetic incompatibilities resulting from interactions between two or more loci. Hybrid necrosis is a postzygotic genetic incompatibility that is phenotypically manifested as necrotic lesions on the plant. We observed hybrid necrosis in interspecific lettuce (Lactuca sativa and Lactuca saligna) hybrids that correlated with resistance to downy mildew. Segregation analysis revealed a specific allelic combination at two interacting loci to be responsible. The allelic interaction had two consequences: (1) a quantitative temperature-dependent autoimmunity reaction leading to necrotic lesions, lethality, and quantitative resistance to an otherwise virulent race of Bremia lactucae; and (2) a qualitative temperature-independent race-specific resistance to an avirulent race of B. lactucae. We demonstrated by transient expression and silencing experiments that one of the two interacting genes was Rin4. In Arabidopsis thaliana, RIN4 is known to interact with multiple R gene products, and their interactions result in hypersensitive resistance to Pseudomonas syringae. Site-directed mutation studies on the necrosis-eliciting allele of Rin4 in lettuce showed that three residues were critical for hybrid necrosis.
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