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PMID: 23301854 已发表 · ppublish 英语

Gene-for-gene relationship in the host-pathogen system Malus × robusta 5-Erwinia amylovora.

The New phytologist ·第 197 卷 ·第 4 期 ·2013-07-19

Vogt Isabelle, Wöhner Thomas, Richter Klaus, Flachowsky Henryk, Sundin George W, Wensing Annette, Savory Elizabeth A, Geider Klaus, Day Brad, Hanke Magda-Viola, Peil Andreas

摘要

Fire blight is a destructive bacterial disease caused by Erwinia amylovora affecting plants in the family Rosaceae, including apple. Host resistance to fire blight is present mainly in accessions of Malus spp. and is thought to be quantitative in this pathosystem. In this study we analyzed the importance of the E. amylovora effector avrRpt2(EA) , a homolog of Pseudomonas syringae avrRpt2, for resistance of Malus × robusta 5 (Mr5). The deletion mutant E. amylovora Ea1189ΔavrRpt2(EA) was able to overcome the fire blight resistance of Mr5. One single nucleotide polymorphism (SNP), resulting in an exchange of cysteine to serine in the encoded protein, was detected in avrRpt2(EA) of several Erwinia strains differing in virulence to Mr5. E. amylovora strains encoding serine (S-allele) were able to overcome resistance of Mr5, whereas strains encoding cysteine (C-allele) were not. Allele specificity was also observed in a coexpression assay with Arabidopsis thaliana RIN4 in Nicotiana benthamiana. A homolog of RIN4 has been detected and isolated in Mr5. These results suggest a system similar to the interaction of RPS2 from A. thaliana and AvrRpt2 from P. syringae with RIN4 as guard. Our data are suggestive of a gene-for-gene relationship for the host-pathogen system Mr5 and E. amylovora.

文献信息
期刊
The New phytologist
期刊简称
New Phytol
发表日期
2013-07-19
收录日期
2013-02-04
更新日期
2013-02-04
语言
英语
国家/地区
England
NLM ID
9882884
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