Virus infection induces resistance to Pseudomonas syringae and to drought in both compatible and incompatible bacteria–host interactions, which are compromised under conditions of elevated temperature and CO2 levels

病理系统 生物 丁香假单胞菌 烟草 毒力 病毒 马铃薯X病毒 病毒学 微生物学 茉莉酸 寄主(生物学) 细菌 非生物成分 植物病毒 病菌 水杨酸 基因 遗传学 古生物学
作者
Emmanuel Aguilar,Francisco J. del Toro,David Figueira-Galán,Weina Hou,Tomas Canto,Francisco Tenllado
出处
期刊:Journal of General Virology [Microbiology Society]
卷期号:101 (1): 122-135 被引量:7
标识
DOI:10.1099/jgv.0.001353
摘要

Plants are simultaneously exposed to a variety of biotic and abiotic stresses, such as infections by viruses and bacteria, or drought. This study aimed to improve our understanding of interactions between viral and bacterial pathogens and the environment in the incompatible host Nicotiana benthamiana and the susceptible host Arabidopsis thaliana, and the contribution of viral virulence proteins to these responses. Infection by the P otato virus X (PVX)/P lum pox virus (PPV) pathosystem induced resistance to Pseudomonas syringae (Pst) and to drought in both compatible and incompatible bacteria–host interactions, once a threshold level of defence responses was triggered by the virulence proteins P25 of PVX and the helper component proteinase of PPV. Virus-induced resistance to Pst was compromised in salicylic acid and jasmonic acid signalling-deficient Arabidopsis but not in N. benthamiana lines. Elevated temperature and CO2 levels, parameters associated with climate change, negatively affected resistance to Pst and to drought induced by virus infection, and this correlated with diminished H2O2 production, decreased expression of defence genes and a drop in virus titres. Thus, diminished virulence should be considered as a potential factor limiting the outcome of beneficial trade-offs in the response of virus-infected plants to drought or bacterial pathogens under a climate change scenario.

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