LSU network hubs integrate abiotic and biotic stress responses via interaction with the superoxide dismutase FSD2

非生物成分 生物 非生物胁迫 生物逆境 超氧化物歧化酶 毒力 效应器 活性氧 拟南芥 细胞生物学 茉莉酸 微生物学 生物化学 氧化应激 生态学 基因 突变体
作者
Antoni Garcia‐Molina,Melina Altmann,Angela Alkofer,Petra Epple,Jeffery L. Dangl,Pascal Braun
出处
期刊:Journal of Experimental Botany [Oxford University Press]
卷期号:68 (5): 1185-1197 被引量:41
标识
DOI:10.1093/jxb/erw498
摘要

In natural environments, plants often experience different stresses simultaneously, and adverse abiotic conditions can weaken the plant immune system. Interactome mapping revealed that the LOW SULPHUR UPREGULATED (LSU) proteins are hubs in an Arabidopsis protein interaction network that are targeted by virulence effectors from evolutionarily diverse pathogens. Here we show that LSU proteins are up-regulated in several abiotic and biotic stress conditions, such as nutrient depletion or salt stress, by both transcriptional and post-translational mechanisms. Interference with LSU expression prevents chloroplastic reactive oxygen species (ROS) production and proper stomatal closure during sulphur stress. We demonstrate that LSU1 interacts with the chloroplastic superoxide dismutase FSD2 and stimulates its enzymatic activity in vivo and in vitro. Pseudomonas syringae virulence effectors interfere with this interaction and preclude re-localization of LSU1 to chloroplasts. We demonstrate that reduced LSU levels cause a moderately enhanced disease susceptibility in plants exposed to abiotic stresses such as nutrient deficiency, high salinity, or heavy metal toxicity, whereas LSU1 overexpression confers significant disease resistance in several of these conditions. Our data suggest that the network hub LSU1 plays an important role in co-ordinating plant immune responses across a spectrum of abiotic stress conditions.

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