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GDSL脂肪酶通过水稻中的脂质稳态调节免疫。

GDSL lipases modulate immunity through lipid homeostasis in rice.

作者信息

Gao Mingjun, Yin Xin, Yang Weibing, Lam Sin Man, Tong Xiaohong, Liu Jiyun, Wang Xin, Li Qun, Shui Guanghou, He Zuhua

机构信息

National Key Laboratory of Plant Molecular Genetics, CAS Center for Excellence in Molecular Plant Sciences/Institute of Plant Physiology & Ecology, Chinese Academy of Sciences, Shanghai, China.

State Key Laboratory of Molecular Developmental Biology, Institute of Genetics and Developmental Biology, Chinese Academy of Sciences, Beijing, China.

出版信息

PLoS Pathog. 2017 Nov 13;13(11):e1006724. doi: 10.1371/journal.ppat.1006724. eCollection 2017 Nov.

Abstract

Lipids and lipid metabolites play important roles in plant-microbe interactions. Despite the extensive studies of lipases in lipid homeostasis and seed oil biosynthesis, the involvement of lipases in plant immunity remains largely unknown. In particular, GDSL esterases/lipases, characterized by the conserved GDSL motif, are a subfamily of lipolytic enzymes with broad substrate specificity. Here, we functionally identified two GDSL lipases, OsGLIP1 and OsGLIP2, in rice immune responses. Expression of OsGLIP1 and OsGLIP2 was suppressed by pathogen infection and salicylic acid (SA) treatment. OsGLIP1 was mainly expressed in leaf and leaf sheath, while OsGLIP2 showed high expression in elongating internodes. Biochemical assay demonstrated that OsGLIP1 and OsGLIP2 are functional lipases that could hydrolyze lipid substrates. Simultaneous down-regulation of OsGLIP1 and OsGLIP2 increased plant resistance to both bacterial and fungal pathogens, whereas disease resistance in OsGLIP1 and OsGLIP2 overexpression plants was significantly compromised, suggesting that both genes act as negative regulators of disease resistance. OsGLIP1 and OsGLIP2 proteins mainly localize to lipid droplets and the endoplasmic reticulum (ER) membrane. The proper cellular localization of OsGLIP proteins is indispensable for their functions in immunity. Comprehensive lipid profiling analysis indicated that the alteration of OsGLIP gene expression was associated with substantial changes of the levels of lipid species including monogalactosyldiacylglycerol (MGDG) and digalactosyldiacylglycerol (DGDG). We show that MGDG and DGDG feeding could attenuate disease resistance. Taken together, our study indicates that OsGLIP1 and OsGLIP2 negatively regulate rice defense by modulating lipid metabolism, thus providing new insights into the function of lipids in plant immunity.

摘要

脂质和脂质代谢物在植物与微生物的相互作用中发挥着重要作用。尽管对脂肪酶在脂质稳态和种子油生物合成方面进行了广泛研究,但脂肪酶在植物免疫中的作用仍 largely 未知。特别是,以保守的 GDSL 基序为特征的 GDSL 酯酶/脂肪酶是一类具有广泛底物特异性的脂解酶亚家族。在此,我们在水稻免疫反应中对两种 GDSL 脂肪酶 OsGLIP1 和 OsGLIP2 进行了功能鉴定。病原体感染和水杨酸(SA)处理可抑制 OsGLIP1 和 OsGLIP2 的表达。OsGLIP1 主要在叶片和叶鞘中表达,而 OsGLIP2 在伸长节间中高表达。生化分析表明,OsGLIP1 和 OsGLIP2 是能够水解脂质底物的功能性脂肪酶。同时下调 OsGLIP1 和 OsGLIP2 可增强植物对细菌和真菌病原体的抗性,而 OsGLIP1 和 OsGLIP2 过表达植物的抗病性则显著受损,这表明这两个基因均作为抗病性的负调控因子发挥作用。OsGLIP1 和 OsGLIP2 蛋白主要定位于脂滴和内质网(ER)膜。OsGLIP 蛋白正确的细胞定位对于其在免疫中的功能不可或缺。综合脂质谱分析表明,OsGLIP 基因表达的改变与包括单半乳糖基二酰基甘油(MGDG)和二半乳糖基二酰基甘油(DGDG)在内的脂质种类水平的显著变化相关。我们发现 MGDG 和 DGDG 处理可减弱抗病性。综上所述,我们的研究表明 OsGLIP1 和 OsGLIP2 通过调节脂质代谢对水稻防御起负调控作用,从而为脂质在植物免疫中的功能提供了新的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/caaa/5703576/6e1564041b57/ppat.1006724.g001.jpg

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