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Stress-Responsive Expression Subcellular Localization and Protein–Protein Interactions of the Rice Metacaspase Family

机译:水稻metaspaspase家族的胁迫响应表达亚细胞定位和蛋白质-蛋白质相互作用

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摘要

Metacaspases, a class of cysteine-dependent proteases like caspases in animals, are important regulators of programmed cell death (PCD) during development and stress responses in plants. The present study was focused on comprehensive analyses of expression patterns of the rice metacaspase (OsMC) genes in response to abiotic and biotic stresses and stress-related hormones. Results indicate that members of the OsMC family displayed differential expression patterns in response to abiotic (e.g., drought, salt, cold, and heat) and biotic (e.g., infection by Magnaporthe oryzae, Xanthomonas oryzae pv. oryzae and Rhizoctonia solani) stresses and stress-related hormones such as abscisic acid, salicylic acid, jasmonic acid, and 1-amino cyclopropane-1-carboxylic acid (a precursor of ethylene), although the responsiveness to these stresses or hormones varies to some extent. Subcellular localization analyses revealed that OsMC1 was solely localized and OsMC2 was mainly localized in the nucleus. Whereas OsMC3, OsMC4, and OsMC7 were evenly distributed in the cells, OsMC5, OsMC6, and OsMC8 were localized in cytoplasm. OsMC1 interacted with OsLSD1 and OsLSD3 while OsMC3 only interacted with OsLSD1 and that the zinc finger domain in OsMC1 is responsible for the interaction activity. The systematic expression and biochemical analyses of the OsMC family provide valuable information for further functional studies on the biological roles of OsMCs in PCD that is related to abiotic and biotic stress responses.
机译:元半胱氨酸蛋白酶是一类半胱氨酸依赖性蛋白酶,如动物中的半胱氨酸蛋白酶,是植物发育和胁迫反应期间程序性细胞死亡(PCD)的重要调节剂。本研究的重点是对响应非生物和生物胁迫以及与胁迫相关的激素的水稻metacaspase(OsMC)基因表达模式的综合分析。结果表明,OsMC家族的成员对非生物(例如干旱,盐,冷和热)和生物(例如被稻瘟病菌,米糠黄单胞菌和稻瘟病菌感染和索氏根瘤菌感染)表现出差异表达模式。 -相关激素,如脱落酸,水杨酸,茉莉酸和1-氨基环丙烷-1-羧酸(乙烯的前体),尽管对这些压力或激素的反应程度有所不同。亚细胞定位分析表明,OsMC1仅位于细胞核中,而OsMC2主要位于细胞核中。 OsMC3,OsMC4和OsMC7均匀分布在细胞中,而OsMC5,OsMC6和OsMC8定位在细胞质中。 OsMC1与OsLSD1和OsLSD3相互作用,而OsMC3仅与OsLSD1相互作用,并且OsMC1中的锌指结构域负责相互作用活性。 OsMC家族的系统表达和生化分析为进一步研究OsMC在PCD中与非生物和生物应激反应有关的生物学作用提供了有价值的信息。

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