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Conserved Functions of Arabidopsis and Rice CC-Type Glutaredoxins in Flower Development and Pathogen Response

机译:拟南芥和水稻CC型谷胱甘肽在花发育和病原体应答中的保守功能

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Glutaredoxins (GRXs) are ubiquitous oxidoreductases that play a crucial role in response to oxidative stress by reducing disulfides in various organisms. In planta, three different GRX classes have been identified according to their active site motifs. CPYC and CGFS classes are found in all organisms, whereas the CC-type class is specific for higher land plants. Recently, two Arabidopsis CC-type GRXs, ROXY1 and ROXY2, were shown to exert crucial functions in petal and anther initiation and differentiation. To analyze the function of CC-type GRXs in the distantly related monocots, we isolated and characterized OsROXY1 and OsROXY2-025EFtwo rice homologs of ROXY1. Both genes are expressed in vegetative and reproductive stages. Although rice flower morphology is distinct from eudicots, OsROXY1/2 floral expression patterns are similar to their Arabidopsis counterparts ROXY1/2. Complementation experiments demonstrate that OsROXY1 and OsROXY2 can fully rescue the roxy1 floral mutant phenotype. Overexpression of OsROXY1, OsROXY2, and ROXY1 in Arabidopsis causes similar vegetative and reproductive plant developmental defects. ROXY1 and its rice homologs thus exert a conserved function during eudicot and monocot flower development. Strikingly, overexpression of these CC-type GRXs also leads to an increased accumulation of hydrogen peroxide levels and hyper-susceptibility to infection from the necrotrophic pathogen Botrytis cinerea, revealing the importance of balanced redox processes in flower organ development and pathogen defence.
机译:戊二醛(GRXs)是一种普遍存在的氧化还原酶,通过减少各种生物中的二硫键,它们在氧化应激反应中起着至关重要的作用。在植物中,根据它们的活性位点基序已鉴定出三种不同的GRX类。 CPYC和CGFS类存在于所有生物中,而CC类则特定于高等陆生植物。最近,两个拟南芥CC型GRX,ROXY1和ROXY2,被证明在花瓣,花药的启动和分化中起关键作用。为了分析CC型GRXs在远缘单子叶植物中的功能,我们分离并鉴定了ROsyl1的OsROXY1和OsROXY2-025EF两个水稻同源物。两种基因均在营养和生殖阶段表达。尽管稻花的形态与双子叶植物不同,但OsROXY1 / 2的花卉表达模式与拟南芥对应的ROXY1 / 2相似。补充实验表明,OsROXY1和OsROXY2可以完全挽救roxy1花卉突变表型。在拟南芥中过表达OsROXY1,OsROXY2和ROXY1会导致类似的营养和生殖植物发育缺陷。因此,ROXY1及其水稻同源物在双子叶植物和单子叶植物花的发育过程中发挥了保守的功能。令人惊讶的是,这些CC型GRX的过度表达还导致过氧化氢水平的积累增加,并且对坏死性病原体灰葡萄孢的感染的敏感性高,这揭示了平衡氧化还原过程在花器官发育和病原体防御中的重要性。

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