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Group A PP2Cs evolved in land plants as key regulators of intrinsic desiccation tolerance

机译:A组PP2C在陆地植物中进化为内在干燥耐性的关键调节剂

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Vegetative desiccation tolerance is common in bryophytes, although this character has been lost in most vascular plants. The moss Physcomitrella patens survives complete desiccation if treated with abscisic acid (ABA). Group A protein phosphatases type 2C (PP2C) are negative regulators of abscisic acid signalling. Here we show that the elimination of Group A PP2C is sufficient to ensure P. patens survival to full desiccation, without ABA treatment, although its growth is severely hindered. Microarray analysis shows that the Group A PP2C-regulated genes exclusively overlap with genes exhibiting a high level of ABA induction. Group A PP2C disruption weakly affects ABA-activated kinase activity, indicating Group A PP2C action downstream of these kinases in the moss. We propose that Group A PP2C emerged in land plants to repress desiccation tolerance mechanisms, possibly facilitating plants propagation on land, whereas ABA releases the intrinsic desiccation tolerance from Group A PP2C regulation.RI Yoichi, Sakata/M-7482-2013; 澶ц紨, 绔规兢/H-9175-2012; Seki, Motoaki/I-2854-2012OI Yoichi, Sakata/0000-0002-9625-4966;
机译:尽管在大多数维管植物中都没有这种特性,但在苔藓植物中营养干燥性的耐受性很普遍。如果用脱落酸(ABA)处理,苔藓小立碗藓可以完全干燥。 A型2C蛋白磷酸酶(PP2C)是脱落酸信号的负调节剂。在这里,我们显示消除A组PP2C足以确保P. patens存活至完全干燥,无需ABA处理,尽管其生长受到严重阻碍。微阵列分析表明,A组PP2C调控的基因仅与表现出高水平ABA诱导的基因重叠。 A组PP2C破坏弱影响ABA激活的激酶活性,表明在苔藓中这些激酶下游的A组PP2C作用。我们提出,在陆地植物中出现A组PP2C来抑制干旱耐受机制,可能促进植物在陆地上的繁殖,而ABA释放A组PP2C法规规定的内在干燥耐受性。RIYoichi,Sakata / M-7482-2013;澶ц紨,绔规兢/ H-9175-2012; Motoaki Seki / I-2854-2012OI Yoichi,Sakata / 0000-0002-9625-4966;

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