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Overexpression of PP2A-C5 that encodes the catalytic subunit 5 of protein phosphatase 2A in Arabidopsis confers better root and shoot development under salt conditions

机译:在拟南芥中编码蛋白质磷酸酶2a的催化亚基5的PP2A-C5的过表达赋予盐条件下的更好的根和芽

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摘要

Protein phosphatase 2A (PP2A) is an enzyme consisting of three subunits: a scaffolding A subunit, a regulatory B subunit and a catalytic C subunit. PP2As were shown to play diverse roles in eukaryotes. In this study, the function of the Arabidopsis PP2A-C5 gene that encodes the catalytic subunit 5 of PP2A was studied using both loss-of-function and gain-of-function analyses. Loss-of-function mutant pp2a-c5-1 displayed more impaired growth during root and shoot development, whereas overexpression of PP2A-C5 conferred better root and shoot growth under different salt treatments, indicating that PP2A-C5 plays an important role in plant growth under salt conditions. Double knockout mutants of pp2a-c5-1 and salt overly sensitive (sos) mutants sos1-1, sos2-2 or sos3-1 showed additive sensitivity to NaCl, indicating that PP2A-C5 functions in a pathway different from the SOS signalling pathway. Using yeast two-hybrid analysis, four vacuolar membrane chloride channel (CLC) proteins, AtCLCa, AtCLCb, AtCLCc and AtCLCg, were found to interact with PP2A-C5. Moreover, overexpression of AtCLCc leads to increased salt tolerance and Cl- accumulation in transgenic Arabidopsis plants. These data indicate that PP2A-C5-mediated better growth under salt conditions might involve up-regulation of CLC activities on vacuolar membranes and that PP2A-C5 could be used for improving salt tolerance in crops.
机译:蛋白质磷酸酶2a(pp2a)是由三个亚基组成的酶:亚基,调节性B亚基和催化C亚基。显示PP2AS在真核生物中发挥不同的角色。在该研究中,使用函数丧失和功能性分析来研究编码PP2A的催化亚基5的拟南芥PP2A-C5基因的功能。函数突变体PP2A-C5-1在根和拍摄发育过程中显示出更多的增长,而PP2A-C5的过度表达在不同的盐处理下赋予了更好的根和芽生长,表明PP2A-C5在植物生长中发挥着重要作用在盐条件下。 PP2A-C5-1的双敲除突变体和盐过敏(SOS)突变体SOS1-1,SOS2-2或SOS3-1显示给NaCl的添加剂敏感性,表明PP2A-C5在与SOS信号传导途径不同的途径中起作用。使用酵母双杂化分析,发现四个真空膜氯化物通道(CLC),ATCLCA,ATCLCB,ATCLCC和ATCLCG与PP2A-C5相互作用。此外,ATCLCC的过度表达导致转基因拟南芥植物中的耐盐性和钙质增加。这些数据表明PP2A-C5介导的盐条件下的更好增长可能涉及对真空膜的CLC活性的上调,并且PP2A-C5可用于改善作物中的耐盐性。

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