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MPK6通过介导拟南芥幼苗根细胞跨质膜的Ca2+内流来控制H2O2诱导的根伸长。

MPK6 controls H2 O2-induced root elongation by mediating Ca2+ influx across the plasma membrane of root cells in Arabidopsis seedlings.

作者信息

Han Shuan, Fang Lin, Ren Xuejian, Wang Wenle, Jiang Jing

机构信息

State Key Laboratory of Cotton Biology, College of Life Sciences, Henan University, Jinming Street, Kaifeng, Henan, 475004, China.

出版信息

New Phytol. 2015 Jan;205(2):695-706. doi: 10.1111/nph.12990. Epub 2014 Aug 22.

Abstract

Mitogen-activated protein kinases (MPKs) play critical roles in signalling and growth, and Ca(2+) and H2 O2 control plant growth processes associated with abscisic acid (ABA). However, it remains unclear how MPKs are involved in H2 O2 - and Ca(2+) -mediated root elongation. Root elongation in seedlings of the loss-of-function mutant Atmpk6 (Arabidopsis thaliana MPK6) was less sensitive to moderate H2 O2 or ABA than that in wild-type (WT) plants. The enhanced elongation was a result of root cell expansion. This effect disappeared when ABA-induced H2 O2 accumulation or the cytosolic Ca(2+) increase were defective. Molecular and biochemical evidence showed that increased expression of the cell wall peroxidase PRX34 in Atmpk6 root cells enhanced apoplastic H2 O2 generation; this promoted a cytosolic Ca(2+) increase and Ca(2+) influx across the plasma membrane. The plasma membrane damage caused by high levels of H2 O2 was ameliorated in a Ca(2+) -dependent manner. These results suggested that there was intensified PRX34-mediated H2 O2 generation in the apoplast and increased Ca(2+) flux into the cytosol of Atmpk6 root cells; that is, the spatial separation of apoplastic H2 O2 from cytosolic Ca(2+) in root cells prevented H2 O2 -induced inhibition of root elongation in Atmpk6 seedlings.

摘要

丝裂原活化蛋白激酶(MPKs)在信号传导和生长过程中发挥着关键作用,钙(Ca²⁺)和过氧化氢(H₂O₂)控制着与脱落酸(ABA)相关的植物生长过程。然而,MPKs如何参与H₂O₂和Ca²⁺介导的根伸长仍不清楚。功能缺失突变体Atmpk6(拟南芥MPK6)幼苗的根伸长对中等浓度的H₂O₂或ABA的敏感性低于野生型(WT)植株。伸长增强是根细胞扩张的结果。当ABA诱导的H₂O₂积累或胞质Ca²⁺增加存在缺陷时,这种效应消失。分子和生化证据表明,Atmpk6根细胞中细胞壁过氧化物酶PRX34表达的增加增强了质外体H₂O₂的产生;这促进了胞质Ca²⁺的增加以及Ca²⁺跨质膜内流。高水平H₂O₂引起的质膜损伤以Ca²⁺依赖的方式得到改善。这些结果表明,Atmpk6根细胞的质外体中存在PRX34介导的H₂O₂产生增强以及Ca²⁺流入胞质增加;也就是说,根细胞中质外体H₂O₂与胞质Ca²⁺的空间分离阻止了H₂O₂对Atmpk6幼苗根伸长的抑制。

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