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拟南芥中定位于叶绿体的 Ca(2+)/H(+) 反向转运蛋白 CCHA1 参与钙和 pH 稳态的调节,并对 PSII 功能必需。

A Putative Chloroplast-Localized Ca(2+)/H(+) Antiporter CCHA1 Is Involved in Calcium and pH Homeostasis and Required for PSII Function in Arabidopsis.

机构信息

Guangdong Key Lab of Biotechnology for Plant Development, College of Life Science, South China Normal University, Guangzhou 510631, China.

State Key Laboratory of Biocontrol and Guangdong Key Laboratory of Plant Resources, School of Life Sciences, Sun Yat-sen University, Guangzhou 510275, China.

出版信息

Mol Plant. 2016 Aug 1;9(8):1183-1196. doi: 10.1016/j.molp.2016.05.015. Epub 2016 Jun 11.

Abstract

Calcium is important for chloroplast, not only in its photosynthetic but also nonphotosynthetic functions. Multiple Ca(2+)/H(+) transporters and channels have been described and studied in the plasma membrane and organelle membranes of plant cells; however, the molecular identity and physiological roles of chloroplast Ca(2+)/H(+) antiporters have remained unknown. Here we report the identification and characterization of a member of the UPF0016 family, CCHA1 (a chloroplast-localized potential Ca(2+)/H(+) antiporter), in Arabidopsis thaliana. We observed that the ccha1 mutant plants developed pale green leaves and showed severely stunted growth along with impaired photosystem II (PSII) function. CCHA1 localizes to the chloroplasts, and the levels of the PSII core subunits and the oxygen-evolving complex were significantly decreased in the ccha1 mutants compared with the wild type. In high Ca(2+) concentrations, Arabidopsis CCHA1 partially rescued the growth defect of yeast gdt1Δ null mutant, which is defective in a Ca(2+)/H(+) antiporter. The ccha1 mutant plants also showed significant sensitivity to high concentrations of CaCl2 and MnCl2, as well as variation in pH. Taken these results together, we propose that CCHA1 might encode a putative chloroplast-localized Ca(2+)/H(+) antiporter with critical functions in the regulation of PSII and in chloroplast Ca(2+) and pH homeostasis in Arabidopsis.

摘要

钙对于叶绿体非常重要,不仅在其光合作用中,而且在非光合作用中也是如此。已经在植物细胞的质膜和细胞器膜中描述和研究了多种 Ca(2+)/H(+)转运体和通道;然而,叶绿体 Ca(2+)/H(+)反向转运蛋白的分子身份和生理作用仍然未知。在这里,我们报道了拟南芥 UPF0016 家族成员 CCHA1(一种定位于叶绿体的潜在 Ca(2+)/H(+)反向转运蛋白)的鉴定和特征。我们观察到,ccha1 突变体植物发育出淡绿色的叶子,并且生长严重受阻,同时 PSII(光合系统 II)功能受损。CCHA1 定位于叶绿体,与野生型相比,ccha1 突变体中的 PSII 核心亚基和产氧复合物的水平显著降低。在高 Ca(2+)浓度下,拟南芥 CCHA1 部分挽救了酵母 gdt1Δ 缺失突变体的生长缺陷,该突变体在 Ca(2+)/H(+)反向转运蛋白中存在缺陷。ccha1 突变体植物对高浓度 CaCl2 和 MnCl2 以及 pH 变化也表现出明显的敏感性。综合这些结果,我们提出 CCHA1 可能编码一种假定的叶绿体定位的 Ca(2+)/H(+)反向转运蛋白,它在 PSII 的调节以及叶绿体 Ca(2+)和 pH 稳态中具有关键功能。

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