Functional association of Arabidopsis CAX1 and CAX3 is required for normal growth and ion homeostasis

被引:172
作者
Cheng, NH
Pittman, JK
Shigaki, T
Lachmansingh, J
LeClere, S
Lahner, B
Salt, DE
Hirschi, KD [1 ]
机构
[1] Baylor Coll Med, Childrens Nutr Res Ctr, USDA ARS, Houston, TX 77030 USA
[2] Baylor Coll Med, Dept Human & Mol Genet, Houston, TX 77030 USA
[3] SUNY Coll Purchase, Dept Hort & Landscape Architecture, W Lafayette, IN 47907 USA
[4] Texas A&M Univ, Vegetable & Fruit Improvement Ctr, College Stn, TX 77845 USA
关键词
D O I
10.1104/pp.105.061218
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Cation levels within the cytosol are coordinated by a network of transporters. Here, we examine the functional roles of calcium exchanger 1 ( CAX1), a vacuolar H+/Ca2+ transporter, and the closely related transporter CAX3. We demonstrate that like CAX1, CAX3 is also localized to the tonoplast. We show that CAX1 is predominately expressed in leaves, while CAX3 is highly expressed in roots. Previously, using a yeast assay, we demonstrated that an N-terminal truncation of CAX1 functions as an H+/Ca2+ transporter. Here, we use the same yeast assay to show that full-length CAX1 and full-length CAX3 can partially, but not fully, suppress the Ca2+ hypersensitive yeast phenotype and coexpression of full-length CAX1 and CAX3 conferred phenotypes not produced when either transporter was expressed individually. In planta, CAX3 null alleles were modestly sensitive to exogenous Ca2+ and also displayed a 22% reduction in vacuolar H+-ATPase activity. cax1/cax3 double mutants displayed a severe reduction in growth, including leaf tip and flower necrosis and pronounced sensitivity to exogenous Ca2+ and other ions. These growth defects were partially suppressed by addition of exogenous Mg2+. The double mutant displayed a 42% decrease in vacuolar H+/Ca2+ transport, and a 47% decrease in H+-ATPase activity. While the ionome of cax1 and cax3 lines were modestly perturbed, the cax1/cax3 lines displayed increased PO 32 4, Mn2+, and Zn2+ and decreased Ca2+ and Mg2+ in shoot tissue. These findings suggest synergistic function of CAX1 and CAX3 in plant growth and nutrient acquisition.
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页码:2048 / 2060
页数:13
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