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蚕豆远轴和近轴保卫细胞对脱落酸和钙的不同反应。

Differential responses of abaxial and adaxial guard cells of broad bean to abscisic acid and calcium.

作者信息

Wang XQ, Wu WH, Assmann SM

机构信息

Department of Basic Sciences, Northwestern Agricultural University, Yang-Ling, Shaanxi Province 712100, China (X.-Q.W.).

出版信息

Plant Physiol. 1998 Dec;118(4):1421-9. doi: 10.1104/pp.118.4.1421.

Abstract

Regulation by abscisic acid (ABA) and Ca2+ of broad bean (Vicia faba) abaxial and adaxial guard cell movements and inward K+ currents were compared. One millimolar Ca2+ in the bathing medium inhibited abaxial stomatal opening by 60% but only inhibited adaxial stomatal opening by 15%. The addition of 1 &mgr;M ABA in the bathing medium resulted in 80% inhibition of abaxial but only 45% inhibition of adaxial stomatal opening. Similarly, ABA and Ca2+ each stimulated greater abaxial stomatal closure than adaxial stomatal closure. Whole-cell patch-clamp results showed that the inward K+ currents of abaxial guard cells were inhibited by 60% (-180 mV) in the presence of 1.5 &mgr;M Ca2+ in the cytoplasm, whereas the inward K+ currents of adaxial guard cells were not affected at all by the same treatment. Although 1 &mgr;M ABA in the cytoplasm inhibited the inward K+ currents to a similar extent for both abaxial and adaxial guard cells, the former were more sensitive to ABA applied externally. These results suggest that the abaxial stomata are more sensitive to Ca2+ and ABA than adaxial stomata in regard to stomatal opening and closing processes and that the regulation of the inward K+ currents by ABA may not proceed via a Ca2+-signaling pathway in adaxial guard cells. Therefore, there may be different pathways for ABA- and Ca2+-mediated signal transduction in abaxial and adaxial guard cells.

摘要

比较了脱落酸(ABA)和钙离子(Ca²⁺)对蚕豆(Vicia faba)远轴和近轴保卫细胞运动及内向钾离子电流的调节作用。浴液中1毫摩尔/升的Ca²⁺使远轴气孔开放受到60%的抑制,但仅使近轴气孔开放受到15%的抑制。在浴液中添加1微摩尔/升的ABA导致远轴气孔开放受到80%的抑制,而近轴气孔开放仅受到45%的抑制。同样,ABA和Ca²⁺各自对远轴气孔关闭的刺激作用都大于对近轴气孔关闭的刺激作用。全细胞膜片钳结果显示,当细胞质中存在1.5微摩尔/升的Ca²⁺时,远轴保卫细胞的内向钾离子电流在-180毫伏时受到60%的抑制,而相同处理对近轴保卫细胞的内向钾离子电流完全没有影响。虽然细胞质中1微摩尔/升的ABA对远轴和近轴保卫细胞的内向钾离子电流的抑制程度相似,但前者对外源施加的ABA更敏感。这些结果表明,在气孔开闭过程中,远轴气孔比近轴气孔对Ca²⁺和ABA更敏感,并且ABA对内向钾离子电流的调节在近轴保卫细胞中可能不通过Ca²⁺信号通路进行。因此,在远轴和近轴保卫细胞中,ABA和Ca²⁺介导的信号转导可能存在不同的途径。

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