Wang XQ, Wu WH, Assmann SM
Department of Basic Sciences, Northwestern Agricultural University, Yang-Ling, Shaanxi Province 712100, China (X.-Q.W.).
Plant Physiol. 1998 Dec;118(4):1421-9. doi: 10.1104/pp.118.4.1421.
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.
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。