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脱落酸刺激渗透调节及其在烟草细胞适应 NaCl 中的作用。

Abscisic Acid Stimulated Osmotic Adjustment and Its Involvement in Adaptation of Tobacco Cells to NaCl.

机构信息

Department of Horticulture, Purdue University, West Lafayette, Indiana 47907.

出版信息

Plant Physiol. 1987 Sep;85(1):174-81. doi: 10.1104/pp.85.1.174.

Abstract

Osmotic adjustment of cultured tobacco (Nicotiana tabacum L. var Wisconsin 38) cells was stimulated by 10 micromolar (+/-) abscisic acid (ABA) during adaptation to water deficit imposed by various solutes including NaCl, KCl, K(2)SO(4), Na(2)SO(4), sucrose, mannitol, or glucose. The maximum difference in cell osmotic potential (Psipi) caused by ABA treatment during adaptation to 171 millimolar NaCl was about 6 to 7 bar. The cell Psipi differences elicited by ABA were not due to growth inhibition since ABA stimulated growth of cells in the presence of 171 millimolar NaCl. ABA caused a cell Psipi difference of about 1 to 2 bar in medium without added NaCl. Intracellular concentrations of Na(+), K(+), Cl(-), free amino acids, or organic acids could not account for the Psipi differences induced by ABA in NaCl treated cells. However, since growth of NaCl treated cells is more rapid in the presence of ABA than in its absence, greater accumulation of Na(+), K(+), and Cl(-) was necessary for ion pool maintenance. Higher intracellular sucrose and reducing sugar concentrations could account for the majority of the greater osmotic adjustment of ABA treated cells. More rapid accumulation of proline associated with ABA treatment was highly correlated with the effects of ABA on cell Psipi. These and other data indicate that the role of ABA in accelerating salt adaptation is not mediated by simply stimulating osmotic adjustment.

摘要

培养的烟草(Nicotiana tabacum L. var Wisconsin 38)细胞的渗透调节在适应各种溶质(包括 NaCl、KCl、K2SO4、Na2SO4、蔗糖、甘露醇或葡萄糖)引起的水分亏缺时受到 10 微摩尔(+/-)脱落酸(ABA)的刺激。在适应 171 毫摩尔 NaCl 期间,ABA 处理引起的细胞渗透势(Psipi)最大差异约为 6 至 7 巴。ABA 引起的细胞 Psipi 差异不是由于生长抑制引起的,因为 ABA 在存在 171 毫摩尔 NaCl 的情况下刺激细胞生长。ABA 在不含添加 NaCl 的培养基中引起约 1 至 2 巴的细胞 Psipi 差异。细胞内的 Na+、K+、Cl-、游离氨基酸或有机酸浓度不能解释 ABA 在处理 NaCl 的细胞中引起的 Psipi 差异。然而,由于 ABA 存在时处理 NaCl 的细胞生长比不存在时更快,因此需要更多的 Na+、K+和 Cl-来维持离子池。更高的细胞内蔗糖和还原糖浓度可以解释 ABA 处理细胞中更大的渗透调节。与 ABA 处理相关的脯氨酸的更快积累与 ABA 对细胞 Psipi 的影响高度相关。这些和其他数据表明,ABA 在加速盐适应中的作用不是通过简单地刺激渗透调节来介导的。

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