MSU-ERDA Plant Research Laboratory, Michigan State University, East Lansing, Michigan 48824.
Plant Physiol. 1978 Jul;62(1):84-7. doi: 10.1104/pp.62.1.84.
Electron probe microanalysis for K and Cl and enzymic determination of malate were performed on epidermal strips of Vicia faba L. which had been incubated with 0.1 equivalent of K(+) per liter in the absence or presence of Cl(-). In the absence of Cl(-), iminodiacetate, a presumed impermeant zwitterion, served as anion. With no Cl(-) in the medium, 91% of the K(+) imported into the guard cells during stomatal opening was neutralized by malate production; import of Cl(-) (presumably from the rest of the epidermal tissue) contributed 6%. In the presence of Cl(-), 50% of the necessary negative charges were provided by malate synthesis, 45% by Cl(-) import. Stomatal opening was not obviously affected by the chloride concentration in the incubation medium, but malate production declined roughly linearly with the logarithm of [Cl(-)] between 10(-5) and 10(-1) equivalent per liter.
对用含有 0.1 个当量/升 K+的溶液培养的蚕豆表皮条进行了电子探针微量分析和苹果酸的酶分析,其中有的有 Cl-,有的没有。在没有 Cl-的情况下,亚氨二乙酸(一种假定的非渗透两性离子)作为阴离子。在介质中没有 Cl-时,气孔开放时进入保卫细胞的 91%的 K+被苹果酸的生成所中和,Cl-(大概是从表皮的其余部分进入的)的输入贡献了 6%。在有 Cl-的情况下,所需的负电荷有 50%由苹果酸的合成提供,45%由 Cl-的输入提供。气孔的开放显然不受培养介质中 Cl-浓度的影响,但在 10(-5)至 10(-1)当量/升范围内,苹果酸的生成随[Cl-]的对数大致呈线性下降。