首页> 外文期刊>Protoplasma: An International Journal of Cell Biology >Age dependence of the hydraulic resistances of the plasma membrane and the tonoplast (vacuolar membrane) in cells of Chara corallina
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Age dependence of the hydraulic resistances of the plasma membrane and the tonoplast (vacuolar membrane) in cells of Chara corallina

机译:血浆膜的液压抗性和色素膜的液压抑制在Chara Corallina细胞中的依赖性

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摘要

Hydraulic resistances (reciprocals of hydraulic conductivities) of the cell (Lp(-1)), the cell wall (Lp(w)(-1)), the membrane (Lp(m)(-1)), the plasma membrane (Lp(pm)(-1)), and the tonoplast (Lp(tp)(-1)) were determined in individual internodal cells of Chara corallina and their dependence on the cell age was studied. The thickness of the cell wall (d) was adopted as an index of the cell age, since the cell wall of spring-grown young cells (sg-cells) was found to be significantly thinner than that of winter-spent old cells (ws-cells). Both Lp(w)(-1) and Lp(m)(-1) were found to increase with cell age. Since Lp(m)(-1) is the sum of Lp(pm)(-1) and Lp(tp)(-1), their dependence on the wall thickness was studied. It was found that both Lp(pm)(-1) and Lp(tp)(-1) increase with cell age using d as a proxy and that the former is distinctly higher than the latter. The ratio Lp(pm)(-1)/Lp(tp)(-1) amounts to 30 for 5 mu m of d, indicating that the tonoplast is a negligible barrier to osmotic water flow. The ratio decreases with the increase in d and amounts to 5.0 for 11 mu m of d, showing that the tonoplast ages faster than the plasma membrane. The physiological meaning of the age dependence of hydraulic resistance of the tonoplast was discussed in terms of the role of the vacuole in the osmoregulation of the cytoplasm.
机译:测定了珊瑚藻单个节间细胞(Lp(-1))、细胞壁(Lp(w)(-1))、细胞膜(Lp(m)(-1))、质膜(Lp(pm)(-1))和液泡膜(Lp(tp)(-1))的水力阻力(水力传导率的倒数),并研究了它们对细胞年龄的依赖性。细胞壁的厚度(d)被用作细胞年龄的指标,因为春季生长的年轻细胞(sg细胞)的细胞壁明显比冬季生长的老细胞(ws细胞)的细胞壁薄。Lp(w)-1和Lp(m)-1均随细胞年龄增加而增加。由于Lp(m)-1是Lp(pm)-1和Lp(tp)-1之和,因此研究了它们对壁厚的依赖性。结果发现,以d为代用品的Lp(pm)-1和Lp(tp)-1均随细胞年龄的增加而增加,且前者明显高于后者。对于5μm的d,Lp(pm)(-1)/Lp(tp)(-1)的比值为30,表明液泡膜是渗透水流的一个可忽略的屏障。该比率随着d的增加而降低,在11μm的d中达到5.0,表明液泡膜的老化速度比质膜快。根据液泡在细胞质渗透调节中的作用,讨论了液泡膜水力阻力的年龄依赖性的生理意义。

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