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控制光诱导的豆叶扩张:渗透势、细胞壁屈服应力和水力传导率的作用。

Control of light-induced bean leaf expansion: Role of osmotic potential, wall yield stress, and hydraulic conductivity.

机构信息

Department of Botany, University of Washington, 98195, Seattle, WA, USA.

出版信息

Planta. 1981 Dec;153(6):572-7. doi: 10.1007/BF00385543.

Abstract

The role of three-turgor-related cellular parameters, the osmotic potential (Ψ s), the wall yield stress (Y) and the apparent hydraulic conductivity (L'p), in the initiation of ligh-induced expansion of bean (Phaseolus vulgaris L.) leaves has been determined. Although light causes an increase in the total solute content of leaf cells, the water uptake accompanying growth results in a slight increase in Ψ s. Y is about 4 bar; and is unaffected by light. L'p, as calculated from growth rates and isopiestic measurements of leaf water potential, is only slightly greater in rapidly-growing leaves. The turgor pressure of growing cells is lower than that of the controls by about 35%. We conclude that light does not induce cell enlargement in the leaf by altering any of the above parameters, but does so primarily by increasing wall extensibility.

摘要

已确定与三个膨压相关的细胞参数(渗透势 Ψs、细胞壁屈服应力 Y 和表观水力传导率 L'p)在光诱导菜豆(Phaseolus vulgaris L.)叶片扩展中的作用。尽管光会导致叶片细胞总溶质含量增加,但伴随生长的水分吸收会导致 Ψs 略有增加。Y 约为 4 巴,不受光的影响。根据生长速率和等压测量的叶片水势计算得出的 L'p,在快速生长的叶片中仅略有增加。生长细胞的膨压比对照低约 35%。我们的结论是,光不会通过改变上述任何参数来诱导叶片细胞扩大,而是主要通过增加细胞壁延展性来实现。

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