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Protoplast Volume:Water Potential Relationship and Bound Water Fraction in Spinach Leaves

机译:原生质体体积:菠菜叶片中水势与束缚水分数的关系

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摘要

Methods used to estimate the (nonosmotic) bound water fraction (BWF) (i.e. apoplast water) of spinach (Spinacia oleracea L.) leaves were evaluated. Studies using three different methods of pressure/volume (P/V) curve construction all resulted in a similar calculation of BWF; approximately 40%. The theoretically derived BWF, and the water potential (Ψw)/relative water content relationship established from P/V curves were used to establish the relationship between protoplast (i.e. symplast) volume and Ψw. Another method of establishing the protoplast volume/Ψw relationship in spinach leaves was compared with the results from P/V curve experiments. This second technique involved the vacuum infiltration of solutions at a range of osmotic potentials into discs cut from spinach leaves. These solutions contained radioactively labeled H2O and sorbitol. This dual label infiltration technique allowed for simultaneous measurement of the total and apoplast volumes in leaf tissue; the difference yielded the protoplast volume. The dual label infiltration experiments and the P/V curve constructions both showed that below −1 megapascals, protoplast volume decreases sharply with decreasing water potential; with 50% reduction in protoplast volume occurring at −1.8 megapascals leaf water potential.
机译:评估了用于估计菠菜(Spinacia oleracea L.)叶片的(非渗透)结合水分数(BWF)(即质外体水)的方法。使用三种不同的压力/体积(P / V)曲线构建方法进行的研究均得出了类似的BWF计算结果。约40%。从理论上推导出的BWF以及根据P / V曲线建立的水势(Ψw)/相对水含量关系用于建立原生质体(即共质体)体积与Ψw之间的关系。建立菠菜叶中原生质体体积/Ψw关系的另一种方法与P / V曲线实验的结果进行了比较。第二种技术涉及将溶液在一定的渗透势下真空渗入从菠菜叶切下的圆盘中。这些溶液包含放射性标记的H2O和山梨糖醇。这种双重标记渗透技术可以同时测量叶片组织中的总体积和质外体体积;差异产生了原生质体的体积。双标记渗透实验和P / V曲线构造均显示,在-1兆帕斯卡以下,原生质体体积随着水势的降低而急剧下降。在-1.8兆帕的叶片水势下,原生质体体积减少了50%。

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