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Water Potential Increase in Sliced Leaf Tissue as a Cause of Error in Vapor Phase Determinations of Water Potential

机译:叶片组织中水势的增加是气相中水势测定错误的原因

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摘要

Earlier reports that the water potential of sliced leaf tissue is higher than that of unsliced control tissue are confirmed. The effect is shown to increase as damage to the tissue due to slicing is increased. However, there is some evidence that increase in damage beyond a certain point causes water potentials to fall again towards the control value. The electrical resistance of washings from sliced leaf tissue increases with increase in the time interval between slicing and washing. Both the rise in water potential of sliced tissue and the rise in electrical resistance of washings are partially and reversibly inhibited by low temperature. These results suggest that the remaining intact cells actively accumulate solutes released from the cells cut open on slicing. The sap from the sliced cells is thereby diluted and flows passively into the intact cells. Since pressure potential changes more rapidly with cell volume than does osmotic potential, the net result is a rise in the total water potential of sliced tissue. It is concluded that this effect may cause spuriously high water potential values to be measured if excessively small pieces of leaf tissue are used. This is demonstrated with stacks of annuli cut from leaves.
机译:较早的报道证实,切片的叶片组织的水势高于未切片的对照组织。随着切片对组织的损害增加,该作用显示出增加。但是,有证据表明,破坏程度增加到超过某个点会导致水势再次下降至控制值。来自切片的叶片组织的洗涤液的电阻随着切片和洗涤之间的时间间隔的增加而增加。切片组织的水势上升和洗涤液的电阻上升都被低温部分和可逆地抑制。这些结果表明,剩余的完整细胞主动积聚从切片时切开的细胞释放的溶质。来自切片细胞的汁液由此被稀释并且被动地流入完整细胞。由于压力势随细胞体积的变化快于渗透势,因此最终结果是切片组织的总水势增加。结论是,如果使用的叶组织过小,可能会导致假想的高水势值被测量。从叶子上切下的成堆的圆环证明了这一点。

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