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Studies of Root Function in Zea mays: III. Xylem Sap Composition at Maximum Root Pressure Provides Evidence of Active Transport into the Xylem and a Measurement of the Reflection Coefficient of the Root

机译:玉米根功能研究:III。木质部汁液成分在最大根压下提供了向木质部的主动转运的证据,并提供了根的反射系数的量度

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摘要

The cut ends of excised Zea mays roots were sealed to a pressure transducer and their root pressures recorded. These rose approximately hyperbolically to a maximum value of 4.21 ± 0.34 bar after 30 to 40 minutes. Xylem exudate could not be collected at this pressure since the flow rate was zero. Samples of exudate were collected at lower applied pressures (ΔP), however, and Δπ, the osmotic pressure difference between them and the solution bathing the root, was measured by freezing point depression. A plot of ΔP/Δπ against Jv/Δπ, where Jv is the volume flux, proved to be a straight line whose intercept, equal to σ, the reflection coefficient, was 0.853 ± 0.016. The maximum xylem concentrations of various chemical species were found by a similar extrapolative method and compared with those in the cell sap. This indicated that (a) Ca2+, Mg2+, NO32−, SO42−, and most amino acids move from the cells to the xylem down an electrochemical potential gradient; (b) relative to these ions H+, NH4+, glutamine and asparagine are actively transported into the xylem; and (c) H2PO4−, and K+ are actively retained in the symplasm.
机译:将切下的玉米根的切开端密封至压力传感器,并记录其根压。在30到40分钟后,这些曲线近似双曲线上升到最大值4.21±0.34 bar。由于流速为零,因此无法在此压力下收集木质部渗出液。在较低的施加压力(ΔP)下收集渗出液样品,但是,通过凝固点降低测量Δπ,即渗入液与浸入根部的溶液之间的渗透压差。 ΔP/Δπ与Jv /Δπ的关系图,其中Jv是体积通量,被证明是一条直线,其截距等于σ,反射系数为0.853±0.016。通过类似的外推法发现各种化学物种的最大木质部浓度,并将其与细胞液中的木质素进行比较。这表明:(a)Ca2 +,Mg2 +,NO32-,SO42-和大多数氨基酸从细胞向木质部沿电化学势梯度下降; (b)相对于这些离子,H +,NH4 +,谷氨酰胺和天冬酰胺被有效地运输到木质部中; (c)H2PO4-和K +被有效地保留在同质物中。

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  • 作者

    Miller, David M.;

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  • 年度 1985
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  • 原文格式 PDF
  • 正文语种 en
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