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首页> 外文期刊>Functional Plant Biology >Transient and permanent changes of xylem sap exudation by root systems of Zea mays after application of hydrostatic and osmotic forces
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Transient and permanent changes of xylem sap exudation by root systems of Zea mays after application of hydrostatic and osmotic forces

机译:施加静水力和渗透力后玉米根系木质部汁液渗出的永久性和永久性变化

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Effects of relatively small changes of hydrostatic and osmotic pressure on root exudation were studied with maize (Zea mays L.) plants grown in hydroculture to estimate the root reflection coefficient for the applied osmolyte (PEG 600). During the first seconds after a change in hydrostatic pressure, the exudation rate measured with a microflow sensor was instantaneously and strongly changed due to elastic deformation of the metaxylem vessels in the branched part of the main root axis. In osmotic experiments, a time of 10-20 s was required before the maximum change of the exudation rate was recorded. This retardation can be explained by diffusive saturation of the non-agitated root surface film and radial turgor propagation. A new standing osmotic gradient was reached within 4 min after a change of the water potential difference (osmotic, hydrostatic). The steady-state exudation rate J was altered by osmotic and hydrostatic forces with nearly equal efficiencies when branch roots were not injured. Hence, the reflection coefficient of the intact root for PEG 600 was close to unity. The results are in accord with nearly ideal reverse osmosis at high rates of water uptake by roots and confirm the absence of a significant hydraulic bypath circumventing the protoplasts.
机译:研究了水培条件下生长的玉米(Zea mays L.)植物的静水压力和渗透压的相对较小变化对根系渗出的影响,以估算所施用渗透液(PEG 600)的根系反射系数。在静水压力变化后的最初几秒钟内,由于主根轴分支部分中的木质部细菌弹性变形,使用微流量传感器测得的渗出速率即刻发生剧烈变化。在渗透实验中,需要10-20 s的时间才能记录到渗出速率的最大变化。这种延迟可以通过未搅动的根部表面膜的扩散饱和和径向膨胀膨胀来解释。水势差(渗透压,静水压)变化后4分钟内,达到新的渗透压梯度。当分支根未受到伤害时,渗透压和静水力改变稳态渗出速率J,效率几乎相同。因此,完整根对PEG 600的反射系数接近于1。结果与根部高吸水率下的近乎理想的反渗透相吻合,并证实了没有明显的水力旁路可以绕过原生质体。

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