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Visualisation of xylem sap flow direction in isolated fine lateral roots and estimation of the xylem sap osmotic potential

机译:在孤立的细侧根中木质部汁液流动方向的可视化和木质部汁液渗透势的估计

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Xylem sap outflow from fine lateral roots (FLRs) isolated from hydroponically grown young maize (Zea mays L.) plants was visualized by local brightening of test solutions contrasted with purified Indian ink particles. Flow into the vessels was indicated by the adsorption of Evans Blue in their walls. The fraction of the FLRs able to exude xylem sap in a mineral medium with 30 mM mannitol decreased with increasing incubation time. This change was strongly retarded, when the FLRs were incubated in a medium containing glucose instead of mannitol. There was a broad range of variation of the osmotic potential of the test solutions (Ψso), wherein the fraction of the FLRs showing an initially reversed flow of the xylem sap varied between zero and unity. A median (M) of the osmotic potential of the xylem sap in FLRs (Ψsx) was estimated. It represents the value of Ψso that was lower than Ψsx in half of the roots of a sample before their transfer to the test solutions (Ψsxo). M was dependent on the osmotic potential of the medium used for growth or pre-incubation of the FLRs. Its value was not dependent on the molecular size of the osmolytes used to adjust Ψso, including dextran 8, which is excluded from cell walls. In all of the studied plants, M was lower than the osmotic potential of the xylem sap collected from the root before isolation of the FLRs. To explain this finding it is assumed that FLRs with Ψsxo > M had a higher hydraulic conductivity and a larger volume contributed to the exuded sap than those with Ψsx < M.
机译:通过与纯化的印度墨水颗粒形成鲜明对比的测试溶液的局部增亮,可以看到从水培生长的年轻玉米(Zea mays L.)植物中分离出的细侧根(FLR)的木质部汁液流出。埃文斯蓝在壁上的吸附表明流入容器。能够在含有30 mM甘露醇的矿物培养基中渗出木质部汁液的FLR分数随孵育时间的增加而降低。当FLRs在含有葡萄糖而不是甘露醇的培养基中孵育时,这种变化被强烈抑制。测试溶液的渗透势的变化范围很广(Ψ so ),其中显示木质部汁液最初反向流动的FLR分数在零和一之间变化。估计了FLR(Ψ sx )中木质部汁液渗透潜势的中值(M)。它表示样品的一半根中的Ψ so 值低于than sx ,然后转移到测试溶液中(Ψ sxo )。 M取决于用于FLR生长或预孵育的培养基的渗透势。它的值不取决于用于调节Ψ so 的渗透物的分子大小,包括葡聚糖8,葡聚糖被排除在细胞壁之外。在所有研究的植物中,M均低于分离FLR之前从根部收集的木质部汁液的渗透势。为了解释这一发现,我们假设that sxo sx

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