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首页> 外文期刊>Journal of Experimental Botany >Ion-mediated flow changes suppressed by minimal calcium presence in xylem sap in Chrysanthemum and Prunus laurocerasus
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Ion-mediated flow changes suppressed by minimal calcium presence in xylem sap in Chrysanthemum and Prunus laurocerasus

机译:菊花和樱桃李的木质部汁液中钙的含量极低,抑制了离子介导的流量变化

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摘要

After the discovery of ion-mediated changes in xylem hydraulic resistance a few years ago, a number of research papers were published that related ion-mediated flow changes in the xylem to various aspects of whole plant functioning and evolutionary diversification of vascular cells. Ion-mediated changes in xylem hydraulic resistance are commonly quantified as the percentile change in hydraulic resistance, relative to the hydraulic resistance measured using a reference fluid, usually (ultra) pure deionized water. In this research the impact was investigated of the complete absence of all ions in deionized water compared with reference fluids containing a minimal amount of free calcium on the quantification of ion-mediated flow changes in stem segments of Chrysanthemum (Dendranthema×grandiflorum Tzvelev) and Prunus L. (Prunus laurocerasus L.). The addition of 10 mM KCl to deionized water significantly increased flow rate in Chrysanthemum (17–24%) and Prunus L. (16%). The addition of 1 mM CaCl2 to the reference fluid reduced this KCl-mediated increase in flow rate to 1–2% in both species. 1 mM Ca2+ is within the lower range of Ca2+-concentrations normally measured in xylem sap of many plant species, and three times lower than the original Ca2+-concentration measured in the xylem sap of Chrysanthemum plants used for the present measurements. The present results indicate that the complete removal of cations from the xylem fluid with deionized water causes the major part of the ion-mediated flow change previously reported in the xylem of plants. It is concluded that the use of deionized water as a reference fluid should be avoided. Earlier proposed relationships between ion-mediated changes and water flow in xylem of plants should be re-evaluated if they were based on deionized water as the reference fluid.
机译:在几年前发现了木质部水力阻力的离子介导变化后,许多研究论文发表了有关木质部中离子介导的流量变化与整个植物功能和血管细胞进化多样化的各个方面相关的研究。木质部水力阻力的离子介导变化通常量化为相对于使用参考流体(通常是(超)纯去离子水)测得的水力阻力的水力阻力百分率变化。在这项研究中,研究了去离子水中与包含少量游离钙的参考液体相比完全不存在所有离子的影响,对定量分析菊花(Dendranthema×grandiflorum Tzvelev)和李干中离子介导的流量变化的影响L.(Prunus laurocerasus L.)。在去离子水中添加10 mM KCl可以显着提高菊花(17–24%)和李属(16%)的流速。在参比液中添加1 mM CaCl 2 可以将这两种KCl介导的流速增加降低到1-2%。 1 mM Ca 2 + 处于许多植物物种木质部汁液中通常测量的Ca 2 + 浓度的下限范围内,比原始Ca 低三倍在用于本测量的菊花植物的木质部汁液中测量的> 2 + -浓度。目前的结果表明,用去离子水从木质部流体中完全除去阳离子会导致以前在植物木质部中报道的离子介导的流量变化的主要部分。结论是应避免使用去离子水作为参考液。如果离子介导的变化与植物木质部中的水流之间存在较早的关系,则应重新评估它们是否以去离子水为参考液。

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  • 来源
    《Journal of Experimental Botany》 |2006年第11期|2743-2750|共8页
  • 作者单位

    Horticultural Production Chains group Department of Plant Sciences Wageningen University Marijkeweg 22 6709 PG Wageningen The Netherlands;

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