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番茄维管束间水分横向交换的离子调控

Ionic control of the lateral exchange of water between vascular bundles in tomato.

作者信息

Zwieniecki Maciej A, Orians Colin M, Melcher Peter J, Holbrook N Michele

机构信息

Department of Organismic and Evolutionary Biology, Harvard University, 16 Divinity Avenue, Cambridge, MA 02138, USA.

出版信息

J Exp Bot. 2003 May;54(386):1399-405. doi: 10.1093/jxb/erg144.

Abstract

Ions can enhance water flow through the xylem via changes in the hydraulic resistance at border pit membranes. Because flow between adjacent xylem vessels occurs primarily via bordered pit fields, it is hypothesized that xylem sap ion concentrations would affect lateral movement of water more than longitudinal flow. Using tomato as a model system, evidence is presented for ion-mediated changes in xylem hydraulic resistance and the lateral transport of water. Water flow between adjacent xylem bundles increased by approximately 50% in the presence of ions while longitudinal flow only increased by approximately 20%. However, the enhancement of lateral exchange due to ions was magnified by the presence of a pressure difference between vascular bundles. These results indicate that the degree of nutrient-sharing among sectors of a plant may depend on both nutrient concentration and the availability of water in the root zone.

摘要

离子可通过改变纹孔膜处的水力阻力来增强水分在木质部中的流动。由于相邻木质部导管之间的水流主要通过具缘纹孔场发生,因此据推测,木质部汁液中的离子浓度对水分横向移动的影响要大于纵向流动。以番茄作为模型系统,本文提供了离子介导木质部水力阻力变化及水分横向运输的证据。在有离子存在的情况下,相邻木质部束之间的水流增加了约50%,而纵向水流仅增加了约20%。然而,由于维管束之间存在压力差,离子对横向交换的增强作用被放大。这些结果表明,植物各部分之间养分共享的程度可能取决于养分浓度和根区的水分有效性。

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