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根压对具有不同生长势和导水率的砧木上桃树的水分关系、新梢生长和叶片气体交换的影响。

The effect of root pressurization on water relations, shoot growth, and leaf gas exchange of peach (Prunus persica) trees on rootstocks with differing growth potential and hydraulic conductance.

作者信息

Solari Luis I, DeJong Theodore M

机构信息

Department of Plant Sciences, University of California, Davis, 95616, USA.

出版信息

J Exp Bot. 2006;57(9):1981-9. doi: 10.1093/jxb/erj145. Epub 2006 May 11.

Abstract

It is well known that rootstocks can have an effect on the vegetative growth and development of the tree; however, there has been no clear explanation about the physiological mechanism involved in this phenomenon. Evidence indicates that the rootstock effects on tree vegetative growth may be related to hydraulic limitations of the rootstock. The objective of these experiments was to investigate the shoot growth, water potential, and gas exchange of peach trees on different rootstocks in response to manipulations of water relations of trees on rootstocks that differ in root hydraulic conductance. Tree water relations were manipulated by applying different amounts of pneumatic pressure on the root system and then relative shoot extension growth rate, tree transpiration rate, leaf water potential, leaf conductance, leaf transpiration, and net CO(2) exchange rate responses were measured. Root pressurization increased leaf water potential, relative shoot extension growth rate, leaf conductance, leaf transpiration, and net CO(2) exchange rates of trees on both vigorous and dwarfing rootstocks. There was a significant positive linear correlation between applied pneumatic pressure and tree transpiration rate and leaf water potential. Leaf conductance, transpiration rate, and net CO(2) exchange rate as well as relative shoot extension growth rates were also positively correlated with the applied pneumatic pressure on the root system. These relationships were consistent across both vigorous and size-controlling rootstocks, indicating that rootstock hydraulic limitation may be directly involved in the vegetative growth control of peach trees.

摘要

众所周知,砧木会对树体的营养生长和发育产生影响;然而,对于这一现象所涉及的生理机制尚无明确解释。有证据表明,砧木对树体营养生长的影响可能与砧木的水力限制有关。这些实验的目的是研究不同砧木上桃树的新梢生长、水势和气体交换,以响应不同根系导水率的砧木上树体水分关系的调控。通过对根系施加不同量的气压来调控树体的水分关系,然后测量相对新梢伸长生长速率、树体蒸腾速率、叶片水势、叶片导度、叶片蒸腾和净CO₂交换率的响应。根系加压增加了旺长砧木和矮化砧木上树体的叶片水势、相对新梢伸长生长速率、叶片导度、叶片蒸腾和净CO₂交换率。施加的气压与树体蒸腾速率和叶片水势之间存在显著的正线性相关。叶片导度、蒸腾速率、净CO₂交换率以及相对新梢伸长生长速率也与施加在根系上的气压呈正相关。这些关系在旺长砧木和控冠砧木上都是一致的,表明砧木的水力限制可能直接参与桃树的营养生长控制。

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