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植物对空化脆弱性的测量方法:批判性回顾。

Methods for measuring plant vulnerability to cavitation: a critical review.

机构信息

INRA, UMR 547 PIAF, F-63100 Clermont-Ferrand, France.

出版信息

J Exp Bot. 2013 Nov;64(15):4779-91. doi: 10.1093/jxb/ert193. Epub 2013 Jul 25.

Abstract

Xylem cavitation resistance has profound implications for plant physiology and ecology. This process is characterized by a 'vulnerability curve' (VC) showing the variation of the percentage of cavitation as a function of xylem pressure potential. The shape of this VC varies from 'sigmoidal' to 'exponential'. This review provides a panorama of the techniques that have been used to generate such a curve. The techniques differ by (i) the way cavitation is induced (e.g. bench dehydration, centrifugation, or air injection), and (ii) the way cavitation is measured (e.g. percentage loss of conductivity (PLC) or acoustic emission), and a nomenclature is proposed based on these two methods. A survey of the literature of more than 1200 VCs was used to draw statistics on the usage of these methods and on their reliability and validity. Four methods accounted for more than 96% of all curves produced so far: bench dehydration-PLC, centrifugation-PLC, pressure sleeve-PLC, and Cavitron. How the shape of VCs varies across techniques and species xylem anatomy was also analysed. Strikingly, it was found that the vast majority of curves obtained with the reference bench dehydration-PLC method are 'sigmoidal'. 'Exponential' curves were more typical of the three other methods and were remarkably frequent for species having large xylem conduits (ring-porous), leading to a substantial overestimation of the vulnerability of cavitation for this functional group. We suspect that 'exponential' curves may reflect an open-vessel artefact and call for more precautions with the usage of the pressure sleeve and centrifugation techniques.

摘要

木质部空化阻力对植物生理学和生态学有深远的影响。这个过程的特点是“脆弱性曲线”(VC),它显示了木质部压力势作为空化百分比的函数的变化。这种 VC 的形状从“钟形”到“指数”不等。本综述提供了用于生成这种曲线的技术全景。这些技术的区别在于(i)空化的诱导方式(例如,台架脱水、离心或空气注入),以及(ii)空化的测量方式(例如,电导率损失百分比(PLC)或声发射),并根据这两种方法提出了一个命名法。对超过 1200 个 VC 的文献调查用于绘制关于这些方法的使用情况及其可靠性和有效性的统计数据。四种方法占迄今为止产生的所有曲线的 96%以上:台架脱水-PLC、离心-PLC、压力套-PLC 和 Cavitron。还分析了 VC 的形状如何在不同的技术和物种木质部解剖结构中变化。引人注目的是,发现使用参考台架脱水-PLC 方法获得的绝大多数曲线都是“钟形”的。“指数”曲线更典型于其他三种方法,对于具有大木质部导管(环孔)的物种非常频繁,导致对这个功能组的空化脆弱性的极大高估。我们怀疑“指数”曲线可能反映了开放容器的假象,并呼吁在使用压力套和离心技术时更加小心。

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