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木质植物木质部导管长度的全球分析。

A global analysis of xylem vessel length in woody plants.

机构信息

Department of Biology, California State University, Bakersfield, 9001 Stockdale Hwy, Bakersfield, California 93311 USA.

出版信息

Am J Bot. 2012 Oct;99(10):1583-91. doi: 10.3732/ajb.1200140. Epub 2012 Sep 10.

Abstract

PREMISE OF THE STUDY

Vessels are the chief conduit for long-distance water transport in the majority of flowering plants. Vessel length is a key trait that determines plant hydraulic efficiency and safety, yet relatively little is known about this xylem feature. •

METHODS

We used previously published studies to generate a new global data set of vessel length in woody plants. These data were used to examine how evolutionary history, plant habit, environment, and growth ring porosity influenced vessel length. We also examined the relationship between mean vessel length and mean vessel diameter and maximum vessel length. •

KEY RESULTS

Data on mean vessel length were available for stems of 130 species and on maximum vessel length for stems of 91 species. A phylogenetic analysis indicated that vessel length did not exhibit significant phylogenetic signal. Liana species had longer vessel lengths than in tree or shrub species. Vessel diameter was not predictive of mean vessel length, but maximum vessel length strongly predicted mean vessel length. Vessel length did not vary between species that differed in growth ring porosity. •

CONCLUSIONS

Many traits often assumed to be linked to vessel length, including growth ring porosity and vessel diameter, are not associated with vessel length when compared interspecifically. Sampling for vessel length has been nonrandom, e.g., there are virtually no data available for roots, and sampling for environment has been confounded with sampling for habit. Increased knowledge of vessel length is key to understanding the structure and function of the plant hydraulic pathway.

摘要

研究前提

在大多数开花植物中,导管是长距离水分运输的主要通道。导管长度是决定植物水力效率和安全性的关键特征,但人们对这种木质部特征知之甚少。

方法

我们利用之前发表的研究结果生成了一个新的木本植物导管长度全球数据集。这些数据用于研究进化历史、植物习性、环境和生长轮孔隙度如何影响导管长度。我们还研究了平均导管长度与平均导管直径和最大导管长度之间的关系。

主要结果

茎的平均导管长度数据可用于 130 个物种,茎的最大导管长度数据可用于 91 个物种。系统发育分析表明,导管长度没有表现出显著的系统发育信号。藤本植物的导管长度比乔木或灌木物种长。导管直径不能预测平均导管长度,但最大导管长度强烈预测平均导管长度。生长轮孔隙度不同的物种之间导管长度没有差异。

结论

许多通常与导管长度相关的特征,包括生长轮孔隙度和导管直径,在种间比较时与导管长度没有关联。导管长度的采样是非随机的,例如,几乎没有关于根的可用数据,并且环境的采样与习性的采样相混淆。增加对导管长度的了解是理解植物水力途径结构和功能的关键。

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