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木质部导管的空间分布和填充。

Spatial distribution and packing of xylem conduits.

机构信息

CREAF, Cerdanyola del Vallès 08193, Spain.

出版信息

Am J Bot. 2012 Jul;99(7):1189-96. doi: 10.3732/ajb.1100384. Epub 2012 Jun 25.

Abstract

PREMISE OF THE STUDY

The hydraulic properties of the xylem determine the ability of plants to transport water from the soil to the leaves and to cope with important stress factors such as frost and drought. Hydraulic properties have usually been studied as a function of the anatomy of xylem conduits and their pits, but recent studies have proposed that system-level properties, related to the topology of the xylem network, may also play a role. Here we study how the spatial arrangement of conduits in xylem cross sections affects the relationship between mean conduit lumen area and conduit density (packing function) across species.

METHODS

Point pattern analysis was used to describe the spatial distribution of xylem conduits in 97 woody species. The effect of conduit aggregation on the packing function was tested using phylogenetic generalized least squares. A hydraulic model with an explicit description of the topology of the xylem network was used to interpret the functional significance of our findings.

KEY RESULTS

The spatial arrangement of conduits affected the packing function across species, so that species with aggregated distributions tended to have lower conduit densities for a given conduit size and lower conduit lumen fractions. According to our modeling results, the higher conduit-to-conduit connectivity of species with aggregated distributions allows them to achieve higher hydraulic conductivity. Species with aggregated conduits, however, pay a cost in terms of increased vulnerability to embolism.

CONCLUSIONS

The spatial arrangement of conduits affects the fundamental structural and functional attributes of the xylem.

摘要

研究前提

木质部的水力特性决定了植物从土壤中向叶片输送水分的能力,并能应对如霜冻和干旱等重要的胁迫因子。水力特性通常被研究为木质部导管及其纹孔的解剖结构的函数,但最近的研究提出,与木质部网络拓扑结构相关的系统水平特性也可能起作用。在这里,我们研究了木质部横截面中导管的空间排列如何影响跨物种的平均导管腔面积与导管密度(填充函数)之间的关系。

方法

点格局分析用于描述 97 种木本植物木质部导管的空间分布。使用系统发育广义最小二乘法测试了导管聚集对填充函数的影响。使用具有明确描述木质部网络拓扑结构的水力模型来解释我们研究结果的功能意义。

主要结果

导管的空间排列会影响跨物种的填充函数,因此,对于给定的导管大小和导管腔分数,聚集分布的物种的导管密度往往较低。根据我们的建模结果,聚集分布的物种具有更高的导管间连接性,这使它们能够实现更高的导水率。然而,聚集导管的物种在栓塞易感性方面付出了代价。

结论

导管的空间排列影响木质部的基本结构和功能属性。

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