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定量木材解剖学——实用指南。

Quantitative Wood Anatomy-Practical Guidelines.

作者信息

von Arx Georg, Crivellaro Alan, Prendin Angela L, Čufar Katarina, Carrer Marco

机构信息

Swiss Federal Institute for Forest, Snow and Landscape Research WSL Birmensdorf, Switzerland.

Dipartimento Territorio e Sistemi Agro Forestali, Università degli Studi di Padova Padua, Italy.

出版信息

Front Plant Sci. 2016 Jun 3;7:781. doi: 10.3389/fpls.2016.00781. eCollection 2016.

Abstract

Quantitative wood anatomy analyzes the variability of xylem anatomical features in trees, shrubs, and herbaceous species to address research questions related to plant functioning, growth, and environment. Among the more frequently considered anatomical features are lumen dimensions and wall thickness of conducting cells, fibers, and several ray properties. The structural properties of each xylem anatomical feature are mostly fixed once they are formed, and define to a large extent its functionality, including transport and storage of water, nutrients, sugars, and hormones, and providing mechanical support. The anatomical features can often be localized within an annual growth ring, which allows to establish intra-annual past and present structure-function relationships and its sensitivity to environmental variability. However, there are many methodological challenges to handle when aiming at producing (large) data sets of xylem anatomical data. Here we describe the different steps from wood sample collection to xylem anatomical data, provide guidance and identify pitfalls, and present different image-analysis tools for the quantification of anatomical features, in particular conducting cells. We show that each data production step from sample collection in the field, microslide preparation in the lab, image capturing through an optical microscope and image analysis with specific tools can readily introduce measurement errors between 5 and 30% and more, whereby the magnitude usually increases the smaller the anatomical features. Such measurement errors-if not avoided or corrected-may make it impossible to extract meaningful xylem anatomical data in light of the rather small range of variability in many anatomical features as observed, for example, within time series of individual plants. Following a rigid protocol and quality control as proposed in this paper is thus mandatory to use quantitative data of xylem anatomical features as a powerful source for many research topics.

摘要

木材定量解剖学分析树木、灌木和草本植物木质部解剖特征的变异性,以解决与植物功能、生长和环境相关的研究问题。在更常被考虑的解剖特征中,有导管细胞、纤维的腔径和壁厚以及一些射线特征。每个木质部解剖特征的结构特性一旦形成大多是固定的,并在很大程度上决定其功能,包括水、养分、糖和激素的运输与储存,以及提供机械支撑。解剖特征通常可以定位在一个年轮内,这有助于建立年内过去和现在的结构 - 功能关系及其对环境变异性的敏感性。然而,在旨在生成(大量)木质部解剖学数据集时,有许多方法学上的挑战需要应对。在这里,我们描述了从木材样本采集到木质部解剖学数据的不同步骤,提供指导并识别陷阱,还展示了用于量化解剖特征(特别是导管细胞)的不同图像分析工具。我们表明,从野外样本采集、实验室制作显微玻片、通过光学显微镜图像采集到使用特定工具进行图像分析的每个数据生成步骤,都很容易引入5% 到30% 甚至更多的测量误差,而且解剖特征越小,误差幅度通常越大。如果不避免或纠正这种测量误差,鉴于在许多解剖特征中观察到的变异性范围相当小(例如在单个植物的时间序列中),可能无法提取有意义的木质部解剖学数据。因此,遵循本文提出的严格方案和质量控制对于将木质部解剖特征的定量数据用作许多研究主题的有力数据源是必不可少的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dcf0/4891576/e0fd31af089e/fpls-07-00781-g0001.jpg

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