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植物根系与光谱方法——分析物种、生物量和活力。

Plant roots and spectroscopic methods - analyzing species, biomass and vitality.

机构信息

Institute of Forest Ecology, Department of Forest and Soil Sciences, University of Natural Resources and Life Sciences Vienna, Austria.

出版信息

Front Plant Sci. 2013 Oct 9;4:393. doi: 10.3389/fpls.2013.00393. eCollection 2013.

Abstract

In order to understand plant functioning, plant community composition, and terrestrial biogeochemistry, it is decisive to study standing root biomass, (fine) root dynamics, and interactions belowground. While most plant taxa can be identified by visual criteria aboveground, roots show less distinctive features. Furthermore, root systems of neighboring plants are rarely spatially segregated; thus, most soil horizons and samples hold roots of more than one species necessitating root sorting according to taxa. In the last decades, various approaches, ranging from anatomical and morphological analyses to differences in chemical composition and DNA sequencing were applied to discern species' identity and biomass belowground. Among those methods, a variety of spectroscopic methods was used to detect differences in the chemical composition of roots. In this review, spectroscopic methods used to study root systems of herbaceous and woody species in excised samples or in situ will be discussed. In detail, techniques will be reviewed according to their usability to discern root taxa, to determine root vitality, and to quantify root biomass non-destructively or in soil cores holding mixtures of plant roots. In addition, spectroscopic methods which may be able to play an increasing role in future studies on root biomass and related traits are highlighted.

摘要

为了理解植物功能、植物群落组成和陆地生物地球化学,研究地上生物量、(细)根动态和地下相互作用是至关重要的。虽然大多数植物类群可以通过地上的视觉标准来识别,但根表现出的特征不那么明显。此外,相邻植物的根系很少在空间上分离;因此,大多数土壤层次和样本中都含有多种物种的根,需要根据分类群对根进行分类。在过去的几十年中,已经应用了各种方法,从解剖学和形态学分析到化学成分和 DNA 测序的差异,以辨别地下物种的身份和生物量。在这些方法中,各种光谱方法被用于检测根系化学成分的差异。在这篇综述中,将讨论用于研究离体或原位草本和木本植物根系的光谱方法。详细地,将根据这些技术用于辨别根系分类群、确定根系活力以及非破坏性或在含有植物根系混合物的土壤芯中定量根系生物量的能力来进行评估。此外,还强调了一些可能在未来关于根系生物量和相关特征的研究中发挥越来越重要作用的光谱方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6ac4/3793172/1ce0615aa19f/fpls-04-00393-g001.jpg

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