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物理化学性质的空间异质性解释了墨西哥夸特罗谢内加斯干旱土壤中微生物组成的差异。

Spatial heterogeneity of physicochemical properties explains differences in microbial composition in arid soils from Cuatro Cienegas, Mexico.

作者信息

Pajares Silvia, Escalante Ana E, Noguez Ana M, García-Oliva Felipe, Martínez-Piedragil Celeste, Cram Silke S, Eguiarte Luis Enrique, Souza Valeria

机构信息

Instituto de Ciencias del Mar y Limnología, Unidad Académica de Ecología y Biodiversidad Acuática, Universidad Nacional Autónoma de México, Mexico City, Mexico; Departamento de Procesos y Tecnología, Universidad Autónoma Metropolitana, Unidad Cuajimalpa, Mexico City, Mexico.

Instituto de Ecología, Laboratorio Nacional de Ciencias de la Sostenibilidad, Universidad Nacional Autónoma de México , Mexico City , Mexico.

出版信息

PeerJ. 2016 Sep 8;4:e2459. doi: 10.7717/peerj.2459. eCollection 2016.

Abstract

Arid ecosystems are characterized by high spatial heterogeneity, and the variation among vegetation patches is a clear example. Soil biotic and abiotic factors associated with these patches have also been well documented as highly heterogeneous in space. Given the low vegetation cover and little precipitation in arid ecosystems, soil microorganisms are the main drivers of nutrient cycling. Nonetheless, little is known about the spatial distribution of microorganisms and the relationship that their diversity holds with nutrients and other physicochemical gradients in arid soils. In this study, we evaluated the spatial variability of soil microbial diversity and chemical parameters (nutrients and ion content) at local scale (meters) occurring in a gypsum-based desert soil, to gain knowledge on what soil abiotic factors control the distribution of microbes in arid ecosystems. We analyzed 32 soil samples within a 64 m(2) plot and: (a) characterized microbial diversity using T-RFLPs of the bacterial 16S rRNA gene, (b) determined soil chemical parameters, and (c) identified relationships between microbial diversity and chemical properties. Overall, we found a strong correlation between microbial composition heterogeneity and spatial variation of cations (Ca(2), K(+)) and anions (HCO[Formula: see text], Cl(-), SO[Formula: see text]) content in this small plot. Our results could be attributable to spatial differences of soil saline content, favoring the patchy emergence of salt and soil microbial communities.

摘要

干旱生态系统的特点是空间异质性高,植被斑块间的差异就是一个明显的例子。与这些斑块相关的土壤生物和非生物因素在空间上的高度异质性也有充分记载。鉴于干旱生态系统植被覆盖率低且降水量少,土壤微生物是养分循环的主要驱动因素。尽管如此,对于干旱土壤中微生物的空间分布以及它们的多样性与养分和其他理化梯度之间的关系,我们却知之甚少。在本研究中,我们评估了石膏基荒漠土壤中局部尺度(米级)上土壤微生物多样性和化学参数(养分和离子含量)的空间变异性,以了解哪些土壤非生物因素控制着干旱生态系统中微生物的分布。我们在一个64平方米的样地内分析了32个土壤样本,并:(a)使用细菌16S rRNA基因的T-RFLP技术来表征微生物多样性,(b)测定土壤化学参数,以及(c)确定微生物多样性与化学性质之间的关系。总体而言,我们发现该小样地中微生物组成异质性与阳离子(Ca²⁺、K⁺)和阴离子(HCO₃⁻、Cl⁻、SO₄²⁻)含量的空间变化之间存在很强的相关性。我们的结果可能归因于土壤盐分含量的空间差异,这有利于盐分和土壤微生物群落的斑块状出现。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2685/5018672/f54806e23b97/peerj-04-2459-g001.jpg

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