Historical Lead Contamination Linked to Atmospheric Deposition is Associated With Declines in Ectomycorrhizal Diversity and Shifts in Fungal Community Composition

IF 4.5 1区 生物学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY
Chance R. Noffsinger, P. Brandon Matheny
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引用次数: 0

Abstract

Ectomycorrhizal and saprotrophic fungi respond differently to changing edaphic conditions caused by atmospheric deposition. Within each guild, responses can vary significantly, reflecting the diversity of species and their specific adaptations to environmental changes. Metal contaminants are often deposited onto earth's surface through atmospheric deposition, yet few studies have assessed the relationship between soil metal contamination and fungal communities. The goal of this study was to understand how soil metal contamination and other edaphic factors vary across the spruce-fir ecosystem in the Southern Appalachians and influence fungal diversity and function. Here, we characterize soil fungal communities using high-throughput sequencing of the ITS2 gene region and found that higher soil lead (Pb) concentrations were associated with lower fungal diversity. Ectomycorrhizal fungi were less diverse (specifically hydrophilic ectomycorrhizal functional types) at plots with elevated soil Pb concentrations, while saprotrophic fungi were less diverse at plots with elevated soil carbon:nitrogen ratios. Fungal community composition was significantly influenced by pH, Pb, and spatial factors. This study identifies important relationships between fungal diversity and soil Pb concentrations and indicates variable responses of genera within well-defined ecological guilds. Our work highlights the need to characterize poorly understood taxonomic groups of fungi and their function prior to further environmental degradation.

与大气沉降有关的历史铅污染与外生菌根多样性下降和真菌群落组成的变化有关。
外生菌根真菌和腐养真菌对大气沉降引起的土壤条件变化的反应不同。在每个行会中,反应可能会有很大差异,这反映了物种的多样性及其对环境变化的特定适应。金属污染物通常通过大气沉降到地球表面,但很少有研究评估土壤金属污染与真菌群落之间的关系。本研究的目的是了解南阿巴拉契亚云杉生态系统中土壤金属污染和其他土壤因子的变化及其对真菌多样性和功能的影响。在这里,我们利用ITS2基因区域的高通量测序来表征土壤真菌群落,发现较高的土壤铅(Pb)浓度与较低的真菌多样性相关。在土壤铅浓度升高的样地,外生菌根真菌(特别是亲水外生菌根功能类型)的多样性较低,而在土壤碳氮比升高的样地,腐养真菌的多样性较低。真菌群落组成受pH、Pb和空间因子的显著影响。本研究确定了真菌多样性与土壤铅浓度之间的重要关系,并指出了在明确定义的生态行内属的变化反应。我们的工作强调了在进一步的环境退化之前,需要对真菌的分类群及其功能进行表征。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Molecular Ecology
Molecular Ecology 生物-进化生物学
CiteScore
8.40
自引率
10.20%
发文量
472
审稿时长
1 months
期刊介绍: Molecular Ecology publishes papers that utilize molecular genetic techniques to address consequential questions in ecology, evolution, behaviour and conservation. Studies may employ neutral markers for inference about ecological and evolutionary processes or examine ecologically important genes and their products directly. We discourage papers that are primarily descriptive and are relevant only to the taxon being studied. Papers reporting on molecular marker development, molecular diagnostics, barcoding, or DNA taxonomy, or technical methods should be re-directed to our sister journal, Molecular Ecology Resources. Likewise, papers with a strongly applied focus should be submitted to Evolutionary Applications. Research areas of interest to Molecular Ecology include: * population structure and phylogeography * reproductive strategies * relatedness and kin selection * sex allocation * population genetic theory * analytical methods development * conservation genetics * speciation genetics * microbial biodiversity * evolutionary dynamics of QTLs * ecological interactions * molecular adaptation and environmental genomics * impact of genetically modified organisms
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