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当地气候条件限制了地中海森林、林地和灌丛生物群落中土壤酵母的多样性模式。

Local climatic conditions constrain soil yeast diversity patterns in Mediterranean forests, woodlands and scrub biome.

作者信息

Yurkov Andrey M, Röhl Oliver, Pontes Ana, Carvalho Cláudia, Maldonado Cristina, Sampaio José Paulo

机构信息

Leibniz Institute DSMZ-German Collection of Microorganisms and Cell Cultures, Inhoffenstraße 7B, 38124 Brunswick, Germany

UCIBIO-REQUIMTE, Departamento de Ciências da Vida, Faculdade de Ciências e Tecnologia, Universidade Nova de Lisboa, 2829-516 Caparica, Portugal.

出版信息

FEMS Yeast Res. 2016 Feb;16(1):fov103. doi: 10.1093/femsyr/fov103. Epub 2015 Nov 13.

Abstract

Soil yeasts represent a poorly known fraction of the soil microbiome due to limited ecological surveys. Here, we provide the first comprehensive inventory of cultivable soil yeasts in a Mediterranean ecosystem, which is the leading biodiversity hotspot for vascular plants and vertebrates in Europe. We isolated and identified soil yeasts from forested sites of Serra da Arrábida Natural Park (Portugal), representing the Mediterranean forests, woodlands and scrub biome. Both cultivation experiments and the subsequent species richness estimations suggest the highest species richness values reported to date, resulting in a total of 57 and 80 yeast taxa, respectively. These values far exceed those reported for other forest soils in Europe. Furthermore, we assessed the response of yeast diversity to microclimatic environmental factors in biotopes composed of the same plant species but showing a gradual change from humid broadleaf forests to dry maquis. We observed that forest properties constrained by precipitation level had strong impact on yeast diversity and on community structure and lower precipitation resulted in an increased number of rare species and decreased evenness values. In conclusion, the structure of soil yeast communities mirrors the environmental factors that affect aboveground phytocenoses, aboveground biomass and plant projective cover.

摘要

由于生态调查有限,土壤酵母是土壤微生物群落中鲜为人知的一部分。在此,我们首次全面盘点了地中海生态系统中可培养的土壤酵母,该生态系统是欧洲维管植物和脊椎动物的主要生物多样性热点地区。我们从葡萄牙塞拉·达阿拉比达自然公园的森林地带分离并鉴定了土壤酵母,这些地带代表了地中海森林、林地和灌丛生物群落。培养实验以及随后的物种丰富度估计均表明,这是迄今为止报告的最高物种丰富度值,分别产生了总共57个和80个酵母分类单元。这些数值远远超过了欧洲其他森林土壤的报告数值。此外,我们评估了酵母多样性对由相同植物物种组成但从湿润阔叶林到干燥马基群落呈现逐渐变化的生物群落中微气候环境因素的响应。我们观察到,受降水水平限制的森林特性对酵母多样性和群落结构有强烈影响,降水减少导致稀有物种数量增加,均匀度值降低。总之,土壤酵母群落的结构反映了影响地上植物群落、地上生物量和植物投影盖度的环境因素。

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