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一种高度多样的、类似沙漠的微生物生物群落,存在于地中海城市的太阳能电池板上。

A highly diverse, desert-like microbial biocenosis on solar panels in a Mediterranean city.

机构信息

Institut Cavanilles de Biodiversitat i Biologia Evolutiva, Universitat de València, Paterna 46980, Spain.

Darwin Bioprospecting Excellence, SL., Parc Cientific Universitat de València, Paterna, Valencia, Spain.

出版信息

Sci Rep. 2016 Jul 5;6:29235. doi: 10.1038/srep29235.

Abstract

Microorganisms colonize a wide range of natural and artificial environments although there are hardly any data on the microbial ecology of one the most widespread man-made extreme structures: solar panels. Here we show that solar panels in a Mediterranean city (Valencia, Spain) harbor a highly diverse microbial community with more than 500 different species per panel, most of which belong to drought-, heat- and radiation-adapted bacterial genera, and sun-irradiation adapted epiphytic fungi. The taxonomic and functional profiles of this microbial community and the characterization of selected culturable bacteria reveal the existence of a diverse mesophilic microbial community on the panels' surface. This biocenosis proved to be more similar to the ones inhabiting deserts than to any human or urban microbial ecosystem. This unique microbial community shows different day/night proteomic profiles; it is dominated by reddish pigment- and sphingolipid-producers, and is adapted to withstand circadian cycles of high temperatures, desiccation and solar radiation.

摘要

微生物栖息于广泛的自然和人工环境中,尽管人们对一种最广泛的人造极端结构(太阳能电池板)的微生物生态学几乎没有任何数据。在这里,我们发现西班牙瓦伦西亚市的太阳能电池板上栖息着一个高度多样化的微生物群落,每个电池板上有超过 500 种不同的物种,其中大多数属于耐旱、耐热和耐辐射的细菌属,以及适应阳光照射的附生真菌。该微生物群落的分类和功能特征以及选定可培养细菌的特征表明,在电池板表面存在一个多样化的中温微生物群落。这个生物群与沙漠中的生物群比与任何人类或城市微生物生态系统都更为相似。这个独特的微生物群落显示出不同的昼夜蛋白质组特征;它主要由产生红色色素和神经酰胺的生物组成,并适应承受高温、干燥和太阳辐射的昼夜循环。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e387/4932501/b1299dcc4308/srep29235-f1.jpg

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