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Microbial communities from arid environments on a global scale. A systematic review

机译:在全球范围内来自干旱环境的微生物群落。 系统评价

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Arid environments are defined by the lack of water availability, which is directly related to the mean annual precipitation (MAP), and high values of solar irradiation, which impacts the community composition of animals, plants, and the microbial structure of the soil. Recent advances in NGS technologies have expanded our ability to characterize microbiomes, allowing environmental microbiologists to explore the complete microbial structure. Intending to identify and describe the state-of-the-art of bacterial communities in arid soils at a global scale, and to address the effect that some environmental features may have on them, we performed a systematic review based on the PRISMA guideline. Using a combination of keywords, we identified a collection of 66 studies, including 327 sampled sites, reporting the arid soil bacterial community composition by 16S rDNA gene high-throughput sequencing. To identify factors that can modulate bacterial communities, we extracted the geographical, environmental, and physicochemical data. The results indicate that even though each sampled site was catalogued as arid, they show wide variability in altitude, mean annual temperature (MAT), soil pH and electric conductivity, within and between arid environments. We show that arid soils display a higher abundance of Actinobacteria and lower abundance of Proteobacteria, Cyanobacteria, and Planctomycetes, compared with non-arid soil microbiomes, revealing that microbial structure seems to be strongly modulated by MAP and MAT and not by pH in arid soils. We observed that environmental and physicochemical features were scarcely described among studies, hence, we propose a reporting guideline for further analysis, which will allow deepening the knowledge of the relationship between the microbiome and abiotic factors in arid soil. Finally, to understand the academic collaborations landscape, we developed an analysis of the author’s network, corroborating a low degree of connectivity and collaborations in this research topic. Considering that it is crucial to understand how microbial processes develop and change in arid soils, our analysis emphasizes the need to increase collaborations between research groups worldwide.
机译:干旱环境由缺乏水可用性定义,它与平均年降水量(地图)直接相关,以及太阳照射的高值,这会影响动物,植物和土壤微生物结构的群落组成。 NGS Technologies的最新进展扩大了我们的表征微生物体的能力,允许环境微生物学家探索完整的微生物结构。打算在全球范围内识别和描述干旱土壤中的细菌社区的最新社区,并解决一些环境特征可能对其的影响,我们根据PRISMA指南进行了系统审查。使用关键词的组合,我们确定了66项研究的集合,其中包括327个采样点,将干旱的土壤细菌群落组合物报告为16S rdNA基因高通量测序。为了识别可以调节细菌社区的因素,我们提取了地理,环境和物理化学数据。结果表明,尽管每个采样的部位被编目为干旱,但它们在干旱环境内和干旱环境之间和之间显示出广泛的变化,平均年度温度(垫),土壤pH和导电性。我们表明,与非干旱土壤微生物相比,干旱土壤显示出较高丰富的肌腱菌和较低的植物菌,蓝藻和平分菌,揭示微生物结构似乎通过地图和垫强烈调节,而不是在干旱的土壤中强烈调节。我们观察到,研究中几乎没有描述了环境和物理化学特征,因此提出了一个关于进一步分析的报告指南,这将允许深化干旱土壤中微生物组和非生物因子之间关系的知识。最后,要了解学术合作景观,我们开发了对作者网络的分析,证实了这项研究主题中的低间接和合作程度。考虑到了解微生物过程如何在干旱的土壤中发展和变化是至关重要的,我们的分析强调需要增加全球研究小组之间的合作。

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