Department of Biochemistry, Jomo Kenyatta University of Agriculture and Technology, P. O. Box 62000-00200, Nairobi, Kenya.
International Centre for Insect Physiology and Ecology, P.O. Box 30772-00100, Nairobi, Kenya.
Sci Rep. 2023 May 2;13(1):7156. doi: 10.1038/s41598-023-33993-4.
Soil microbiomes in forest ecosystems act as both nutrient sources and sinks through a range of processes including organic matter decomposition, nutrient cycling, and humic compound incorporation into the soil. Most forest soil microbial diversity studies have been performed in the northern hemisphere, and very little has been done in forests within African continent. This study examined the composition, diversity and distribution of prokaryotes in Kenyan forests top soils using amplicon sequencing of V4-V5 hypervariable region of the 16S rRNA gene. Additionally, soil physicochemical characteristics were measured to identify abiotic drivers of prokaryotic distribution. Different forest soils were found to have statistically distinct microbiome compositions, with Proteobacteria and Crenarchaeota taxa being the most differentially abundant across regions within bacterial and archaeal phyla, respectively. Key bacterial community drivers included pH, Ca, K, Fe, and total N while archaeal diversity was shaped by Na, pH, Ca, total P and total N. To contextualize the prokaryote diversity of Kenyan forest soils on a global scale, the sample set was compared to amplicon data obtained from forest biomes across the globe; displaying them to harbor distinct microbiomes with an over-representation of uncultured taxa such as TK-10 and Ellin6067 genera.
森林生态系统中的土壤微生物组通过一系列过程充当养分源和汇,包括有机质分解、养分循环和腐殖质化合物掺入土壤。大多数森林土壤微生物多样性研究都在北半球进行,而在非洲大陆的森林中则很少进行。本研究使用 V4-V5 高变区 16S rRNA 基因的扩增子测序,研究了肯尼亚森林表土中细菌的组成、多样性和分布。此外,还测量了土壤理化特性,以确定细菌分布的非生物驱动因素。不同的森林土壤被发现具有统计学上明显不同的微生物组组成,其中变形菌门和泉古菌门的分类群在细菌和古菌门内的区域间差异最显著。关键的细菌群落驱动因素包括 pH 值、Ca、K、Fe 和总 N,而古菌多样性则由 Na、pH 值、Ca、总 P 和总 N 塑造。为了将肯尼亚森林土壤的原核生物多样性置于全球背景下进行研究,将样本集与从全球森林生物群落中获得的扩增子数据进行了比较;结果显示,它们具有独特的微生物组,并且存在未培养的分类群,如 TK-10 和 Ellin6067 属的过度代表。