First insights into the prokaryotic community structure of Lake Cote, Costa Rica: Influence on nutrient cycling

低角膜缘 Β-变形菌 生态学 生物地球化学循环 α蛋白细菌 群落结构 分层(种子) 生物 塔玛丘塔 环境科学 古细菌 营养物 富营养化 放线菌门 植物 休眠 16S核糖体RNA 细菌 基因 发芽 种子休眠 生物化学 遗传学
作者
Laura Brenes‐Guillén,Daniela Vidaurre‐Barahona,Lidia Avilés-Vargas,Víctor Castro-Gutiérrez,Eddy Gómez‐Ramírez,Kaylen González-Sánchez,Marielos Mora‐López,Gerardo Umaña‐Villalobos,Lorena Uribe‐Lorío,Francis Hassard
出处
期刊:Frontiers in Microbiology [Frontiers Media SA]
卷期号:13
标识
DOI:10.3389/fmicb.2022.941897
摘要

Prokaryotic diversity in lakes has been studied for many years mainly focusing on community structure and how the bacterial assemblages are driven by physicochemical conditions such as temperature, oxygen, and nutrients. However, little is known about how the composition and function of the prokaryotic community changes upon lake stratification. To elucidate this, we studied Lake Cote in Costa Rica determining prokaryotic diversity and community structure in conjunction with physicochemistry along vertical gradients during stratification and mixing periods. Of the parameters measured, ammonium, oxygen, and temperature, in that order, were the main determinants driving the variability in the prokaryotic community structure of the lake. Distinct stratification of Lake Cote occurred (March 2018) and the community diversity was compared to a period of complete mixing (March 2019). The microbial community analysis indicated that stratification significantly altered the bacterial composition in the epi-meta- and hypolimnion. During stratification, the Deltaproteobacteria, Chloroflexi, Bacteroidetes, Nitrospirae, and Euryarchaeota were dominant in the hypolimnion yet largely absent in surface layers. Among these taxa, strict or facultative anaerobic bacteria were likely contributing to the lake nitrogen biogeochemical cycling, consistent with measurements of inorganic nitrogen measurements and microbial functional abundance predictions. In general, during both sampling events, a higher abundance of Alphaproteobacteria, Betaproteobacteria, Actinobacteria, and Cyanobacteria was found in the oxygenated layers. Lake Cote had a unique bacterial diversity, with 80% of Amplicon Sequence Variant (ASV) recovered similar to unclassified/uncultured strains and exhibits archetypal shallow lake physicochemical but not microbial fluctuations worthy of further investigation. This study provides an example of lake hydrodynamics impacts to microbial community and their function in Central American lakes with implications for other shallow, upland, and oligotrophic lake systems.
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