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Effects of Habitat Partitioning on the Distribution of Bacterioplankton in Deep Lakes

机译:生境分配对深水湖泊浮游细菌分布的影响

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摘要

In deep lakes, many investigations highlighted the existence of exclusive groups of bacteria adapted to deep oxygenated and hypoxic and anoxic hypolimnia. Nevertheless, the extent of bacterial strain diversity has been much less scrutinized. This aspect is essential for an unbiased estimation of genetic variation, biodiversity, and population structure, which are essential for studying important research questions such as biogeographical patterns, temporal and spatial variability and the environmental factors affecting this variability. This study investigated the bacterioplankton community in the epilimnetic layers and in the oxygenated and hypoxic/anoxic hypolimnia of five large and deep lakes located at the southern border of the Alps using high throughput sequencing (HTS) analyses (16S rDNA) and identification of amplicon sequence variants (ASVs) resolving reads differing by as little as one nucleotide. The study sites, which included two oligomictic (Garda and Como) and three meromictic lakes (Iseo, Lugano, and Idro) with maximum depths spanning from 124 to 410 m, were chosen among large lakes to represent an oxic-hypoxic gradient. The analyses showed the existence of several unique ASVs in the three layers of the five lakes. In the case of cyanobacteria, this confirmed previous analyses made at the level of strains or based on oligotyping methods. As expected, the communities in the hypoxic/anoxic monimolimnia showed a strong differentiation from the oxygenated layer, with the exclusive presence in single lakes of several unique ASVs. In the meromictic lakes, results supported the hypothesis that the formation of isolated monimolimnia sustained the development of highly diversified bacterial communities through ecological selection, leading to the establishment of distinctive biodiversity zones. The genera identified in these layers are well-known to activate a wide range of redox reactions at low O2 conditions. As inferred from 16S rDNA data, the highly diversified and coupled processes sustained by the monimolimnetic microbiota are essential ecosystem services that enhance mineralization of organic matter and formation of reduced compounds, and also abatement of undesirable greenhouse gasses.
机译:在深湖中,许多研究都强调了存在适合深氧,缺氧和缺氧性低氧血症的独特细菌群的存在。尽管如此,对细菌菌株多样性的程度的研究却少得多。这方面对于无偏估计遗传变异,生物多样性和种群结构至关重要,而这对于研究重要的研究问题(如生物地理模式,时空变异和影响该变异的环境因素)至关重要。这项研究使用高通量测序(HTS)分析(16S rDNA)和扩增子序列的鉴定方法研究了位于阿尔卑斯山南部边界的五个大湖和深湖中上浮层以及氧化和低氧/缺氧低氧血症的浮游细菌群落变异体(ASV)解析读数相差仅一个核苷酸。这些研究地点被选为代表有氧-低氧梯度的最大湖泊,其中包括两个寡聚湖(Garda和Como)和三个铁质湖泊(Iseo,Lugano和Idro),最大深度在124至410 m之间。分析表明,在五个湖泊的三层中存在几种独特的ASV。对于蓝细菌,这证实了先前在菌株水平或基于寡聚分析方法进行的分析。正如预期的那样,低氧/缺氧一氧化碳的群落表现出与含氧层的强烈差异,在单个湖泊中仅存在几种独特的ASV。在淡水湖泊中,结果支持以下假设:孤立的单核生物的形成通过生态选择维持了高度多样化的细菌群落的发展,从而建立了独特的生物多样性区。这些层中鉴定出的属在低氧条件下可激活多种氧化还原反应。从16S rDNA数据可以推断,单核生物群维持的高度多样化和耦合的过程是必不可少的生态系统服务,可增强有机物的矿化和还原化合物的形成,并减少不良的温室气体。

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