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Differences of the microbial community structures and predicted metabolic potentials in the lake, river, and wetland sediments in Dongping Lake Basin. | LitMetric

AI Article Synopsis

  • The study compares microbial communities in wetlands and deep-water ecosystems (rivers and lakes) using advanced sequencing techniques along with environmental factors in Dongping Lake Basin during summer and autumn.
  • The findings reveal that deep-water ecosystems have higher microbial community richness than wetlands in autumn, primarily influenced by sediment pH, while no difference was observed in summer.
  • Additionally, the research indicates that dissolved organic carbon and dissolved oxygen significantly affect the composition of predicted metabolic genes, with wetlands showing higher levels of genes related to biodegradation and deep-water ecosystems having more genes associated with element metabolism.

Article Abstract

In freshwater ecosystems, wetlands are generally distinguished from deep-water ecosystems by 2-m water level as boundary. However, the difference of sediment microbial communities between wetlands and deep-water ecosystems is still unclear. We combined 16S rRNA gene sequencing and community metabolic prediction to compare sediment microbial communities and predicted metabolic genes of wetlands (natural and constructed wetlands) and deep-water ecosystems (river and lake) along with environmental factors in summer and autumn in Dongping Lake Basin. Results showed that the deep-water ecosystems had significantly higher community richness than the wetlands in autumn in the freshwater basin, which was mostly related to the pH of sediments. However, no significant difference in community richness was found in summer. Besides, the composition of both predicted metabolic genes and microbial communities was significantly affected by dissolved organic carbon (DOC) and dissolved oxygen (DO). The wetlands exhibited high predicted gene abundances related to xenobiotic biodegradation possibly due to the high DOC or DO level. Compared with the wetlands, most of the deep-water ecosystems exhibited high predicted gene abundances related to element (carbon, nitrogen, and sulfur) metabolism possibly due to the low DOC and DO levels in the freshwater basin. This study can expand the knowledge of ecological function distribution and detoxification mechanism of microbial communities in freshwater ecosystems.

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Source
http://dx.doi.org/10.1007/s11356-020-08446-4DOI Listing

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