Community characteristics and functional gene response analysis of phosphorus-metabolizing bacteria in plateau saline lake sediments

Microbial phosphorus metabolism in sediments and the biogeochemical cycling of phosphorus have been central issues in lake ecosystems, but the analysis of microbial community characteristics and influential factors of phosphorus metabolic processes in sediments from highland saline lakes have not be...

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Main Authors: Wenhuan Yang, Jie Ma, Yu Zhen, Weiping Li, Zhi Yao, Weiying Feng
Format: Article
Language:English
Published: Frontiers Media S.A. 2022-11-01
Series:Frontiers in Environmental Science
Subjects:
Online Access:https://www.frontiersin.org/articles/10.3389/fenvs.2022.994104/full
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author Wenhuan Yang
Jie Ma
Yu Zhen
Weiping Li
Zhi Yao
Weiying Feng
author_facet Wenhuan Yang
Jie Ma
Yu Zhen
Weiping Li
Zhi Yao
Weiying Feng
author_sort Wenhuan Yang
collection DOAJ
description Microbial phosphorus metabolism in sediments and the biogeochemical cycling of phosphorus have been central issues in lake ecosystems, but the analysis of microbial community characteristics and influential factors of phosphorus metabolic processes in sediments from highland saline lakes have not been well documented. In this study, metagenome sequencing technology was used to analyze the diversity of community characteristics and the relationship between nitrogen and phosphorus functional genes of microorganisms involved in phosphorus metabolic processes in Daihai sediments under high saline conditions, as well as the response of microorganisms involved in phosphorus metabolic processes to changes in environmental factors, including salinity, pH, and the N/P ratio. The results showed that 1) salinity had positive correlations with Bacteroidetes involved in the major metabolic pathways (ko00030, ko00562, and ko00190) and positively correlated with the specific dominant bacteria involved in the minor pathways (ko00564 and ko00440); 2) norB and nirS denitrification genes were involved in a major component of phosphorus metabolism, and these functional genes of nitrogen metabolism had significant (p < 0.05) effects on phytate hydrolysis, phosphate hydrolysis, and polyphosphate synthesis and decomposition; and 3) environmental factors influenced the diversity of the bacterial community characteristics in the order of salinity > N/P ratio > pH. This study provides new insights into the analysis of the causes of eutrophication and the current state of imbalance in the hydroecological structure of saline lakes on plateaus, as well as an indication of the interactions between the global lake nitrogen and phosphorus cycles.
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spelling doaj.art-779ceb9e26164faea6376e417514534c2022-12-22T04:39:32ZengFrontiers Media S.A.Frontiers in Environmental Science2296-665X2022-11-011010.3389/fenvs.2022.994104994104Community characteristics and functional gene response analysis of phosphorus-metabolizing bacteria in plateau saline lake sedimentsWenhuan Yang0Jie Ma1Yu Zhen2Weiping Li3Zhi Yao4Weiying Feng5College of Environment and Energy Resources, Inner Mongolia University of Science and Technology, Baotou, ChinaCollege of Environment and Energy Resources, Inner Mongolia University of Science and Technology, Baotou, ChinaCollege of Environment and Energy Resources, Inner Mongolia University of Science and Technology, Baotou, ChinaCollege of Environment and Energy Resources, Inner Mongolia University of Science and Technology, Baotou, ChinaCollege of Environment and Energy Resources, Inner Mongolia University of Science and Technology, Baotou, ChinaSchool of Space and Environment, Beihang University, Beijing, ChinaMicrobial phosphorus metabolism in sediments and the biogeochemical cycling of phosphorus have been central issues in lake ecosystems, but the analysis of microbial community characteristics and influential factors of phosphorus metabolic processes in sediments from highland saline lakes have not been well documented. In this study, metagenome sequencing technology was used to analyze the diversity of community characteristics and the relationship between nitrogen and phosphorus functional genes of microorganisms involved in phosphorus metabolic processes in Daihai sediments under high saline conditions, as well as the response of microorganisms involved in phosphorus metabolic processes to changes in environmental factors, including salinity, pH, and the N/P ratio. The results showed that 1) salinity had positive correlations with Bacteroidetes involved in the major metabolic pathways (ko00030, ko00562, and ko00190) and positively correlated with the specific dominant bacteria involved in the minor pathways (ko00564 and ko00440); 2) norB and nirS denitrification genes were involved in a major component of phosphorus metabolism, and these functional genes of nitrogen metabolism had significant (p < 0.05) effects on phytate hydrolysis, phosphate hydrolysis, and polyphosphate synthesis and decomposition; and 3) environmental factors influenced the diversity of the bacterial community characteristics in the order of salinity > N/P ratio > pH. This study provides new insights into the analysis of the causes of eutrophication and the current state of imbalance in the hydroecological structure of saline lakes on plateaus, as well as an indication of the interactions between the global lake nitrogen and phosphorus cycles.https://www.frontiersin.org/articles/10.3389/fenvs.2022.994104/fullplateaulake sedimentsalinityphosphorus metabolismmicroorganismscommunity composition
spellingShingle Wenhuan Yang
Jie Ma
Yu Zhen
Weiping Li
Zhi Yao
Weiying Feng
Community characteristics and functional gene response analysis of phosphorus-metabolizing bacteria in plateau saline lake sediments
Frontiers in Environmental Science
plateau
lake sediment
salinity
phosphorus metabolism
microorganisms
community composition
title Community characteristics and functional gene response analysis of phosphorus-metabolizing bacteria in plateau saline lake sediments
title_full Community characteristics and functional gene response analysis of phosphorus-metabolizing bacteria in plateau saline lake sediments
title_fullStr Community characteristics and functional gene response analysis of phosphorus-metabolizing bacteria in plateau saline lake sediments
title_full_unstemmed Community characteristics and functional gene response analysis of phosphorus-metabolizing bacteria in plateau saline lake sediments
title_short Community characteristics and functional gene response analysis of phosphorus-metabolizing bacteria in plateau saline lake sediments
title_sort community characteristics and functional gene response analysis of phosphorus metabolizing bacteria in plateau saline lake sediments
topic plateau
lake sediment
salinity
phosphorus metabolism
microorganisms
community composition
url https://www.frontiersin.org/articles/10.3389/fenvs.2022.994104/full
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