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[老灌河干流汛期前后人类干扰下浮游细菌的多样性及功能预测]

[Diversity and Function Prediction of Bacterioplankton Under Human Disturbance in the Main Stream of the Laoguan River Before and After the Flood Season].

作者信息

Han Xue-Mei, Gong Zi-le, Yang Xiao-Ming, Li Yu-Ying, Chen Zhao-Jin, Zhu Hui-Hui, Wang Fan-Mei

机构信息

School of Water Resources and Environmental Engineering, Nanyang Normal University, Nanyang 473061, China.

International Joint Laboratory of Watershed Ecological Security and Collaborative, Innovation Center of Water Security for Water Source Region of Middle Route Project of South-North Water Diversion in Henan Province, Nanyang Normal University, Nanyang 473061, China.

出版信息

Huan Jing Ke Xue. 2021 Feb 8;42(2):831-841. doi: 10.13227/j.hjkx.202007082.

Abstract

The Laoguan River is the tributary of Danjiangkou Reservoir located nearest to the water diversion outlet, and water quality here directly affects the safety of the diverted water. To explore the community composition and functional change of bacterioplankton in the Laoguan River before and after the flood season, four representative sites were sampled in the main stream before (May) and after (October) the 2018 and 2019 flood seasons. Water quality was assessed and high-throughput sequencing of bacterioplankton was performed. Yanghe (YH) was slightly disturbed, Xixiabei (XX) was moderately disturbed, Dangziling (DZL) was heavily disturbed, and Zhangying (ZY) was moderately disturbed. In total, 599 genera from 40 phyla were collected. The diversity of bacterioplankton before the flood season was higher than afterwards, and moderate levels of disturbance increased the Shannon-Wiener diversity index. LEfSe analysis indicated that significant differences existed in some dominant phyla; Armatimonadete in Yanghe, Epsilonbacteraeota and Firmicutes in Xixiabei, and Cyanophyta in Dangziling dominated before flood season, while significant differences only occurred in Firmicutes and Cyanophyta in Dangziling after the flood season. The PCoA of the bacterioplankton community showed that the sampling points were distinct before and after the flood season, and that differences among samples were greater before the flood season. The RDA and CCA indicated that total nitrogen and ammonia nitrogen were the main environmental factors causing declines in bacterioplankton diversity. PICRUSt showed a total of ten dominant categories of COG function genes. A total of 30 KO function genes related to nitrogen metabolism group also different between the two periods, with greater differences before flood season. The genes and in Yanghe were significant different from the other three sampling points before the flood season. Overall, nitrogen and phosphorus were the main factors regulating the bacterioplankton community structure and eutrophication in the Laoguan River. Changes in nitrogen inputs will result in changes in microbial nitrogen metabolic function in different regions of the river.

摘要

老灌河是距离丹江口水库输水口最近的支流,其水质直接影响调水安全。为探究汛期前后老灌河浮游细菌群落组成及功能变化,于2018年和2019年汛期前(5月)和汛期后(10月)在干流选取4个代表性采样点进行采样。对水质进行评估并开展浮游细菌高通量测序。洋河(YH)受轻度干扰,淅西北(XX)受中度干扰,党子岭(DZL)受重度干扰,张营(ZY)受中度干扰。共采集到40个门的599个属。浮游细菌多样性汛期前高于汛期后,适度干扰水平会增加香农-威纳多样性指数。LEfSe分析表明,部分优势门类存在显著差异;汛期前洋河的装甲菌门、淅西北的ε-变形菌门和厚壁菌门以及党子岭的蓝藻门占主导,而汛期后仅党子岭的厚壁菌门和蓝藻门出现显著差异。浮游细菌群落的主坐标分析表明,汛期前后采样点明显不同,且汛期前样本间差异更大。冗余分析(RDA)和典范对应分析(CCA)表明,总氮和氨氮是导致浮游细菌多样性下降的主要环境因素。PICRUSt显示共有10个优势类别的COG功能基因。两个时期共有30个与氮代谢组相关的KO功能基因也存在差异,汛期前差异更大。汛期前洋河的基因与其他三个采样点显著不同。总体而言,氮和磷是调节老灌河浮游细菌群落结构和富营养化的主要因素。氮输入的变化将导致河流不同区域微生物氮代谢功能的变化。

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