Distinct microbial communities and their networks in an anammox coupled with sulfur autotrophic/mixotrophic denitrification system

被引:65
|
作者
Du, Shuai [1 ]
Ya, Tao [1 ]
Zhang, Minglu [2 ]
Zhu, Minghan [1 ]
Li, Nankun [3 ]
Liu, Shuwei [4 ]
Wang, Xiaohui [1 ]
机构
[1] Beijing Univ Chem Technol, Coll Chem Engn, Beijing Engn Res Ctr Environm Mat Water Purificat, Beijing 100029, Peoples R China
[2] Beijing Technol & Business Univ, Key Lab Cleaner Prod & Integrated Resource Utiliz, Beijing 100048, Peoples R China
[3] Minist Ecol & Environm, Environm Engn Evaluat Ctr, Beijing 100012, Peoples R China
[4] Yuanda Environm Engn Co Ltd, Natl Power Investment Grp, Chongqing Sci & Technol Branch, Chongqing 401120, Peoples R China
关键词
Anammox; Sulfur-supported denitrification; Nitrogen removal performance; Microbial diversity changes; MENs analysis; NITRATE-CONTAMINATED WATER; AUTOTROPHIC DENITRIFICATION; ACTIVATED-SLUDGE; NITROGEN REMOVAL; START-UP; BACTERIAL COMMUNITIES; PERFORMANCE; REACTOR; DIVERSITY; SOIL;
D O I
10.1016/j.envpol.2020.114190
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Organ carbon are often used to enhance denitrification in wastewater treatment. However, their possible effects on microbial interactions are very limited. In this work, an anaerobic ammonium oxidation (anammox) coupled with sulfur autotrophic/mixotrophic denitrification (SAD/SMD) system was used to investigate the changes in microbial interactions among the microbial communities under different nutrient condition. The removal efficiency of total nitrogen increased from 70% (SAD) to 97% (SMD). The Illumina sequencing analysis indicated that Planctomycetes was the most dominant bacterial phylum in anammox system. Thiobacillus and Sulfurimonas, two typical autotrophic denitrifiers, decreased significantly from 31.9% to 17.7%-12.2% and 9.3%, when the nutrient condition changed from SAD to SMD (P < 0.05). Meanwhile, some heterotrophic or mixotrophic denitrifying bacteria, including Gemmobacter, Pseudomonas and Thauera increased significantly (P < 0.05). Molecular ecological network (MEN) analysis showed that the addition of organic carbon substantially altered the overall architecture of the network. Compared with SAD, the SMD had shorter path lengths, indicating higher transfer efficiencies of information and materials among different microorganism. The addition of organic carbon increased the microbial interaction complexity of Proteobacteria. The links of Thiobacillus, which was a typical sulfur-oxidizing autotrophic denitrifying bacteria, significantly reduced (P < 0.05) with the addition of organic carbon, while the links of the heterotrophic bacteria Geobacter significantly increased (P < 0.05). This study provided new insights into our understanding of the shifts in the bacteria community and their microbial interactions under different nutrient conditions (SAD and SMD) in sulfur-supported denitrification system. (C) 2020 Elsevier Ltd. All rights reserved.
引用
收藏
页数:9
相关论文
共 50 条
  • [21] Efficient nitrogen removal in separate coupled-system of anammox and sulfur autotrophic denitrification with a nitrification side-branch under substrate fluctuation
    Wang, Tuo
    Guo, Jianbo
    Song, Yuanyuan
    Lian, Jing
    Li, Haibo
    Lu, Caicai
    Han, Yi
    Hou, Yanan
    SCIENCE OF THE TOTAL ENVIRONMENT, 2019, 696
  • [22] Transition from sulfur autotrophic to mixotrophic denitrification: Performance with different carbon sources, microbial community and artificial neural network modeling
    Zhang, Li
    Liu, Hong
    Wang, Yunxia
    Wang, Qi
    Pan, Wentao
    Tang, Zhiqiang
    Chen, Yongzhi
    Chemosphere, 2024, 366
  • [23] DNA stable isotope probing and metagenomics reveal temperature responses of sulfur-driven autotrophic partial denitrification coupled with anammox (SPDA) system
    Gong, Qingteng
    Zeng, Wei
    Hao, Xiaojing
    Wang, Yifei
    Peng, Yongzhen
    WATER RESEARCH, 2025, 280
  • [24] Mixotrophic denitrification for enhancing nitrogen removal of municipal tailwater: Contribution of heterotrophic/sulfur autotrophic denitrification and bacterial community
    Li, Yingying
    Liu, Ling
    Wang, Hongjie
    SCIENCE OF THE TOTAL ENVIRONMENT, 2022, 814
  • [25] Effect of salinity stress on nitrogen and sulfur removal performance of short-cut sulfur autotrophic denitrification and anammox coupling system
    Li, Xiang
    Yuan, Yan
    Dang, Pengze
    Li, Bo-lin
    Huang, Yong
    Li, Wei
    Zhang, Mao
    Shi, Miao
    Shen, Ziqi
    Xie, Linyan
    SCIENCE OF THE TOTAL ENVIRONMENT, 2023, 878
  • [26] Insights into sulfur cycling contribution to nitrogen removal in sulfur autotrophic denitrification combined microbial electrochemical denitrification
    Wang, Fei
    Liang, Dandan
    He, Weihua
    Liu, Guohong
    Li, Jiannan
    Tian, Yan
    Feng, Yujie
    CHEMICAL ENGINEERING JOURNAL, 2024, 482
  • [27] Impact of phenol on the performance, kinetics, microbial communities and functional genes of an autotrophic denitrification system
    Xia, Ting
    Xie, Minwei
    Chen, Dan
    Xiao, Zhixing
    BIOPROCESS AND BIOSYSTEMS ENGINEERING, 2019, 42 (07) : 1105 - 1114
  • [28] Impact of phenol on the performance, kinetics, microbial communities and functional genes of an autotrophic denitrification system
    Ting Xia
    Minwei Xie
    Dan Chen
    Zhixing Xiao
    Bioprocess and Biosystems Engineering, 2019, 42 : 1105 - 1114
  • [29] Pyrite and sulfur-coupled autotrophic denitrification system for efficient nitrate and phosphate removal
    Liu, Xuzhen
    Zhao, Changsheng
    Xu, Tongtong
    Liu, Wei
    Chen, Qingfeng
    Li, Luzhen
    Tan, Yu
    Wang, Xiaokai
    Dong, Yanan
    BIORESOURCE TECHNOLOGY, 2023, 384
  • [30] Microbial transcript and metabolome analysis uncover discrepant metabolic pathways in autotrophic and mixotrophic anammox consortia
    Feng, Ying
    Zhao, Yunpeng
    Guo, Yongzhao
    Liu, Sitong
    WATER RESEARCH, 2018, 128 : 402 - 411