数字农科院2.0

Acclimation Time Enhances Adaptation of Heterotrophic Nitrifying-Aerobic Denitrifying Microflora to Linear Anionic Surfactant Stress

文献类型: 外文期刊

作者: Han, Huihui;Chen, Peizhen;Zhao, Wenjie;Li, Shaopeng;Zhang, Keyu

作者机构:

关键词: heterotrophic nitrification-aerobic denitrification (HN-AD);microbial adaptation;linear anionic surfactant (LAS);metagenomic analysis;stress response;nitrogen removal

期刊名称: MICROORGANISMS

ISSN:

年卷期: 2025 年 13 卷 5 期

页码:

收录情况: SCIE(2025版)

摘要: Linear anionic surfactants (LAS) pose significant stress to microbial denitrification in wastewater treatment. This study investigated the performance and adaptation mechanisms of heterotrophic nitrification-aerobic denitrification (HN-AD) microbial consortia under LAS exposure after short-term (SCM, 2 months) and long-term (LCM, 6 months) acclimation. Results showed a dose-dependent inhibition of total nitrogen (TN) removal, with LCM achieving 97.40% TN removal under 300 mg/L LAS, which was 16.89% higher than SCM. Biochemical assays indicated that LCM exhibited lower reactive oxygen species (ROS) levels, a higher ATP content, and reduced LDH release, suggesting enhanced oxidative stress resistance and membrane stability. EPS secretion also increased in LCM, contributing to environmental tolerance. Metagenomic analysis revealed that long-term acclimation enriched key genera including Pseudomonas, Aeromonas, and Stutzerimonas, which maintained higher expression of denitrification (e.g., nosZ, nirS) and ammonium assimilation genes (glnA, gltB). Although high LAS concentrations reduced overall community diversity and led to convergence between SCM and LCM structures, LCM retained greater functional capacity and stress resistance. These findings underscore the importance of acclimation in sustaining denitrification performance under surfactant pressure and offer valuable insights for engineering robust microbial consortia in complex wastewater environments.

分类号:

  • 相关文献

[1]NITROGEN REMOVAL FROM ANAEROBICALLY DIGESTED SWINE WASTEWATER THROUGH COMBINED AMMONIA STRIPPING AND MEMBRANE BIOREACTOR PROCESSES. Sui, Q.,Zhu, Z.,Dong, H.,Wang, Y..

[2]Promotion of nitrogen removal in a zero-valent iron-mediated nitrogen removal system operated in co-substrate mode. Han Yang,Liangwei Deng,Hongnan Yang,Youqian Xiao,Dan Zheng. 2022

[3]Nitrogen removal and performance deterioration in digested effluent treatment by partial nitrification-anammox (PNA) process based on aeration sedimentation integrated microaerobic reactor (ASIMR). Jiaxin Liu,Jingni Zhang,Yan Huang,Yingying Cai,Hongnan Yang,Wenguo Wang,Liangwei Deng. 2024

[4]Nitrogen removal from digested effluent of swine wastewater using an integrated aeration (mixing)–sedimentation reactor. Jiaxin Liu,Yingying Cai,Yan Huang,Jingni Zhang,Hongnan Yang,Wenguo Wang,Liangwei Deng. 2025

[5]Different rapid startups for high-solid anaerobic digestion treating pig manure: Metagenomic insights into antibiotic resistance genes fate and microbial metabolic pathway. Wenxuan Gao,Suli Zhi,Chein Chi Chang,Shaolan Zou,Keqiang Zhang. 2023

[6]Metagenome Analysis Identifies Microbial Shifts upon Deoxynivalenol Exposure and Post-Exposure Recovery in the Mouse Gut. Jing Jin,Chen Zhang,Xiaoxu Ren,Bowen Tai,Fuguo Xing. 2023

[7]Metagenomic Sequencing From Mosquitoes In C.hina Reveals A Variety O f Insect And Human Viruses. Xiao, PP, Li, CH, Zhang, Y, Han, JC, Guo, XF, Xie, L, Tian, MY, Li, YQ, Wang, MP, Liu, H, Ren, JQ, Zhou, HN, Lu, HJ, Jin, NY. 2018

[8]Metagenomic Analysis Of Flaviviridae In M.osquito Viromes Isolated From Y unnan Province In China Reveals Genes From Dengue And Zika Viruses. Xiao, PP, Han, JC, Zhang, Y, Li, CH, Guo, XF, Wen, SB, Tan, MY, Li, YQ, Wang, MP, Liu, H, Ren, JQ, Zhou, HN, Lu, HJ, Jin, NY. 2018

[9]Nitrogen fertilization and soil nitrogen cycling: Unraveling the links among multiple environmental factors, functional genes, and transformation rates. Lei Du,Haohui Zhong,Xinnian Guo,Hongna Li,Jianxin Xia,Qian Chen. 2024

[10]Novel compound bacterial agent effects on pig farm wastewater denitrification and nitrogen transformation. Rong Gao,Zhuangzhuang Liu,Weikun Li,Liu Lou,Tong Xu,Lin Shi,Jie Cao,Jun Fang,Gang Liu. 2025

[11]Micro/nanobubble aeration promotes rapid and stable partial nitrification by strengthening the synergistic activity of functional microbial communities in the treatment of low-strength rural wastewater. Mathieu Nsenga kumwimba,Jing Li,Xuyong Li,Mawuli Dzakpasu,Binessi Edouard Ifon,Diana Kavidia Muyembe,Jinlou Huang. 2025

[12]Comparative Transcriptional Profiling of Melatonin Synthesis and Catabolic Genes Indicates the Possible Role of Melatonin in Developmental and Stress Responses in Rice. Wei, Yunxie,Zeng, Hongqiu,He, Chaozu,Shi, Haitao,Hu, Wei,Chen, Lanzhen. 2016

[13]Cloning and characterization of TaSnRK2.3, a novel SnRK2 gene in common wheat. Tian, Shanjun,Mao, Xinguo,Zhang, Hongying,Chen, Shuangshuang,Zhai, Chaochao,Jing, Ruilian,Tian, Shanjun,Yang, Shimin. 2013

[14]PMTED: a plant microRNA target expression database. Sun, Xiuli,Dong, Boquan,Du, Wei,Liang, Yanchun,Yin, Lingjie,Zhang, Rongzhi,Liu, Dongfeng,Shi, Nan,Li, Aili,Mao, Long. 2013

[15]Identification and functional characterization of the NAC gene promoter from Populus euphratica. Wang, Jun-Ying,Wang, Jun-Ping,Yang, Hai-Feng.

[16]Molecular cloning and functional analysis of the drought tolerance gene MsHSP70 from alfalfa (Medicago sativa L.). Li, Zhenyi,Long, Ruicai,Zhang, Tiejun,Wang, Zhen,Zhang, Fan,Yang, Qingchuan,Kang, Junmei,Sun, Yan.

[17]Cross-talk between nitric oxide and hydrogen peroxide in plant responses to abiotic stresses. Qiao, Weihua,Li, Chaonan,Fan, Liu-Min.

[18]Functional identification of apple MdJAZ2 in Arabidopsis with reduced JA-sensitivity and increased stress tolerance. An, Xiu-Hong,Li, En-Mao,Xu, Kai,Cheng, Cun-Gang,Hao, Yu-Jin.

[19]TaNAC2, a NAC-type wheat transcription factor conferring enhanced multiple abiotic stress tolerances in Arabidopsis. Mao, Xinguo,Zhang, Hongying,Qian, Xueya,Li, Ang,Zhao, Guangyao,Jing, Ruilian.

[20]Identification of 7 stress-related NAC transcription factor members in maize (Zea mays L.) and characterization of the expression pattern of these genes. Lu, Min,Sun, Qing-Peng,Pan, Jin-bao,Zhang, Deng-feng,Wang, Tian-Yu.

作者其他论文 更多>>