数字农科院2.0

Metagenomics and metatranscriptomics uncover the regulatory mechanism of nitrogen metabolism response to aggregation status of anammox bacteria

文献类型: 外文期刊

作者: Ru Wang;Jinshi Lian;Wenyan Wang;James P. Shapleigh;Longxing Jiang;Yahui Wang;Yan Huang;Ling Xie;Liangwei Deng;Wenguo Wang;Lan Wang

作者机构:

关键词: Aggregation pathways;Anammox bacteria;Metagenome;Metatranscriptome;Nitrogen metabolism

期刊名称: Chemical Engineering Journal

ISSN: 1385-8947

年卷期: 2025 年 511 卷

页码:

收录情况: SCIE(2025版) ; ; EI(2025版)

摘要: Auto-aggregation of anammox bacteria is known to enhance their activities and growth, yet the regulatory mechanism remains elusive. We address this issue using two anammox reactors: Nspd (with the aggregation inhibitor-norspermidine) and Aggre (control). After the 155 days of incubation, the mean diameter of the Nspd sludge (232.09 μm) was significantly lower than the Aggre sludge (510.56 μm), and the Nspd sludge exhibited lower extracellular protein content (1.10 mg/g-VSS) compared to Aggre (1.33 mg/g-VSS) but higher neutral exopolysaccharide content (23.97 vs. 17.37 mg/g-VSS). It means that norspermidine leads to disaggregation of anammox bacteria by breaking and altering EPS structure which further decreased ammonia removal efficiency (80.0 % and 98.3 % in Aggre and Nspd). The negative impact was also verified by physical grinding separation method of anammox granules. Metagenomic and metatranscriptomic analysis indicated that a Candidatus Brocadia strain, Bro-MAG_N75, dominated in both reactors and disaggregation induced a decrease of cAMP and quorum sensing (QS) signals levels as well as the increase of the c-di-GMP level. Then, this modulation of signal levels up-regulated the expression levels of exopolysaccharides and extracellular proteins (two fold), however down-regulated those of the principal nitrogen metabolic enzymes of Bro-MAG_N75 by approximately 50 %, namely hydrazine synthase and hydrazine oxidoreductase. Concurrently, there was an up-regulation of non-mainstream nitrogen metabolic pathways, like DNRA and potential denitrification, which enhance metabolic diversity. These findings reveal the mechanism of aggregation through QS signals and second messengers regulating nitrogen metabolic activity and finally enhancing the activities and growth rate of anammox bacteria.

分类号:

  • 相关文献

[1]Multi-Omic Analysis in a Metabolic Syndrome Porcine Model Implicates Arachidonic Acid Metabolism Disorder as a Risk Factor for Atherosclerosis. Song Song Xu,Xiu Ling Zhang,Sha Sha Liu,Shu Tang Feng,Guang Ming Xiang,Chang Jiang Xu,Zi Yao Fan,Kui Xu,Nan Wang,Yue Wang,Jing Jing Che,Zhi Guo Liu,Yu Lian Mu,Kui Li. 2022

[2]Aggregation enhances the activity and growth rate of anammox bacteria and its mechanisms. Wen yan Wang,Ru Wang,Ghulam Abbas,Gang Wang,Zhi guo Zhao,Liang wei Deng,Lan Wang. 2022

[3]Metatranscriptome Analysis Of The Intestinal M.icroorganisms In Pardosa Pseudoannulata I n Response To Cadmium Stress. Yang, HL, Wang, J, Lv, ZY, Tian, JX, Peng, YD, Peng, XJ, Xu, X, Song, QS, Lv, B, Chen, ZY, Sun, ZY, Wang, Z. 2018

[4]Topography effect on Aspergillus flavus occurrence and aflatoxin B1 contamination associated with peanut. Yanpo Yao,Suyan Gao,Xiaoxia Ding,Qi Zhang,Peiwu Li. 2021

[5]Effects of salt stress on ion balance and nitrogen metabolism of old and young leaves in rice (Oryza sativa L.). Wang, Huan,Shi, Decheng,Liu, Bao,Yang, Chunwu,Zhang, Meishan,Guo, Rui,Lin, Xiuyun. 2012

[6]Planting density and leaf-square regulation affected square size and number contributing to altered insecticidal protein content in Bt cotton. Yuan Chen,Yabing Li,Yuan Chen,Eltayib H.M.A. Abidallha,Dapeng Hu,Yuan Li,Xiang Zhang,Dehua Chen.

[7]ES7, encoding a ferredoxin-dependent glutamate synthase, functions in nitrogen metabolism and impacts leaf senescence in rice. Bi, Zhenzhen,Zhang, Yingxin,Wu, Weixun,Zhan, Xiaodeng,Yu, Ning,Xu, Tingting,Liu, Qunen,Li, Zhi,Shen, Xihong,Chen, Daibo,Cheng, Shihua,Cao, Liyong,Bi, Zhenzhen,Zhang, Yingxin,Wu, Weixun,Zhan, Xiaodeng,Yu, Ning,Xu, Tingting,Liu, Qunen,Li, Zhi,Shen, Xihong,Chen, Daibo,Cheng, Shihua,Cao, Liyong.

[8]Arabidopsis plastidial folylpolyglutamate synthetase is required for nitrogen metabolism under nitrate-limited condition in darkness. Meng, Hongyan,Xu, Bosi,Zhang, Chunyi,Jiang, Ling,Zhang, Chunyi,Jiang, Ling.

[9]Glutamate dehydrogenase isogenes CsGDHs cooperate with glutamine synthetase isogenes CsGSs to assimilate ammonium in tea plant (Camellia sinensis L.). Dandan Tang,Zixin Jiao,Qunfeng Zhang,Mei Ya Liu,Jianyun Ruan. 2021

[10]Effects of the SLC38A2–mTOR Pathway Involved in Regulating the Different Compositions of Dietary Essential Amino Acids–Lysine and Methionine on Growth and Muscle Quality in Rabbits. Bin Zhang,Boyuan Ning,Xiaoyang Chen,Chenyang Li,Mengqi Liu,Zhengkai Yue,Lei Liu,Fuchang Li. 2022

[11]Trehalose Outperforms Chitosan, Humic Acid and Gamma-Aminobutyric Acid in Promoting the Growth of Field Maize. Li, Bingyan,Guo, Tengfei,Zhou, Wei. 2022

[12]CO2 enhances low-nitrogen adaption by promoting amino acid metabolism in Brassica napus. Zhenhua Zhang,Zhimin Wu. 2023

[13]Gibberellins inhibit flavonoid biosynthesis and promote nitrogen metabolism in medicago truncatula. Hao Sun,Huiting Cui,Jiaju Zhang,Junmei Kang,Zhen Wang,Mingna Li,Fengyan Yi,Qingchuan Yang,Ruicai Long. 2021

[14]Dissecting of the Deterioration in Eating Quality for Erect Panicle (Ep) Type High Yield Japonica Super Rice in Northest China. Sibo Chen,Shuangjie Chen,Yihui Jiang,Qing Lu,Zhongyuan Liu,Wanying Liu,Xuhong Wang,Wenhua Shi,Quan Xu,Jian Sun,Fan Zhang,Liang Tang. 2022

[15]Glutamate dehydrogenase isogenes CsGDHs cooperate with glutamine synthetase isogenes CsGSs to assimilate ammonium in tea plant (Camellia sinensis L.). Dandan Tang,Zixin Jiao,Qunfeng Zhang,Mei Ya Liu,Jianyun Ruan. 2021

[16]Genome-wide expression analysis reveals involvement of asparagine synthetase family in cotton development and nitrogen metabolism. Asif Iqbal,Gui Huiping,Wang Xiangru,Zhang Hengheng,Zhang Xiling,Song Meizhen. 2022

[17]Mechanisms of nitrogen transformation driven by functional microbes during thermophilic fermentation in an ex situ fermentation system. Sihan Zhou,Zhen Song,Zhanbiao Li,Rongye Qiao,Mengjie Li,Yifan Chen,Hui Guo. 2022

[18]Ralstonia solanacearum Infection Disturbed the Microbiome Structure Throughout the Whole Tobacco Crop Niche as Well as the Nitrogen Metabolism in Soil. Wang, Zhaobao,Zhang, Yuzhen,Bo, Guodong,Zhang, Yanping,Chen, Yu,Shen, Minchong,Zhang, Peng,Li, Guitong,Zhou, Jie,Li, Zhengfeng,Yang, Jianming. 2022

[19]Melatonin Attenuates the Urea-Induced Yields Improvement Through Remodeling Transcriptome and Rhizosphere Microbial Community Structure in Soybean. Xiao R.,Han Q.,Liu Y.,Zhang X.,Hao Q.,Chai Q.,Hao Y.,Deng J.,Li X.,Ji H.. 2022

[20]C1 gas protein: A potential protein substitute for advancing aquaculture sustainability. Wang, Jie,Chen, Limei,Xu, Jian,Ma, Shifeng,Liang, Xiaofang,Wei, Zuoxi,Li, Demao,Xue, Min. 2022

作者其他论文 更多>>