Humic acid-dependent respiratory growth of Methanosarcina acetivorans involves pyrroloquinoline quinone

被引:0
|
作者
Yuanxu Song
Rui Huang
Ling Li
Kaifeng Du
Fanping Zhu
Chao Song
Xianzheng Yuan
Mingyu Wang
Shuguang Wang
James G. Ferry
Shungui Zhou
Zhen Yan
机构
[1] Shandong University,Shandong Key Laboratory of Water Pollution Control and Resource Reuse, School of Environmental Science and Engineering
[2] Shandong University,State Key Laboratory of Microbial Technology, Microbial Technology Institute
[3] Pennsylvania State University,Department of Biochemistry and Molecular Biology
[4] Fujian Agriculture and Forestry University,Fujian Provincial Key Laboratory of Soil Environmental Health and Regulation, College of Resources and Environment
[5] Shandong University,Suzhou Research Institute
来源
The ISME Journal | 2023年 / 17卷
关键词
D O I
暂无
中图分类号
学科分类号
摘要
Although microbial humus respiration plays a critical role in organic matter decomposition and biogeochemical cycling of elements in diverse anoxic environments, the role of methane-producing species (methanogens) is not well defined. Here we report that a major fraction of humus, humic acid reduction enhanced the growth of Methanosarcina acetivorans above that attributed to methanogenesis when utilizing the energy sources methanol or acetate, results which showed both respiratory and fermentative modes of energy conservation. Growth characteristics with methanol were the same for an identically cultured mutant deleted for the gene encoding a multi-heme cytochrome c (MmcA), results indicating MmcA is not essential for respiratory electron transport to humic acid. Transcriptomic analyses revealed that growth with humic acid promoted the upregulation of genes annotated as cell surface pyrroloquinoline quinone (PQQ)-binding proteins. Furthermore, PQQ isolated from the membrane fraction was more abundant in humic acid-respiring cells, and the addition of PQQ improved efficiency of the extracellular electron transport. Given that the PQQ-binding proteins are widely distributed in methanogens, the findings extend current understanding of microbial humus respiration in the context of global methane dynamics.
引用
收藏
页码:2103 / 2111
页数:8
相关论文
共 50 条
  • [1] Humic acid-dependent respiratory growth of Methanosarcina acetivorans involves pyrroloquinoline quinone
    Song, Yuanxu
    Huang, Rui
    Li, Ling
    Du, Kaifeng
    Zhu, Fanping
    Song, Chao
    Yuan, Xianzheng
    Wang, Mingyu
    Wang, Shuguang
    Ferry, James G.
    Zhou, Shungui
    Yan, Zhen
    ISME JOURNAL, 2023, 17 (11): : 2103 - 2111
  • [2] Humic acid-dependent respiratory growth of Methanosarcina acetivorans involves pyrroloquinoline quinone
    Lovley, Derek R.
    Holmes, Dawn E.
    ISME JOURNAL, 2024, 18 (01):
  • [3] Response to comment on "Humic acid-dependent respiratory growth of Methanosarcina acetivorans involves pyrroloquinoline quinone" by Yuanxu Song et al.
    Song, Yuanxu
    Huang, Rui
    Li, Ling
    Wang, Mingyu
    Wang, Shuguang
    Ferry, James G.
    Yan, Zhen
    ISME JOURNAL, 2024, 18 (01):
  • [4] Pyruvate-dependent growth of Methanosarcina acetivorans
    Richter, Marcus
    Sattler, Christian
    Schoene, Christian
    Rother, Michael
    JOURNAL OF BACTERIOLOGY, 2024, 206 (02)
  • [5] Nature AND nurture: enabling formate-dependent growth in Methanosarcina acetivorans
    Bao, Jichen
    Somvanshi, Tejas
    Tian, Yufang
    Laird, Maxime G.
    Garcia, Pierre Simon
    Schoene, Christian
    Rother, Michael
    Borrel, Guillaume
    Scheller, Silvan
    FEBS JOURNAL, 2025,
  • [6] Unveiling the Biochar-Respiratory Growth of Methanosarcina acetivorans Involving Extracellular Polymeric Substances
    Rui Huang
    Chuyan Tang
    Yameng Zhao
    Lina Liu
    Jiazhe Chen
    Zhirui Shi
    Zhen Yan
    Microbial Ecology, 2023, 86 : 2970 - 2980
  • [7] Unveiling the Biochar-Respiratory Growth of Methanosarcina acetivorans Involving Extracellular Polymeric Substances
    Huang, Rui
    Tang, Chuyan
    Zhao, Yameng
    Liu, Lina
    Chen, Jiazhe
    Shi, Zhirui
    Yan, Zhen
    MICROBIAL ECOLOGY, 2023, 86 (04) : 2970 - 2980
  • [8] Pyrroloquinoline quinone-dependent dehydrogenases of acetic acid bacteria
    Matsutani, Minenosuke
    Yakushi, Toshiharu
    APPLIED MICROBIOLOGY AND BIOTECHNOLOGY, 2018, 102 (22) : 9531 - 9540
  • [9] MrpA Functions in Energy Conversion during Acetate-Dependent Growth of Methanosarcina acetivorans
    Jasso-Chavez, Ricardo
    Apolinario, Ethel E.
    Sowers, Kevin R.
    Ferry, James G.
    JOURNAL OF BACTERIOLOGY, 2013, 195 (17) : 3987 - 3994
  • [10] Pyrroloquinoline quinone-dependent dehydrogenases of acetic acid bacteria
    Minenosuke Matsutani
    Toshiharu Yakushi
    Applied Microbiology and Biotechnology, 2018, 102 : 9531 - 9540