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Expanding ecological assessment by integrating microorganisms into routine freshwater biomonitoring

机译:通过将微生物整合到常规淡水生物监唱体中扩大生态评估

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摘要

Bioindication has become an indispensable part of water quality monitoring in most countries of the world, with the presence and abundance of bioindicator taxa, mostly multicellular eukaryotes, used for biotic indices. In contrast, microbes (bacteria, archaea and protists) are seldom used as bioindicators in routine assessments, although they have been recognized for their importance in environmental processes. Recently, the use of molecular methods has revealed unexpected diversity within known functional groups and novel metabolic pathways that are particularly important in energy and nutrient cycling. In various habitats, microbial communities respond to eutrophication, metals, and natural or anthropogenic organic pollutants through changes in diversity and function. In this review, we evaluated the common trends in these changes, documenting that they have value as bioindicators and can be used not only for monitoring but also for improving our understanding of the major processes in lotic and lentic environments. Current knowledge provides a solid foundation for exploiting microbial taxa, community structures and diversity, as well as functional genes, in novel monitoring programs. These microbial community measures can also be combined into biotic indices, improving the resolution of individual bioindicators. Here, we assess particular molecular approaches complemented by advanced bioinformatic analysis, as these are the most promising with respect to detailed bioindication value. We conclude that microbial community dynamics are a missing link important for our understanding of rapid changes in the structure and function of aquatic ecosystems, and should be addressed in the future environmental monitoring of freshwater ecosystems. (c) 2020 The Author(s). Published by Elsevier Ltd. This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/ )
机译:生物indication在世界上大多数国家的水质监测中成为一个不可或缺的水质监测部分,存在和丰富的生物indicator分类群,主要是用于生物指数的多细胞真核生物。相比之下,微生物(细菌,古物组织和保护者)很少用作常规评估中的生物indinderators,尽管它们已被认可在环境过程中的重要性。最近,使用分子方法在已知的官能团和新的代谢途径中揭示了意外的多样性,所述新代谢途径在能量和营养循环中特别重要。在各种栖息地中,微生物社区通过多样性和功能的变化对富营养化,金属和天然或人为有机污染物作出反应。在本次审查中,我们评估了这些变化中的共同趋势,记录了它们具有作为生物监测器的价值,不仅可以用于监测,而且可以改善我们对大众和犹豫环境中的主要过程的理解。目前的知识为新颖的监测计划中的微生物分类群,社区结构和多样性以及功能基因提供了坚实的基础。这些微生物群落措施也可以组合成生物指数,从而改善单个生物indicer的分辨率。在这里,我们评估通过先进的生物信息分析补充的特定分子方法,因为这些是关于详细的生物indication值最有前景的。我们得出结论,微生物群落动态是我们对水生生态系统结构和功能的快速变化的缺失联系,并应在未来对淡水生态系统的环境监测中解决。 (c)2020提交人。由elsevier有限公司出版。这是CC By-NC-ND许可下的开放式访问文章(http://creativecommons.org/licenses/by-nc-nd/4.0/)

著录项

  • 来源
    《Water Research》 |2021年第1期|116767.1-116767.21|共21页
  • 作者单位

    Czech Univ Life Sci Dept Microbiol Nutr & Dietet Kamycka 129 Prague 16500 6 Czech Republic;

    Univ Duisburg Essen Biodivers Univ Str 5 D-45141 Essen Germany;

    INRAE UMR Carrtel 75 Av Corzent F-74203 Thonon Les Bains France|Univ Savoie Mont Blanc UMR CARRTEL FR-73370 Le Bourget Du Lac France;

    ID Gene Ecodiagnost Campus Biotech Innovat Pk 15 Av Secheron CH-1202 Geneva Switzerland;

    INRAE UMR Carrtel 75 Av Corzent F-74203 Thonon Les Bains France|Univ Savoie Mont Blanc UMR CARRTEL FR-73370 Le Bourget Du Lac France;

    Univ Geneva Dept Genet & Evolut Sci 3 4 Blvd Yvoy CH-1205 Geneva Switzerland;

    Salzburg Univ Hellbrunnerstr 34 A-5020 Salzburg Austria;

    Natl Inst Biol Vecna Pot 111 SI-1000 Ljubljana Slovenia;

    Natl Res Council Italy Water Res Inst IRSA CNR Via Salaria Km 29 300 CP 10 Monterotondo St I-00015 Rome Italy;

    Polish Acad Sci Inst Nat Conservat Ul Adama Mickiewicza 33 PL-31120 Krakow Poland;

    Tech Univ Kaiserslautern Ecol Grp D-67663 Kaiserslautern Germany;

    Charles Univ Prague Dept Ecol Fac Sci Vinicna 7 Prague 12844 Czech Republic;

    Univ Duisburg Essen Biodivers Univ Str 5 D-45141 Essen Germany;

    Bielefeld Univ Dept Anim Ecol Konsequenz 45 D-33615 Bielefeld Germany;

    Univ Dublin Trinity Coll Dublin Sch Nat Sci Dublin D02 PN40 2 Ireland;

    Crop Res Inst Epidemiol & Ecol Microoganisms Drnovska 507 Prague 16106 6 Czech Republic;

    Univ Duisburg Essen Aquat Ecosyst Resarch Univ Str 5 D-45141 Essen Germany;

    Estonian Univ Life Sci Inst Agr & Environm Sci Kreutzwaldi 5 EE-51006 Tartu Estonia;

    Inst Ruder Boskovic Bijenicka 54 Zagreb 10000 Croatia|Ctr Excellence Sci & Technol Integrating Mediterr Bijenicka 54 Zagreb 10000 Croatia;

    Estonian Univ Life Sci Inst Agr & Environm Sci Kreutzwaldi 5 EE-51006 Tartu Estonia;

    ID Gene Ecodiagnost Campus Biotech Innovat Pk 15 Av Secheron CH-1202 Geneva Switzerland|Univ Geneva Dept Genet & Evolut Sci 3 4 Blvd Yvoy CH-1205 Geneva Switzerland|Polish Acad Sci Inst Oceanol Powstancow Warszawy 55 PL-81712 Sopot Poland;

    Charles Univ Prague Dept Ecol Fac Sci Vinicna 7 Prague 12844 Czech Republic;

    Univ Dublin Trinity Coll Dublin Sch Nat Sci Dublin D02 PN40 2 Ireland;

    Norwegian Vet Inst POB 750 NO-0106 Oslo Norway|Univ Oslo Dept Biosci POB 1066 NO-0316 Oslo Norway;

    Lund Univ Fac Sci Dept Biol Solvegatan 37 S-22362 Lund Sweden;

    Bielefeld Univ Dept Anim Ecol Konsequenz 45 D-33615 Bielefeld Germany;

    CAS Biol Ctr Inst Hydrobiol Branisovska 31 Ceske Budejovice 37005 Czech Republic;

    Czech Univ Life Sci Dept Microbiol Nutr & Dietet Kamycka 129 Prague 16500 6 Czech Republic;

    Norwegian Vet Inst POB 750 NO-0106 Oslo Norway;

    Cyprus Univ Technol Dept Chem Engn 30 Arch Kyprianos Str CY-3036 Limassol Cyprus;

    Norwegian Vet Inst POB 750 NO-0106 Oslo Norway;

    Minist Environm Protect Omladinskih Brigada 1 Belgrade 11090 Serbia|Agcy Akvatorija 11 Krajiske Div 49 Belgrade 11090 Serbia;

    Natl Inst Biol Vecna Pot 111 SI-1000 Ljubljana Slovenia;

    Tech Univ Kaiserslautern Ecol Grp D-67663 Kaiserslautern Germany;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
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