先清理自己的房子:将可持续发展融入微生物实验室。

IF 3.5 3区 生物学 Q2 MICROBIOLOGY FEMS microbiology ecology Pub Date : 2024-06-17 DOI:10.1093/femsec/fiae084
Priscilla Carrillo-Barragan
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引用次数: 0

摘要

微生物实验室是探索微生物潜力和应对全球挑战的枢纽。特别是,环境微生物学设施在推动对实现联合国可持续发展目标至关重要的知识和能力方面具有重大影响。因此,必须采取可持续的做法,减轻研究活动对环境的影响,培养负责任的文化。这种方法不仅符合全球可持续发展目标,还能促进在科学研究中采用具有生态意识的创新方法,以解决紧迫的环境问题。对实验室实践环境足迹的关注激发了科学界的创新性改进,从资源节约型倡议到水和能源等基本商品的管理,不一而足。本视角借鉴先驱团体的报告和案例研究,讨论了微生物实验室可加强可持续发展努力的具体领域。此外,它还探讨了支持这些努力的潜在合作者,并强调了早期职业研究人员在推动这一转变中的关键作用。通过在环境微生物界发起讨论和激发好奇心,本评论力图从实验室环境入手,推动微生物生态学领域走向更加绿色的未来。
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Clean your own house first: integrating sustainability into microbiology labs.

Microbiology laboratories are pivotal hubs for exploring the potential of microorganisms and addressing global challenges. Particularly, Environmental Microbiology facilities hold substantial influence in advancing knowledge and capabilities crucial for achieving the United Nations Sustainable Development Goals. This raises the imperative of integrating sustainable practices to mitigate the environmental impact of research activities and foster a culture of responsibility. Such an approach not only aligns with global sustainability objectives but also catalyses innovative, eco-conscious methodologies in scientific research aimed at tackling pressing environmental issues. Concerns regarding the environmental footprint of laboratory practices have stimulated innovative improvements within the scientific community, ranging from resource-efficient initiatives to the management of essential commodities like water and energy. This perspective discusses specific areas where microbiology laboratories can enhance their sustainability efforts, drawing on reports and case studies of pioneering groups. Additionally, it explores potential collaborators to support these endeavours and emphasises the pivotal role of early career researchers in driving this transition. By initiating discussions and sparking curiosity within the environmental microbial community, this commentary seeks to propel the microbial ecology field toward a greener future, starting from within the laboratory environment.

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来源期刊
FEMS microbiology ecology
FEMS microbiology ecology 生物-微生物学
CiteScore
7.50
自引率
2.40%
发文量
132
审稿时长
3 months
期刊介绍: FEMS Microbiology Ecology aims to ensure efficient publication of high-quality papers that are original and provide a significant contribution to the understanding of microbial ecology. The journal contains Research Articles and MiniReviews on fundamental aspects of the ecology of microorganisms in natural soil, aquatic and atmospheric habitats, including extreme environments, and in artificial or managed environments. Research papers on pure cultures and in the areas of plant pathology and medical, food or veterinary microbiology will be published where they provide valuable generic information on microbial ecology. Papers can deal with culturable and non-culturable forms of any type of microorganism: bacteria, archaea, filamentous fungi, yeasts, protozoa, cyanobacteria, algae or viruses. In addition, the journal will publish Perspectives, Current Opinion and Controversy Articles, Commentaries and Letters to the Editor on topical issues in microbial ecology. - Application of ecological theory to microbial ecology - Interactions and signalling between microorganisms and with plants and animals - Interactions between microorganisms and their physicochemical enviornment - Microbial aspects of biogeochemical cycles and processes - Microbial community ecology - Phylogenetic and functional diversity of microbial communities - Evolutionary biology of microorganisms
期刊最新文献
Ecological processes shaping highly connected bacterial communities along strong environmental gradients. Genomic insights into key mechanisms for carbon, nitrogen, and phosphate assimilation by the acidophilic, halotolerant genus Acidihalobacter members. Regulators of aerobic and anaerobic methane oxidation in two pristine temperate peatland types. Unveiling detoxifying symbiosis and dietary influence on the Southern green shield bug microbiota. Emergence of dauer larvae in Caenorhabditis elegans disrupts continuity of host-microbiome interactions.
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