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全球变暖对海洋微生物群落的影响。

Impacts of global warming on marine microbial communities.

机构信息

Centre for Drug Discovery and Development, Sathyabama Institute of Science and Technology, Chennai 600 119, Tamil Nadu, India.

Sathyabama Institute of Science and Technology, Chennai 600119, Tamil Nadu, India; School of Medicine, Loma Linda University, CA, USA; Musculoskeletal Disease Research Laboratory, US Department of Veteran Affairs, Loma Linda, CA, USA.

出版信息

Sci Total Environ. 2021 Oct 15;791:147905. doi: 10.1016/j.scitotenv.2021.147905. Epub 2021 May 21.

Abstract

Global warming in ocean ecosystems alters temperature, acidification, oxygen content, circulation, stratification, and nutrient inputs. Microorganisms play a dominant role in global biogeochemical cycles crucial for a planet's sustainability. Since microbial communities are highly dependent on the temperature factor, fluctuations in the same will lead to adverse effects on the microbial community organization. Throughout the Ocean, increase in evaporation rates causes the surface mixed layer to become shallower. This intensified stratification inhibits vertical transport of nutrient supplies. Such density driven processes will decrease oxygen solubility in surface waters leading to significant decrease of oxygen from future Ocean. Metabolism and diversity of microbes along with ocean biogeochemistry will be at great risk due to global warming and its related effects. As a response to the changes in temperature, alteration in the distribution of phytoplankta communities is observed all over the planet, creating changes in the primary production of the ocean causing massive impact on the biosphere. Marine microbial communities try to adapt to the changing ocean environmental conditions by responding with biogeographic range shifts, community structure modifications, and adaptive evolution. Persistence of this climate change on ocean ecosystems, in future, will pose serious threat to the metabolism and distribution of marine microbes leading to fluctuations in the biogeochemical cycles thereby affecting the overall ecosystem functioning. Genomics plays an important role in marine microbial research by providing tools to study the association between environment and organisms. The ecological and genomic perspectives of marine microbes are being investigated to design effective models to understand their physiology and evolution in a changing ocean. Mesocosm/microcosm experimental studies and field studies are in the need of the hour to evaluate the impact of climate shifts on microbial genesis.

摘要

全球变暖改变了海洋生态系统的温度、酸化、含氧量、循环、分层和营养物质输入。微生物在全球生物地球化学循环中起着主导作用,这些循环对地球的可持续性至关重要。由于微生物群落高度依赖于温度因素,温度的波动将对微生物群落组织产生不利影响。在整个海洋中,蒸发率的增加导致表层混合层变浅。这种加剧的分层抑制了营养物质的垂直输送。这种密度驱动的过程将降低表层水中的氧气溶解度,导致未来海洋中的氧气大量减少。由于全球变暖及其相关影响,微生物的代谢和多样性以及海洋生物地球化学将面临巨大风险。作为对温度变化的响应,全球范围内都观察到浮游植物群落分布的改变,导致海洋初级生产力的变化,对生物圈产生巨大影响。海洋微生物群落通过生物地理范围转移、群落结构修改和适应性进化来适应不断变化的海洋环境条件。未来,这种气候变化对海洋生态系统的持续存在将对海洋微生物的代谢和分布构成严重威胁,导致生物地球化学循环的波动,从而影响整个生态系统的功能。基因组学在海洋微生物研究中起着重要作用,它提供了研究环境与生物之间关系的工具。正在从生态和基因组学的角度研究海洋微生物,以设计有效的模型来了解它们在变化的海洋中的生理和进化。中观/微观实验研究和实地研究是当前的需要,以评估气候变化对微生物起源的影响。

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