Mazière C, Duran R, Dupuy C, Cravo-Laureau C
Université de Pau et des Pays de l'Adour, E2S UPPA, CNRS, IPREM UMR 525-Bât. IBEAS, BP1155, Pau, France.
La Rochelle Université, CNRS, UMR 7266 LIENSs (Littoral Environnement et Sociétés)-2, rue Olympe de Gouges, Bât. ILE, La Rochelle, France.
Front Microbiol. 2023 Jun 15;14:1039658. doi: 10.3389/fmicb.2023.1039658. eCollection 2023.
Marine environments are expected to be one of the most affected ecosystems by climate change, notably with increasing ocean temperature and ocean acidification. In marine environments, microbial communities provide important ecosystem services ensuring biogeochemical cycles. They are threatened by the modification of environmental parameters induced by climate change that, in turn, affect their activities. Microbial mats, ensuring important ecosystem services in coastal areas, are well-organized communities of diverse microorganisms representing accurate microbial models. It is hypothesized that their microbial diversity and metabolic versatility will reveal various adaptation strategies in response to climate change. Thus, understanding how climate change affects microbial mats will provide valuable information on microbial behaviour and functioning in changed environment. Experimental ecology, based on mesocosm approaches, provides the opportunity to control physical-chemical parameters, as close as possible to those observed in the environment. The exposure of microbial mats to physical-chemical conditions mimicking the climate change predictions will help to decipher the modification of the microbial community structure and function in response to it. Here, we present how to expose microbial mats, following a mesocosm approach, to study the impact of climate change on microbial community.
海洋环境预计将成为受气候变化影响最严重的生态系统之一,特别是随着海洋温度升高和海洋酸化加剧。在海洋环境中,微生物群落提供重要的生态系统服务,确保生物地球化学循环。它们受到气候变化引起的环境参数变化的威胁,而这些变化反过来又会影响它们的活动。微生物垫在沿海地区提供重要的生态系统服务,是由各种微生物组成的组织良好的群落,代表了精确的微生物模型。据推测,它们的微生物多样性和代谢多功能性将揭示应对气候变化的各种适应策略。因此,了解气候变化如何影响微生物垫将为微生物在变化环境中的行为和功能提供有价值的信息。基于中宇宙方法的实验生态学提供了控制物理化学参数的机会,尽可能接近在环境中观察到的参数。将微生物垫暴露于模拟气候变化预测的物理化学条件下,将有助于解读微生物群落结构和功能对其的响应变化。在此,我们介绍如何按照中宇宙方法将微生物垫暴露于气候变化下,以研究其对微生物群落的影响。