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Ocean acidification and marine microorganisms: responses and consequences

机译:海洋酸化和海洋微生物:反应和后果

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Ocean acidification (OA) is one of the global issues caused by rising atmospheric CO"2. The rising pCO"2 and resulting pH decrease has altered ocean carbonate chemistry. Microbes are key components of marine environments involved in nutrient cycles and carbon flow in marine ecosystems. However, these marine microbes and the microbial processes are sensitive to ocean pH shift. Thus, OA affects the microbial diversity, primary productivity and trace gases emission in oceans. Apart from that, it can also manipulate the microbial activities such as quorum sensing, extracellular enzyme activity and nitrogen cycling. Short-term laboratory experiments, mesocosm studies and changing marine diversity scenarios have illustrated undesirable effects of OA on marine microorganisms and ecosystems. However, from the microbial perspective, the current understanding on effect of OA is based mainly on limited experimental studies. It is challenging to predict response of marine microbes based on such experiments for this complex process. To study the response of marine microbes towards OA, multiple approaches should be implemented by using functional genomics, new generation microscopy, small-scale interaction among organisms and/or between organic matter and organisms. This review focuses on the response of marine microorganisms to OA and the experimental approaches to investigate the effect of changing ocean carbonate chemistry on microbial mediated processes.
机译:海洋酸化(OA)是由大气CO“ 2升高引起的全球性问题之一。pCO” 2升高以及由此导致的pH降低改变了海洋碳酸盐的化学性质。微生物是海洋环境中涉及营养循环和海洋生态系统碳流量的关键组成部分。但是,这些海洋微生物和微生物过程对海洋pH值变化敏感。因此,OA影响海洋中的微生物多样性,初级生产力和微量气体排放。除此之外,它还可以操纵微生物活性,例如群体感应,细胞外酶活性和氮循环。短期实验室实验,中观宇宙研究和不断变化的海洋多样性情景说明,OA对海洋微生物和生态系统产生了不良影响。然而,从微生物的角度来看,目前对OA的了解主要是基于有限的实验研究。基于这种复杂过程的实验来预测海洋微生物的反应是具有挑战性的。为了研究海洋微生物对OA的反应,应通过使用功能基因组学,新一代显微镜,生物之间和/或有机物与生物之间的小规模相互作用来实施多种方法。这篇综述着重于海洋微生物对OA的响应以及研究改变海洋碳酸盐化学对微生物介导过程的影响的实验方法。

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