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Ecosystem Microbiology of Coral Reefs: Linking Genomic, Metabolomic, and Biogeochemical Dynamics from Animal Symbioses to Reefscape Processes

机译:珊瑚礁的生态系统微生物学:将来自动物共混物的基因组,代谢组和生物地球化学动力学与refecape过程联系起来

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Over the past 2 decades, molecular techniques have established the critical role of both free-living and host-associated microbial partnerships in the environment. Advancing research to link microbial community dynamics simultaneously to host physiology and ecosystem biogeochemistry is required to broaden our understanding of the ecological roles of environmental microbes. Studies on coral reefs are actively integrating these data streams at multiple levels, from the symbiotic habitat of the coral holobiont to microbially mediated interactions between corals and algae to the effects of these interactions on the microbial community structure, metabolism, and organic geochemistry of the reef ecosystem. Coral reefs endure multiple anthropogenic impacts, including pollution, overfishing, and global change. In this context, we must develop ecosystem microbiology with an eye to providing managers with microbial indicators of reef ecosystem processes, coral health, and resilience to both local and global stressors.
机译:在过去的2年中,分子技术已经建立了自由生和宿主相关的微生物伙伴关系在环境中的关键作用。推进研究以同时链接微生物群落动态以宿主生理学和生态系统生物地球化学需要扩大我们对环境微生物的生态作用的理解。珊瑚礁的研究在珊瑚血脂的共生栖息地以多种水平积极整合这些数据流,以微生物介导的珊瑚和藻类之间的相互作用与这些相互作用对微生物群落结构,新陈代谢和有机地球化学的影响生态系统。珊瑚礁忍受多次人为影响,包括污染,过度捕捞和全球变化。在这种情况下,我们必须用眼睛发展生态系统微生物学,以便向珊瑚礁生态系统流程,珊瑚健康和适应局部和全球压力源的珊瑚健康和弹性的微生物指标提供管理人员。

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