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Microbiome Engineering:A Promising Approach to Improve Coral Health 被引量:1
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作者 Jie Li Qingsong Yang +7 位作者 Junde Dong Michael Sweet Ying Zhang Cong Liu Yanying Zhang Xiaoyu Tang Wenqian Zhang Si Zhang 《Engineering》 SCIE EI CAS CSCD 2023年第9期105-116,共12页
The world’s coral reefs are threatened by the cumulative impacts of global climate change and local stressors.Driven largely by a desire to understand the interactions between corals and their symbiotic microorganism... The world’s coral reefs are threatened by the cumulative impacts of global climate change and local stressors.Driven largely by a desire to understand the interactions between corals and their symbiotic microorganisms,and to use this knowledge to eventually improve coral health,interest in coral microbiology and the coral microbiome has increased in recent years.In this review,we summarize the role of the coral microbiome in maintaining a healthy metaorganism by providing nutrients,support for growth and development,protection against pathogens,and mitigation of environmental stressors.We explore the concept of coral microbiome engineering,that is,precise and controlled manipulation of the coral microbiome to aid and enhance coral resilience and tolerance in the changing oceans.Although coral microbiome engineering is clearly in its infancy,several recent breakthroughs indicate that such engineering is an effective tool for restoration and preservation of these valuable ecosystems.To assist with identifying future research targets,we have reviewed the common principles of microbiome engineering and its applications in improving human health and agricultural productivity,drawing parallels to where coral microbiome engineering can advance in the not-too-distant future.Finally,we end by discussing the challenges faced by researchers and practitioners in the application of microbiome engineering in coral reefs and provide recommendations for future work. 展开更多
关键词 coral reef restoration coral holobiont Beneficial microorganisms for corals BLEACHING Microbiome engineering
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珊瑚共生细菌稳定性调节机制研究进展 被引量:2
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作者 林姿君 杜小鹏 +2 位作者 曾艳华 蔡中华 周进 《应用与环境生物学报》 CAS CSCD 北大核心 2020年第4期857-866,共10页
珊瑚礁卓越的生态价值得益于共生系统的稳定与健康,而"珊瑚-微生物"共生体的平衡是维护珊瑚礁生态系统健康的重要基石.过去10年里针对共生体的稳定性调节机制进行了大量研究,取得了一些重要成果,并建立了"微生物-宿主-环... 珊瑚礁卓越的生态价值得益于共生系统的稳定与健康,而"珊瑚-微生物"共生体的平衡是维护珊瑚礁生态系统健康的重要基石.过去10年里针对共生体的稳定性调节机制进行了大量研究,取得了一些重要成果,并建立了"微生物-宿主-环境"三者之间的关系;但基于共生系统的复杂性,涉及的稳态调节机制复杂而多变,一些基础理论仍然有待达成共识.本文以珊瑚共生菌为重点,尝试梳理最新的研究进展,包括共生菌的组成,环境因子对共生菌群的影响,以及多重压力下(水温、光照、营养盐以及人类活动)的稳态调节类型,重点包括光合作用下的碳浓缩机制,时空异质性的微生物选择偏好、共生体的营养分配,以及群体感应信号介导下的调节过程等.最后从组学角度总结了稳态调节过程涉及的分子机制,如pH稳态钙化、能量代谢差异、氧化应激以及细胞色素P450家族基因的应答等.对今后的研究重点和可能方向也进行了提炼,包括研究维度的扩充(关注古菌)、新技术-新方法("拉曼光谱-组学-Nano时间飞行质谱"耦合)的应用以及生态模型的构建等.本综述旨在提升对珊瑚、细菌和环境之间互作关系的认识,增进对共生体微生态学机制的理解,可为珊瑚礁的生态健康和资源保护提供理论借鉴.(图2参117) 展开更多
关键词 珊瑚共生体 碳浓缩机制 信号调节 稳态机制
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