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珊瑚修复对珊瑚礁生态系统三大碳泵的影响

Impacts of coral restoration on three major carbon pumps in coral reef ecosystems

  • 摘要: 本文系统综述了珊瑚修复对珊瑚礁生态系统三大碳泵(碳酸盐泵、生物碳泵和微生物碳泵)影响机制的研究进展,分析了当前研究进展存在的不足。已有研究表明,珊瑚覆盖率提升和礁体结构恢复可增强碳酸盐泵过程;鱼类和底栖生物群落重建有助于恢复生物碳泵和有机碳传递功能;微生物群落变化则可能影响溶解有机碳向稳定有机碳转化过程。然而,珊瑚修复对碳泵功能的影响仍受修复规模、环境条件和生态过程等多因素制约,其净碳汇效应尚需通过长期监测和综合碳收支评估进一步验证。未来研究应整合多尺度生态监测、稳定同位素示踪和微生物功能分析等方法,深入揭示珊瑚修复驱动碳循环变化的机制,为优化珊瑚礁生态修复策略和提升海洋碳汇能力提供科学依据。

     

    Abstract: This review systematically synthesizes current knowledge of the mechanisms through which coral restoration influences the three major carbon pumps in coral reef ecosystems: the carbonate carbon pump, biological carbon pump, and microbial carbon pump. It also identifies key limitations and knowledge gaps in the existing literature. Existing evidence suggests that increases in coral cover and the recovery of reef structural complexity may enhance carbonate carbon pump processes. The reestablishment of fish and benthic communities may facilitate the recovery of biological carbon pumping and organic carbon transfer, whereas shifts in microbial communities may regulate the transformation of dissolved organic carbon into more persistent forms of organic carbon.However, the effects of coral restoration on carbon pump functioning vary with restoration scale, environmental conditions, and underlying ecological processes. Whether coral restoration ultimately produces a net carbon sequestration benefit therefore remains uncertain and requires further evaluation through long-term monitoring and comprehensive carbon budget assessments. Future research should integrate multiscale ecological monitoring, stable-isotope tracing, and microbial functional analyses to elucidate the mechanisms by which coral restoration alters carbon cycling across different ecological compartments and temporal scales. Such efforts will provide a stronger scientific basis for optimizing coral reef restoration strategies and assessing their potential contribution to ocean carbon sequestration.

     

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