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Seagrass metabolism and carbon dynamics in a tropical coastal embayment

机译:海草新陈代谢和热带沿海扶手中的碳动力学

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Net ecosystem metabolism and subsequent changes in environmental variables were studied seasonally in the seagrass-dominated Palk Bay, located along the southeast coast of India. The results showed that although the water column was typically net heterotrophic, the ecosystem as a whole displayed autotrophic characteristics. The mean net community production from the seagrass meadows was 99.31 +/- 45.13 mM C m(-2) d(-1), while the P/R ratio varied between 1.49 and 1.56. Oxygen produced through in situ photosynthesis, exhibited higher dependence over dissolved CO2 and available light. Apportionment of carbon stores in biomass indicated that nearly three-fourths were available belowground compared to aboveground. However, the sediment horizon accumulated nearly 40 times more carbon than live biomass. The carbon storage capacities of the sediments and seagrass biomass were comparable with the global mean for seagrass meadows. The results of this study highlight the major role of seagrass meadows in modification of seawater chemistry. Though the seagrass meadows of Palk Bay are increasingly subject to human impacts, with coupled regulatory and management efforts focused on improved water quality and habitat conservation, these key coastal ecosystems will continue to be valuable for climate change mitigation, considering their vital role in C dynamics and interactions with the overlying water column.
机译:在沿着印度东南海岸的海草主导的PALK海湾季节性地研究了净生态系统新陈代谢和随后的环境变量变化。结果表明,虽然水柱通常是净异养,但生态系统作为整体显示的自养特征。来自海草草甸的平均净社区生产是99.31 +/- 45.13 mm C m(-2)d(-1),而P / R比在1.49和1.56之间变化。通过原位光合作用产生的氧气,呈现较高依赖于溶解的二氧化碳和可用光。生物质中的碳储存分配表明,与上面相比,地下地下面有近四分之一。然而,沉积地平线的碳累积比活生物量多于40倍。沉积物和海草生物质的碳储存能力与海草草甸的全局平均值相当。本研究的结果突出了海草草甸在海水化学改造中的主要作用。虽然PALK BAY的海草草甸越来越多地受到人类影响的影响,但耦合的监管和管理努力侧重于改善水质和栖息地保护,这些关键的沿海生态系统将继续对气候变化缓解有价值,考虑到其在C动力学中的重要作用并与上覆水柱的相互作用。

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