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首页> 外文期刊>Frontiers in Marine Science >Annual benthic metabolism and organic carbon fluxes in a semi-enclosed Mediterranean bay dominated by the macroalgae Caulerpa prolifera
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Annual benthic metabolism and organic carbon fluxes in a semi-enclosed Mediterranean bay dominated by the macroalgae Caulerpa prolifera

机译:在半封闭地中海海湾中以大型藻类Caulerpa繁殖为主的年底栖生物代谢和有机碳通量

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Coastal areas play an important role on carbon cycling. Elucidating the dynamics on the production, transport and fate of organic carbon is relevant to gain a better understanding of the role coastal areas play in the global carbon budget. Here, we assess the metabolic status and associated organic carbon fluxes of a semi-enclosed Mediterranean bay supporting a meadow of Caulerpa prolifera. We test whether the EDOC pool is a significant component of the organic carbon pool and associated fluxes in this ecosystem. The Bay of Portocolom was in net metabolic balance on a yearly basis, but heterotrophic during the summer months. Community respiration (CR) was positively correlated to C. prolifera biomass, while net community production (NCP) had a negative correlation. The benthic compartment represented, on average, 72.6 ± 5.2 % of CR and 86.8 ± 4.5 % of gross primary production (GPP). Dissolved organic carbon (DOC) production peaked in summer and was always positive, with the incubations performed in the dark almost doubling the flux of those performed in the light. Exchangeable dissolved organic carbon (EDOC), however, oscillated between production and uptake, being completely recycled within the system and representing around 14% of the DOC flux. The pools of bottom and surface DOC were high for an oligotrophic environment, and were positively correlated to the pool of EDOC. Thus, despite being in metabolic balance, this ecosystem acted as a conduit for organic carbon (OC), as it is able to export OC to adjacent areas derived from allochtonous inputs during heterotrophic conditions. These inputs likely come from groundwater discharge, human activity in the watershed, delivered to the sediments through the high capacity of C. prolifera to remove particles from the water column, and from the air-water exchange of EDOC, demonstrating that these communities are a major contributor to the cycling of OC in coastal embayments.
机译:沿海地区在碳循环中起着重要作用。阐明有机碳生产,运输和命运的动态关系,对于更好地了解沿海地区在全球碳预算中的作用至关重要。在这里,我们评估了半封闭地中海海湾的代谢状态和相关的有机碳通量,该海湾支撑了Caulerpa prolifera的草地。我们测试EDOC池是否是该生态系统中有机碳池和相关通量的重要组成部分。 Portocolom海湾每年处于净代谢平衡状态,但在夏季为异养。社区呼吸(CR)与C. prolifera生物量呈正相关,而净社区生产(NCP)呈负相关。底栖舱室平均代表CR的72.6±5.2%和初级生产总值(GPP)的86.8±4.5%。可溶性有机碳(DOC)的产量在夏季达到顶峰,并且始终是阳性的,在黑暗中进行的孵化几乎使在明亮条件下进行的孵化通量增加一倍。但是,可交换的溶解有机碳(EDOC)在生产和吸收之间振荡,在系统内被完全回收,约占DOC通量的14%。对于贫营养环境,底部和表面DOC的储量较高,并且与EDOC的储量呈正相关。因此,尽管处于代谢平衡状态,该生态系统还是有机碳(OC)的管道,因为它能够在异养条件下将OC出口到来自异源输入的相邻区域。这些输入可能来自地下水排放,流域中的人类活动,通过高生梭状芽胞杆菌清除水柱中颗粒物的能力以及EDOC的空气-水交换而传递到沉积物中,表明这些社区是一个OC在沿海地区的循环的主要贡献者。

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