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Enhanced pore-water nutrient fluxes by the upside-down jellyfish Cassiopea sp. in a Red Sea coral reef

机译:颠倒的水母Cassiopea sp。增强了孔隙水养分通量。在红海珊瑚礁中

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ABSTRACT: The common circum-tropical jellyfish Cassiopea sp., unlike other members of the Rhizostomidae (Scyphozoa), exhibits a primarily benthic life. The peculiar orientation of its exumbrella against the sediment is believed to be associated with its mainly autotrophic nutrition, i.e. exposing its zooxanthellae-bearing photosynthetic oral appendages to the sunlight. Here we show that the jellyfish also acts as a nutrient pump, drawing nutrient-rich pore waters from the permeable sediments. Depletion of pore-water ammonium in situ, light-enhanced ammonium uptake, and high rates of photosynthesis determined via oxygen flux measurements and underwater fluorometer analysis (rapid light curves) show that Cassiopea sp. effectively harnesses pore-water nutrients. At high densities Cassiopea sp. may facilitate benthic-pelagic coupling and primary production in oligotrophic coral reefs.
机译:摘要:与圆根科(Shyphozoa)的其他成员不同,常见的热带水母卡西欧(Cassiopea)主要表现为底栖生物。据认为,其伞状体相对于沉积物的特殊取向与其主要自养营养有关,即,将其带有人兽黄藻的光合口腔附属物暴露在阳光下。在这里,我们表明水母还充当营养泵,从可渗透的沉积物中吸取营养丰富的孔隙水。通过氧通量测量和水下荧光计分析(快速光曲线)确定的孔隙水铵原位消耗,光增强的铵吸收和高光合作用速率表明,卡西欧豌豆> sp。有效地利用孔隙水的养分。在高密度下 Cassiopea sp。可能促进贫营养珊瑚礁的底栖-上层耦合和初级生产。

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