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首页> 外文期刊>Geobiology >Biotic and abiotic controls on iron oxyhydroxide formation in the gill chamber of the hydrothermal vent shrimp Rimicaris exoculata
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Biotic and abiotic controls on iron oxyhydroxide formation in the gill chamber of the hydrothermal vent shrimp Rimicaris exoculata

机译:生物和非生物控制对热液喷发对虾Rimicaris exoculata ill腔中羟基氧化铁形成的控制

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tA unique feature of the shrimp, Rimicaris exoculata, from the Rainbow hydrothermal vent field is the abundance of iron oxyhydroxides in its branchial chamber. These minerals accumulate throughout the molting cycle and are intimately associated with the shrimps' epibiotic microflora. In this study, an enhancement of the iron oxidation rate through shrimp swarms in the vicinity of vents is highlighted. This process is sustained by the high molting frequency of the shrimp, and potentially has large biogeochemical and ecological consequences for the associated hydrothermal ecosystem. The calculated rate for abiotic (homogeneous and heterogeneous) iron oxidation suggests that autocatalytic oxidation is the predominant reaction pathway leading to the accumulation of iron oxyhydroxides throughout the molting cycle. The occurrence of iron-oxidizing bacteria is not excluded, but their growth is most probably restricted to the first molting stage when competition with the abiotic iron oxidation is low. The influence of epibiont activity on local oxygen conditions and on the surface properties of the formed mineral, combined with the position of the shrimp in the hydrothermal mixing gradient, is expected to drive the relative contribution of abiogenic and biogenic iron oxidation.
机译:来自Rainbow热液喷发场的虾Rimicaris exoculata的独特之处在于其分支室内大量的羟基氧化铁。这些矿物质在整个蜕皮过程中积累,并与虾的表生微生物群密切相关。在这项研究中,通过通气孔附近的虾群增强了铁的氧化速率。虾的高蜕皮频率维持了这一过程,并可能对相关的热液生态系统造成重大的生物地球化学和生态后果。非生物(均相和异相)铁氧化的计算速度表明,自催化氧化是导致整个氧化过程中羟基氧化铁积累的主要反应途径。没有排除铁氧化细菌的发生,但是当与非生物铁氧化的竞争较低时,它们的生长很可能仅限于第一蜕皮阶段。表观生物活性对局部氧条件和所形成矿物质的表面性质的影响,再加上虾在水热混合梯度中的位置,有望驱动生源和生源铁氧化的相对作用。

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