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Respiration Strategies Utilized by the Gill Endosymbiont from the Host Lucinid Codakia orbicularis (Bivalvia: Lucinidae)

机译:寄主Lucinid Codakia orbicularis(Bivalvia:Lucinidae)的ill内生菌G利用的呼吸策略

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摘要

The large tropical lucinid clam Codakia orbicularis has a symbiotic relationship with intracellular, sulfide-oxidizing chemoautotrophic bacteria. The respiration strategies utilized by the symbiont were explored using integrative techniques on mechanically purified symbionts and intact clam-symbiont associations along with habitat analysis. Previous work on a related symbiont species found in the host lucinid Lucinoma aequizonata showed that the symbionts obligately used nitrate as an electron acceptor, even under oxygenated conditions. In contrast, the symbionts of C. orbicularis use oxygen as the primary electron acceptor while evidence for nitrate respiration was lacking. Direct measurements obtained by using microelectrodes in purified symbiont suspensions showed that the symbionts consumed oxygen; this intracellular respiration was confirmed by using the redox dye CTC (5-cyano-2,3-ditolyl tetrazolium chloride). In the few intact chemosymbioses tested in previous studies, hydrogen sulfide production was shown to occur when the animal-symbiont association was exposed to anoxia and elemental sulfur stored in the thioautotrophic symbionts was proposed to serve as an electron sink in the absence of oxygen and nitrate. However, this is the first study to show by direct measurements using sulfide microelectrodes in enriched symbiont suspensions that the symbionts are the actual source of sulfide under anoxic conditions.
机译:大型热带类cin蛤Co球菌与细胞内硫化物氧化的化学自养细菌具有共生关系。通过对机械纯化的共生体和完整的蛤sy共生体关联进行整合技术以及栖息地分析,探索了共生体利用的呼吸策略。以前在寄主夜蛾Lucinoma aequizonata中发现的相关共生物种的工作表明,即使在氧化条件下,这些共生体也必须使用硝酸盐作为电子受体。相反,轮状梭菌的共生体使用氧气作为主要的电子受体,而缺乏硝酸盐呼吸的证据。在纯化的共生体悬浮液中使用微电极进行的直接测量表明,共生体消耗了氧气;通过使用氧化还原染料CTC(5-氰基-2,3-二甲苯基四唑氯化物)确认了这种细胞内呼吸。在先前研究中测试的少数几个完整的化学共生酶中,当动物-共轭体暴露于缺氧状态时,硫化氢的产生被证明会发生,并且拟议将硫自养共生体中存储的元素硫用作没有氧和硝酸盐的电子吸收体。但是,这是第一项通过在富集共生体悬浮液中使用硫化物微电极进行直接测量而显示出的共生物,在缺氧条件下,它们是硫化物的实际来源。

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