Leibniz Institute for Baltic Sea Research, Section Biology, Rostock-Warnemuende, Germany.
FEMS Microbiol Ecol. 2010 Oct;74(1):32-41. doi: 10.1111/j.1574-6941.2010.00944.x. Epub 2010 Jul 22.
Marine pelagic redoxclines are characterized by pronounced activities of chemolithoautotrophic microorganisms. As evidenced by the high dark CO(2) fixation rates measured around the oxic-anoxic interface but also in the upper sulfidic zone, the accordant organisms participate in important biogeochemical transformations. Although Epsilonproteobacteria have been identified as an important chemoautotrophic group in these environments, detailed species-level information on the identity of actively involved prokaryotes is lacking. In the present study, active chemolithoautotrophic prokaryotic assemblages were identified in the sulfidic zone of a pelagic Black Sea redoxcline by applying rRNA-based stable isotope probing in combination with 16S rRNA gene single-strand conformation polymorphism analysis and 16S rRNA gene cloning. The results showed that a single epsilonproteobacterium, affiliated with the genus Sulfurimonas, and two different members of the gammaproteobacterial sulfur oxidizer (GSO) cluster were responsible for dark CO(2) fixation activities in the upper sulfidic layer of the Black Sea redoxcline. Phylogenetically, these organisms were closely related to microorganisms, distributed worldwide, that are thought to be key players in denitrification and sulfide oxidation. Together, these findings emphasize the importance of chemolithoautotrophic members of the Sulfurimonas and GSO groups in the carbon, nitrogen, and sulfur cycles of oxic-anoxic pelagic transition zones.
海洋浮游氧化还原梯度带的特征是具有明显的化能自养微生物活性。正如在好氧-缺氧界面周围以及在上层硫化区测量到的高暗 CO2固定率所证明的那样,一致的生物参与了重要的生物地球化学转化。尽管 Epsilonproteobacteria 已被确定为这些环境中的一个重要的化能自养群体,但有关积极参与的原核生物的详细种属水平信息仍然缺乏。在本研究中,通过应用基于 rRNA 的稳定同位素探针与 16S rRNA 基因单链构象多态性分析和 16S rRNA 基因克隆相结合,在黑海浮游氧化还原梯度带的硫化区鉴定出了活跃的化能自养原核生物组合。结果表明,一种与 Sulfurimonas 属密切相关的单一种属的 Epsilonproteobacteria 和两种不同的 Gamma-proteobacterial 硫氧化菌(GSO)簇成员负责黑海氧化还原梯度带上层硫化层的暗 CO2固定活性。从系统发育上看,这些生物与分布在全球范围内的微生物密切相关,被认为是反硝化和硫化物氧化的关键参与者。这些发现共同强调了 Sulfurimonas 和 GSO 组的化能自养成员在好氧-缺氧浮游过渡带的碳、氮和硫循环中的重要性。