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Diazotroph diversity and nitrogen fixation in the coral Stylophora pistillata from the Great Barrier Reef

机译:大堡礁珊瑚Stylophora pistillata的重氮营养多样性和固氮作用

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摘要

Diazotrophs, both Bacteria and Archaea, capable of fixing nitrogen (N2), are present in the tissues and mucous, of corals and can supplement the coral holobiont nitrogen budget with fixed nitrogen (N) in the form of ammonia (NH3). Stylophora pistillata from Heron Island on the Great Barrier Reef collected at 5 and 15 m, and experimentally manipulated in the laboratory, showed that the rates of net photosynthesis, steady state quantum yields of photosystem II (PSII) fluorescence (∆Fv/Fm′) and calcification varied based on irradiance as expected. Rates of N2 fixation were, however, invariant across treatments while the amount of fixed N contributing to Symbiodinium spp. N demand is irradiance dependent. Additionally, both the Symbiodinium and diazotrophic communities are significantly different based on depth, and novel Cluster V nifH gene phylotypes, which are not known to fix nitrogen, were recovered. A functional analysis using PICRUSt also showed that shallow corals were enriched in genes involved in nitrogen metabolism, and N2 fixation specifically. Corals have evolved a number of strategies to derive nitrogen from organic (e.g., heterotrophic feeding) and inorganic sources (e.g., N2 fixation) to maintain critical pathways such as protein synthesis to succeed ecologically in nitrogen-limited habitats.
机译:重氮菌,细菌和古细菌,都能够固定氮(N2),存在于珊瑚的组织和粘液中,并可以以氨(NH3)的形式固定氮(N)补充珊瑚整体氮素的收支。来自大堡礁苍鹭岛的Stylophora pistillata分别在5和15μm处采集并在实验室中进行了实验操作,结果显示净光合作用速率,光系统II(PSII)荧光的稳态量子产率(ΔFv/ Fm')钙化随辐照度的变化而变化。然而,N2固定率在所有处理中均不变,而固定氮的数量对共生菌属有贡献。氮需求取决于辐照度。此外,共生菌属和重氮营养族在深度上都存在显着差异,并且回收了未知的固定氮的新型Cluster V nifH基因系统型。使用PICRUSt进行的功能分析还显示,浅层珊瑚富含与氮代谢有关的基因,尤其是N2固定。珊瑚已经进化出许多策略来从有机物(例如异养食物)和无机物来源(例如N2固定)中获取氮,以维持诸如蛋白质合成等关键途径,从而在氮有限的生境中实现生态成功。

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