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Imaging the uptake of nitrogen-fixing bacteria into larvae of the coral Acropora millepora

机译:成像固定氮细菌进入珊瑚Acropora millepora幼虫的摄取

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摘要

Diazotrophic bacteria are instrumental in generating biologically usable forms of nitrogen by converting abundant dinitrogen gas (N2) into available forms, such as ammonium. Although nitrogen is crucial for coral growth, direct observation of associations between diazotrophs and corals has previously been elusive. We applied fluorescence in situ hybridization (FISH) and nanoscale secondary ion mass spectrometry to observe the uptake of 15N-enriched diazotrophic Vibrio sp. isolated from Acropora millepora into conspecific coral larvae. Incorporation of Vibrio sp. cells was observed in coral larvae after 4-h incubation with enriched bacteria. Uptake was restricted to the aboral epidermis of larvae, where Vibrio cells clustered in elongated aggregations. Other bacterial associates were also observed in epidermal areas in FISH analyses. Although the fate and role of these bacteria requires additional investigation, this study describes a powerful approach to further explore cell associations and nutritional pathways in the early life stages of the coral holobiont.
机译:重氮营养细菌通过将大量的氮气(N2)转化为可利用的形式(如铵盐)来帮助产生生物上可利用的形式的氮。尽管氮对于珊瑚的生长至关重要,但是直接观察重氮菌和珊瑚之间的联系一直是难以捉摸的。我们应用荧光原位杂交(FISH)和纳米级二次离子质谱法观察富集 15 N的重氮营养弧菌(Vibrio sp)的吸收。分离自Acropora millepora到特定的珊瑚幼虫。掺入弧菌。与丰富的细菌温育4小时后,在珊瑚幼虫中观察到细胞。吸收仅限于幼虫的表皮表皮,其中弧菌细胞聚集在细长的聚集体中。在FISH分析的表皮区域还观察到其他细菌伴生。尽管这些细菌的命运和作用还需要进一步研究,但这项研究描述了一种强有力的方法,可以进一步探索珊瑚全生命周期生命早期的细胞缔合和营养途径。

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