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Solar-panel and parasol strategies shape the proteorhodopsin distribution pattern in marine Flavobacteriia

机译:太阳电池板和遮阳伞策略塑造了海洋黄杆菌中蛋白视紫红质的分布模式

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摘要

Proteorhodopsin (PR) is a light-driven proton pump that is found in diverse bacteria and archaea species, and is widespread in marine microbial ecosystems. To date, many studies have suggested the advantage of PR for microorganisms in sunlit environments. The ecophysiological significance of PR is still not fully understood however, including the drivers of PR gene gain, retention, and loss in different marine microbial species. To explore this question we sequenced 21 marine Flavobacteriia genomes of polyphyletic origin, which encompassed both PR-possessing as well as PR-lacking strains. Here, we show that the possession or alternatively the lack of PR genes reflects one of two fundamental adaptive strategies in marine bacteria. Specifically, while PR-possessing bacteria utilize light energy (“solar-panel strategy”), PR-lacking bacteria exclusively possess UV-screening pigment synthesis genes to avoid UV damage and would adapt to microaerobic environment (“parasol strategy”), which also helps explain why PR-possessing bacteria have smaller genomes than those of PR-lacking bacteria. Collectively, our results highlight the different strategies of dealing with light, DNA repair, and oxygen availability that relate to the presence or absence of PR phototrophy.
机译:视紫红质(PR)是一种光驱动的质子泵,存在于多种细菌和古细菌物种中,并广泛存在于海洋微生物生态系统中。迄今为止,许多研究表明PR在阳光下的微生物中具有优势。然而,PR的生态生理学意义仍未完全理解,包括不同海洋微生物物种中PR基因获得,保留和损失的驱动因素。为了探讨这个问题,我们对21种具有多系起源的海洋黄杆菌基因组进行了测序,其中包括具有PR的菌株和缺乏PR的菌株。在这里,我们表明拥有或不存在PR基因反映了海洋细菌中的两种基本适应策略之一。具体而言,尽管拥有PR的细菌利用光能(“太阳能电池板策略”),但缺少PR的细菌仅拥有可屏蔽紫外线的色素合成基因,以避免UV损伤,并适应微需氧环境(“阳伞策略”),帮助解释为什么拥有PR的细菌的基因组要比缺少PR的细菌的基因组小。总的来说,我们的研究结果强调了与PR光化性存在或不存在有关的光,DNA修复和氧利用率的不同策略。

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