Sorbonne Université, CNRS, Laboratoire d'Ecogéochimie des Environnements Benthiques (LECOB), Observatoire Océanologique de Banyuls, Banyuls sur Mer, France.
Laboratoire Microorganismes: Génome et Environnement, UMR 6023 CNRS, Université Clermont Auvergne, Aubière, France.
ISME J. 2018 Oct;12(10):2470-2478. doi: 10.1038/s41396-018-0158-1. Epub 2018 Jun 20.
Marine microbes have tremendous diversity, but a fundamental question remains unanswered: why are there so many microbial species in the sea? The idea of functional redundancy for microbial communities has long been assumed, so that the high level of richness is often explained by the presence of different taxa that are able to conduct the exact same set of metabolic processes and that can readily replace each other. Here, we refute the hypothesis of functional redundancy for marine microbial communities by showing that a shift in the community composition altered the overall functional attributes of communities across different temporal and spatial scales. Our metagenomic monitoring of a coastal northwestern Mediterranean site also revealed that diverse microbial communities harbor a high diversity of potential proteins. Working with all information given by the metagenomes (all reads) rather than relying only on known genes (annotated orthologous genes) was essential for revealing the similarity between taxonomic and functional community compositions. Our finding does not exclude the possibility for a partial redundancy where organisms that share some specific function can coexist when they differ in other ecological requirements. It demonstrates, however, that marine microbial diversity reflects a tremendous diversity of microbial metabolism and highlights the genetic potential yet to be discovered in an ocean of microbes.
海洋微生物具有巨大的多样性,但一个基本问题仍未得到解答:为什么海洋中有如此多的微生物物种?微生物群落功能冗余的观点长期以来一直被假设,因此,丰富的水平通常可以通过存在能够进行完全相同的一系列代谢过程的不同分类群来解释,这些分类群可以很容易地相互替代。在这里,我们通过表明群落组成的变化改变了不同时间和空间尺度上群落的整体功能属性,反驳了海洋微生物群落功能冗余的假设。我们对西北地中海沿海地区的宏基因组监测还揭示了多样化的微生物群落蕴藏着高度多样化的潜在蛋白质。通过使用宏基因组(所有读取)提供的所有信息,而不是仅依赖于已知基因(注释的直系同源基因),对于揭示分类和功能群落组成之间的相似性至关重要。我们的发现并不排除部分冗余的可能性,即当生物体在其他生态需求上存在差异时,具有某些特定功能的生物体可以共存。然而,它表明海洋微生物多样性反映了微生物代谢的巨大多样性,并突出了在微生物海洋中尚未发现的遗传潜力。