Combined in vivo and in situ genome-resolved metagenomics reveals novel symbiotic nitrogen fixing interactions between non-cyanobacterial diazotrophs and microalgae

Author:

CHANDOLA UDITA1,TROTTIER CAMILLE2,GAUDIN MARINNA3,MANIRAKIZA ERIC3,MENICOT SAMUEL3,LOUVET ISABELLE3,LACOUR THOMAS4,CHAUMIER TIMOTHEE3,TANAKA ATSUKO5,Chaffron Samuel2ORCID,Tirichine Leila6

Affiliation:

1. NANTES UNIVERSTY

2. UNIVERSITY OF NANTES

3. NANTES UNIVERSITY

4. IFREMER

5. RYUKYU UNIVERSITY

6. Microalgae epigenomics and interactions with the environment

Abstract

Abstract Non-cyanobacteria diazotrophs (NCDs) were shown to dominate in surface waters shifting the long-held paradigm of cyanobacteria dominance and raising fundamental questions on how these putative heterotrophic bacteria thrive in sunlit oceans. Here, we report an unprecedented finding in the widely used model diatom Phaeodactylum tricornutum (Pt) of NCDs sustaining diatom cells in the absence of bioavailable nitrogen. We identified PtNCDs using metagenomics sequencing and detected nitrogenase gene in silico and/or by PCR. We demonstrated nitrogen fixation in PtNCDs and their close genetic affiliation with NCDs from the environment. We showed the wide occurrence of this type of symbiosis with the isolation of NCDs from other microalgae, their identification in the environment, and predicted their associations with photosynthetic microalgae. Overall, this study provides evidence for a previously overlooked symbiosis using a multidisciplinary model-based approach, which will help understand the different players driving global marine nitrogen fixation.

Publisher

Research Square Platform LLC

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