Literature DB >> 26114888

Host-microbe interactions as a driver of acclimation to salinity gradients in brown algal cultures.

Simon M Dittami1, Laëtitia Duboscq-Bidot2, Morgan Perennou3, Angélique Gobet1, Erwan Corre4, Catherine Boyen1, Thierry Tonon1.   

Abstract

Like most eukaryotes, brown algae live in association with bacterial communities that frequently have beneficial effects on their development. Ectocarpus is a genus of small filamentous brown algae, which comprises a strain that has recently colonized freshwater, a rare transition in this lineage. We generated an inventory of bacteria in Ectocarpus cultures and examined the effect they have on acclimation to an environmental change, that is, the transition from seawater to freshwater medium. Our results demonstrate that Ectocarpus depends on bacteria for this transition: cultures that have been deprived of their associated microbiome do not survive a transfer to freshwater, but restoring their microflora also restores the capacity to acclimate to this change. Furthermore, the transition between the two culture media strongly affects the bacterial community composition. Examining a range of other closely related algal strains, we observed that the presence of two bacterial operational taxonomic units correlated significantly with an increase in low salinity tolerance of the algal culture. Despite differences in the community composition, no indications were found for functional differences in the bacterial metagenomes predicted to be associated with algae in the salinities tested, suggesting functional redundancy in the associated bacterial community. Our study provides an example of how microbial communities may impact the acclimation and physiological response of algae to different environments, and thus possibly act as facilitators of speciation. It paves the way for functional examinations of the underlying host-microbe interactions, both in controlled laboratory and natural conditions.

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Mesh:

Year:  2015        PMID: 26114888      PMCID: PMC4681850          DOI: 10.1038/ismej.2015.104

Source DB:  PubMed          Journal:  ISME J        ISSN: 1751-7362            Impact factor:   10.302


  34 in total

1.  Towards deciphering dynamic changes and evolutionary mechanisms involved in the adaptation to low salinities in Ectocarpus (brown algae).

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Review 3.  Algae need their vitamins.

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4.  Brown algae.

Authors:  J Mark Cock; Akira F Peters; Susana M Coelho
Journal:  Curr Biol       Date:  2011-08-09       Impact factor: 10.834

Review 5.  The seaweed holobiont: understanding seaweed-bacteria interactions.

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6.  A metabolic approach to study algal-bacterial interactions in changing environments.

Authors:  Simon M Dittami; Damien Eveillard; Thierry Tonon
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  21 in total

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Journal:  Circ Econ Sustain       Date:  2021-07-20

2.  Accumulation of detached kelp biomass in a subtidal temperate coastal ecosystem induces succession of epiphytic and sediment bacterial communities.

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Review 5.  A Functional Perspective Analysis of Macroalgae and Epiphytic Bacterial Community Interaction.

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Journal:  Front Microbiol       Date:  2017-12-22       Impact factor: 5.640

6.  High-density genetic map and identification of QTLs for responses to temperature and salinity stresses in the model brown alga Ectocarpus.

Authors:  Komlan Avia; Susana M Coelho; Gabriel J Montecinos; Alexandre Cormier; Fiona Lerck; Stéphane Mauger; Sylvain Faugeron; Myriam Valero; J Mark Cock; Pierre Boudry
Journal:  Sci Rep       Date:  2017-03-03       Impact factor: 4.379

7.  Host specificity of microbiome assembly and its fitness effects in phytoplankton.

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8.  Host and Environmental Specificity in Bacterial Communities Associated to Two Highly Invasive Marine Species (Genus Asparagopsis).

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9.  Co-occurrence Analysis of Microbial Taxa in the Atlantic Ocean Reveals High Connectivity in the Free-Living Bacterioplankton.

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10.  Microbiota Influences Morphology and Reproduction of the Brown Alga Ectocarpus sp.

Authors:  Javier E Tapia; Bernardo González; Sophie Goulitquer; Philippe Potin; Juan A Correa
Journal:  Front Microbiol       Date:  2016-02-24       Impact factor: 5.640

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