open access publication

Article, 2024

The Feather Moss Hylocomium splendens Affects the Transcriptional Profile of a Symbiotic Cyanobacterium in Relation to Acquisition and Turnover of Key Nutrients

Microbial Ecology, ISSN 1432-184X, 0095-3628, Volume 87, 1, Page 49, 10.1007/s00248-024-02363-6

Contributors

Alvarenga, Danillo Oliveira 0000-0002-3666-2220 (Corresponding author) [1] Priemé, Anders 0000-0002-9925-067X [1] Rousk, Kathrin 0000-0003-3140-9864 [1]

Affiliations

  1. [1] University of Copenhagen
  2. [NORA names: KU University of Copenhagen; University; Denmark; Europe, EU; Nordic; OECD]

Abstract

Moss-cyanobacteria symbioses were proposed to be based on nutrient exchange, with hosts providing C and S while bacteria provide N, but we still lack understanding of the underlying molecular mechanisms of their interactions. We investigated how contact between the ubiquitous moss Hylocomium splendens and its cyanobiont affects nutrient-related gene expression of both partners. We isolated a cyanobacterium from H. splendens and co-incubated it with washed H. splendens shoots. Cyanobacterium and moss were also incubated separately. After 1 week, we performed acetylene reduction assays to estimate N2 fixation and RNAseq to evaluate metatranscriptomes. Genes related to N2 fixation and the biosynthesis of several amino acids were up-regulated in the cyanobiont when hosted by the moss. However, S-uptake and the biosynthesis of the S-containing amino acids methionine and cysteine were down-regulated in the cyanobiont while the degradation of selenocysteine was up-regulated. In contrast, the number of differentially expressed genes in the moss was much lower, and almost no transcripts related to nutrient metabolism were affected. It is possible that, at least during the early stage of this symbiosis, the cyanobiont receives few if any nutrients from the host in return for N, suggesting that moss–cyanobacteria symbioses encompass relationships that are more plastic than a constant mutualist flow of nutrients.

Keywords

H. splendens, Hylocomium splendens, N2 fixation, RNAseq, S uptake, acetylene reduction assay, acid, acquisition, amino, amino acid methionine, amino acids, assay, bacteria, biosynthesis, co-incubation, contact, cyanobacterium, cyanobiont, cysteine, degradation, down-regulation, early stages, estimating N2 fixation, exchange, expression, feather moss Hylocomium splendens, feathers, fixation, flow, gene expression, genes, host, interaction, key nutrients, keys, mechanism, metabolism, metatranscriptomics, methionine, molecular mechanisms, moss, moss Hylocomium splendens, nutrient exchange, nutrient metabolism, nutrients, partners, profile, reduction assay, relationship, return, selenocysteine, shoots, splendens, stage, symbioses, symbiosis, symbiotic cyanobacterium, transcription, transcriptional profiles, turnover, up-regulated, weeks

Funders

  • European Research Council
  • European Commission

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