bioRxiv Science⌕ Search

Biology subjects

Trofimova, A.

Publications and source records attributed to Trofimova, A..

3 recordsLinked to original sources

Taxonomically different symbiotic communities of sympatric Arctic sponge species show functional similarity with specialization at species level

Marine sponges harbor diverse communities of associated organisms, including eukaryotes, viruses, and bacteria. Sponge associated microbiomes contribute to the health of the host organisms by defending them against invading bacteria and providing them with essential metabolites. Here we describe microbiomes of three sympatric species of cold-water marine sponges - Halichondria panicea, Halichondria sitiens, and Isodictya palmata - sampled over a period of six years at the White Sea. We identified the sponges as low microbial abundance species and detected stably associated bacteria that represent new taxa of sponge symbionts within Alpha- and Gammaproteobacteria. The sponges carried unique sets of unrelated species of symbiotic bacteria illustrating varying complexity of microbiomes. On a community level, sponge associated microbiomes shared common symbiotic features; they encoded multiple eukaryotic-like proteins, biosynthetic pathways, and transporters of amino acids and vitamins essential for sponges. On a species level, however, different classes of eukaryotic-like proteins and pathways were distributed between dominant and minor symbionts indicating specialization within microbiomes. Particularly, taurine and sulfoacetate metabolism pathways were associated exclusively with dominant symbionts in all three sponge species. Our study demonstrates strong functional convergence and co-evolution of microbiomes of sympatric cold-water sponge species with a distribution of functions between community members. Additionally, we observed dramatic shifts in compositions of sponge microbiomes coinciding with abnormally high water temperatures during the 2018 season, highlighting the vulnerability of cold-water ecosystems to global warming.

microbiology↗

New viruses infecting hyperthermophilic bacterium Thermus thermophilus

Highly diverse phages infecting thermophilic bacteria of the Thermus genus have been isolated over the years from hot springs around the world. Many of these phages are unique, rely on highly unusual developmental strategies, and encode novel enzymes. The variety of Thermus phages is clearly undersampled, as evidenced, for example, by a paucity of phage-matching spacers in Thermus CRISPR arrays. Using water samples collected from hot springs in the Kunashir Island from the Kuril archipelago and from the Tsaishi and Nokalakevi districts in the Republic of Georgia we isolated several distinct phages infecting laboratory strains of Thermus thermophilus. Genomic sequence analysis of 11 phages revealed both close relatives of previously described Thermus phages isolated from geographically distant sites, as well as phages with very limited similarity to earlier isolates. Comparative analysis allowed us to predict several accessory phage genes whose products may be involved in host defense/interviral warfare, including a putative Type V CRISPR-cas system.

microbiology↗

Interference Requirements of Type III CRISPR-Cas Systems from Thermus thermophilus

Among the diverse prokaryotic adaptive immunity mechanisms, the Type III CRISPR-Cas systems are the most complex. The multisubunit Type III effectors recognize RNA targets complementary to CRISPR RNAs (crRNAs). Target recognition causes synthesis of cyclic oligoadenylates that activate downstream auxiliary effectors, which affect cell physiology in complex and poorly understood ways. Here, we studied the ability of III-A and III-B CRISPR-Cas subtypes from Thermus thermophilus to interfere with plasmid transformation. We find that for both systems, requirements for crRNA-target complementarity sufficient for interference depend on the target transcript abundance, with more abundant targets requiring shorter complementarity segments. This result and thermodynamic calculations indicate that Type III effectors bind their targets in a simple bimolecular reaction with more extensive crRNA-target base pairing compensating for lower target abundance. Since the targeted RNA used in our work is non-essential for either the host or the plasmid, the results also establish that a certain number of target-bound effector complexes must be present in the cell to interfere with plasmid establishment. For the more active III-A system, we determine the minimal length of RNA-duplex sufficient for interference and show that the position of this minimal duplex can vary within the effector. Finally, we show that the III-A immunity is dependent on the HD nuclease domain of the Cas10 subunit. Since this domain is absent from the III-B system the result implies that the T. thermophilus III-B system must elicit a more efficient cyclic oligoadenylate dependent response to provide the immunity.

microbiology↗