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Marine gutless worms symbiont microbial communities from Oahu, Hawaii - Inani...
Metagenomics of bacterial symbionts of gutless marine worms to understand novel pathways for energy and carbon use -
Marine gutless worms symbiont microbial communities from the Bahamans - Candi...
Metagenomics of bacterial symbionts of gutless marine worms to understand novel pathways for energy and carbon use -
Metatranscriptomics of gutless oligochaete-bacteria symbioses
Metatranscriptomics of diverses species of Olavius and Inanidrilus, gutless oligochaetes living in marine sediments with symbiotic bacteria. PolyA-enriched libraries were... -
Marine gutless worms symbiont microbial communities from Carrie Bow Caye, Car...
Metagenomics of bacterial symbionts of gutless marine worms to understand novel pathways for energy and carbon use -
Marine gutless worms symbiont microbial communities from Carrie Bow Caye, Car...
Metagenomics of bacterial symbionts of gutless marine worms to understand novel pathways for energy and carbon use -
Population-scale metagenomics on Olavius algarvensis
This project studied population structuring and host-symbiont associations in the gutless annelid Olavius algarvensis, using metagenomes derived from individual worms obtained... -
Ontogenetic shifts in dominant symbiont genotypes in hydrothermal vent tubeworms
The availability of an environmental pool of symbionts and partner choice are crucial for the persistence of a mutualistic association with horizontally transmitted symbionts.... -
Marine gutless worms symbiont microbial communities from Oahu, Hawaii - Inani...
Metagenomics of bacterial symbionts of gutless marine worms to understand novel pathways for energy and carbon use -
Marine gutless worms symbiont microbial communities from Oahu, Hawaii - Olavi...
Metagenomics of bacterial symbionts of gutless marine worms to understand novel pathways for energy and carbon use -
Marine gutless worms symbiont microbial communities from Carrie Bow Caye, Car...
Metagenomics of bacterial symbionts of gutless marine worms to understand novel pathways for energy and carbon use -
Marine gutless worms symbiont microbial communities from Oahu, Hawaii - Inani...
Metagenomics of bacterial symbionts of gutless marine worms to understand novel pathways for energy and carbon use -
Nucella lapillus (Dog whelk), Lumbricus and Amynthas spps. (Earthworms), Aste...
Using a metagenomics approach we sought to uncover the small RNA response to viruses and TEs in anciently divergent animals, and a brown alga. Using RNA-seq data, we thus sought... -
Alviniconcha_endosymbiont Raw sequence reads
Analysis of community structures and metabolic potentials of three metazoan species associated bacteria in Pacmanus hydrothermal vent field -
Marine gutless worms symbiont microbial communities from Oahu, Hawaii - Inani...
Metagenomics of bacterial symbionts of gutless marine worms to understand novel pathways for energy and carbon use -
Marine gutless worms symbiont microbial communities from Oahu, Hawaii - Inani...
Metagenomics of bacterial symbionts of gutless marine worms to understand novel pathways for energy and carbon use -
Marine gutless worms symbiont microbial communities from Lee Stocking Island,...
Metagenomics of bacterial symbionts of gutless marine worms to understand novel pathways for energy and carbon use -
Sponge microbiomes Vietnam (Nha Trang) Raw sequence reads
16S rRNA amplicon sequencing (Illumina MiSeq) of the most common microbiomes of sponges from Nha Trang Bay (Central Vietnam). -
Marine gutless worms symbiont microbial communities from Oahu, Hawaii - Inani...
Metagenomics of bacterial symbionts of gutless marine worms to understand novel pathways for energy and carbon use -
Marine gutless worms symbiont microbial communities from Oahu, Hawaii - Inani...
Metagenomics of bacterial symbionts of gutless marine worms to understand novel pathways for energy and carbon use -
Marine gutless worms symbiont microbial communities from the Bahamans - Candi...
Metagenomics of bacterial symbionts of gutless marine worms to understand novel pathways for energy and carbon use