Distinct genomic routes underlie transitions to specialised symbiotic lifestyles in deep-sea annelid worms

Por um escritor misterioso
Last updated 16 julho 2024
Distinct genomic routes underlie transitions to specialised symbiotic  lifestyles in deep-sea annelid worms
Distinct genomic routes underlie transitions to specialised symbiotic  lifestyles in deep-sea annelid worms
Novel insights on obligate symbiont lifestyle and adaptation to chemosynthetic environment as revealed by the giant tubeworm genome
Distinct genomic routes underlie transitions to specialised symbiotic  lifestyles in deep-sea annelid worms
Metabolic handoffs between multiple symbionts may benefit the deep-sea bathymodioline mussels
Distinct genomic routes underlie transitions to specialised symbiotic  lifestyles in deep-sea annelid worms
PDF] Metabolic modeling and comparative biochemistry in glyoxylate cycle
Distinct genomic routes underlie transitions to specialised symbiotic  lifestyles in deep-sea annelid worms
Distinct genomic routes underlie transitions to specialised symbiotic lifestyles in deep-sea annelid worms
Distinct genomic routes underlie transitions to specialised symbiotic  lifestyles in deep-sea annelid worms
PDF] Signatures of host/symbiont genome coevolution in insect nutritional endosymbioses
Distinct genomic routes underlie transitions to specialised symbiotic  lifestyles in deep-sea annelid worms
Giacomo Moggioli's research works Queen Mary, University of London, London (QMUL) and other places
Distinct genomic routes underlie transitions to specialised symbiotic  lifestyles in deep-sea annelid worms
Publications — Martin-Duran Lab
Distinct genomic routes underlie transitions to specialised symbiotic  lifestyles in deep-sea annelid worms
Genomic versatility and functional variation between two dominant heterotrophic symbionts of deep-sea Osedax worms
Distinct genomic routes underlie transitions to specialised symbiotic  lifestyles in deep-sea annelid worms
Genomic, transcriptomic, and proteomic insights into the symbiosis of deep- sea tubeworm holobionts

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