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

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Distinct genomic routes underlie transitions to specialised symbiotic  lifestyles in deep-sea annelid worms
O. rubiplumus. ( A ) Bones in situ with emergent worms (arrows). ( B )
Distinct genomic routes underlie transitions to specialised symbiotic  lifestyles in deep-sea annelid worms
O. frankpressi. ( A ) Whale rib in situ with emergent worms. ( B )
Distinct genomic routes underlie transitions to specialised symbiotic  lifestyles in deep-sea annelid worms
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Distinct genomic routes underlie transitions to specialised symbiotic  lifestyles in deep-sea annelid worms
Transposable element-accumulation profile in the genomes of four
Distinct genomic routes underlie transitions to specialised symbiotic  lifestyles in deep-sea annelid worms
Genomic clusters of important genes related to the nitrogen metabolism
Distinct genomic routes underlie transitions to specialised symbiotic  lifestyles in deep-sea annelid worms
PDF] Genomic Signatures Supporting the Symbiosis and Formation of Chitinous Tube in the Deep-Sea Tubeworm Paraescarpia echinospica
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
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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
Francisco Manuel Martín Zamora on LinkedIn: Annelid functional genomics reveal the origins of bilaterian life cycles -…
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