Literature DB >> 28357985

Fine-scale transition to lower bacterial diversity and altered community composition precedes shell disease in laboratory-reared juvenile American lobster.

Sarah G Feinman1, Andrea Unzueta Martínez, Jennifer L Bowen, Michael F Tlusty.   

Abstract

The American lobster Homarus americanus supports a valuable commercial fishery in the Northeastern USA and Maritime Canada; however, stocks in the southern portion of the lobster's range have shown declines, in part due to the emergence of shell disease. Epizootic shell disease is a bacterially induced cuticular erosion that renders even mildly affected lobsters unmarketable because of their appearance, and in more severe cases can cause mortality. Despite the importance of this disease, the associated bacterial communities have not yet been fully characterized. We sampled 2 yr old, laboratory-reared lobsters that displayed signs of shell disease at the site of disease as well as at 0.5, 1, and 1.5 cm away from the site of disease to determine how the bacterial community changed over this fine spatial scale. Illumina sequencing of the 16S rRNA gene revealed a distinct bacterial community at the site of disease, with significant reductions in bacterial diversity and richness compared to more distant sampling locations. The bacterial community composition 0.5 cm from the site of disease was also altered, and there was an observable decrease in bacterial diversity and richness, even though there were no signs of disease at that location. Given the distinctiveness of the bacterial community at the site of disease and 0.5 cm from the site of disease, we refer to these communities as affected and transitionary, and suggest that these bacteria, including the previously proposed causative agent, Aquimarina 'homaria', are important for the initiation and progression of this laboratory model of shell disease.

Entities:  

Keywords:  16S rRNA gene; American lobster; Bacterial communities; High throughput sequencing; Microbiome; Shell disease

Mesh:

Substances:

Year:  2017        PMID: 28357985     DOI: 10.3354/dao03111

Source DB:  PubMed          Journal:  Dis Aquat Organ        ISSN: 0177-5103            Impact factor:   1.802


  2 in total

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Authors:  Fernanda Cornejo-Granados; Luigui Gallardo-Becerra; Miriam Leonardo-Reza; Juan Pablo Ochoa-Romo; Adrian Ochoa-Leyva
Journal:  PeerJ       Date:  2018-08-10       Impact factor: 2.984

2.  Predictable Changes in Eelgrass Microbiomes with Increasing Wasting Disease Prevalence across 23° Latitude in the Northeastern Pacific.

Authors:  Deanna S Beatty; Lillian R Aoki; Brendan Rappazzo; Chelsea Bergman; Lia K Domke; J Emmett Duffy; Katie Dubois; Ginny L Eckert; Carla Gomes; Olivia J Graham; Leah Harper; C Drew Harvell; Timothy L Hawthorne; Margot Hessing-Lewis; Kevin Hovel; Zachary L Monteith; Ryan S Mueller; Angeleen M Olson; Carolyn Prentice; Fiona Tomas; Bo Yang; John J Stachowicz
Journal:  mSystems       Date:  2022-07-20       Impact factor: 7.324

  2 in total

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