2012
DOI: 10.1128/jb.00311-12
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Draft Genome Sequence of the Novel Agarolytic Bacterium Aquimarina agarilytica ZC1

Abstract: The marine bacterium ZC1 is the type strain of the recently identified novel species Aquimarina agarilytica. It can produce multiple agarases. Here we report the draft genome sequence of strain ZC1 (4,253,672 bp, with a GC content of 32.8%) and major findings from its annotation. It is the first reported genome in the genus Aquimarina. The polysaccharides in the cell wall of both marine and terrestrial plants represent the most abundant reservoir of organic carbon in the biosphere. The microbial hydrolysis of … Show more

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Cited by 14 publications
(4 citation statements)
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“…A possible explanation is that ‘Surface seawater’ is not only a habitat by itself but also a transitory environment for some MHB. Indeed, Planctomycetes are abundant on kelps (Bengtsson et al ., ) and S. agarivorans , as an agarolytic bacterium (Lin et al ., ), probably also lives on red macroalgae. PL and sulfatase repertoires of MHB isolated from deep marine sediments are poor (Fig.…”
Section: Resultsmentioning
confidence: 99%
“…A possible explanation is that ‘Surface seawater’ is not only a habitat by itself but also a transitory environment for some MHB. Indeed, Planctomycetes are abundant on kelps (Bengtsson et al ., ) and S. agarivorans , as an agarolytic bacterium (Lin et al ., ), probably also lives on red macroalgae. PL and sulfatase repertoires of MHB isolated from deep marine sediments are poor (Fig.…”
Section: Resultsmentioning
confidence: 99%
“…For example, Aquimarina homaria dominates (jointly with another Flavobacteriaceae species) the microbial communities associated with shell lesions in American lobster (Chistoserdov et al, 2012 ; Quinn et al, 2012 ). In addition, Aquimarina agaralytic , which was isolated from a red macroalga, was found to posses a large number of diverse agarases (Lin et al, 2012a , b ) that may function to degrade host tissue, and Aquimarina salinaria was shown to produce metabolites with algicidal activity (Chen et al, 2011 ). Other OTUs that contributed to the difference in bleached D. pulchra were assigned to the order Cytophagales, the family Saprospiraceae , and the genus Saprospira .…”
Section: Discussionmentioning
confidence: 99%
“…Nowadays, more and more bacterial genomes have been sequenced and analyzed, however, the genomes of genus Aquimarina which is closely associated with marine environment have not been analyzed systematically, except for A. agarilytica ZC1 T , which was isolated from marine red alga and had been proved to have agarolytic activity [ 12 ]. In this context, the present study aims to provide a better understanding of the survival mechanisms and biogeochemical role of A. longa SW024 T in the ultra-oligotrophic environment by extensive genomic analyses.…”
Section: Introductionmentioning
confidence: 99%