4.6 Article

Genomic Analysis to Elucidate the Lignocellulose Degrading Capability of a New Halophile Robertkochia solimangrovi

期刊

GENES
卷 13, 期 11, 页码 -

出版社

MDPI
DOI: 10.3390/genes13112135

关键词

Robertkochia solimangrovi; lignocellulolytic enzymes; genomics; halophiles; mangrove microbiota

资金

  1. Ministry of Education Malaysia [4B297]
  2. Biotechnology and Biological Sciences Research Council (BBSRC) United Kingdom [BB/P027717/1]
  3. Malaysian Industry-Government Group for High Technology [536423090]
  4. BBSRC through the Newton Fund Impact Scheme [BB/V003593/1]
  5. BBSRC International Partnering Award [BB/P025501/1]

向作者/读者索取更多资源

Genomic analysis reveals that R. solimangrovi has the ability to degrade lignocellulose and holds promise in seawater-based biorefinery industry.
Robertkochia solimangrovi is a proposed marine bacterium isolated from mangrove soil. So far, the study of this bacterium is limited to taxonomy only. In this report, we performed a genomic analysis of R. solimangrovi that revealed its lignocellulose degrading ability. Genome mining of R. solimangrovi revealed a total of 87 lignocellulose degrading enzymes. These enzymes include cellulases (GH3, GH5, GH9 and GH30), xylanases (GH5, GH10, GH43, GH51, GH67, and GH115), mannanases (GH2, GH26, GH27 and GH113) and xyloglucanases (GH2, GH5, GH16, GH29, GH31 and GH95). Most of the lignocellulolytic enzymes encoded in R. solimangrovi were absent in the genome of Robertkochia marina, the closest member from the same genus. Furthermore, current work also demonstrated the ability of R. solimangrovi to produce lignocellulolytic enzymes to deconstruct oil palm empty fruit bunch (EFB), a lignocellulosic waste found abundantly in palm oil industry. The metabolic pathway taken by R. solimangrovi to transport and process the reducing sugars after the action of lignocellulolytic enzymes on EFB was also inferred based on genomic data. Collectively, genomic analysis coupled with experimental studies elucidated R. solimangrovi to serve as a promising candidate in seawater based-biorefinery industry.

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