Literature DB >> 27824282

Marine sponge-associated bacteria as a potential source for polyhydroxyalkanoates.

Ganesan Sathiyanarayanan1, Ganesan Saibaba2, George Seghal Kiran3, Yung-Hun Yang1,4, Joseph Selvin5.   

Abstract

Marine sponges are filter feeding porous animals and usually harbor a remarkable array of microorganisms in their mesohyl tissues as transient and resident endosymbionts. The marine sponge-microbial interactions are highly complex and, in some cases, the relationships are thought to be truly symbiotic or mutualistic rather than temporary associations resulting from sponge filter-feeding activity. The marine sponge-associated bacteria are fascinating source for various biomolecules that are of potential interest to several biotechnological industries. In recent times, a particular attention has been devoted to bacterial biopolymer (polyesters) such as intracellular polyhydroxyalkanoates (PHAs) produced by sponge-associated bacteria. Bacterial PHAs act as an internal reserve for carbon and energy and also are a tremendous alternative for fossil fuel-based polymers mainly due to their eco-friendliness. In addition, PHAs are produced when the microorganisms are under stressful conditions and this biopolymer synthesis might be exhibited as one of the survival mechanisms of sponge-associated or endosymbiotic bacteria which exist in a highly competitive and stressful sponge-mesohyl microenvironment. In this review, we have emphasized the industrial prospects of marine bacteria for the commercial production of PHAs and special importance has been given to marine sponge-associated bacteria as a potential resource for PHAs.

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Keywords:  Marine sponge; biopolymers; polyhydroxyalkanoates; polyhydroxybutyrate; sponge-associated bacteria

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Year:  2016        PMID: 27824282     DOI: 10.1080/1040841X.2016.1206060

Source DB:  PubMed          Journal:  Crit Rev Microbiol        ISSN: 1040-841X            Impact factor:   7.624


  1 in total

1.  Druggability and Binding Site Interaction Studies of Potential Metabolites Isolated from Marine Sponge Aurora globostellata against Human Epidermal Growth Factor Receptor-2.

Authors:  M Sugappriya; D Sudarsanam; Raj Bhaskaran; Jerrine Joseph; Arumugam Suresh
Journal:  Bioinformation       Date:  2017-08-31
  1 in total

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