Xylanases from marine microorganisms: A brief overview on scope, sources, features and potential applications

Biochim Biophys Acta Proteins Proteom. 2020 Feb;1868(2):140312. doi: 10.1016/j.bbapap.2019.140312. Epub 2019 Nov 16.

Abstract

Global economic growth often leads to depletion of raw materials and generation of greenhouse gases, as industry manufactures goods at ever increasing levels to keep up with the demand. The currently implemented production processes mostly rely on non-renewable resources, they suffer from high energy consumption, and generate waste that often has a negative environmental impact. Eco-friendly production methods are therefore intensely searched for. Among them, enzyme-based processes are appealing, because of their high substrate and reaction specificity and the relatively mild operation conditions required by these catalysts. In addition, renewable raw materials that allow sustainable production processes are also widely explored. Marine xylanases, which catalyze the hydrolysis of xylan, the major component of lignocellulose, are promising biocatalysts. Since they are produced by microorganisms that thrive in a wide variety of environmental conditions, the enzymes may be active at widely different ranges of pH, temperature, and salt concentrations. These properties are important for their successful application in various industrial processes, such as production of bioethanol, bleaching of paper and pulp, and in the food and feed sector. The present work gives a brief overview of marine sources of xylanases, their classification and features, and of the potential applications of these marine enzymes, especially in sustainable processes in the scope of circular economy.

Keywords: Bioethanol; Biotechnology; Industrial applications; Marine xylanases; Microorganisms.

Publication types

  • Research Support, Non-U.S. Gov't
  • Review

MeSH terms

  • Bleaching Agents / chemistry
  • Bleaching Agents / metabolism
  • Endo-1,4-beta Xylanases / classification
  • Endo-1,4-beta Xylanases / metabolism*
  • Hydrogen-Ion Concentration
  • Kinetics
  • Lignin / metabolism
  • Probiotics
  • Renewable Energy
  • Seaweed / enzymology

Substances

  • Bleaching Agents
  • lignocellulose
  • Lignin
  • Endo-1,4-beta Xylanases