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Production and Potential Applications of Bioconversion of Chitin and Protein-Containing Fishery Byproducts into Prodigiosin: A Review

机译:甲壳素和含蛋白质的渔业副产物向Prodigiosin的生物转化的生产及其潜在应用:综述

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摘要

The technology of microbial conversion provides a potential way to exploit compounds of biotechnological potential. The red pigment prodigiosin (PG) and other PG-like pigments from bacteria, majorly from , have been reported as bioactive secondary metabolites that can be used in the broad fields of agriculture, fine chemicals, and pharmacy. Increasing PG productivity by investigating the culture conditions especially the inexpensive carbon and nitrogen (C/N) sources has become an important factor for large-scale production. Investigations into the bioactivities and applications of PG and its related compounds have also been given increased attention. To save production cost, chitin and protein-containing fishery byproducts have recently been investigated as the sole C/N source for the production of PG and chitinolytic/proteolytic enzymes. This strategy provides an environmentally-friendly selection using inexpensive C/N sources to produce a high yield of PG together with chitinolytic and proteolytic enzymes by . The review article will provide effective references for production, bioactivity, and application of PG in various fields such as biocontrol agents and potential pharmaceutical drugs.
机译:微生物转化技术提供了开发具有生物技术潜力的化合物的潜在途径。据报道,细菌中的红色素prodigiosin(PG)和其他类似PG的色素(主要来自)是具有生物活性的次生代谢产物,可用于农业,精细化学品和制药等广泛领域。通过研究培养条件,尤其是廉价的碳和氮(C / N)源来提高PG生产率已成为大规模生产的重要因素。对PG及其相关化合物的生物活性和应用的研究也受到了越来越多的关注。为了节省生产成本,近来已研究了几丁质和含蛋白质的渔业副产品,作为生产PG和几丁质酶/蛋白水解酶的唯一C / N来源。该策略使用廉价的C / N来源提供了一种环境友好的选择,从而可以通过高纯度的C / N和蛋白水解酶生产高产量的PG。这篇综述文章将为PG在生物防治剂和潜在的药物等各个领域的生产,生物活性和应用提供有效的参考。

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