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Microbial production of phytases for combating environmental phosphate pollution and other diverse applications

机译:肌醇六磷酸酶的微生物生产,可应对环境磷酸盐污染和其他各种应用

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摘要

Concerns of phosphorus pollution and its impact on environments have driven the biotechnological development of phytases. Phosphoric acid, inositol phosphate, or inositols are produced after hydrolysis of phosphate from phytate, initiated by phytase. Research over the last two decades on microbial phytases has deepened our understanding of their production, optimization, and characterization. Despite the wide availability of phytase producing microorganisms, only a few have been commercially exploited. The current high cost of phytases, inability to withstand high temperatures (>85 degrees C), a limited pH range, and poor storage stability are a major bottleneck in the commercialization of phytases. The development of novel phytases with optimal properties for various applications is a major research challenge. In this paper, recent advances in microbial phytase production, application of tools to optimize higher enzyme production, and characterization of phytases along with potential biotechnological applications are reviewed. Additionally the development of phytase assay methods and functions of phytate and phytate degradation products are discussed.
机译:对磷污染及其对环境的影响的担忧推动了植酸酶的生物技术发展。磷酸,肌醇磷酸或肌醇是由肌醇六磷酸酶引发的肌醇六磷酸磷酸盐水解后产生的。在过去的二十年中,有关微生物植酸酶的研究加深了我们对它们的生产,优化和表征的理解。尽管产生肌醇六磷酸酶的微生物的广泛可用性,但是只有少数被商业开发。当前肌醇六磷酸酶的高成本,无法承受高温(> 85摄氏度),有限的pH范围以及较差的储存稳定性是肌醇六磷酸酶商业化的主要瓶颈。具有各种应用的最佳特性的新型肌醇六磷酸酶的开发是主要的研究挑战。在本文中,综述了微生物植酸酶生产的最新进展,优化更高酶产量的工具的应用以及植酸酶的表征以及潜在的生物技术应用。另外,还讨论了植酸酶测定方法的发展以及植酸和植酸降解产物的功能。

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