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微生物铁载体及其潜在应用:综述

Microbial siderophores and their potential applications: a review.

作者信息

Saha Maumita, Sarkar Subhasis, Sarkar Biplab, Sharma Bipin Kumar, Bhattacharjee Surajit, Tribedi Prosun

机构信息

Department of Molecular Biology & Bioinformatics, Tripura University (A Central University), Suryamaninagar, Tripura, 799022, India.

National Institute of Abiotic Stress Management, Baramati, 413115, Pune, Maharashtra, India.

出版信息

Environ Sci Pollut Res Int. 2016 Mar;23(5):3984-99. doi: 10.1007/s11356-015-4294-0. Epub 2015 Mar 12.

Abstract

Siderophores are small organic molecules produced by microorganisms under iron-limiting conditions which enhance the uptake of iron to the microorganisms. In environment, the ferric form of iron is insoluble and inaccessible at physiological pH (7.35-7.40). Under this condition, microorganisms synthesize siderophores which have high affinity for ferric iron. These ferric iron-siderophore complexes are then transported to cytosol. In cytosol, the ferric iron gets reduced into ferrous iron and becomes accessible to microorganism. In recent times, siderophores have drawn much attention due to its potential roles in different fields. Siderophores have application in microbial ecology to enhance the growth of several unculturable microorganisms and can alter the microbial communities. In the field of agriculture, different types of siderophores promote the growth of several plant species and increase their yield by enhancing the Fe uptake to plants. Siderophores acts as a potential biocontrol agent against harmful phyto-pathogens and holds the ability to substitute hazardous pesticides. Heavy-metal-contaminated samples can be detoxified by applying siderophores, which explicate its role in bioremediation. Siderophores can detect the iron content in different environments, exhibiting its role as a biosensor. In the medical field, siderophore uses the "Trojan horse strategy" to form complexes with antibiotics and helps in the selective delivery of antibiotics to the antibiotic-resistant bacteria. Certain iron overload diseases for example sickle cell anemia can be treated with the help of siderophores. Other medical applications of siderophores include antimalarial activity, removal of transuranic elements from the body, and anticancer activity. The aim of this review is to discuss the important roles and applications of siderophores in different sectors including ecology, agriculture, bioremediation, biosensor, and medicine.

摘要

铁载体是微生物在铁限制条件下产生的小有机分子,可增强微生物对铁的摄取。在环境中,铁的三价形式在生理pH值(7.35 - 7.40)下不溶且难以获取。在此条件下,微生物合成对三价铁具有高亲和力的铁载体。这些三价铁 - 铁载体复合物随后被转运到细胞质中。在细胞质中,三价铁被还原为二价铁,从而可供微生物利用。近年来,铁载体因其在不同领域的潜在作用而备受关注。铁载体在微生物生态学中可用于促进几种不可培养微生物的生长,并可改变微生物群落。在农业领域,不同类型的铁载体可促进多种植物物种的生长,并通过增强植物对铁的吸收来提高产量。铁载体可作为对抗有害植物病原体的潜在生物防治剂,并具有替代有害农药的能力。应用铁载体可使重金属污染的样品解毒,这说明了其在生物修复中的作用。铁载体可检测不同环境中的铁含量,展现出其作为生物传感器的作用。在医学领域,铁载体利用“特洛伊木马策略”与抗生素形成复合物,并有助于将抗生素选择性地递送至耐药细菌。某些铁过载疾病,例如镰状细胞贫血,可借助铁载体进行治疗。铁载体的其他医学应用包括抗疟活性、从体内去除超铀元素以及抗癌活性。本综述的目的是讨论铁载体在包括生态学、农业、生物修复、生物传感器和医学在内的不同领域中的重要作用和应用。

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