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希瓦氏菌属分泌的焦黑色素的特性及其在金属回收中的应用。

Characterization of pyomelanin secreted by Shewanella sp. and their application in metal recovery.

作者信息

Kuttan Sreelakshmi Parakkaparambil, Abdulaziz Anas, Chekidhenkuzhiyil Jasmin, Raj Devika, Mohan Mahesh, Athiyanathil Sujith

机构信息

CSIR-National Institute of Oceanography, Regional Centre Kochi, Dr. Salim Ali Road, Kochi, Kerala, 682 018, India.

School of Environmental Sciences, Mahatma Gandhi University, Priyadarsini Hills, Kottayam, Kerala, 686 560, India.

出版信息

Environ Sci Pollut Res Int. 2023 Jan;30(3):6705-6715. doi: 10.1007/s11356-022-22686-6. Epub 2022 Aug 25.

Abstract

Melanin is a biopolymer with versatile structural and functional properties and diverse applications in recovering toxic chemicals from water and wastewater, biomedical imaging, and as theragnostic agent. We report the structural characterization and biosynthetic pathway of an extracellular pyomelanin secreted by a sponge-associated bacterium, Shewanella sp. (Shewanella-melanin), and their potential application in metal recovery from liquid. Pyomelanin particles of > 50 µm size were found in the culture medium within 48 h of growth, which were formed through the self-polymerization of benzoquinone molecule produced through homogentisic acid pathway. The aspC and hppD genes involved in the biosynthetic pathway of pyomelanin were detected in the whole genome sequence of Shewanella sp. The FT-IR spectra of Shewanella-melanin, at ~ 3300-3420 cm corresponding to the stretching vibration of -NH and -OH, was in good agreement with that of Sepia melanin, while its elemental composition (C/N/H/S of 29.2:8.23:6.41:1.58) was unique. Shewanella-melanin showed ~ 300 and ~ 950 times increased chelation of manganese and iron from a liquid medium supplemented with 2 mM of MnSO and FeSO, respectively, compared to a control. The FT-IR spectrum showed the binding of metal ions to the carboxylic acid, hydroxyl, and amine groups of Shewanella-melanin. The Shewanella-melanin, with its excellent metal biosorption, could be a potential candidate for removing toxic compounds from water, in turn contributing to the fulfillment of sustainable development goal (SDG) 6.

摘要

黑色素是一种具有多种结构和功能特性的生物聚合物,在从水和废水中回收有毒化学物质、生物医学成像以及作为治疗诊断剂等方面有多种应用。我们报告了一种海绵相关细菌希瓦氏菌属(希瓦氏菌黑色素)分泌的细胞外脓性黑色素的结构特征和生物合成途径,以及它们在从液体中回收金属方面的潜在应用。在生长48小时内,在培养基中发现了尺寸大于50 µm的脓性黑色素颗粒,这些颗粒是通过由尿黑酸途径产生的苯醌分子的自聚合形成的。在希瓦氏菌属的全基因组序列中检测到了参与脓性黑色素生物合成途径的aspC和hppD基因。希瓦氏菌黑色素在~3300 - 3420 cm对应于 -NH和 -OH伸缩振动的傅里叶变换红外光谱与乌贼黑色素的光谱高度一致,而其元素组成(C/N/H/S为29.2:8.23:6.41:1.58)是独特的。与对照相比,希瓦氏菌黑色素分别从添加2 mM MnSO₄和FeSO₄的液体培养基中对锰和铁的螯合能力提高了约300倍和约950倍。傅里叶变换红外光谱显示金属离子与希瓦氏菌黑色素的羧酸、羟基和胺基团结合。希瓦氏菌黑色素具有出色的金属生物吸附能力,可能是从水中去除有毒化合物的潜在候选物,进而有助于实现可持续发展目标(SDG)6。

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