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南极酵母:在纺织偶氮染料生物处理中的潜在用途。

Antarctic yeasts: potential use in a biologic treatment of textile azo dyes.

作者信息

Ruscasso F, Cavello I, Curutchet G, Cavalitto S

机构信息

Centro de Investigación Y Desarrollo en Fermentaciones Industriales (CINDEFI), UNLP, CCT La Plata-CONICET, Calle 47 y 115, 1900, La Plata, Provincia de Buenos Aires, Argentina.

Instituto de Investigación E Ingeniería Ambiental -IIIA, UNSAM, CONICET, Campus Miguelete, 25 de mayo y Francia, 1650, San Martín, Provincia de Buenos Aires, Argentina.

出版信息

Bioresour Bioprocess. 2022 Mar 9;9(1):18. doi: 10.1186/s40643-022-00507-5.

Abstract

We investigated the dye-removal potential of a collection of 61 cold-adapted yeasts from the King George Island, Antarctica, on agar plates supplemented with 100 mg L of several textile dyes; among which isolates 81% decolorized Reactive Black 5 (RB-5), with 56% decolorizing Reactive Orange 16, but only 26% doing so with Reactive Blue 19 and Acid Blue 74. Furthermore, we evaluated the ligninolytic potential using 2,2'-azino-bis(3-ethylbenzothiazoline-6-sulfonic-acid) diammonium salt-, 3,5-dimethoxy-4-hydroxybenzaldehydazine-, or manganese-supplemented plates but detected no activity, possibly due to a dye-removal mechanism involving reductases. The removal kinetics were studied in liquid medium supplemented with 100 mg L of RB-5 in a selection of 9 yeasts. The highest volumetric-removal rates (η) were found for Candida sake 41E (4.14 mg L h), Leucosporidium muscorum F20A (3.90 mg L h), and Cystofilobasidium infirmominiatum F13E (3.90 mg L h). Different UV-Vis spectra were obtained if the dye removal occurred by biodegradation or biosorption/bioaccumulation. L. muscorum F20A was selected to study the dye-removal mechanism of RB-5 and the effect of different chemical and environmental parameters on the process. Optimum dye-removal conditions were obtained with 10 g L of glucose within an initial medium pH range of 5.0 to 6.0. Up to 700 mg L of dye could be removed in 45 h. High-performance liquid chromatography profiles obtained were consistent with a biodegradation of the dye. Phytotoxicity was estimated by calculating the 50%-inhibition concentration (IC) with Lactuca sativa L. seeds. These findings propose psychrophilic yeasts as a novel environmentally suitable alternative for the treatment of dye-industry wastewaters.

摘要

我们研究了从南极乔治王岛收集的61株冷适应酵母在添加了100 mg/L几种纺织染料的琼脂平板上的染料去除潜力;其中81%的分离株使活性黑5(RB-5)脱色,56%使活性橙16脱色,但只有26%使活性蓝19和酸性蓝74脱色。此外,我们使用2,2'-联氮-双(3-乙基苯并噻唑啉-6-磺酸)二铵盐、3,5-二甲氧基-4-羟基苯甲醛腙或添加锰的平板评估了木质素分解潜力,但未检测到活性,这可能是由于涉及还原酶的染料去除机制。在添加了100 mg/L RB-5的液体培养基中,对9株酵母进行了去除动力学研究。清酒假丝酵母41E(4.14 mg/L·h)、苔藓丝孢酵母F20A(3.90 mg/L·h)和脆弱丝孢酵母F13E(3.90 mg/L·h)的体积去除率最高。如果染料去除是通过生物降解或生物吸附/生物积累发生的,则会获得不同的紫外-可见光谱。选择苔藓丝孢酵母F20A来研究RB-5的染料去除机制以及不同化学和环境参数对该过程的影响。在初始培养基pH值为5.0至6.0的范围内,使用10 g/L葡萄糖可获得最佳染料去除条件。在45小时内可去除高达700 mg/L的染料。获得的高效液相色谱图谱与染料的生物降解一致。通过计算对莴苣种子的50%抑制浓度(IC)来估计植物毒性。这些发现表明嗜冷酵母是处理染料工业废水的一种新型环境适宜替代物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c028/10991636/5567bac9f090/40643_2022_507_Fig1_HTML.jpg

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