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从海洋环境中分离和鉴定热带假丝酵母 B:一种有潜力的石油烃生物降解菌。

Isolation and characterization of Candida tropicalis B: a promising yeast strain for biodegradation of petroleum oil in marine environments.

机构信息

National Institute of Oceanography & Fisheries, NIOF-Egypt, Qaitbay Sq, El-Anfoushy, Alexandria, 11865, Egypt.

Bioprocess Development Department, Genetic Engineering & Biotechnology Research Institute (GEBRI), City of Scientific Research & Technological Applications (SRTA-City), New Borg Elarab City, Alexandria, Egypt.

出版信息

Microb Cell Fact. 2024 Jan 13;23(1):20. doi: 10.1186/s12934-023-02292-y.

Abstract

The increasing interest in environmental protection laws has compelled companies to regulate the disposal of waste organic materials. Despite efforts to explore alternative energy sources, the world remains heavily dependent on crude petroleum oil and its derivatives. The expansion of the petroleum industry has significant implications for human and environmental well-being. Bioremediation, employing living microorganisms, presents a promising approach to mitigate the harmful effects of organic hydrocarbons derived from petroleum. This study aimed to isolate and purify local yeast strains from oil-contaminated marine water samples capable of aerobically degrading crude petroleum oils and utilizing them as sole carbon and energy sources. One yeast strain (isolate B) identified as Candida tropicalis demonstrated high potential for biodegrading petroleum oil in seawater. Physiological characterization revealed the strain's ability to thrive across a wide pH range (4-11) with optimal growth at pH 4, as well as tolerate salt concentrations ranging from 1 to 12%. The presence of glucose and yeast extract in the growth medium significantly enhanced the strain's biomass formation and biodegradation capacity. Scanning electron microscopy indicated that the yeast cell diameter varied based on the medium composition, further emphasizing the importance of organic nitrogenous sources for initial growth. Furthermore, the yeast strain exhibited remarkable capabilities in degrading various aliphatic and aromatic hydrocarbons, with a notable preference for naphthalene and phenol at 500 and 1000 mg/l, naphthalene removal reached 97.4% and 98.6%, and phenol removal reached 79.48% and 52.79%, respectively. Optimization experiments using multi-factorial sequential designs highlighted the influential role of oil concentration on the bioremediation efficiency of Candida tropicalis strain B. Moreover, immobilized yeast cells on thin wood chips demonstrated enhanced crude oil degradation compared to thick wood chips, likely due to increased surface area for cell attachment. These findings contribute to our understanding of the potential of Candida tropicalis for petroleum oil bioremediation in marine environments, paving the way for sustainable approaches to address oil pollution.

摘要

对环境保护法规的日益关注迫使公司规范废物有机材料的处理。尽管努力探索替代能源,但世界仍然严重依赖原油和其衍生品。石油工业的扩张对人类和环境福祉有着重大影响。利用活微生物的生物修复为减轻源自石油的有机碳氢化合物的有害影响提供了一种有前途的方法。本研究旨在从受石油污染的海水样本中分离和纯化能够好氧降解原油并将其用作唯一碳源和能源的本地酵母菌株。从石油污染的海水样本中分离和纯化的一株酵母(分离物 B)被鉴定为热带假丝酵母,它对海水中石油的生物降解具有很高的潜力。生理特性研究表明,该菌株在 pH 值为 4-11 的宽范围以及盐浓度为 1-12%的范围内都能茁壮成长。在生长培养基中添加葡萄糖和酵母提取物显著增强了菌株的生物量形成和生物降解能力。扫描电子显微镜显示,酵母细胞的直径取决于培养基的组成,进一步强调了有机含氮源对初始生长的重要性。此外,该酵母菌株在降解各种脂肪族和芳香族烃方面表现出显著的能力,对 500 和 1000mg/L 的萘和苯酚有明显的偏好,萘的去除率达到 97.4%和 98.6%,苯酚的去除率达到 79.48%和 52.79%。采用多因素序贯设计的优化实验突出了油浓度对热带假丝酵母 B 菌株生物修复效率的影响。此外,与厚木屑相比,薄木屑上固定化的酵母细胞显示出增强的原油降解能力,这可能是由于增加了细胞附着的表面积。这些发现有助于我们了解热带假丝酵母在海洋环境中进行石油生物修复的潜力,为解决石油污染的可持续方法铺平了道路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fad4/10790260/6d1b2a51322a/12934_2023_2292_Fig1_HTML.jpg

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