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铜和pH值对菌株AARLG074生长及生理特性的影响

Effects of Copper and pH on the Growth and Physiology of sp. AARLG074.

作者信息

Buayam Nattaphorn, Davey Matthew P, Smith Alison G, Pumas Chayakorn

机构信息

Master's Degree Program in Applied Microbiology, Department of Biology, Faculty of Science, Chiang Mai University, Chiang Mai 50200, Thailand.

Center of Excellence in Bioresources for Agriculture, Industry and Medicine, Department of Biology, Faculty of Science, Chiang Mai University, Chiang Mai 50200, Thailand.

出版信息

Metabolites. 2019 Apr 30;9(5):84. doi: 10.3390/metabo9050084.

Abstract

Copper (Cu) is a heavy metal that is widely used in industry and as such wastewater from mining or industrial operations can contain high levels of Cu. Some aquatic algal species can tolerate and bioaccumulate Cu and so could play a key role in bioremediating and recovering Cu from polluted waterways. One such species is the green alga sp. AARLG074. The aim of this study was to determine how is able to tolerate large alterations in its external Cu and pH environment. Specifically, we set out to measure the variations in the Cu removal efficiency, growth, ultrastructure, and cellular metabolite content in the algal cells that are associated with Cu exposure and acidity. The results showed that could remove up to 80% of the copper presented in Jaworski's medium after 30 min exposure. There was a decrease in the ability of Cu removal at pH 4 compared to pH 6 indicating both pH and Cu concentration affected the efficiency of Cu removal. Furthermore, Cu had an adverse effect on algal growth and caused ultrastructural changes. Metabolite fingerprinting (FT-IR and GC-MS) revealed that the polysaccharide and amino acid content were the main metabolites affected under acid and Cu exposure. Fructose, lactose and sorbose contents significantly decreased under both acidic and Cu conditions, whilst glycerol and melezitose contents significantly increased at pH 4. The pathway analysis showed that pH had the highest impact score on alanine, aspartate and glutamate metabolism whereas Cu had the highest impact on arginine and proline metabolism. Notably both Cu and pH had impact on glutathione and galactose metabolism.

摘要

铜(Cu)是一种重金属,广泛应用于工业领域,因此采矿或工业生产产生的废水中可能含有高浓度的铜。一些水藻物种能够耐受并生物累积铜,因此在从受污染水道中生物修复和回收铜方面可能发挥关键作用。绿藻 sp. AARLG074就是这样一种物种。本研究的目的是确定该物种如何能够耐受其外部铜和pH环境的大幅变化。具体而言,我们着手测量与铜暴露和酸度相关的藻类细胞中铜去除效率、生长、超微结构和细胞代谢物含量的变化。结果表明,暴露30分钟后,该物种能够去除约沃尔斯基培养基中80%的铜。与pH 6相比,pH 4时铜的去除能力有所下降,这表明pH值和铜浓度都会影响铜的去除效率。此外,铜对藻类生长有不利影响,并导致超微结构变化。代谢物指纹图谱(傅里叶变换红外光谱和气相色谱-质谱联用)显示,多糖和氨基酸含量是在酸性和铜暴露条件下受影响的主要代谢物。在酸性和铜暴露条件下,果糖、乳糖和山梨糖含量均显著降低,而在pH 4时,甘油和松三糖含量显著增加。通路分析表明,pH对丙氨酸、天冬氨酸和谷氨酸代谢的影响得分最高,而铜对精氨酸和脯氨酸代谢的影响最大。值得注意的是,铜和pH都对谷胱甘肽和半乳糖代谢有影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5921/6572535/f62adc936871/metabolites-09-00084-g001.jpg

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