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假光滑念珠菌和奥默柯达马拉酵母能够在重金属存在的情况下降解烷烃。

Candida pseudoglaebosa and Kodamaea ohmeri are capable of degrading alkanes in the presence of heavy metals.

机构信息

Departamento de Microbiología, Escuela Nacional de Ciencias Biológicas, Instituto Politécnico Nacional, Ciudad de México, México.

出版信息

J Basic Microbiol. 2019 Aug;59(8):792-806. doi: 10.1002/jobm.201900027.

Abstract

The aim of this study was to examine four strains of two yeast species in relation to their capability for assimilating alkanes in the presence of heavy metals (HMs). The four strains tested were Candida pseudoglaebosa ENCB-7 and Kodamaea ohmeri ENCB-8R, ENCB-23, and ENCB-VIK. Determination was made of the expression of CYP52 genes involved in alkane hydroxylation. When exposed to Cu , Zn , Pb , Cd , and As at pH 3 and 5, all four strains could assimilate several n-alkanes having at least six carbon atoms. The three K. ohmeri strains could also utilize branched alkanes, cycloalkanes, and n-octanol as sole carbon sources. Kinetic assays demonstrated greater biomass production and specific growth of the yeasts exposed to long-chain n-alkanes. Fragments of paralogous CYP52 genes of C. pseudoglaebosa ENCB-7 and K. ohmeri ENCB-23 were amplified, sequenced, and phylogenetically evaluated. Reverse-transcription polymerase chain reaction revealed that n-nonane and n-decane induced to CpCYP52-G3, CpCYP52-G9, and CpCYP52-G10. KoCYP52-G3 was induced with n-decane and n-octanol. Also, CpCYP52-G3 and CpCYP52-G9 were induced by glucose. In conclusion, C. pseudoglaebosa and K. ohmeri were able to degrade several alkanes in the presence of HMs and under acidic conditions. These yeasts harbor paralogous alkane-induced CYP52 genes, which display different profiles of transcriptional expression.

摘要

本研究旨在研究两种酵母属的四个菌株在存在重金属(HM)时同化烷烃的能力。测试的四个菌株为 Candida pseudoglaebosa ENCB-7 和 Kodamaea ohmeri ENCB-8R、ENCB-23 和 ENCB-VIK。测定了参与烷烃羟化的 CYP52 基因的表达。当在 pH 3 和 5 下暴露于 Cu、Zn、Pb、Cd 和 As 时,所有四个菌株都可以同化至少具有六个碳原子的几种正烷烃。三种 K. ohmeri 菌株也可以利用支链烷烃、环烷烃和正辛醇作为唯一的碳源。动力学测定表明,暴露于长链正烷烃的酵母产生更多的生物量和特定的生长。扩增、测序并对 C. pseudoglaebosa ENCB-7 和 K. ohmeri ENCB-23 的平行 CYP52 基因片段进行了系统发育评估。逆转录聚合酶链反应显示,n-壬烷和 n-癸烷诱导了 CpCYP52-G3、CpCYP52-G9 和 CpCYP52-G10。KoCYP52-G3 被 n-癸烷和 n-辛醇诱导。此外,CpCYP52-G3 和 CpCYP52-G9 也被葡萄糖诱导。总之,C. pseudoglaebosa 和 K. ohmeri 能够在 HM 存在和酸性条件下降解几种烷烃。这些酵母含有平行的烷烃诱导 CYP52 基因,其显示出不同的转录表达谱。

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