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海洋酵母汉逊德巴利酵母中钴胁迫的转录组分析

Transcriptomic analysis of cobalt stress in the marine yeast Debaryomyces hansenii.

作者信息

Gumá-Cintrón Yariela, Bandyopadhyay Arpan, Rosado William, Shu-Hu Wei, Nadathur G S

机构信息

Department of Marine Science, University of Puerto Rico at Mayagüez, Mayagüez, PR 00681, Puerto Rico.

Department of Chemical Engineering, University of Minnesota, Minneapolis, MN 55455, USA.

出版信息

FEMS Yeast Res. 2015 Dec;15(8). doi: 10.1093/femsyr/fov099. Epub 2015 Nov 5.

Abstract

The yeast Debaryomyces hansenii overproduces riboflavin upon exposure to subtoxic levels of cobalt (Co(+2)). However, mechanisms for survival have yet to be studied and have been hindered by D. hansenii's high genetic heterogeneity among strains. In this study, we used transcriptomic analyses and RNA-seq in order to identify differentially expressed genes in D. hansenii in response to cobalt exposure. Highly upregulated genes under this condition were identified to primarily comprise DNA damage and repair genes, oxidative stress response genes, and genes for cell wall integrity and growth. The main response of D. hansenii to heavy metal stress is the activation of non-enzymatic oxidative stress response mechanisms and control of biological production of reactive oxygen species. Our results indicate that D. hansenii does not seem to be pre-adapted to survive high concentrations of heavy metals. These organisms appear to possess genetic survival and detoxification mechanisms that enable the cells to recover from heavy metal stress.

摘要

酵母汉逊德巴利酵母在暴露于亚毒性水平的钴(Co(+2))时会过量产生核黄素。然而,其生存机制尚未得到研究,并且由于汉逊德巴利酵母菌株间高度的遗传异质性而受到阻碍。在本研究中,我们使用转录组分析和RNA测序来鉴定汉逊德巴利酵母中响应钴暴露的差异表达基因。在此条件下高度上调的基因被确定主要包括DNA损伤和修复基因、氧化应激反应基因以及细胞壁完整性和生长相关基因。汉逊德巴利酵母对重金属胁迫的主要反应是激活非酶促氧化应激反应机制并控制活性氧的生物产生。我们的结果表明,汉逊德巴利酵母似乎没有预先适应在高浓度重金属环境下生存。这些生物体似乎拥有遗传生存和解毒机制,使细胞能够从重金属胁迫中恢复。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6342/4809987/c9f01dbe3c48/fov099fig1g.jpg

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