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Transcriptional Profiling of Hydrogen Production Metabolism of Rhodobacter capsulatus under Temperature Stress by Microarray Analysis

机译:微阵列分析技术在温度胁迫下荚膜红细菌产氢代谢的转录谱分析

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Biohydrogen is a clean and renewable form of hydrogen, which can be produced by photosynthetic bacteria in outdoor large-scale photobioreactors using sunlight. In this study, the transcriptional response of Rhodobacter capsulatus to cold (4 °C) and heat (42 °C) stress was studied using microarrays. Bacteria were grown in 30/2 acetate/glutamate medium at 30 °C for 48 h under continuous illumination. Then, cold and heat stresses were applied for two and six hours. Growth and hydrogen production were impaired under both stress conditions. Microarray chips for R. capsulatus were custom designed by Affymetrix (GeneChip®. TR_RCH2a520699F). The numbers of significantly changed genes were 328 and 293 out of 3685 genes under cold and heat stress, respectively. Our results indicate that temperature stress greatly affects the hydrogen production metabolisms of R. capsulatus. Specifically, the expression of genes that participate in nitrogen metabolism, photosynthesis and the electron transport system were induced by cold stress, while decreased by heat stress. Heat stress also resulted in down regulation of genes related to cell envelope, transporter and binding proteins. Transcriptome analysis and physiological results were consistent with each other. The results presented here may aid clarification of the genetic mechanisms for hydrogen production in purple non-sulfur (PNS) bacteria under temperature stress.
机译:生物氢是氢的一种清洁和可再生形式,它可由光合作用细菌在室外大型光生物反应器中利用阳光产生。在这项研究中,使用微阵列芯片研究了荚膜红细菌对冷(4°C)和热(42°C)胁迫的转录反应。在连续照明下,细菌在30/2乙酸盐/谷氨酸盐培养基中于30°C下生长48小时。然后,施加冷应力和热应力两个小时和六个小时。在两种胁迫条件下,生长和氢产生均受到损害。荚膜红球菌的微阵列芯片由Affymetrix(GeneChip ®。TR_RCH2a520699F)定制设计。在冷和热胁迫下,显着改变的基因数分别为3685个基因中的328个和293个。我们的结果表明温度胁迫极大地影响了荚膜红球菌的产氢代谢。具体地说,参与氮代谢,光合作用和电子传输系统的基因的表达受冷胁迫诱导,而受热胁迫降低。热应激还导致与细胞包膜,转运蛋白和结合蛋白有关的基因的下调。转录组分析和生理结果相互一致。此处介绍的结果可能有助于阐明温度胁迫下紫色非硫(PNS)细菌中产氢的遗传机制。

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