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首页> 外文期刊>BMC Microbiology >Detection of phase-dependent transcriptomic changes and Rubisco-mediated CO2 fixation into poly (3-hydroxybutyrate) under heterotrophic condition in Ralstonia eutropha H16 based on RNA-seq and gene deletion analyses
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Detection of phase-dependent transcriptomic changes and Rubisco-mediated CO2 fixation into poly (3-hydroxybutyrate) under heterotrophic condition in Ralstonia eutropha H16 based on RNA-seq and gene deletion analyses

机译:基于RNA-seq和基因缺失分析的富营养小球藻H16在异养条件下检测相依赖性转录组变化和Rubisco介导的CO2固定在聚3-羟基丁酸酯中

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摘要

Background Ralstonia eutropha H16 is well known to produce polyhydroxyalkanoates (PHAs), which are potential bio-based biodegradable plastics, in an efficient manner as an energy storage material under unbalanced growth conditions. To obtain further knowledge of PHA biosynthesis, this study performed a quantitative transcriptome analysis based on deep sequencing of the complementary DNA generated from the RNA (RNA-seq) of R. eutropha H16. Results Total RNAs were extracted from R. eutropha cells in growth, PHA production, and stationary phases on fructose. rRNAs in the preparation were removed by repeated treatments with magnetic beads specific to bacterial rRNAs, and then the 36?bp sequences were determined using an Illumina high-throughput sequencer. The RNA-seq results indicated the induction of gene expression for transcription, translation, cell division, peptidoglycan biosynthesis, pilus and flagella assembly, energy conservation, and fatty acid biosynthesis in the growth phase; and the repression trends of genes involved in central metabolisms in the PHA production phase. Interestingly, the transcription of genes for Calvin-Benson-Bassham (CBB) cycle and several genes for β-oxidation were significantly induced in the PHA production phase even when the cells were grown on fructose. Moreover, incorporation of 13C was observed in poly(3-hydroxybutyrate) synthesized by R. eutropha H16 from fructose in the presence of NaH13CO3, and further gene deletion analyses revealed that both of the two ribulose 1,5-bisphosphate carboxylase (Rubiscos) in CBB cycle were actually functional in CO2 fixation under the heterotrophic condition. Conclusions The results revealed the phase-dependent transcriptomic changes and a CO2 fixation capability under heterotrophic conditions by PHA-producing R. eutropha.
机译:背景技术众所周知,富营养的Ralstonia eutropha H16可以高效地生产聚羟基链烷酸酯(PHA),该聚羟基链烷酸酯是潜在的生物基可生物降解的塑料,可以在不平衡的生长条件下作为储能材料。为了获得有关PHA生物合成的更多知识,本研究基于对富营养红球菌H16的RNA(RNA-seq)产生的互补DNA的深度测序,进行了定量转录组分析。结果在果糖上,从富营养罗汉果细胞的生长,PHA产生和固定期中提取总RNA。通过用细菌rRNA特异的磁珠重复处理去除制剂中的rRNA,然后使用Illumina高通量测序仪确定36 bp的序列。 RNA-seq结果表明在生长期诱导了转录,翻译,细胞分裂,肽聚糖生物合成,菌毛和鞭毛组装,能量节约和脂肪酸生物合成的基因表达;以及PHA生产阶段中参与中央代谢的基因的抑制趋势。有趣的是,即使在果糖上生长细胞,在PHA产生阶段也显着诱导了Calvin-Benson-Bassham(CBB)循环的基因转录和多个β-氧化的基因。此外,在NaH 13 CO 3 存在下,富营养古菌H16从果糖合成的聚3-羟基丁酸酯中观察到了 13 C的掺入。进一步的基因缺失分析表明,在异养条件下,CBB循环中的两个核糖1,5-双磷酸羧化酶(Rubiscos)实际上都在CO 2 固定中起作用。结论结果表明,在异养条件下,生产PHA的富营养富营养芽孢杆菌具有阶段依赖性的转录组变化和CO 2 固定能力。

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