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首页> 外文期刊>Environmental microbiology >Regulation of plasmid-encoded isoprene metabolism in Rhodococcus, a representative of an important link in the global isoprene cycle
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Regulation of plasmid-encoded isoprene metabolism in Rhodococcus, a representative of an important link in the global isoprene cycle

机译:红球菌中质粒编码异戊二烯代谢的调节,这是全球异戊二烯循环中重要环节的代表

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Emissions of biogenic volatile organic compounds (VOCs) form an important part of the global carbon cycle, comprising a significant proportion of net ecosystem productivity. They impact atmospheric chemistry and contribute directly and indirectly to greenhouse gases. Isoprene, emitted largely from plants, comprises one third of total VOCs, yet in contrast to methane, which is released in similar quantities, we know little of its biodegradation. Here, we report the genome of an isoprene degrading isolate, Rhodococcus sp. AD45, and, using mutagenesis shows that a plasmid-encoded soluble di-iron centre isoprene monooxygenase (IsoMO) is essential for isoprene metabolism. Using RNA sequencing (RNAseq) to analyse cells exposed to isoprene or epoxyisoprene in a substrate-switch time-course experiment, we show that transcripts from 22 contiguous genes, including those encoding IsoMO, were highly upregulated, becoming among the most abundant in the cell and comprising over 25% of the entire transcriptome. Analysis of gene transcription in the wild type and an IsoMO-disrupted mutant strain showed that epoxyisoprene, or a subsequent product of isoprene metabolism, rather than isoprene itself, was the inducing molecule. We provide a foundation of molecular data for future research on the environmental biological consumption of this important, climate-active compound.
机译:生物挥发性有机化合物(VOC)的排放构成全球碳循环的重要组成部分,占生态系统净生产力的很大一部分。它们影响大气化学,直接或间接地导致温室气体。异戊二烯主要从植物排放,占总VOC的三分之一,但与甲烷排放量相似的甲烷相反,我们对其生物降解知之甚少。在这里,我们报告异戊二烯降解分离株红球菌sp。的基因组。 AD45,并利用诱变表明,质粒编码的可溶性二铁中心异戊二烯单加氧酶(IsoMO)对异戊二烯代谢至关重要。使用RNA测序(RNAseq)在底物切换时程实验中分析暴露于异戊二烯或环氧异戊二烯的细胞,我们显示来自22个连续基因的转录物,包括编码IsoMO的那些转录物,均被高度上调,成为细胞中最丰富的基因之一并占整个转录组的25%以上。对野生型和IsoMO突变突变株中基因转录的分析表明,环氧异戊二烯或异戊二烯代谢的后续产物,而不是异戊二烯本身,是诱导分子。我们为该重要的具有气候活性的化合物的环境生物消耗的未来研究提供了分子数据的基础。

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