可溶性和非可溶性镧系元素对养甲烷杆菌甲醇脱氢酶的转录调控。

IF 2.1 4区 环境科学与生态学 Q3 BIOTECHNOLOGY & APPLIED MICROBIOLOGY
Ruoyun Xie, Motoko Takashino, Kensuke Igarashi, Wataru Kitagawa, Souichiro Kato
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引用次数: 0

摘要

研究了可溶性和不溶性镧系元素对荚膜甲球菌浴基因表达的影响。补充可溶性镧系元素氯化物后,含镧甲醇脱氢酶(XoxF-MDHs)和含钙甲醇脱氢酶(MxaFI-MDHs)的基因分别被上调和下调,这表明嚢球菌具有在其他甲烷营养体中观察到的 "镧系元素开关"。不溶性镧系元素氧化物也能诱导镧系元素转换,并被嚢虫的废培养基溶解,这表明存在镧系元素螯合化合物。转录组分析表明,合成肠杆菌素类金属螯合剂的基因簇有助于溶解不溶性镧系元素。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Transcriptional Regulation of Methanol Dehydrogenases in the Methanotrophic Bacterium Methylococcus capsulatus Bath by Soluble and Insoluble Lanthanides.

The effects of soluble and insoluble lanthanides on gene expression in Methylococcus capsulatus Bath were investigated. Genes for lanthanide-containing methanol dehydrogenases (XoxF-MDHs) and their calcium-containing counterparts (MxaFI-MDHs) were up- and down-regulated, respectively, by supplementation with soluble lanthanide chlorides, indicating that M. capsulatus has the "lanthanide switch" observed in other methanotrophs. Insoluble lanthanide oxides also induced the lanthanide switch and were dissolved by the spent medium of M. capsulatus, suggesting the presence of lanthanide-chelating compounds. A transcriptome ana-lysis indicated that a gene cluster for the synthesis of an enterobactin-like metal chelator contributed to the dissolution of insoluble lanthanides.

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来源期刊
Microbes and Environments
Microbes and Environments 生物-生物工程与应用微生物
CiteScore
4.10
自引率
13.60%
发文量
66
审稿时长
3 months
期刊介绍: Microbial ecology in natural and engineered environments; Microbial degradation of xenobiotic compounds; Microbial processes in biogeochemical cycles; Microbial interactions and signaling with animals and plants; Interactions among microorganisms; Microorganisms related to public health; Phylogenetic and functional diversity of microbial communities; Genomics, metagenomics, and bioinformatics for microbiology; Application of microorganisms to agriculture, fishery, and industry; Molecular biology and biochemistry related to environmental microbiology; Methodology in general and environmental microbiology; Interdisciplinary research areas for microbial ecology (e.g., Astrobiology, and Origins of Life); Taxonomic description of novel microorganisms with ecological perspective; Physiology and metabolisms of microorganisms; Evolution of genes and microorganisms; Genome report of microorganisms with ecological perspective.
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