Transcriptome and Deletion Mutant Analyses Revealed that an RpoH Family Sigma Factor Is Essential for Photosystem Production in Roseateles depolymerans under Carbon Starvation.

IF 2.1 4区 环境科学与生态学 Q3 BIOTECHNOLOGY & APPLIED MICROBIOLOGY Microbes and Environments Pub Date : 2023-01-01 DOI:10.1264/jsme2.ME22072
Tetsushi Suyama, Nanako Kanno, Satoko Matsukura, Kotaro Chihara, Naohiro Noda, Satoshi Hanada
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引用次数: 1

Abstract

Roseateles depolymerans is an obligately aerobic bacterium that produces a photosynthetic apparatus only under the scarcity of carbon substrates. We herein examined changes in the transcriptomes of R. depolymerans cells to clarify the expression of photosynthesis genes and their upstream regulatory factors under carbon starvation. Transcriptomes 0, 1, and 6‍ ‍h after the depletion of a carbon substrate indicated that transcripts showing the greatest variations (a 500-fold increase [6 h/0 h]) were light-harvesting proteins (PufA and PufB). Moreover, loci with more than 50-fold increases (6 h/0‍ ‍h) were fully related to the photosynthetic gene cluster. Among 13 sigma factor genes, the transcripts of a sigma 70 family sigma factor related to RpoH (SP70) increased along photosynthesis genes under starvation; therefore, a knockout experiment of SP70 was performed. ΔSP70 mutants were found to lack photosynthetic pigments (carotenoids and bacteriochlo-rophyll a) regardless of carbon starvation. We also examined the effects of heat stress on ΔSP70 mutants, and found that SP70 was also related to heat stress tolerance, similar to other RpoH sigma factors (while heat stress did not trigger photosystem production). The deficient accumulation of photosynthetic pigments and the heat stress tolerance of ΔSP70 mutants were both complemented by the introduction of an intact SP70 gene. Furthermore, the transcription of photosynthetic gene operons (puf, puh, and bch) was markedly reduced in the ΔSP70 mutant. The RpoH homologue SP70 was concluded to be a sigma factor that is essential for the transcription of photosynthetic gene operons in R. depolymerans.

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转录组和缺失突变分析表明,RpoH家族Sigma因子对碳饥饿下玫瑰解聚体的光系统生产至关重要。
玫瑰花瓣解聚菌是一种专需氧细菌,仅在缺乏碳底物的情况下产生光合作用装置。我们在此研究了R. depolymerans细胞转录组的变化,以阐明碳饥饿下光合作用基因及其上游调控因子的表达。碳底物耗尽后转录组0、1和6‍‍h表明,转录组变化最大(增加500倍[6 h/0 h])的是光收集蛋白(PufA和PufB)。增加50倍以上(6 h/0‍‍h)的位点与光合基因簇完全相关。在13个sigma因子基因中,与RpoH相关的sigma 70家族sigma因子(SP70)转录本在饥饿条件下沿光合基因增加;因此,我们进行了SP70基因敲除实验。ΔSP70突变体被发现缺乏光合色素(类胡萝卜素和细菌叶绿素a),而不考虑碳饥饿。我们还研究了热应激对ΔSP70突变体的影响,发现SP70也与热应激耐受性有关,类似于其他RpoH sigma因子(而热应激不会触发光系统产生)。引入完整的SP70基因弥补了ΔSP70突变体光合色素积累不足和耐热性不足的缺陷。此外,在ΔSP70突变体中,光合基因操纵子(puf、puh和bch)的转录显著减少。RpoH同源物SP70被认为是R. depolymerans光合基因操纵子转录所必需的sigma因子。
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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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