Cargando…

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

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...

Descripción completa

Detalles Bibliográficos
Autores principales: Suyama, Tetsushi, Kanno, Nanako, Matsukura, Satoko, Chihara, Kotaro, Noda, Naohiro, Hanada, Satoshi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Japanese Society of Microbial Ecology / Japanese Society of Soil Microbiology / Taiwan Society of Microbial Ecology / Japanese Society of Plant Microbe Interactions / Japanese Society for Extremophiles 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10037100/
https://www.ncbi.nlm.nih.gov/pubmed/36878600
http://dx.doi.org/10.1264/jsme2.ME22072
_version_ 1784911806091755520
author Suyama, Tetsushi
Kanno, Nanako
Matsukura, Satoko
Chihara, Kotaro
Noda, Naohiro
Hanada, Satoshi
author_facet Suyama, Tetsushi
Kanno, Nanako
Matsukura, Satoko
Chihara, Kotaro
Noda, Naohiro
Hanada, Satoshi
author_sort Suyama, Tetsushi
collection PubMed
description 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 bacteriochlo­rophyll 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.
format Online
Article
Text
id pubmed-10037100
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher Japanese Society of Microbial Ecology / Japanese Society of Soil Microbiology / Taiwan Society of Microbial Ecology / Japanese Society of Plant Microbe Interactions / Japanese Society for Extremophiles
record_format MEDLINE/PubMed
spelling pubmed-100371002023-03-25 Transcriptome and Deletion Mutant Analyses Revealed that an RpoH Family Sigma Factor Is Essential for Photosystem Production in Roseateles depolymerans under Carbon Starvation Suyama, Tetsushi Kanno, Nanako Matsukura, Satoko Chihara, Kotaro Noda, Naohiro Hanada, Satoshi Microbes Environ Regular Paper 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 bacteriochlo­rophyll 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. Japanese Society of Microbial Ecology / Japanese Society of Soil Microbiology / Taiwan Society of Microbial Ecology / Japanese Society of Plant Microbe Interactions / Japanese Society for Extremophiles 2023 2023-03-07 /pmc/articles/PMC10037100/ /pubmed/36878600 http://dx.doi.org/10.1264/jsme2.ME22072 Text en 2023 by Japanese Society of Microbial Ecology / Japanese Society of Soil Microbiology / Taiwan Society of Microbial Ecology / Japanese Society of Plant Microbe Interactions / Japanese Society for Extremophiles. https://creativecommons.org/licenses/by/3.0/This is an open access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Regular Paper
Suyama, Tetsushi
Kanno, Nanako
Matsukura, Satoko
Chihara, Kotaro
Noda, Naohiro
Hanada, Satoshi
Transcriptome and Deletion Mutant Analyses Revealed that an RpoH Family Sigma Factor Is Essential for Photosystem Production in Roseateles depolymerans under Carbon Starvation
title Transcriptome and Deletion Mutant Analyses Revealed that an RpoH Family Sigma Factor Is Essential for Photosystem Production in Roseateles depolymerans under Carbon Starvation
title_full Transcriptome and Deletion Mutant Analyses Revealed that an RpoH Family Sigma Factor Is Essential for Photosystem Production in Roseateles depolymerans under Carbon Starvation
title_fullStr Transcriptome and Deletion Mutant Analyses Revealed that an RpoH Family Sigma Factor Is Essential for Photosystem Production in Roseateles depolymerans under Carbon Starvation
title_full_unstemmed Transcriptome and Deletion Mutant Analyses Revealed that an RpoH Family Sigma Factor Is Essential for Photosystem Production in Roseateles depolymerans under Carbon Starvation
title_short Transcriptome and Deletion Mutant Analyses Revealed that an RpoH Family Sigma Factor Is Essential for Photosystem Production in Roseateles depolymerans under Carbon Starvation
title_sort transcriptome and deletion mutant analyses revealed that an rpoh family sigma factor is essential for photosystem production in roseateles depolymerans under carbon starvation
topic Regular Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10037100/
https://www.ncbi.nlm.nih.gov/pubmed/36878600
http://dx.doi.org/10.1264/jsme2.ME22072
work_keys_str_mv AT suyamatetsushi transcriptomeanddeletionmutantanalysesrevealedthatanrpohfamilysigmafactorisessentialforphotosystemproductioninroseatelesdepolymeransundercarbonstarvation
AT kannonanako transcriptomeanddeletionmutantanalysesrevealedthatanrpohfamilysigmafactorisessentialforphotosystemproductioninroseatelesdepolymeransundercarbonstarvation
AT matsukurasatoko transcriptomeanddeletionmutantanalysesrevealedthatanrpohfamilysigmafactorisessentialforphotosystemproductioninroseatelesdepolymeransundercarbonstarvation
AT chiharakotaro transcriptomeanddeletionmutantanalysesrevealedthatanrpohfamilysigmafactorisessentialforphotosystemproductioninroseatelesdepolymeransundercarbonstarvation
AT nodanaohiro transcriptomeanddeletionmutantanalysesrevealedthatanrpohfamilysigmafactorisessentialforphotosystemproductioninroseatelesdepolymeransundercarbonstarvation
AT hanadasatoshi transcriptomeanddeletionmutantanalysesrevealedthatanrpohfamilysigmafactorisessentialforphotosystemproductioninroseatelesdepolymeransundercarbonstarvation