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Genome Functional Analysis of the Psychrotrophic Lignin-Degrading Bacterium Arthrobacter sp. C2 and the Role of DyP in Catalyzing Lignin Degradation

In the cold regions of China, lignin-rich corn straw accumulates at high levels due to low temperatures. The application of psychrotrophic lignin-degrading bacteria should be an effective means of overcoming the low-temperature limit for lignin degradation and promoting the utilization of corn straw...

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Autores principales: Jiang, Cheng, Yan, Haohao, Shen, Xiaohui, Zhang, Yuting, Wang, Yue, Sun, Shanshan, Jiang, Hanyi, Zang, Hailian, Zhao, Xinyue, Hou, Ning, Li, Ziwei, Wang, Liwen, Wang, Hanjun, Li, Chunyan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9327799/
https://www.ncbi.nlm.nih.gov/pubmed/35910642
http://dx.doi.org/10.3389/fmicb.2022.921549
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author Jiang, Cheng
Yan, Haohao
Shen, Xiaohui
Zhang, Yuting
Wang, Yue
Sun, Shanshan
Jiang, Hanyi
Zang, Hailian
Zhao, Xinyue
Hou, Ning
Li, Ziwei
Wang, Liwen
Wang, Hanjun
Li, Chunyan
author_facet Jiang, Cheng
Yan, Haohao
Shen, Xiaohui
Zhang, Yuting
Wang, Yue
Sun, Shanshan
Jiang, Hanyi
Zang, Hailian
Zhao, Xinyue
Hou, Ning
Li, Ziwei
Wang, Liwen
Wang, Hanjun
Li, Chunyan
author_sort Jiang, Cheng
collection PubMed
description In the cold regions of China, lignin-rich corn straw accumulates at high levels due to low temperatures. The application of psychrotrophic lignin-degrading bacteria should be an effective means of overcoming the low-temperature limit for lignin degradation and promoting the utilization of corn straw. However, this application is limited by the lack of suitable strains for decomposition of lignin; furthermore, the metabolic mechanism of psychrotrophic lignin-degrading bacteria is unclear. Here, the whole genome of the psychrotrophic lignin-degrading bacterium Arthrobacter sp. C2, isolated in our previous work, was sequenced. Comparative genomics revealed that C2 contained unique genes related to lignin degradation and low-temperature adaptability. DyP may participate in lignin degradation and may be a cold-adapted enzyme. Moreover, DyP was proven to catalyze lignin Cα-Cβ bond cleavage. Deletion and complementation of the DyP gene verified its ability to catalyze the first-step reaction of lignin degradation. Comparative transcriptomic analysis revealed that the transcriptional expression of the DyP gene was upregulated, and the genetic compensation mechanism allowed C2ΔDyP to degrade lignin, which provided novel insights into the survival strategy of the psychrotrophic mutant strain C2ΔdyP. This study improved our understanding of the metabolic mechanism of psychrotrophic lignin-degrading bacteria and provided potential application options for energy-saving production using cold-adapted lignin-degrading enzymes.
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spelling pubmed-93277992022-07-28 Genome Functional Analysis of the Psychrotrophic Lignin-Degrading Bacterium Arthrobacter sp. C2 and the Role of DyP in Catalyzing Lignin Degradation Jiang, Cheng Yan, Haohao Shen, Xiaohui Zhang, Yuting Wang, Yue Sun, Shanshan Jiang, Hanyi Zang, Hailian Zhao, Xinyue Hou, Ning Li, Ziwei Wang, Liwen Wang, Hanjun Li, Chunyan Front Microbiol Microbiology In the cold regions of China, lignin-rich corn straw accumulates at high levels due to low temperatures. The application of psychrotrophic lignin-degrading bacteria should be an effective means of overcoming the low-temperature limit for lignin degradation and promoting the utilization of corn straw. However, this application is limited by the lack of suitable strains for decomposition of lignin; furthermore, the metabolic mechanism of psychrotrophic lignin-degrading bacteria is unclear. Here, the whole genome of the psychrotrophic lignin-degrading bacterium Arthrobacter sp. C2, isolated in our previous work, was sequenced. Comparative genomics revealed that C2 contained unique genes related to lignin degradation and low-temperature adaptability. DyP may participate in lignin degradation and may be a cold-adapted enzyme. Moreover, DyP was proven to catalyze lignin Cα-Cβ bond cleavage. Deletion and complementation of the DyP gene verified its ability to catalyze the first-step reaction of lignin degradation. Comparative transcriptomic analysis revealed that the transcriptional expression of the DyP gene was upregulated, and the genetic compensation mechanism allowed C2ΔDyP to degrade lignin, which provided novel insights into the survival strategy of the psychrotrophic mutant strain C2ΔdyP. This study improved our understanding of the metabolic mechanism of psychrotrophic lignin-degrading bacteria and provided potential application options for energy-saving production using cold-adapted lignin-degrading enzymes. Frontiers Media S.A. 2022-07-13 /pmc/articles/PMC9327799/ /pubmed/35910642 http://dx.doi.org/10.3389/fmicb.2022.921549 Text en Copyright © 2022 Jiang, Yan, Shen, Zhang, Wang, Sun, Jiang, Zang, Zhao, Hou, Li, Wang, Wang and Li. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Microbiology
Jiang, Cheng
Yan, Haohao
Shen, Xiaohui
Zhang, Yuting
Wang, Yue
Sun, Shanshan
Jiang, Hanyi
Zang, Hailian
Zhao, Xinyue
Hou, Ning
Li, Ziwei
Wang, Liwen
Wang, Hanjun
Li, Chunyan
Genome Functional Analysis of the Psychrotrophic Lignin-Degrading Bacterium Arthrobacter sp. C2 and the Role of DyP in Catalyzing Lignin Degradation
title Genome Functional Analysis of the Psychrotrophic Lignin-Degrading Bacterium Arthrobacter sp. C2 and the Role of DyP in Catalyzing Lignin Degradation
title_full Genome Functional Analysis of the Psychrotrophic Lignin-Degrading Bacterium Arthrobacter sp. C2 and the Role of DyP in Catalyzing Lignin Degradation
title_fullStr Genome Functional Analysis of the Psychrotrophic Lignin-Degrading Bacterium Arthrobacter sp. C2 and the Role of DyP in Catalyzing Lignin Degradation
title_full_unstemmed Genome Functional Analysis of the Psychrotrophic Lignin-Degrading Bacterium Arthrobacter sp. C2 and the Role of DyP in Catalyzing Lignin Degradation
title_short Genome Functional Analysis of the Psychrotrophic Lignin-Degrading Bacterium Arthrobacter sp. C2 and the Role of DyP in Catalyzing Lignin Degradation
title_sort genome functional analysis of the psychrotrophic lignin-degrading bacterium arthrobacter sp. c2 and the role of dyp in catalyzing lignin degradation
topic Microbiology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9327799/
https://www.ncbi.nlm.nih.gov/pubmed/35910642
http://dx.doi.org/10.3389/fmicb.2022.921549
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