Cargando…

RNAi-Mediated Gene Silencing of Trcot1 Induces a Hyperbranching Phenotype in Trichoderma reesei

Trichoderma reesei is the major filamentous fungus used to produce cellulase and there is huge interest in promoting its ability to produce higher titers of cellulase. Among the many factors affecting cellulase production in T. reesei, the mycelial phenotype is important but seldom studied. Herein,...

Descripción completa

Detalles Bibliográficos
Autores principales: Li, Fei Gao Mengzhu, Liu, Weiquan, Bai, Yingguo, Tao, Tu, Wang, Yuan, Zhang, Jie, Luo, Huiying, Yao, Bin, Huang, Huoqing, Su, Xiaoyun
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Korean Society for Microbiology and Biotechnology 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9728278/
https://www.ncbi.nlm.nih.gov/pubmed/31752060
http://dx.doi.org/10.4014/jmb.1909.09050
_version_ 1784845212121563136
author Li, Fei Gao Mengzhu
Liu, Weiquan
Bai, Yingguo
Tao, Tu
Wang, Yuan
Zhang, Jie
Luo, Huiying
Yao, Bin
Huang, Huoqing
Su, Xiaoyun
author_facet Li, Fei Gao Mengzhu
Liu, Weiquan
Bai, Yingguo
Tao, Tu
Wang, Yuan
Zhang, Jie
Luo, Huiying
Yao, Bin
Huang, Huoqing
Su, Xiaoyun
author_sort Li, Fei Gao Mengzhu
collection PubMed
description Trichoderma reesei is the major filamentous fungus used to produce cellulase and there is huge interest in promoting its ability to produce higher titers of cellulase. Among the many factors affecting cellulase production in T. reesei, the mycelial phenotype is important but seldom studied. Herein, a close homolog of the Neurospora crassa COT1 kinase was discovered in T. reesei and designated TrCOT1, which is of 83.3% amino acid sequence identity. Functional disruption of Trcot1 in T. reesei by RNAi-mediated gene silencing resulted in retarded sporulation on potato dextrose agar and dwarfed colonies on minimal medium agar plates containing glucose, xylan, lactose, xylose, or glycerol as the sole carbon source. The representative mutant strain, SUS2/Trcot1i, also displayed reduced mycelia accumulation but hyperbranching in the MM glucose liquid medium, with hyphal growth unit length values decreased to 73.0 μm/tip compared to 239.8 μm/tip for the parent strain SUS2. The hyperbranching phenotype led to slightly but significantly increased cellulase secretion from 24 to 72 h in a batch culture. However, the cellulase production per unit of mycelial biomass was much more profoundly improved from 24 to 96 h.
format Online
Article
Text
id pubmed-9728278
institution National Center for Biotechnology Information
language English
publishDate 2020
publisher Korean Society for Microbiology and Biotechnology
record_format MEDLINE/PubMed
spelling pubmed-97282782022-12-13 RNAi-Mediated Gene Silencing of Trcot1 Induces a Hyperbranching Phenotype in Trichoderma reesei Li, Fei Gao Mengzhu Liu, Weiquan Bai, Yingguo Tao, Tu Wang, Yuan Zhang, Jie Luo, Huiying Yao, Bin Huang, Huoqing Su, Xiaoyun J Microbiol Biotechnol Research article Trichoderma reesei is the major filamentous fungus used to produce cellulase and there is huge interest in promoting its ability to produce higher titers of cellulase. Among the many factors affecting cellulase production in T. reesei, the mycelial phenotype is important but seldom studied. Herein, a close homolog of the Neurospora crassa COT1 kinase was discovered in T. reesei and designated TrCOT1, which is of 83.3% amino acid sequence identity. Functional disruption of Trcot1 in T. reesei by RNAi-mediated gene silencing resulted in retarded sporulation on potato dextrose agar and dwarfed colonies on minimal medium agar plates containing glucose, xylan, lactose, xylose, or glycerol as the sole carbon source. The representative mutant strain, SUS2/Trcot1i, also displayed reduced mycelia accumulation but hyperbranching in the MM glucose liquid medium, with hyphal growth unit length values decreased to 73.0 μm/tip compared to 239.8 μm/tip for the parent strain SUS2. The hyperbranching phenotype led to slightly but significantly increased cellulase secretion from 24 to 72 h in a batch culture. However, the cellulase production per unit of mycelial biomass was much more profoundly improved from 24 to 96 h. Korean Society for Microbiology and Biotechnology 2020-02-28 2019-11-18 /pmc/articles/PMC9728278/ /pubmed/31752060 http://dx.doi.org/10.4014/jmb.1909.09050 Text en Copyright©2020 by The Korean Society for Microbiology and Biotechnology https://creativecommons.org/licenses/by/4.0/This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Research article
Li, Fei Gao Mengzhu
Liu, Weiquan
Bai, Yingguo
Tao, Tu
Wang, Yuan
Zhang, Jie
Luo, Huiying
Yao, Bin
Huang, Huoqing
Su, Xiaoyun
RNAi-Mediated Gene Silencing of Trcot1 Induces a Hyperbranching Phenotype in Trichoderma reesei
title RNAi-Mediated Gene Silencing of Trcot1 Induces a Hyperbranching Phenotype in Trichoderma reesei
title_full RNAi-Mediated Gene Silencing of Trcot1 Induces a Hyperbranching Phenotype in Trichoderma reesei
title_fullStr RNAi-Mediated Gene Silencing of Trcot1 Induces a Hyperbranching Phenotype in Trichoderma reesei
title_full_unstemmed RNAi-Mediated Gene Silencing of Trcot1 Induces a Hyperbranching Phenotype in Trichoderma reesei
title_short RNAi-Mediated Gene Silencing of Trcot1 Induces a Hyperbranching Phenotype in Trichoderma reesei
title_sort rnai-mediated gene silencing of trcot1 induces a hyperbranching phenotype in trichoderma reesei
topic Research article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9728278/
https://www.ncbi.nlm.nih.gov/pubmed/31752060
http://dx.doi.org/10.4014/jmb.1909.09050
work_keys_str_mv AT lifeigaomengzhu rnaimediatedgenesilencingoftrcot1inducesahyperbranchingphenotypeintrichodermareesei
AT liuweiquan rnaimediatedgenesilencingoftrcot1inducesahyperbranchingphenotypeintrichodermareesei
AT baiyingguo rnaimediatedgenesilencingoftrcot1inducesahyperbranchingphenotypeintrichodermareesei
AT taotu rnaimediatedgenesilencingoftrcot1inducesahyperbranchingphenotypeintrichodermareesei
AT wangyuan rnaimediatedgenesilencingoftrcot1inducesahyperbranchingphenotypeintrichodermareesei
AT zhangjie rnaimediatedgenesilencingoftrcot1inducesahyperbranchingphenotypeintrichodermareesei
AT luohuiying rnaimediatedgenesilencingoftrcot1inducesahyperbranchingphenotypeintrichodermareesei
AT yaobin rnaimediatedgenesilencingoftrcot1inducesahyperbranchingphenotypeintrichodermareesei
AT huanghuoqing rnaimediatedgenesilencingoftrcot1inducesahyperbranchingphenotypeintrichodermareesei
AT suxiaoyun rnaimediatedgenesilencingoftrcot1inducesahyperbranchingphenotypeintrichodermareesei