Cargando…

SWATH label-free proteomics analyses revealed the roles of oxidative stress and antioxidant defensing system in sclerotia formation of Polyporus umbellatus

Understanding the initiation and maturing mechanisms is important for rational manipulating sclerotia differentiation and growth from hypha of Polyporus umbellatus. Proteomes in P. umbellatus sclerotia and hyphae at initial, developmental and mature phases were studied. 1391 proteins were identified...

Descripción completa

Detalles Bibliográficos
Autores principales: Li, Bing, Tian, Xiaofang, Wang, Chunlan, Zeng, Xu, Xing, Yongmei, Ling, Hong, Yin, Wanqiang, Tian, Lixia, Meng, Zhixia, Zhang, Jihui, Guo, Shunxing
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5278369/
https://www.ncbi.nlm.nih.gov/pubmed/28134344
http://dx.doi.org/10.1038/srep41283
_version_ 1782502635771789312
author Li, Bing
Tian, Xiaofang
Wang, Chunlan
Zeng, Xu
Xing, Yongmei
Ling, Hong
Yin, Wanqiang
Tian, Lixia
Meng, Zhixia
Zhang, Jihui
Guo, Shunxing
author_facet Li, Bing
Tian, Xiaofang
Wang, Chunlan
Zeng, Xu
Xing, Yongmei
Ling, Hong
Yin, Wanqiang
Tian, Lixia
Meng, Zhixia
Zhang, Jihui
Guo, Shunxing
author_sort Li, Bing
collection PubMed
description Understanding the initiation and maturing mechanisms is important for rational manipulating sclerotia differentiation and growth from hypha of Polyporus umbellatus. Proteomes in P. umbellatus sclerotia and hyphae at initial, developmental and mature phases were studied. 1391 proteins were identified by nano-liquid chromatograph-mass spectrometry (LC-MS) in Data Dependant Acquisition mode, and 1234 proteins were quantified successfully by Sequential Window Acquisition of all THeoretical fragment ion spectra-MS (SWATH-MS) technology. There were 347 differentially expressed proteins (DEPs) in sclerotia at initial phase compared with those in hypha, and the DEP profiles were dynamically changing with sclerotia growth. Oxidative stress (OS) in sclerotia at initial phase was indicated by the repressed proteins of respiratory chain, tricarboxylic acid cycle and the activation of glycolysis/gluconeogenesis pathways were determined based on DEPs. The impact of glycolysis/gluconeogenesis on sclerotium induction was further verified by glycerol addition assays, in which 5% glycerol significantly increased sclerotial differentiation rate and biomass. It can be speculated that OS played essential roles in triggering sclerotia differentiation from hypha of P. umbellatus, whereas antioxidant activity associated with glycolysis is critical for sclerotia growth. These findings reveal a mechanism for sclerotial differentiation in P. umbellatus, which may also be applicable for other fungi.
format Online
Article
Text
id pubmed-5278369
institution National Center for Biotechnology Information
language English
publishDate 2017
publisher Nature Publishing Group
record_format MEDLINE/PubMed
spelling pubmed-52783692017-02-03 SWATH label-free proteomics analyses revealed the roles of oxidative stress and antioxidant defensing system in sclerotia formation of Polyporus umbellatus Li, Bing Tian, Xiaofang Wang, Chunlan Zeng, Xu Xing, Yongmei Ling, Hong Yin, Wanqiang Tian, Lixia Meng, Zhixia Zhang, Jihui Guo, Shunxing Sci Rep Article Understanding the initiation and maturing mechanisms is important for rational manipulating sclerotia differentiation and growth from hypha of Polyporus umbellatus. Proteomes in P. umbellatus sclerotia and hyphae at initial, developmental and mature phases were studied. 1391 proteins were identified by nano-liquid chromatograph-mass spectrometry (LC-MS) in Data Dependant Acquisition mode, and 1234 proteins were quantified successfully by Sequential Window Acquisition of all THeoretical fragment ion spectra-MS (SWATH-MS) technology. There were 347 differentially expressed proteins (DEPs) in sclerotia at initial phase compared with those in hypha, and the DEP profiles were dynamically changing with sclerotia growth. Oxidative stress (OS) in sclerotia at initial phase was indicated by the repressed proteins of respiratory chain, tricarboxylic acid cycle and the activation of glycolysis/gluconeogenesis pathways were determined based on DEPs. The impact of glycolysis/gluconeogenesis on sclerotium induction was further verified by glycerol addition assays, in which 5% glycerol significantly increased sclerotial differentiation rate and biomass. It can be speculated that OS played essential roles in triggering sclerotia differentiation from hypha of P. umbellatus, whereas antioxidant activity associated with glycolysis is critical for sclerotia growth. These findings reveal a mechanism for sclerotial differentiation in P. umbellatus, which may also be applicable for other fungi. Nature Publishing Group 2017-01-30 /pmc/articles/PMC5278369/ /pubmed/28134344 http://dx.doi.org/10.1038/srep41283 Text en Copyright © 2017, The Author(s) http://creativecommons.org/licenses/by/4.0/ This work is licensed under a Creative Commons Attribution 4.0 International License. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in the credit line; if the material is not included under the Creative Commons license, users will need to obtain permission from the license holder to reproduce the material. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/
spellingShingle Article
Li, Bing
Tian, Xiaofang
Wang, Chunlan
Zeng, Xu
Xing, Yongmei
Ling, Hong
Yin, Wanqiang
Tian, Lixia
Meng, Zhixia
Zhang, Jihui
Guo, Shunxing
SWATH label-free proteomics analyses revealed the roles of oxidative stress and antioxidant defensing system in sclerotia formation of Polyporus umbellatus
title SWATH label-free proteomics analyses revealed the roles of oxidative stress and antioxidant defensing system in sclerotia formation of Polyporus umbellatus
title_full SWATH label-free proteomics analyses revealed the roles of oxidative stress and antioxidant defensing system in sclerotia formation of Polyporus umbellatus
title_fullStr SWATH label-free proteomics analyses revealed the roles of oxidative stress and antioxidant defensing system in sclerotia formation of Polyporus umbellatus
title_full_unstemmed SWATH label-free proteomics analyses revealed the roles of oxidative stress and antioxidant defensing system in sclerotia formation of Polyporus umbellatus
title_short SWATH label-free proteomics analyses revealed the roles of oxidative stress and antioxidant defensing system in sclerotia formation of Polyporus umbellatus
title_sort swath label-free proteomics analyses revealed the roles of oxidative stress and antioxidant defensing system in sclerotia formation of polyporus umbellatus
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5278369/
https://www.ncbi.nlm.nih.gov/pubmed/28134344
http://dx.doi.org/10.1038/srep41283
work_keys_str_mv AT libing swathlabelfreeproteomicsanalysesrevealedtherolesofoxidativestressandantioxidantdefensingsysteminsclerotiaformationofpolyporusumbellatus
AT tianxiaofang swathlabelfreeproteomicsanalysesrevealedtherolesofoxidativestressandantioxidantdefensingsysteminsclerotiaformationofpolyporusumbellatus
AT wangchunlan swathlabelfreeproteomicsanalysesrevealedtherolesofoxidativestressandantioxidantdefensingsysteminsclerotiaformationofpolyporusumbellatus
AT zengxu swathlabelfreeproteomicsanalysesrevealedtherolesofoxidativestressandantioxidantdefensingsysteminsclerotiaformationofpolyporusumbellatus
AT xingyongmei swathlabelfreeproteomicsanalysesrevealedtherolesofoxidativestressandantioxidantdefensingsysteminsclerotiaformationofpolyporusumbellatus
AT linghong swathlabelfreeproteomicsanalysesrevealedtherolesofoxidativestressandantioxidantdefensingsysteminsclerotiaformationofpolyporusumbellatus
AT yinwanqiang swathlabelfreeproteomicsanalysesrevealedtherolesofoxidativestressandantioxidantdefensingsysteminsclerotiaformationofpolyporusumbellatus
AT tianlixia swathlabelfreeproteomicsanalysesrevealedtherolesofoxidativestressandantioxidantdefensingsysteminsclerotiaformationofpolyporusumbellatus
AT mengzhixia swathlabelfreeproteomicsanalysesrevealedtherolesofoxidativestressandantioxidantdefensingsysteminsclerotiaformationofpolyporusumbellatus
AT zhangjihui swathlabelfreeproteomicsanalysesrevealedtherolesofoxidativestressandantioxidantdefensingsysteminsclerotiaformationofpolyporusumbellatus
AT guoshunxing swathlabelfreeproteomicsanalysesrevealedtherolesofoxidativestressandantioxidantdefensingsysteminsclerotiaformationofpolyporusumbellatus