Comparative analysis of DNA methyltransferase gene family in fungi: a focus on Basidiomycota

DNA methylation plays a crucial role in the regulation of gene expression in eukaryotes. Mushrooms belonging to the phylum Basidiomycota are highly valued for both nutritional and pharmaceutical uses. A growing number of studies have demonstrated the significance of DNA methylation in the developmen...

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Main Authors: Ruirui Huang, Qiangqiang Ding, Yanan Xiang, Tingting Gu, Yi Li
Format: Article
Language:English
Published: Frontiers Media S.A. 2016-10-01
Series:Frontiers in Plant Science
Subjects:
Online Access:http://journal.frontiersin.org/Journal/10.3389/fpls.2016.01556/full
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spelling doaj-296e5eb0fc2e4639b8c8281e735cc8002020-11-24T21:44:59ZengFrontiers Media S.A.Frontiers in Plant Science1664-462X2016-10-01710.3389/fpls.2016.01556224969Comparative analysis of DNA methyltransferase gene family in fungi: a focus on BasidiomycotaRuirui Huang0Qiangqiang Ding1Yanan Xiang2Tingting Gu3Yi Li4Yi Li5Nanjing Agricultural UniversityNanjing Agricultural UniversityNanjing Agricultural UniversityNanjing Agricultural UniversityNanjing Agricultural UniversityUniversity of ConnecticutDNA methylation plays a crucial role in the regulation of gene expression in eukaryotes. Mushrooms belonging to the phylum Basidiomycota are highly valued for both nutritional and pharmaceutical uses. A growing number of studies have demonstrated the significance of DNA methylation in the development of plants and animals. However, our understanding of DNA methylation in mushrooms is limited. In this study, we identified and conducted comprehensive analyses on DNA methyltransferases (DNMtases) in representative species from Basidiomycota and Ascomycota, and obtained new insights into their classification and characterization in fungi. Our results revealed that DNMtases in basidiomycetes can be divided into two classes, the Dnmt1 class and the newly defined Rad8 class. We also demonstrated that the fusion event between the characteristic domains of the DNMtases family and Snf2 family in the Rad8 class is fungi-specific, possibly indicating a functional novelty of Rad8 DNMtases in fungi. Additionally, expression profiles of DNMtases in the edible mushroom Pleurotus ostreatus revealed diverse expression patterns in various organs and developmental stages. For example, DNMtase genes displayed higher expression levels in dikaryons than in monokaryons. Consistent with the expression profiles, we found that dikaryons are more susceptible to the DNA methyltransferase inhibitor 5-azacytidine. Taken together, our findings pinpoint an important role of DNA methylation during the growth of mushrooms and provide a foundation for understanding of DNMtases in basidiomycetes.http://journal.frontiersin.org/Journal/10.3389/fpls.2016.01556/fullPleurotus ostreatusDNA methyltransferaseBasidiomycetesDNA methyltransferase inhibitorMushroom development
collection DOAJ
language English
format Article
sources DOAJ
author Ruirui Huang
Qiangqiang Ding
Yanan Xiang
Tingting Gu
Yi Li
Yi Li
spellingShingle Ruirui Huang
Qiangqiang Ding
Yanan Xiang
Tingting Gu
Yi Li
Yi Li
Comparative analysis of DNA methyltransferase gene family in fungi: a focus on Basidiomycota
Frontiers in Plant Science
Pleurotus ostreatus
DNA methyltransferase
Basidiomycetes
DNA methyltransferase inhibitor
Mushroom development
author_facet Ruirui Huang
Qiangqiang Ding
Yanan Xiang
Tingting Gu
Yi Li
Yi Li
author_sort Ruirui Huang
title Comparative analysis of DNA methyltransferase gene family in fungi: a focus on Basidiomycota
title_short Comparative analysis of DNA methyltransferase gene family in fungi: a focus on Basidiomycota
title_full Comparative analysis of DNA methyltransferase gene family in fungi: a focus on Basidiomycota
title_fullStr Comparative analysis of DNA methyltransferase gene family in fungi: a focus on Basidiomycota
title_full_unstemmed Comparative analysis of DNA methyltransferase gene family in fungi: a focus on Basidiomycota
title_sort comparative analysis of dna methyltransferase gene family in fungi: a focus on basidiomycota
publisher Frontiers Media S.A.
series Frontiers in Plant Science
issn 1664-462X
publishDate 2016-10-01
description DNA methylation plays a crucial role in the regulation of gene expression in eukaryotes. Mushrooms belonging to the phylum Basidiomycota are highly valued for both nutritional and pharmaceutical uses. A growing number of studies have demonstrated the significance of DNA methylation in the development of plants and animals. However, our understanding of DNA methylation in mushrooms is limited. In this study, we identified and conducted comprehensive analyses on DNA methyltransferases (DNMtases) in representative species from Basidiomycota and Ascomycota, and obtained new insights into their classification and characterization in fungi. Our results revealed that DNMtases in basidiomycetes can be divided into two classes, the Dnmt1 class and the newly defined Rad8 class. We also demonstrated that the fusion event between the characteristic domains of the DNMtases family and Snf2 family in the Rad8 class is fungi-specific, possibly indicating a functional novelty of Rad8 DNMtases in fungi. Additionally, expression profiles of DNMtases in the edible mushroom Pleurotus ostreatus revealed diverse expression patterns in various organs and developmental stages. For example, DNMtase genes displayed higher expression levels in dikaryons than in monokaryons. Consistent with the expression profiles, we found that dikaryons are more susceptible to the DNA methyltransferase inhibitor 5-azacytidine. Taken together, our findings pinpoint an important role of DNA methylation during the growth of mushrooms and provide a foundation for understanding of DNMtases in basidiomycetes.
topic Pleurotus ostreatus
DNA methyltransferase
Basidiomycetes
DNA methyltransferase inhibitor
Mushroom development
url http://journal.frontiersin.org/Journal/10.3389/fpls.2016.01556/full
work_keys_str_mv AT ruiruihuang comparativeanalysisofdnamethyltransferasegenefamilyinfungiafocusonbasidiomycota
AT qiangqiangding comparativeanalysisofdnamethyltransferasegenefamilyinfungiafocusonbasidiomycota
AT yananxiang comparativeanalysisofdnamethyltransferasegenefamilyinfungiafocusonbasidiomycota
AT tingtinggu comparativeanalysisofdnamethyltransferasegenefamilyinfungiafocusonbasidiomycota
AT yili comparativeanalysisofdnamethyltransferasegenefamilyinfungiafocusonbasidiomycota
AT yili comparativeanalysisofdnamethyltransferasegenefamilyinfungiafocusonbasidiomycota
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