The genome of a prasinoviruses-related freshwater virus reveals unusual diversity of phycodnaviruses

Abstract Background Phycodnaviruses are widespread algae-infecting large dsDNA viruses and presently contain six genera: Chlorovirus, Prasinovirus, Prymnesiovirus, Phaeovirus, Coccolithovirus and Raphidovirus. The members in Prasinovirus are identified as marine viruses due to their marine algal hos...

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Main Authors: Hao Chen, Weijia Zhang, Xiefei Li, Yingjie Pan, Shuling Yan, Yongjie Wang
Format: Article
Language:English
Published: BMC 2018-01-01
Series:BMC Genomics
Subjects:
Online Access:http://link.springer.com/article/10.1186/s12864-018-4432-4
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spelling doaj-2c2267bdc4c34aa5bc0519e628bd3a752020-11-24T21:15:33ZengBMCBMC Genomics1471-21642018-01-0119111210.1186/s12864-018-4432-4The genome of a prasinoviruses-related freshwater virus reveals unusual diversity of phycodnavirusesHao Chen0Weijia Zhang1Xiefei Li2Yingjie Pan3Shuling Yan4Yongjie Wang5College of Food Science and Technology, Shanghai Ocean UniversityCollege of Food Science and Technology, Shanghai Ocean UniversityCollege of Food Science and Technology, Shanghai Ocean UniversityCollege of Food Science and Technology, Shanghai Ocean UniversityCollege of Food Science and Technology, Shanghai Ocean UniversityCollege of Food Science and Technology, Shanghai Ocean UniversityAbstract Background Phycodnaviruses are widespread algae-infecting large dsDNA viruses and presently contain six genera: Chlorovirus, Prasinovirus, Prymnesiovirus, Phaeovirus, Coccolithovirus and Raphidovirus. The members in Prasinovirus are identified as marine viruses due to their marine algal hosts, while prasinovirus freshwater relatives remain rarely reported. Results Here we present the complete genomic sequence of a novel phycodnavirus, Dishui Lake Phycodnavirus 1 (DSLPV1), which was assembled from Dishui Lake metagenomic datasets. DSLPV1 harbors a linear genome of 181,035 bp in length (G + C content: 52.7%), with 227 predicted genes and 2 tRNA encoding regions. Both comparative genomic and phylogenetic analyses indicate that the freshwater algal virus DSLPV1 is closely related to the members in Prasinovirus, a group of marine algae infecting viruses. In addition, a complete eukaryotic histone H3 variant was identified in the genome of DSLPV1, which is firstly detected in phycodnaviruses and contributes to understand the interaction between algal virus and its eukaryotic hosts. Conclusion It is in a freshwater ecosystem that a novel Prasinovirus-related viral complete genomic sequence is discovered, which sheds new light on the evolution and diversity of the algae infecting Phycodnaviridae.http://link.springer.com/article/10.1186/s12864-018-4432-4PhycodnaviridaePrasinovirusDSLPV1Histone H3Diversity
collection DOAJ
language English
format Article
sources DOAJ
author Hao Chen
Weijia Zhang
Xiefei Li
Yingjie Pan
Shuling Yan
Yongjie Wang
spellingShingle Hao Chen
Weijia Zhang
Xiefei Li
Yingjie Pan
Shuling Yan
Yongjie Wang
The genome of a prasinoviruses-related freshwater virus reveals unusual diversity of phycodnaviruses
BMC Genomics
Phycodnaviridae
Prasinovirus
DSLPV1
Histone H3
Diversity
author_facet Hao Chen
Weijia Zhang
Xiefei Li
Yingjie Pan
Shuling Yan
Yongjie Wang
author_sort Hao Chen
title The genome of a prasinoviruses-related freshwater virus reveals unusual diversity of phycodnaviruses
title_short The genome of a prasinoviruses-related freshwater virus reveals unusual diversity of phycodnaviruses
title_full The genome of a prasinoviruses-related freshwater virus reveals unusual diversity of phycodnaviruses
title_fullStr The genome of a prasinoviruses-related freshwater virus reveals unusual diversity of phycodnaviruses
title_full_unstemmed The genome of a prasinoviruses-related freshwater virus reveals unusual diversity of phycodnaviruses
title_sort genome of a prasinoviruses-related freshwater virus reveals unusual diversity of phycodnaviruses
publisher BMC
series BMC Genomics
issn 1471-2164
publishDate 2018-01-01
description Abstract Background Phycodnaviruses are widespread algae-infecting large dsDNA viruses and presently contain six genera: Chlorovirus, Prasinovirus, Prymnesiovirus, Phaeovirus, Coccolithovirus and Raphidovirus. The members in Prasinovirus are identified as marine viruses due to their marine algal hosts, while prasinovirus freshwater relatives remain rarely reported. Results Here we present the complete genomic sequence of a novel phycodnavirus, Dishui Lake Phycodnavirus 1 (DSLPV1), which was assembled from Dishui Lake metagenomic datasets. DSLPV1 harbors a linear genome of 181,035 bp in length (G + C content: 52.7%), with 227 predicted genes and 2 tRNA encoding regions. Both comparative genomic and phylogenetic analyses indicate that the freshwater algal virus DSLPV1 is closely related to the members in Prasinovirus, a group of marine algae infecting viruses. In addition, a complete eukaryotic histone H3 variant was identified in the genome of DSLPV1, which is firstly detected in phycodnaviruses and contributes to understand the interaction between algal virus and its eukaryotic hosts. Conclusion It is in a freshwater ecosystem that a novel Prasinovirus-related viral complete genomic sequence is discovered, which sheds new light on the evolution and diversity of the algae infecting Phycodnaviridae.
topic Phycodnaviridae
Prasinovirus
DSLPV1
Histone H3
Diversity
url http://link.springer.com/article/10.1186/s12864-018-4432-4
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