A Novel Prokaryotic Promoter Identified in the Genome of Some Monopartite Begomoviruses

Geminiviruses are known to exhibit both prokaryotic and eukaryotic features in their genomes, with the ability to express their genes and even replicate in bacterial cells. We have demonstrated previously the existence of unit-length single-stranded circular DNAs of Ageratum yellow vein virus (AYVV,...

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Published inPloS one Vol. 8; no. 7; p. e70037
Main Authors Wang, Wei-Chen, Hsu, Yau-Heiu, Lin, Na-Sheng, Wu, Chia-Ying, Lai, Yi-Chin, Hu, Chung-Chi
Format Journal Article
LanguageEnglish
Published United States Public Library of Science 25.07.2013
Public Library of Science (PLoS)
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Abstract Geminiviruses are known to exhibit both prokaryotic and eukaryotic features in their genomes, with the ability to express their genes and even replicate in bacterial cells. We have demonstrated previously the existence of unit-length single-stranded circular DNAs of Ageratum yellow vein virus (AYVV, a species in the genus Begomovirus, family Geminiviridae) in Escherichia coli cells, which prompted our search for unknown prokaryotic functions in the begomovirus genomes. By using a promoter trapping strategy, we identified a novel prokaryotic promoter, designated AV3 promoter, in nts 762-831 of the AYVV genome. Activity assays revealed that the AV3 promoter is strong, unidirectional, and constitutive, with an endogenous downstream ribosome binding site and a translatable short open reading frame of eight amino acids. Sequence analyses suggested that the AV3 promoter might be a remnant of prokaryotic ancestors that could be related to certain promoters of bacteria from marine or freshwater environments. The discovery of the prokaryotic AV3 promoter provided further evidence for the prokaryotic origin in the evolutionary history of geminiviruses.
AbstractList Geminiviruses are known to exhibit both prokaryotic and eukaryotic features in their genomes, with the ability to express their genes and even replicate in bacterial cells. We have demonstrated previously the existence of unit-length single-stranded circular DNAs of Ageratum yellow vein virus (AYVV, a species in the genus Begomovirus, family Geminiviridae) in Escherichia coli cells, which prompted our search for unknown prokaryotic functions in the begomovirus genomes. By using a promoter trapping strategy, we identified a novel prokaryotic promoter, designated AV3 promoter, in nts 762-831 of the AYVV genome. Activity assays revealed that the AV3 promoter is strong, unidirectional, and constitutive, with an endogenous downstream ribosome binding site and a translatable short open reading frame of eight amino acids. Sequence analyses suggested that the AV3 promoter might be a remnant of prokaryotic ancestors that could be related to certain promoters of bacteria from marine or freshwater environments. The discovery of the prokaryotic AV3 promoter provided further evidence for the prokaryotic origin in the evolutionary history of geminiviruses.Geminiviruses are known to exhibit both prokaryotic and eukaryotic features in their genomes, with the ability to express their genes and even replicate in bacterial cells. We have demonstrated previously the existence of unit-length single-stranded circular DNAs of Ageratum yellow vein virus (AYVV, a species in the genus Begomovirus, family Geminiviridae) in Escherichia coli cells, which prompted our search for unknown prokaryotic functions in the begomovirus genomes. By using a promoter trapping strategy, we identified a novel prokaryotic promoter, designated AV3 promoter, in nts 762-831 of the AYVV genome. Activity assays revealed that the AV3 promoter is strong, unidirectional, and constitutive, with an endogenous downstream ribosome binding site and a translatable short open reading frame of eight amino acids. Sequence analyses suggested that the AV3 promoter might be a remnant of prokaryotic ancestors that could be related to certain promoters of bacteria from marine or freshwater environments. The discovery of the prokaryotic AV3 promoter provided further evidence for the prokaryotic origin in the evolutionary history of geminiviruses.
Geminiviruses are known to exhibit both prokaryotic and eukaryotic features in their genomes, with the ability to express their genes and even replicate in bacterial cells. We have demonstrated previously the existence of unit-length single-stranded circular DNAs of Ageratum yellow vein virus (AYVV, a species in the genus Begomovirus, family Geminiviridae) in Escherichia coli cells, which prompted our search for unknown prokaryotic functions in the begomovirus genomes. By using a promoter trapping strategy, we identified a novel prokaryotic promoter, designated AV3 promoter, in nts 762-831 of the AYVV genome. Activity assays revealed that the AV3 promoter is strong, unidirectional, and constitutive, with an endogenous downstream ribosome binding site and a translatable short open reading frame of eight amino acids. Sequence analyses suggested that the AV3 promoter might be a remnant of prokaryotic ancestors that could be related to certain promoters of bacteria from marine or freshwater environments. The discovery of the prokaryotic AV3 promoter provided further evidence for the prokaryotic origin in the evolutionary history of geminiviruses.
Geminiviruses are known to exhibit both prokaryotic and eukaryotic features in their genomes, with the ability to express their genes and even replicate in bacterial cells. We have demonstrated previously the existence of unit-length single-stranded circular DNAs of Ageratum yellow vein virus (AYVV, a species in the genus Begomovirus , family Geminiviridae ) in Escherichia coli cells, which prompted our search for unknown prokaryotic functions in the begomovirus genomes. By using a promoter trapping strategy, we identified a novel prokaryotic promoter, designated AV3 promoter, in nts 762-831 of the AYVV genome. Activity assays revealed that the AV3 promoter is strong, unidirectional, and constitutive, with an endogenous downstream ribosome binding site and a translatable short open reading frame of eight amino acids. Sequence analyses suggested that the AV3 promoter might be a remnant of prokaryotic ancestors that could be related to certain promoters of bacteria from marine or freshwater environments. The discovery of the prokaryotic AV3 promoter provided further evidence for the prokaryotic origin in the evolutionary history of geminiviruses.
Audience Academic
Author Lai, Yi-Chin
Wang, Wei-Chen
Hsu, Yau-Heiu
Lin, Na-Sheng
Hu, Chung-Chi
Wu, Chia-Ying
AuthorAffiliation 2 Institute of Plant and Microbial Biology, Academia Sinica, Taipei, Taiwan
University of California, Riverside, United States of America
1 Graduate Institute of Biotechnology, National Chung Hsing University, Taichung, Taiwan
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CitedBy_id crossref_primary_10_1371_journal_pone_0108608
crossref_primary_10_1093_jxb_erad002
crossref_primary_10_1371_journal_pone_0286149
crossref_primary_10_1016_j_virol_2015_02_039
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Conceived and designed the experiments: NSL YHH CCH. Performed the experiments: WCW CYW YCL. Analyzed the data: NSL YHH CCH WCW YCL. Contributed reagents/materials/analysis tools: NSL YHH CYW. Wrote the manuscript: WCW CCH.
Competing Interests: The authors have declared that no competing interests exist.
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Snippet Geminiviruses are known to exhibit both prokaryotic and eukaryotic features in their genomes, with the ability to express their genes and even replicate in...
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StartPage e70037
SubjectTerms Ageratum
Amino Acid Sequence
Amino acids
Analysis
Bacteria
Base Sequence
Begomovirus - chemistry
Begomovirus - classification
Begomovirus - genetics
Bemisia tabaci
Binding sites
Biological Evolution
Biotechnology
Cloning
Deoxyribonucleic acid
DNA
DNA, Viral - chemistry
DNA, Viral - genetics
E coli
Escherichia coli
Escherichia coli - virology
Freshwater environments
Genes
Genome, Viral
Genomes
Genomics
Molecular Sequence Data
Open Reading Frames
Phylogeny
Plants - virology
Plasmids
Prokaryotes
Promoter Regions, Genetic
Proteins
Viruses
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Title A Novel Prokaryotic Promoter Identified in the Genome of Some Monopartite Begomoviruses
URI https://www.ncbi.nlm.nih.gov/pubmed/23936138
https://www.proquest.com/docview/1440988470
https://www.proquest.com/docview/1420161603
https://pubmed.ncbi.nlm.nih.gov/PMC3723831
https://doaj.org/article/2af81250786142c09de705a78954f68b
http://dx.doi.org/10.1371/journal.pone.0070037
Volume 8
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