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A novel emaravirus identified in maple with leaf mottle symptoms by deep sequencing
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Abstract
The full-length genome of a novel
Emaravirus
has been identified and characterized from sycamore maple (
Acer pseudoplatanus
) - a tree species of significant importance in urban and forest areas - showing leaf mottle symptoms. RNA-Seq was performed using RNA preparations from a symptomatic and a symptomless maple tree. Purified double-stranded cDNA from each sample were used for RNA-Seq analysis on the Illumina HiSeq2500system and 14-198 MB data/sample of 100 bp-long paired-end sequence reads were generated. The sequence assembly and analysis revealed the presence of six RNA segments in the symptomatic sample (RNA1: 7,075 nt-long encoding the viral replicase; RNA2: 2,289 nt-long encoding the glycoprotein precursor; RNA3: 1,525 nt-long encoding the nucleocapsid protein; RNA4: 1,533 nt-long encoding the putative movement protein; RNA5: 1,825 nt-long encoding a hypothetical protein P5; RNA6: 1,179 nt-long encoding a hypothetical protein P6). Two independent HTS sequencing runs from the same symptomatic maple tree detected the same genome segments. For one of these sequencing runs the cDNA library was prepared using a primer targeting the conserved genome terminal region, known to be shared between emaraviruses genome segments and a high amount of sequence data was generated. We suggest, therefore, that the six identified genome segments represent the complete genome of a novel emaravirus from maple, which we tentatively name maple mottle-associated virus (MaMaV). RT-PCR assays were performed on symptomatic and non-symptomatic leaves of
A. pseudoplatanus
trees coming growing on two different locations in Berlin. MaMaV was only detected from symptomatic trees and all six RNAs were generally simultaneously detected. Non-symptomatic samples were consistently negative for MaMaV. These results suggest that MaMaV might be the symptom inducing virus in the sampled trees. In the present state of the art, this is the first time an Emaravirus is described from maple and is fully genetically characterized.
Title: A novel emaravirus identified in maple with leaf mottle symptoms by deep sequencing
Description:
Abstract
The full-length genome of a novel
Emaravirus
has been identified and characterized from sycamore maple (
Acer pseudoplatanus
) - a tree species of significant importance in urban and forest areas - showing leaf mottle symptoms.
RNA-Seq was performed using RNA preparations from a symptomatic and a symptomless maple tree.
Purified double-stranded cDNA from each sample were used for RNA-Seq analysis on the Illumina HiSeq2500system and 14-198 MB data/sample of 100 bp-long paired-end sequence reads were generated.
The sequence assembly and analysis revealed the presence of six RNA segments in the symptomatic sample (RNA1: 7,075 nt-long encoding the viral replicase; RNA2: 2,289 nt-long encoding the glycoprotein precursor; RNA3: 1,525 nt-long encoding the nucleocapsid protein; RNA4: 1,533 nt-long encoding the putative movement protein; RNA5: 1,825 nt-long encoding a hypothetical protein P5; RNA6: 1,179 nt-long encoding a hypothetical protein P6).
Two independent HTS sequencing runs from the same symptomatic maple tree detected the same genome segments.
For one of these sequencing runs the cDNA library was prepared using a primer targeting the conserved genome terminal region, known to be shared between emaraviruses genome segments and a high amount of sequence data was generated.
We suggest, therefore, that the six identified genome segments represent the complete genome of a novel emaravirus from maple, which we tentatively name maple mottle-associated virus (MaMaV).
RT-PCR assays were performed on symptomatic and non-symptomatic leaves of
A.
pseudoplatanus
trees coming growing on two different locations in Berlin.
MaMaV was only detected from symptomatic trees and all six RNAs were generally simultaneously detected.
Non-symptomatic samples were consistently negative for MaMaV.
These results suggest that MaMaV might be the symptom inducing virus in the sampled trees.
In the present state of the art, this is the first time an Emaravirus is described from maple and is fully genetically characterized.
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