High-Throughput Sequencing Reveals Cyclamen persicum Mill. as a Natural Host for Fig Mosaic Virus
Toufic Elbeaino1, Armelle Marais2, Chantal Faure3
1Mediterranean Agronomic Institute of Bari (CIHEAM-IAMB), Via Ceglie 9, 70010 Valenzano, Italy. elbeaino@iamb.it.
Abstract:
In a search for viral infections, double-stranded RNA (dsRNA) were recovered from a diseased cyclamen (Cyclamen persicum Mill.) accession (Cic) and analyzed by high-throughput sequencing (HTS) technology. Analysis of the HTS data showed the presence of Fig mosaic emaravirus (FMV) in this accession. The complete sequences of six FMV-Cic RNA genomic segments were determined from the HTS data and using Sanger sequencing. All FMV-Cic RNA segments are similar in size to those of FMV from fig (FMV-Gr10), with the exception of RNA-6 that is one nucleotide longer. The occurrence of FMV in cyclamen was investigated through a small-scale survey, from which four plants (out of 18 tested) were found RT-PCR positive. To study sequence variations of cyclamen isolates of FMV, RT-PCR products generated through the amplification of the partially RNA-dependent RNA polymerase (RdRp, RNA-1), glycoprotein (GP, RNA-2), and nucleocapsid (NCP, RNA-3) genes were explored. The nucleotide sequence identities for cyclamen isolates ranged between 86% and 99% in RNA-1, 93% and 99% in RNA-2, and 98% and 99% in RNA-3, while lower identity levels were observed with the sequences of fig isolates. Based on the phylogenetic tree obtained with a 304-nt fragment of RNA3, all FMV isolates from cyclamens were assigned to a single cluster close to fig isolates from the Mediterranean. FMV was graft-transmitted to healthy cyclamens eliciting symptoms similar to those observed in the Cic accession, thus suggesting a causal role of FMV in the symptoms that prompted the investigation. This is the first report of FMV in a non-fig host, Cyclamen persicum, a finding that may help in the control of the mosaic and mosaic-like diseases of fig and cyclamen, respectively.
Insights
Fig mosaic emaravirus (FMV) was identified in diseased cyclamen plants using high-throughput sequencing. This discovery marks the first report of FMV in a non-fig host, potentially aiding disease management in both fig and cyclamen.
Area of Science:
- Plant Virology
- Molecular Biology
- High-Throughput Sequencing
Background:
- Viral diseases pose significant threats to crop yield and quality.
- Fig mosaic emaravirus (FMV) is known to infect fig plants, causing mosaic symptoms.
- The host range and genetic diversity of FMV require further investigation.
Purpose of the Study:
- To identify the causal agent of disease in a cyclamen accession.
- To characterize the FMV isolates found in cyclamen.
- To assess the potential of FMV to infect cyclamen and its implications for disease control.
Main Methods:
- High-throughput sequencing (HTS) for viral discovery.
- Sanger sequencing for complete genome determination.
- Reverse transcription-polymerase chain reaction (RT-PCR) for detection and genotyping.
- Phylogenetic analysis for sequence variation assessment.
- Graft transmission experiments to confirm pathogenicity.
Main Results:
- FMV was identified in diseased cyclamen (Cyclamen persicum) using HTS.
- Complete genomic sequences of six FMV segments from cyclamen (FMV-Cic) were determined.
- FMV isolates from cyclamen showed high nucleotide sequence identity among themselves but lower identity with fig isolates.
- Phylogenetic analysis placed FMV-Cic isolates in a cluster near Mediterranean fig isolates.
- Graft transmission confirmed FMV's role in inducing mosaic-like symptoms in cyclamen.
Conclusions:
- This study reports FMV in cyclamen for the first time, expanding its known host range beyond figs.
- FMV isolates from cyclamen exhibit genetic variations compared to fig isolates.
- Understanding FMV in cyclamen can contribute to integrated disease management strategies for both fig and cyclamen.
- FMV represents a potential threat to cyclamen cultivation, necessitating monitoring and control measures.
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