ReviewFrontiers in microbiology2016
Next-Generation Sequencing and Genome Editing in Plant Virology.
Review in Frontiers in microbiology, 2016. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 58 papers.
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The abstract states no effect estimate the extractor could read, or names no intervention and outcome on the map, so this paper lights no cell and moves no belief. It is still indexed, cited and linked below.
The trial behind it
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Who cites it
58 citing papers in PubMed, 156 citations in OpenAlex.
- Unique variegation characteristics of camellia cultivar 'Kumagai', in which chloroplasts disappear only in palisade tissue.Journal of plant research · 2026Article
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- Geminiviral-CR-gRNA expressed in cowpea efficiently edited MYMV and MYMIV genome to provide resistance against cowpea yellow mosaic disease without hampering plant growth and yield.BMC plant biology · 2026Article
- Cryopreservation of Rubus viruses in raspberry shoot tips via droplet-vitrification: assessment of viral preservation, localization, and post-thaw transmission capacity.Plant methods · 2025Article
- Article
- Recent advances in characterization and diagnosis of stone fruit tree viruses.Physiology and molecular biology of plants : an international journal of functional plant biology · 2025Review
- Conventional and cutting-edge advances in plant virus detection: emerging trends and techniques.3 Biotech · 2025Review
- Article
- Article
- High-throughput virome profiling reveals complex viral diversity, co-infection patterns, and novel viruses inFrontiers in plant science · 2025Article
- CRISPR/Cas: An Emerging Toolbox for Engineering Virus Resistance in Plants.Plants (Basel, Switzerland) · 2024Review
- Next Generation Sequencing, and Development of a Pipeline as a Tool for the Detection and Discovery of Citrus Pathogens to Facilitate Safer Germplasm Exchange.Plants (Basel, Switzerland) · 2024Article
- Recent advances and challenges in plant viral diagnostics.Frontiers in plant science · 2024Review
- The Identification of Viral Pathogens in aViruses · 2023Article
- Discovery of a Closterovirus Infecting Jujube Plants Grown at Aksu Area in Xinjiang of China.Viruses · 2023Article
- Detection and discovery of plant viruses in soybean by metagenomic sequencing.Virology journal · 2022Article
- Molecular characterization of a novel virga-like virus associated with wheat.Archives of virology · 2022Article
- Complete Genomic RNA Sequence of Tuberose Mild Mosaic Virus and Tuberose Mild Mottle Virus Acquired by High-Throughput Sequencing.Pathogens (Basel, Switzerland) · 2022Article
- Metatranscriptomic Analysis of Plant Viruses in Imported Pear and Kiwifruit Pollen.The plant pathology journal · 2022Article
- Modes of Viroid Transmission.Cells · 2022Review
Corrections and comments
PubMed lists nothing against this paper. Absence here is not a guarantee, only a check that was made.
Authors and funding
4 authors at 4 institutions in 4 countries.
Funding
No grant is acknowledged in the PubMed record.
Abstract
Next-generation sequencing (NGS) has been applied to plant virology since 2009. NGS provides highly efficient, rapid, low cost DNA, or RNA high-throughput sequencing of the genomes of plant viruses and viroids and of the specific small RNAs generated during the infection process. These small RNAs, which cover frequently the whole genome of the infectious agent, are 21-24 nt long and are known as vsRNAs for viruses and vd-sRNAs for viroids. NGS has been used in a number of studies in plant virology including, but not limited to, discovery of novel viruses and viroids as well as detection and identification of those pathogens already known, analysis of genome diversity and evolution, and study of pathogen epidemiology. The genome engineering editing method, clustered regularly interspaced short palindromic repeats (CRISPR)-Cas9 system has been successfully used recently to engineer resistance to DNA geminiviruses (family, Geminiviridae) by targeting different viral genome sequences in infected Nicotiana benthamiana or Arabidopsis plants. The DNA viruses targeted include tomato yellow leaf curl virus and merremia mosaic virus (begomovirus); beet curly top virus and beet severe curly top virus (curtovirus); and bean yellow dwarf virus (mastrevirus). The technique has also been used against the RNA viruses zucchini yellow mosaic virus, papaya ringspot virus and turnip mosaic virus (potyvirus) and cucumber vein yellowing virus (ipomovirus, family, Potyviridae) by targeting the translation initiation genes eIF4E in cucumber or Arabidopsis plants. From these recent advances of major importance, it is expected that NGS and CRISPR-Cas technologies will play a significant role in the very near future in advancing the field of plant virology and connecting it with other related fields of biology.
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