This collaborative work by over 180 researchers from 40+ countries addresses the challenges posed by "phantom agents"-putative pathogenic agents named in literature without supporting data on their existence. Those agents remain on regulatory lists, creating barriers in trade and plant certification. Historically identified based solely on symptoms, these agents lack isolates or sequence data, making reliable detection or risk assessment impossible.
View Article and Find Full Text PDFA new crinivirus, hereafter referred to as strawberry Kurdistan virus (SKV), has been identified using high-throughput sequencing. The 16,553-nucleotide genome is divided into two RNA segments and exhibits 44-56% nucleotide identity with other criniviruses. Phylogenetic analysis indicates that SKV is a member of the Crinivirus group 2.
View Article and Find Full Text PDFCriniviruses are emerging pathogens responsible for significant disease outbreaks worldwide. Among them, blackberry yellow vein-associated virus (BYVaV) is prevalent in blackberry-producing areas of the United States and, when present in the blackberry yellow vein disease complex with other viruses, can lead to substantial crop losses. To better understand BYVaV biology and its role in virus complex disease development, we developed a BYVaV-derived infectious clone and a virus-induced gene silencing (VIGS) vector.
View Article and Find Full Text PDFBlackberry chlorotic ringspot virus (BCRV) was described about 20 years ago and since then there have been several publications of the virus infecting rosaceous hosts including blackberry, raspberry, rose and apple at high rates. Still the effect of the virus on disease development is poorly understood. Aiming to bridge this knowledge gap, we developed a BCRV infectious clone and virus-induced gene silencing vector (VIGS).
View Article and Find Full Text PDFCucurbits (family Cucurbitaceae) includes globally important fruit and vegetable crops. Virus diseases pose a serious threat to cucurbits, limiting crop quality and yield (Regina et al. 2021).
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