A transnational collaboration results in the characterization of an emergent plant virus


Figure 1 of the examine, displaying photos of pure Physostegia chlorotic mottle virus (PhCMoV)-infected vegetation. Credit: The authors

In the twenty first century, “collaboration” has develop into a well-liked buzzword, however successfully working collectively throughout disciplines and international locations is simpler stated than completed. However, genuine collaboration is essential to the struggle in opposition to plant pathogens; sharing data on plant illnesses facilitates early detection, environment friendly and speedy characterization, and subsequent administration.

Physostegia chlorotic mottle virus (PhCMoV), a plant illness first recognized in Austria in 2018, initially acquired insufficient characterization. This then sparked research throughout Europe as new signs emerged on economically vital crops. These impartial research converged into one examine, revealed in Plant Disease, demonstrating the facility of collaboration past a mere buzzword.
In the coalescent examine, Coline Temple and colleagues from eight laboratories throughout 5 European international locations utilized prepublication sharing of excessive throughput sequencing (HTS) information to enhance information on PhCMoV biology, epidemiology, and genetic range.
The researchers recognized PhCMoV in eight European international locations, along with Austria, and confirmed its presence in samples collected in 2002. Mechanically inoculating PhCMoV to wholesome host vegetation in management situations enabled the authors to validate the affiliation of the virus with signs. Their outcomes present that PhCMoV can infect not less than 9 plant species and trigger extreme fruit signs on economically vital crops equivalent to tomato, eggplant, and cucumber.
Additionally, sequencing 21 completely different contaminated host vegetation from varied origins allowed for comparability of genomes, which confirmed that the genomes of two isolates from the identical…

2023-01-26 17:10:06 A transnational collaboration results in the characterization of an emergent plant virus
Link from phys.org

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