Characteristics of Beet Soilborne Mosaic Virus, a Furo-like Virus Infecting Sugar Beet

G B Heidel1, C M Rush1, T L Kendall2

  • 1Texas Agricultural Experiment Station, P.O. Drawer 10, Bushland, TX 79012.

Plant Disease
|March 14, 2019
PubMed

Insights

Beet soilborne mosaic virus (BSBMV) is distinct from beet necrotic yellow vein virus (BNYVV). While similar to BNYVV, BSBMV exhibits unique characteristics in its RNA and protein profiles, and virulence.

Area of Science:

  • Plant Virology
  • Molecular Biology
  • Agricultural Science

Background:

  • Beet soilborne mosaic virus (BSBMV) is a plant pathogen transmitted by Polymyxa betae.
  • BSBMV shares some characteristics with beet necrotic yellow vein virus (BNYVV), another furovirus.

Purpose of the Study:

  • To characterize BSBMV and differentiate it from BNYVV.
  • To investigate the molecular and biological distinctions between BSBMV and BNYVV.

Main Methods:

  • Analysis of viral particle morphology and nucleic acid composition (RNA size, polyadenylation).
  • Molecular hybridization (Northern blots) using BNYVV-specific probes.
  • Serological assays (Western blots) to detect protein cross-reactivity.
  • Greenhouse experiments to compare virulence and impact on plant root weight.

Main Results:

  • BSBMV particles are rigid rods (19 nm wide, 50-400+ nm long) with polyadenylated RNA (3-4 discrete bands).
  • Northern blots showed weak hybridization of BNYVV probes to BSBMV RNAs, while 5' end probes showed no cross-reactivity.
  • Western blots detected no serological cross-reaction between BSBMV and BNYVV.
  • BSBMV infection reduced root weight significantly compared to controls, but less severely than BNYVV.

Conclusions:

  • BSBMV is a distinct species from BNYVV based on serological, hybridization, and virulence data.
  • Despite distinctions, BSBMV shares similarities with BNYVV in host range, capsid size, and RNA characteristics, suggesting a close relationship within the Furovirus genus.

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