Literature DB >> 24875385

A Recombinant of Bean common mosaic virus Induces Temperature-Insensitive Necrosis in an I Gene-Bearing Line of Common Bean.

Xue Feng, Alan R Poplawsky, Alexander V Karasev.   

Abstract

The I gene is a single, dominant gene conferring temperature-sensitive resistance to all known strains of Bean common mosaic virus (BCMV) in common bean (Phaseolus vulgaris). However, the closely related Bean common mosaic necrosis virus (BCMNV) induces whole plant necrosis in I-bearing genotypes of common bean, and the presence of additional, recessive genes is required to prevent this severe whole plant necrotic reaction caused by BCMNV. Almost all known BCMNV isolates have so far been classified as having pathotype VI based on their interactions with the five BCMV resistance genes, and all have a distinct serotype A. Here, we describe a new isolate of BCMV, RU1M, capable of inducing whole plant necrosis in the presence of the I gene, that appears to belong to pathotype VII and exhibits B-serotype. Unlike other isolates of BCMV, RU1M was able to induce severe whole plant necrosis below 30°C in bean cultivar Jubila that carries the I gene and a protective recessive gene bc-1. The whole genome of RU1M was cloned and sequenced and determined to be 9,953 nucleotides long excluding poly(A), coding for a single polyprotein of 3,186 amino acids. Most of the genome was found almost identical (>98%) to the BCMV isolate RU1-OR (also pathotype VII) that did not induce necrotic symptoms in 'Jubila'. Inspection of the nucleotide sequences for BCMV isolates RU1-OR, RU1M, and US10 (all pathotype VII) and three closely related sequences of BCMV isolates RU1P, RU1D, and RU1W (all pathotype VI) revealed that RU1M is a product of recombination between RU1-OR and a yet unknown potyvirus. A 0.8-kb fragment of an unknown origin in the RU1M genome may have led to its ability to induce necrosis regardless of temperature in beans carrying the I gene. This is the first report of a BCMV isolate inducing temperature-insensitive necrosis in an I gene containing bean genotype.

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Year:  2014        PMID: 24875385     DOI: 10.1094/PHYTO-02-14-0048-R

Source DB:  PubMed          Journal:  Phytopathology        ISSN: 0031-949X            Impact factor:   4.025


  3 in total

1.  Different Plant Viruses Induce Changes in Feeding Behavior of Specialist and Generalist Aphids on Common Bean That Are Likely to Enhance Virus Transmission.

Authors:  Francis O Wamonje; Ruairí Donnelly; Trisna D Tungadi; Alex M Murphy; Adrienne E Pate; Christine Woodcock; John Caulfield; J Musembi Mutuku; Toby J A Bruce; Christopher A Gilligan; John A Pickett; John P Carr
Journal:  Front Plant Sci       Date:  2020-01-31       Impact factor: 5.753

2.  Simultaneous Detection of Both RNA and DNA Viruses Infecting Dry Bean and Occurrence of Mixed Infections by BGYMV, BCMV and BCMNV in the Central-West Region of Mexico.

Authors:  Elizabeth Chiquito-Almanza; Jorge A Acosta-Gallegos; Nadia C García-Álvarez; Eduardo R Garrido-Ramírez; Victor Montero-Tavera; Lorenzo Guevara-Olvera; José L Anaya-López
Journal:  Viruses       Date:  2017-03-30       Impact factor: 5.048

Review 3.  Viruses infecting common bean (Phaseolus vulgaris L.) in Tanzania: A review on molecular characterization, detection and disease management options.

Authors:  Beatrice Mwaipopo; Susan Nchimbi-Msolla; Paul Njau; Fred Tairo; Magdalena William; Papias Binagwa; Elisiana Kweka; Michael Kilango; Deusdedith Mbanzibwa
Journal:  Afr J Agric Res       Date:  2017-05-04
  3 in total

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