Results 41 to 50 of about 3,030 (168)

New Resources for the Specific and Sensitive Detection of the Emerging Tomato Brown Rugose Fruit Virus

open access: yesViruses, 2021
Plant viruses can evolve towards new pathogenic entities that may eventually cause outbreaks and become epidemics or even pandemics. Seven years ago, tomato brown rugose fruit virus (ToBRFV) emerged, overcoming the genetic resistance that had been ...
Joan Miquel Bernabé-Orts   +4 more
doaj   +1 more source

Functional Differentiation in the Leucine-Rich Repeat Domains of Closely Related Plant Virus-Resistance Proteins That Recognize Common Avr Proteins

open access: yesMolecular Plant-Microbe Interactions, 2012
The N′ gene of Nicotiana sylvestris and L genes of Capsicum plants confer the resistance response accompanying the hypersensitive response (HR) elicited by tobamovirus coat proteins (CP) but with different viral specificities.
Ken-Taro Sekine   +10 more
doaj   +1 more source

Tobamovirus replicase-mediated resistance

open access: yes, 2002
14 p.-3 fig.Plant transformation with tobamovirus gene sequences is one of a number of available strategies for the potential control of tobamovirus disease. In most cases, a complete, near immunity type of resistance can be induced in plants transformed
Tenllado, Francisco   +6 more
core   +1 more source

The Tomato Brown Rugose Fruit Virus Movement Protein Overcomes Tm-22 Resistance in Tomato While Attenuating Viral Transport

open access: yesMolecular Plant-Microbe Interactions, 2021
Tomato brown rugose fruit virus is a new virus species in the Tobamovirus genus, causing substantial damage to tomato crops. Reports of recent tomato brown rugose fruit virus (ToBRFV) outbreaks from around the world indicate an emerging global epidemic ...
Hagit Hak, Ziv Spiegelman
doaj   +1 more source

Directions from Nature: How to Halt the Tomato Brown Rugose Fruit Virus

open access: yesAgronomy, 2023
Tomato brown rugose fruit virus (ToBRFV) is a recently emerged serious viral threat to tomato production. The virus is named after its symptoms consisting of characteristic brown wrinkled (rugose) patches on the fruits of infected tomato plants.
Mireille van Damme   +4 more
doaj   +1 more source

Cucumber green mottle mosaic virus: A persistent seed‐borne threat to cucurbits

open access: yesAnnals of Applied Biology, Volume 189, Issue 1, July 2026.
Cucumber green mottle mosaic virus (CGMMV) is a highly stable, seed‐borne tobamovirus that threatens global cucurbit production. Its efficient mechanical and seed transmission, long‐term environmental persistence, and the spread of Clade II CGMMV isolates drive its rapid dissemination and cause severe yield losses.
Esperanza Gea‐Caballero   +1 more
wiley   +1 more source

Molecular characterization of a hibiscus-infecting tobamovirus in Taiwan. [PDF]

open access: yes, 2010
[[abstract]]The RNA of a previously described tobamovirus-like agent infecting hibiscus in Taiwan was molecularly characterized. Coat protein (CP) and movement protein (MP) genes of the virus isolates were cloned and the nucleic acid and the deduced ...
Chen, Y.-K.;Chen, T.-C.; Liu, F.-L.;Yeh, S.-D.;Chen. C.-C.;Bau, H.-J.;Hsu, H.-T.
core  

Tobamovirus-resistant tobacco generated by RNA interference directed against host genes [PDF]

open access: yes, 2005
Two homologous Nicotiana tabacum genes NtTOM1 and NtTOM3 have been identified. These genes encode polypeptides with amino acid sequence similarity to Arabidopsis thaliana TOM1 and TOM3, which function in parallel to support tobamovirus multiplication ...
Meshi, Tetsuo   +19 more
core   +1 more source

Disinfection Efficacy of Tobamovirus-Contaminated Soil in Greenhouse-Grown Crops

open access: yes, 2022
The tobamoviruses tomato brown rugose fruit virus (ToBRFV) and cucumber green mottle mosaic virus (CGMMV) have caused severe crop damages worldwide.
Aviv Dombrovsky   +4 more
core   +1 more source

OsFKBP20‐1b stabilizes OsUPF1 and OsUPF2 to promote the degradation of aberrant mRNAs during dehydration stress

open access: yesJournal of Integrative Plant Biology, Volume 68, Issue 6, Page 1672-1691, June 2026.
The rice protein OsFKBP20‐1b protects key RNA‐surveillance factors from breakdown, so they can better eliminate defective messages. This RNA quality‐control boost reduces errors and helps plants survive drought, revealing a link between RNA control and drought tolerance.
Haemyeong Jung   +5 more
wiley   +1 more source

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