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"Zinger, Avner"
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Contribution of the tobamovirus resistance gene Tm-1 to control of tomato brown rugose fruit virus (ToBRFV) resistance in tomato
by
Zinger, Avner
,
Lapidot, Moshe
,
Levin, Ilan
in
Agriculture
,
Biology and Life Sciences
,
Chromosome 11
2025
Tomato brown rugose fruit virus (ToBRFV) is a rapidly spreading pathogen that poses a significant threat to tomato production worldwide. We previously identified a locus on tomato chromosome 11 controlling tolerance to the virus. We further established that combining this locus with one that maps to the Tm-1 region on chromosome 2 confers resistance to the virus. Here we sought to determine whether, and how, the Tm-1 gene itself is involved in ToBRFV resistance. Overexpression of Tm-1 in a tolerant genotype significantly reduced viral accumulation, conferring resistance to ToBRFV. On the other hand, overexpression of Tm-1 in a susceptible genotype only delayed symptom appearance. Moreover, effective RNAi-silencing of Tm-1 in the resistant genotype yielded susceptible plants. These findings show that the Tm-1 gene interacts genetically with the locus controlling tolerance on chromosome 11 and that this interaction is critical for achieving effective resistance to ToBRFV. In addition, the symptomatic plants obtained following silencing of Tm-1 in the resistant genotype indicate that tolerance is also dependent on normal expression levels of the recessive tm-1 allele.
Journal Article
Identification and Mapping of Tomato Genome Loci Controlling Tolerance and Resistance to Tomato Brown Rugose Fruit Virus
2021
Tomato brown rugose fruit virus (ToBRFV) was identified in Israel during October 2014 in tomato plants (Solanum lycopersicum). These plants, carrying the durable resistance gene against tomato mosaic virus, Tm-22, displayed severe disease symptoms and losses to fruit yield and quality. These plants were found infected with a tobamovirus similar to that discovered earlier in Jordan. This study was designed to screen and identify tomato genotypes resistant or tolerant to ToBRFV. The identified resistance and tolerance traits were further characterized virologically and genetically. Finally, DNA markers linked to genes controlling these traits were developed as tools to expedite resistance breeding. To achieve these objectives, 160 genotypes were screened, resulting in the identification of an unexpectedly high number of tolerant genotypes and a single genotype resistant to the virus. A selected tolerant genotype and the resistant genotype were further analyzed. Analysis of genetic inheritance revealed that a single recessive gene controls tolerance whereas at least two genes control resistance. Allelic test between the tolerant and the resistant genotype revealed that these two genotypes share a locus controlling tolerance, mapped to chromosome 11. This locus displayed a strong association with the tolerance trait, explaining nearly 91% of its variation in segregating populations. This same locus displayed a statistically significant association with symptom levels in segregating populations based on the resistant genotype. However, in these populations, the locus was able to explain only ~41% of the variation in symptom levels, confirming that additional loci are involved in the genetic control of the resistance trait in this genotype. A locus on chromosome 2, at the region of the Tm-1 gene, was finally found to interact with the locus discovered on chromosome 11 to control resistance.
Journal Article
Contribution of the Tobamovirus resistance gene Tm-1 to control of ToBRFV resistance in tomato
2025
Tomato brown rugose fruit virus (ToBRFV) is a rapidly spreading pathogen that poses a significant threat to tomato production worldwide. We previously identified a locus on tomato chromosome 11 controlling tolerance to the virus. We further established that combining this locus with one that maps to the Tm-1 region on chromosome 2 confers resistance to the virus. Here we sought to determine whether, and how, the Tm-1 gene itself is involved in ToBRFV resistance. Overexpression of Tm-1 in a tolerant genotype significantly reduced viral accumulation, conferring resistance to ToBRFV. On the other hand, overexpression of Tm-1 in a susceptible genotype only delayed symptom appearance. Moreover, effective RNAi-silencing of Tm-1 in the resistant genotype yielded susceptible plants. These findings show that the Tm-1 gene interacts genetically with the locus controlling tolerance on chromosome 11 and that this interaction is critical for achieving effective resistance to ToBRFV. In addition, the symptomatic plants obtained following silencing of Tm-1 in the resistant genotype indicate that tolerance is also dependent on normal expression levels of the recessive tm-1 alleleCompeting Interest StatementThe authors have declared no competing interest.
Yotvata
2022,2023
This book presents the final report of the excavations at
Yotvata, the largest oasis in the Arabah Valley, conducted by the
Sonia and Marco Nadler Institute of Archaeology of Tel Aviv
University in 1974-1980 under the direction of Dr. Zeʾev Meshel.
The report covers two central sites: a fortified Iron I site and an
Early Islamic settlement.
The Iron I remains consist of an irregular casemate wall
surrounding a courtyard. The location of this site suggests that
the settlement was established in order to protect the water
sources and to overlook and supervise the nearby crossroads. Based
on the relative proximity of the site to Timna, it may be concluded
that the oasis formed the main source of water and wood for the
population involved in copper production in that region.
The rich finds uncovered at the Early Islamic
settlement-including a large courtyard building and a nearby
bathhouse, among other structures-point to habitation from the end
of the seventh to the early ninth century CE. The proximity of the
settlement to a sophisticated irrigation system ( qanat )
and the administrative/economic ostraca discovered at the site
suggest that it served as the center of an agricultural estate
owned by an elite Muslim family. Among the unique finds is a large
assemblage of locally produced, handmade pottery, which is
thoroughly studied here.
The findings from the excavations at the Yotvata oasis have made
a major contribution to the study of Early Islamic settlement and
material culture in the greater Arabah region and beyond.