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Título: Can an HLB-resistant interstock block the long-distance movement of ‘Candidatus Liberibacter asiaticus’ within citrus trees?
Autor: DAROLT, J. C.
RAIOL-JUNIOR, L. L.
CARVALHO, E. V.
ALVES, M. N.
WULFF, N. A.
BAGÉA, J.
GROS, O.
HUFNAGEL, B.
MORILLON, R.
PEÑA, L.
GIRARDI, E. A.
Afiliación: JOSIANE C. DAROLT, FUND FOR CITRUS PROTECTION; LAUDECIR L. RAIOL-JUNIOR, FUND FOR CITRUS PROTECTION; EVERTON V. CARVALHO, FUND FOR CITRUS PROTECTION; MÔNICA N. ALVES, FUND FOR CITRUS PROTECTION; NELSON A. WULFF, FUND FOR CITRUS PROTECTION; JÉMIMA BAGÉA, CENTRE DE COOPÉRATION INTERNATIONAL EN RECHERCHE AGRONOMIQUE POUR LE DÉVELOPPEMENT; OLIVIER GROS, UNIVERSITÉ DES ANTILLES; BÁRBARA HUFNAGEL, CENTRE DE COOPÉRATION INTERNATIONAL EN RECHERCHE AGRONOMIQUE POUR LE DÉVELOPPEMENT; RAPHAEL MORILLON, CENTRE DE COOPÉRATION INTERNATIONAL EN RECHERCHE AGRONOMIQUE POUR LE DÉVELOPPEMENT; LEANDRO PEÑA, FUND FOR CITRUS PROTECTION; EDUARDO AUGUSTO GIRARDI, CNPMF.
Año: 2026
Referencia: Frontiers in Plant Science, v.17, n., p., 1664-462, 2026.
Descripción: Abstract: Among citrus diseases, Huanglongbing (HLB) is recognized as the most destructive and economically damaging worldwide. It is mainly associated with ‘Candidatus Liberibacter asiaticus’ (CLas) being transmitted by Diaphorina citri. There are no curative treatments or commercial citrus varieties resistant to CLas. Wild Aurantioideae species have been widely screened and, recently, Oceanian genotypes graft- and sexually compatible with Citrus were identified as HLB-resistant; however, there is no information regarding their use as interstocks of commercial varieties yet. Under greenhouse conditions, six HLB-resistant genotypes were evaluated as interstocks between ‘Valencia’ sweet orange scion and ‘Rangpur’ lime rootstock, both susceptible to HLB, with ‘Valencia’ interstock as the control. Rootstocks were nucellar seedlings, and the scion was a commercial accession preimmunized with a mild CTV strain. Plants were assessed for CLas infection and titer in leaves, stem bark, and roots up to 12–24 months after graft-inoculation in the scion and compared to non-inoculated controls. Furthermore, molecular, anatomical, and biometric variables were investigated. As expected, the scion variety was colonized by CLas regardless of the genotype evaluated as interstock. Although bacteria were detected in the roots of most CLas-inoculated plants, CLas movement from the scion to the roots was blocked in 42% and 86% of composite plants when using a F1 hybrid of C. australis × C. inodora or an admixture hybrid of C. glauca, C. australis, and C. australasica as interstocks. Overall, CLas titers were similar in infected plant tissues among the evaluated genotypes, but titers were lower in interstock bark tissues compared to scion and rootstock ones. After one-two years of CLas + CTV infection (experiments I and II, respectively), the dry weight of the root system decreased by 50% in infected trees compared to control trees for most genotypes, and CLas + CTV infection was associated with changes in the sieve phloem and gene expression. These findings suggest that, despite CTV infection, interstocks derived from some hybrids of Australian citrus types have the potential to restrict the movement of CLas from the scion into the roots of infected citrus trees. Long-term evaluation of composite plants in field conditions is necessary to assess tree performance and, ultimately, the impact of CLas blockage by interstocking on HLB disease damage.
Thesagro: Doença de Planta
Fruta Cítrica
NAL Thesaurus: Plant diseases and disorders
Citrus fruits
Grafting (plants)
Limes
Varietal resistance
ISSN: 1664-462X.
DOI: https://doi.org/10.3389/fpls.2026.1733981
Tipo de Material: Artigo de periódico
Acceso: openAccess
Aparece en las colecciones:Artigo em periódico indexado (CNPMF)

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