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Nectar- and stigma exudate-specific expression of an acidic chitinase could partially protect certain apple cultivars against fire blight disease.
Kurilla, Anita; Toth, Timea; Dorgai, Laszlo; Darula, Zsuzsanna; Lakatos, Tamas; Silhavy, Daniel; Kerenyi, Zoltan; Dallmann, Geza.
Afiliación
  • Kurilla A; Agricultural Biotechnology Institute, Szent-Györgyi 4, Gödöllo, 2100, Hungary.
  • Toth T; Research Institute for Fruitgrowing and Ornamentals, Park 2, Budapest, 1223, Hungary.
  • Dorgai L; Biocenter Ltd, Temesvári 62, Szeged, 6726, Hungary.
  • Darula Z; Biological Research Centre, Hungarian Academy of Sciences, Temesvári krt 62, Szeged, 6726, Hungary.
  • Lakatos T; Research Institute for Fruitgrowing and Ornamentals, Park 2, Budapest, 1223, Hungary.
  • Silhavy D; Agricultural Biotechnology Institute, Szent-Györgyi 4, Gödöllo, 2100, Hungary. silhavy@brc.hu.
  • Kerenyi Z; Biological Research Centre, Hungarian Academy of Sciences, Temesvári krt 62, Szeged, 6726, Hungary. silhavy@brc.hu.
  • Dallmann G; Agricultural Biotechnology Institute, Szent-Györgyi 4, Gödöllo, 2100, Hungary.
Planta ; 251(1): 20, 2019 Nov 28.
Article en En | MEDLINE | ID: mdl-31781986
ABSTRACT
MAIN

CONCLUSION:

Certain apple cultivars accumulate to high levels in their nectar and stigma exudate an acidic chitinase III protein that can protect against pathogens including fire blight disease causing Erwinia amylovora. To prevent microbial infections, flower nectars and stigma exudates contain various antimicrobial compounds. Erwinia amylovora, the causing bacterium of the devastating fire blight apple disease, is the model pathogen that multiplies in flower secretions and infects through the nectaries. Although Erwinia-resistant apples are not available, certain cultivars are tolerant. It was reported that in flower infection assay, the 'Freedom' cultivar was Erwinia tolerant, while the 'Jonagold' cultivar was susceptible. We hypothesized that differences in the nectar protein compositions lead to different susceptibility. Indeed, we found that an acidic chitinase III protein (Machi3-1) selectively accumulates to very high levels in the nectar and the stigma exudate of the 'Freedom' cultivar. We show that three different Machi3-1 alleles exist in apple cultivars and that only the 5B-Machi3-1 allele expresses the Machi3-1 protein in the nectar and the stigma exudate. We demonstrate that the 5B-Machi3-1 allele was introgressed from the Malus floribunda 821 clone into different apple cultivars including the 'Freedom'. Our data suggest that MYB-binding site containing repeats of the 5B-Machi3-1 promoter is responsible for the strong nectar- and stigma exudate-specific expression. As we found that in vitro, the Machi3-1 protein impairs growth and biofilm formation of Erwinia at physiological concentration, we propose that the Machi3-1 protein could partially protect 5B-Machi3-1 allele containing cultivars against Erwinia by inhibiting the multiplication and biofilm formation of the pathogen in the stigma exudate and in the nectar.
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Texto completo: 1 Colección: 01-internacional Base de datos: MEDLINE Asunto principal: Enfermedades de las Plantas / Quitinasas / Malus / Flores / Erwinia amylovora / Exudados de Plantas / Néctar de las Plantas Idioma: En Revista: Planta Año: 2019 Tipo del documento: Article País de afiliación: Hungria

Texto completo: 1 Colección: 01-internacional Base de datos: MEDLINE Asunto principal: Enfermedades de las Plantas / Quitinasas / Malus / Flores / Erwinia amylovora / Exudados de Plantas / Néctar de las Plantas Idioma: En Revista: Planta Año: 2019 Tipo del documento: Article País de afiliación: Hungria
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