Literature DB >> 31795218

Ionomic Differences between Susceptible and Resistant Olive Cultivars Infected by Xylella fastidiosa in the Outbreak Area of Salento, Italy.

Giusy D'Attoma1,2, Massimiliano Morelli2, Pasquale Saldarelli2, Maria Saponari2, Annalisa Giampetruzzi1, Donato Boscia2, Vito Nicola Savino1, Leonardo De La Fuente3, Paul A Cobine4.   

Abstract

Olive quick decline syndrome (OQDS) is a devastating disease of olive trees in the Salento region, Italy. This disease is caused by the bacterium Xylella fastidiosa, which is widespread in the outbreak area; however, the "Leccino" variety of olives has proven to be resistant with fewer symptoms and lower bacterial populations than the "Ogliarola salentina" variety. We completed an empirical study to determine the mineral and trace element contents (viz; ionome) of leaves from infected trees comparing the two varieties, to develop hypotheses related to the resistance of Leccino trees to X. fastidiosa infection. All samples from both cultivars tested were infected by X. fastidiosa, even if leaves were asymptomatic at the time of collection, due to the high disease pressure in the outbreak area and the long incubation period of this disease. Leaves were binned for the analysis by variety, field location, and infected symptomatic and infected asymptomatic status by visual inspection. The ionome of leaf samples was determined using inductively coupled plasma optical emission spectroscopy (ICP-OES) and compared with each other. These analyses showed that Leccino variety consistently contained higher manganese (Mn) levels compared with Ogliarola salentina, and these levels were higher in both infected asymptomatic and infected symptomatic leaves. Infected asymptomatic and infected symptomatic leaves within a host genotype also showed differences in the ionome, particularly a higher concentration of calcium (Ca) and Mn levels in the Leccino cultivar, and sodium (Na) in both varieties. We hypothesize that the ionome differences in the two varieties contribute to protection against disease caused by X. fastidiosa infection.

Entities:  

Keywords:  Ogliarola salentina; Olive quick decline syndrome; Xylella fastidiosa; calcium; ionome; leccino; manganese; olive

Year:  2019        PMID: 31795218     DOI: 10.3390/pathogens8040272

Source DB:  PubMed          Journal:  Pathogens        ISSN: 2076-0817


  5 in total

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Journal:  Int J Mol Sci       Date:  2021-07-02       Impact factor: 5.923

2.  Further In Vitro Assessment and Mid-Term Evaluation of Control Strategy of Xylella fastidiosa subsp. pauca in Olive Groves of Salento (Apulia, Italy).

Authors:  Giuseppe Tatulli; Vanessa Modesti; Nicoletta Pucci; Valeria Scala; Alessia L'Aurora; Simone Lucchesi; Manuel Salustri; Marco Scortichini; Stefania Loreti
Journal:  Pathogens       Date:  2021-01-19

3.  Synchrotron X-ray fluorescence microscopy-enabled elemental mapping illuminates the 'battle for nutrients' between plant and pathogen.

Authors:  Fatima Naim; Karina Khambatta; Lilian M V P Sanglard; Georgina Sauzier; Juliane Reinhardt; David J Paterson; Ayalsew Zerihun; Mark J Hackett; Mark R Gibberd
Journal:  J Exp Bot       Date:  2021-03-29       Impact factor: 6.992

4.  The Xylella fastidiosa-Resistant Olive Cultivar "Leccino" Has Stable Endophytic Microbiota during the Olive Quick Decline Syndrome (OQDS).

Authors:  Marzia Vergine; Joana B Meyer; Massimiliano Cardinale; Erika Sabella; Martin Hartmann; Paolo Cherubini; Luigi De Bellis; Andrea Luvisi
Journal:  Pathogens       Date:  2019-12-31

5.  Plasmopara viticola infection affects mineral elements allocation and distribution in Vitis vinifera leaves.

Authors:  Stefano Cesco; Anna Tolotti; Stefano Nadalini; Stefano Rizzi; Fabio Valentinuzzi; Tanja Mimmo; Carlo Porfido; Ignazio Allegretta; Oscar Giovannini; Michele Perazzolli; Guido Cipriani; Roberto Terzano; Ilaria Pertot; Youry Pii
Journal:  Sci Rep       Date:  2020-10-30       Impact factor: 4.379

  5 in total

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