Gene Expression Analysis of Induced Plum pox virus (Sharka) Resistance in Peach ( Prunus persica ) by Almond ( P. dulcis ) Grafting

No natural sources of resistance to (PPV, sharka disease) have been identified in peach. However, previous studies have demonstrated that grafting a "Garrigues" almond scion onto "GF305" peach rootstock seedlings heavily infected with PPV can progressively reduce disease symptoms...

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Veröffentlicht in:International journal of molecular sciences 2021-03, Vol.22 (7), p.3585
Hauptverfasser: Rubio, Manuel, Martínez-García, Pedro J, Nikbakht-Dehkordi, Azam, Prudencio, Ángela S, Gómez, Eva M, Rodamilans, Bernardo, Dicenta, Federico, García, Juan A, Martínez-Gómez, Pedro
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Sprache:eng
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Zusammenfassung:No natural sources of resistance to (PPV, sharka disease) have been identified in peach. However, previous studies have demonstrated that grafting a "Garrigues" almond scion onto "GF305" peach rootstock seedlings heavily infected with PPV can progressively reduce disease symptoms and virus accumulation. Furthermore, grafting a "Garrigues" scion onto the "GF305" rootstock has been shown to completely prevent virus infection. This study aims to analyse the rewiring of gene expression associated with this resistance to PPV transmitted by grafting through the phloem using RNA-Seq and RT-qPCR analysis. A total of 18 candidate genes were differentially expressed after grafting "Garrigues" almond onto healthy "GF305" peach. Among the up-regulated genes, a homolog stands out, which, together with the differential expression of - and -homologs, suggests that the RNA silencing machinery is activated by PPV infection and can contribute to the resistance induced by "Garrigues" almond. could be also relevant for the "Garrigues"-induced response, since its expression is much higher in "Garrigues" than in "GF305". We also discuss the potential relevance of the following in PPV infection and "Garrigues"-induced resistance: several pathogenesis-related proteins; no apical meristem proteins; the transcription initiation factor, TFIIB; the speckle-type POZ protein; in addition to a number of proteins involved in phytohormone signalling.
ISSN:1422-0067
1661-6596
1422-0067
DOI:10.3390/ijms22073585