Aster yellows phytoplasma strain Hyd35 (16SrI-B) in micropropagated periwinkle shoots in collection was used to produce infected plants in pots that were separated according to the diverse symptomatology i.e. phyllody and witches’ broom. Small RNA high-throughput sequencing (HTS) was then used to determine the small RNA pattern of these plants. Bioinformatics analysis revealed the presence of expression changes of different miRNA classes and the presence of phytoplasma derived small RNAs. These results could complement previous studies and serve as a starting point for small RNA omics in phytoplasma research.

Small RNA profiling of aster yellows infected Catharanthus roseus plants / Zambon Y., N. Contaldo, A. Bertaccini, E. Varallyay. - In: PHYTOPATHOGENIC MOLLICUTES. - ISSN 2249-4669. - STAMPA. - 9:1(2019), pp. 131-132. [10.5958/2249-4677.2019.00066.5]

Small RNA profiling of aster yellows infected Catharanthus roseus plants

Zambon Y.;N. Contaldo;A. Bertaccini;
2019

Abstract

Aster yellows phytoplasma strain Hyd35 (16SrI-B) in micropropagated periwinkle shoots in collection was used to produce infected plants in pots that were separated according to the diverse symptomatology i.e. phyllody and witches’ broom. Small RNA high-throughput sequencing (HTS) was then used to determine the small RNA pattern of these plants. Bioinformatics analysis revealed the presence of expression changes of different miRNA classes and the presence of phytoplasma derived small RNAs. These results could complement previous studies and serve as a starting point for small RNA omics in phytoplasma research.
2019
Small RNA profiling of aster yellows infected Catharanthus roseus plants / Zambon Y., N. Contaldo, A. Bertaccini, E. Varallyay. - In: PHYTOPATHOGENIC MOLLICUTES. - ISSN 2249-4669. - STAMPA. - 9:1(2019), pp. 131-132. [10.5958/2249-4677.2019.00066.5]
Zambon Y., N. Contaldo, A. Bertaccini, E. Varallyay
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11585/719715
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