| Literature DB >> 16397798 |
Adriana Chiappetta1, Vania Michelotti, Marco Fambrini, Leonardo Bruno, Mariangela Salvini, Maria Petrarulo, Abdelkrim Azmi, Harry Van Onckelen, Claudio Pugliesi, Maria Beatrice Bitonti.
Abstract
Epiphylly, occurring in a somaclonal variant (EMB-2) of the interspecific hybrid Helianthus annuus x H. tuberosus, was used to investigate molecular and cyto-physiological mechanisms that underlie cellular fate change. EMB-2 plants are characterized by profuse proliferation of shoot- and embryo-like structures on some leaves. We addressed the putative relationship between cytokinins and knox genes in EMB-2 plants. A class I knox gene, HtKNOT1, was isolated from H. tuberosus. A high level of HtKNOT1 transcripts was detected in EMB-2 epiphyllous leaves compared to non-epiphyllous (NEP) ones. In addition, epiphylly was related to a localized increases in zeatin and N-glycosylated cytokinins. As ectopic morphogenesis proceeded, HtKNOT1 transcripts and zeatin co-localized and showed different patterns in ectopic shoot compared with embryo-like structures, consistent with the differential role of both cytokinin and knox genes in the two morphogenetic events. Notably, a massive shoot/embryo regeneration was induced in EMB-2 NEP leaves by in vitro zeatin treatment. These results clearly indicate that localized cytokinin accumulation and ectopic expression of HtKNOT1 are closely linked in the epiphylly of EMB-2 plants.Entities:
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Year: 2006 PMID: 16397798 DOI: 10.1007/s00425-005-0150-7
Source DB: PubMed Journal: Planta ISSN: 0032-0935 Impact factor: 4.116