4.7 Article

Graft-transmissible induction of potato tuberization by the microRNA miR172

期刊

DEVELOPMENT
卷 136, 期 17, 页码 2873-2881

出版社

COMPANY BIOLOGISTS LTD
DOI: 10.1242/dev.031658

关键词

Developmental timing; Flowering; miR172; Photoperiod; Phytochrome B; Potato; Tuberization

资金

  1. Spanish Ministry of Education and Science [BIO2005-00717]
  2. Centre de Referencia en Biotecnologia of the Generalitat de Catalunya
  3. Spanish Ministry of Education and Science
  4. Spanish Scientific Research Council

向作者/读者索取更多资源

The photoreceptor phytochrome B (PHYB) and the homeodomain protein BEL5 are involved in the response of potato tuber induction to the photoperiod. However, whether they act in the same tuberization pathway is unknown. Here we show the effect of a microRNA, miR172, on this developmental event. miR172 levels are higher under tuber-inducing short days than under non-inductive long days and are upregulated in stolons at the onset of tuberization. Overexpression of this microRNA in potato promotes flowering, accelerates tuberization under moderately inductive photoperiods and triggers tuber formation under long days. In plants with a reduced abundance of PHYB, which tuberize under long days, both BEL5 mRNA and miR172 levels are reduced in leaves and increased in stolons. This, together with the presence of miR172 in vascular bundles and the graft transmissibility of its effect on tuberization, indicates that either miR172 might be mobile or it regulates long-distance signals to induce tuberization. Consistent with this, plants overexpressing miR172 show increased levels of BEL5 mRNA, which has been reported to be transmissible through grafts. Furthermore, we identify an APETALA2-like mRNA containing a miR172 binding site, which is downregulated in plants overexpressing miR172 and plants in which PHYB is silenced. Altogether, our results suggest that miR172 probably acts downstream of the tuberization repressor PHYB and upstream of the tuberization promoter BEL5 and allow us to propose a model for the control of tuberization by PHYB, miR172 and BEL5.

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