4.7 Article

Hormonal Regulation and Crosstalk of Auxin/Cytokinin Signaling Pathways in Potatoes In Vitro and in Relation to Vegetation or Tuberization Stages

期刊

出版社

MDPI
DOI: 10.3390/ijms22158207

关键词

auxin; cytokinin; phytohormone signaling; signaling crosstalk; sugar effects; gene expression; gene clustering; promoter cis-elements

资金

  1. Russian Science Foundation [17-74-20181]
  2. Russian Science Foundation [17-74-20181, 20-74-20011] Funding Source: Russian Science Foundation

向作者/读者索取更多资源

Auxins and cytokinins play crucial roles in regulating plant growth and development, with their interactions being complex and organ-specific. Gene expression is influenced by hormones and sucrose content, leading to functional clustering of genes from the same family. The study sheds new light on the crosstalk between auxin- and cytokinin signaling pathways.
Auxins and cytokinins create versatile regulatory network controlling virtually all aspects of plant growth and development. These hormonal systems act in close contact, synergistically or antagonistically, determining plant phenotype, resistance and productivity. However, the current knowledge about molecular interactions of these systems is still scarce. Our study with potato plants aimed at deciphering potential interactions between auxin and cytokinin signaling pathways at the level of respective gene expression. Potato plants grown on sterile medium with 1.5% (vegetation) or 5% (tuberization) sucrose were treated for 1 h with auxin or cytokinin. Effects of these two hormones on expression profiles of genes belonging to main signaling pathways of auxin and cytokinin were quantified by RT-qPCR. As a result, several signaling genes were found to respond to auxin and/or cytokinin by up- or down-regulation. The observed effects were largely organ-specific and depended on sucrose content. Auxin strongly reduced cytokinin perception apparatus while reciprocal cytokinin effect was ambiguous and sucrose-dependent. In many cases, functional clustering of genes of the same family was observed. Promoters in some clusters are enriched with canonic hormone-response cis-elements supporting their direct sensitivity to hormones. Collectively, our data shed new light on the crosstalk between auxin- and cytokinin signaling pathways.

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