Physiological controls of chrysanthemum DgD27 gene expression in regulation of shoot branching

Plant Cell Rep. 2016 May;35(5):1053-70. doi: 10.1007/s00299-016-1938-6. Epub 2016 Feb 16.

Abstract

DgD27 was cloned from D. grandiflorum for the first time and played an important role in shoot branching of chrysanthemum. Shoot branching plays an important role in determining plant architecture. D27 was previously proven to be involved in the strigolactone biosynthetic pathway in rice, Arabidopsis, and Medicago. To investigate the role of D27 in shoot branching of chrysanthemum, we isolated the D27 homolog DgD27. Functional analysis showed that DgD27 was a plastid-localized protein that restored the phenotype of Arabidopsis d27-1. Gene expression analysis revealed that DgD27 was expressed at the highest levels in stem, and was up-regulated by exogenous auxin. Decapitation could down-regulate DgD27 expression, but this effect could be restored by exogenous auxin. DgD27 expression was significantly down-regulated by dark treatment in axillary buds. In addition, DgD27 transcripts produced rapid responses in shoots and roots under conditions of phosphate absence, but only mild variation in responses in buds, stems, and roots with low nitrogen treatment. DgBRC1 transcripts also showed the same response in buds under low nitrogen conditions. Under phosphate deficiency, indole-3-acetic acid (IAA) levels increased, zeatin riboside levels decreased, and abscisic acid (ABA) levels increased in the shoot, while both IAA and ABA levels increased in the shoot under low nitrogen treatments. Gibberellin acid levels were unaffected by phosphate deficiency and low nitrogen treatments. Taken together, these results demonstrated the diverse roles of DgD27 in response to physiological controls in chrysanthemum shoot branching.

Keywords: Chrysanthemum; DgD27; Light; Low nitrogen; Phosphorus deficiency; Strigolactone.

Publication types

  • Research Support, Non-U.S. Gov't

MeSH terms

  • Abscisic Acid / metabolism
  • Arabidopsis / drug effects
  • Arabidopsis / genetics
  • Arabidopsis / growth & development
  • Arabidopsis / physiology
  • Chrysanthemum / drug effects
  • Chrysanthemum / genetics*
  • Chrysanthemum / physiology
  • Chrysanthemum / radiation effects
  • Gene Expression
  • Gene Expression Regulation, Plant*
  • Indoleacetic Acids / metabolism
  • Indoleacetic Acids / pharmacology*
  • Nitrogen / metabolism
  • Phenotype
  • Phosphates / deficiency
  • Plant Growth Regulators / metabolism*
  • Plant Growth Regulators / pharmacology
  • Plant Proteins / genetics
  • Plant Proteins / metabolism*
  • Plant Roots / drug effects
  • Plant Roots / genetics
  • Plant Roots / growth & development
  • Plant Roots / physiology
  • Plant Shoots / drug effects
  • Plant Shoots / genetics
  • Plant Shoots / physiology
  • Plant Shoots / radiation effects
  • Plant Stems / drug effects
  • Plant Stems / genetics
  • Plant Stems / growth & development
  • Plant Stems / physiology

Substances

  • Indoleacetic Acids
  • Phosphates
  • Plant Growth Regulators
  • Plant Proteins
  • indoleacetic acid
  • Abscisic Acid
  • Nitrogen