4.6 Article

A Phelipanche ramosa KAI2 protein perceives strigolactones and isothiocyanates enzymatically

期刊

PLANT COMMUNICATIONS
卷 2, 期 5, 页码 -

出版社

ELSEVIER
DOI: 10.1016/j.xplc.2021.100166

关键词

alpha/beta-hydrolase; receptor; seed germination stimulant; strigolactones; isothiocyanates; Phelipanche ramosa

资金

  1. Institut Jean-Pierre Bourgin's Plant Observatory technological platforms
  2. Paris-Sud University
  3. The CHAR-M3AT Labex program [ANR-11-LABX-39]
  4. AgreenSkills award from the European Union
  5. Saclay Plant Sciences [ANR-17-EUR-0007]
  6. Research Foundation Flanders [1S15817N, VS04418N]
  7. Infrastructures en Biologie Sante et Agronomie
  8. Ile de France Region
  9. Plan Cancer
  10. CNRS

向作者/读者索取更多资源

This study identified five putative SL receptors in Phelipanche ramosa and showed that PrKAI2d3 is involved in seed germination stimulation, with high plasticity to interact with different chemicals. The study also demonstrated that PrKAI2d3 enzymatic activity confers hypersensitivity to SLs and that methylbutenolide-OH can stimulate P. ramosa germination. This suggests that P. ramosa has extended its signal perception system during evolution, which should be considered for the development of specific and efficient biocontrol methods.
Phelipanche ramosa is an obligate root-parasitic weed that threatens major crops in central Europe. In order to germinate, it must perceive various structurally divergent host-exuded signals, including isothiocyanates (ITCs) and strigolactones (SLs). However, the receptors involved are still uncharacterized. Here, we identify five putative SL receptors in P. ramosa and show that PrKAI2d3 is involved in the stimulation of seed germination. We demonstrate the high plasticity of PrKAI2d3, which allows it to interact with different chemicals, including ITCs. The SL perception mechanism of PrKAI2d3 is similar to that of endogenous SLs in non-parasitic plants. We provide evidence that PrKAI2d3 enzymatic activity confers hypersensitivity to SLs. Additionally, we demonstrate that methylbutenolide-OH binds PrKAI2d3 and stimulates P. ramosa germination with bioactivity comparable to that of ITCs. This study demonstrates that P. ramosa has extended its signal perception system during evolution, a fact that should be considered for the development of specific and efficient biocontrol methods.

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