Development of the Casparian strip is delayed by blue light in pea stems

Ichirou Karahara*, Eliko Takaya, Shigetaka Fujibayashi, Hiroshi Inoue, James L. Weller, James B. Reid, Michizo Sugai

*Corresponding author for this work

Research output: Contribution to journalArticlepeer-review

5 Scopus citations

Abstract

To understand the regulatory mechanisms involved in tissue development by light, the kinetics of regulation of Casparian strip (CS) development in garden pea stems was studied. We found that short-term irradiation with white light delayed the development of the CS and used this delay to assess the quantitative effect of light on CS development. We examined the effect of the duration and fluence rates of white light treatment on CS development and observed a significant relationship between fluence and the delay in CS development indicating that the Bunsen-Roscoe law of reciprocity holds for this response. The effect of white light irradiation was not inhibited in the presence of a photosynthetic inhibitor, DCMU, or a carotenoid biosynthesis inhibitor, Norflurazon, indicating that the delay in CS development by light is a photomorphogenetic response rather than a subsidiary effect mediated by photosynthetic activity. An action spectrum for the response displayed a major peak in the blue-light region, suggesting a dominant role for blue-light receptors. A minor peak in the red-light region also suggested the possible involvement of phytochromes. Although phytochromes are known to contribute to blue-light responses, phytochrome-deficient mutants showed a normal delay of CS development in response to blue light, indicating that the response is not mediated by phytochrome and suggesting a role for one or more specific blue-light receptors.

Original languageEnglish
Pages (from-to)1019-1030
Number of pages12
JournalPlanta
Volume234
Issue number5
DOIs
StatePublished - 2011/11

Keywords

  • Action spectrum
  • Blue light
  • Endodermis
  • Photomorphogenesis
  • Pisum sativum L. cv. Alaska
  • Stem Casparian strip

ASJC Scopus subject areas

  • Genetics
  • Plant Science

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