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2003 | 45 | 1 |

Tytuł artykułu

Tissue-specific expression of 14-3-3 isoforms during barley microspore and zygotic embryogenesis

Warianty tytułu

Języki publikacji

EN

Abstrakty

EN
Conserved 14-3-3 proteins have been shown to play regulatory roles in eukaryotic cells, including cell cycle control and differentiation. We were interested in the possible involvement of 14-3-3 proteins in the embryogenic process of barley (Hordeum vulgare L.). Barley microspore-derived embryo development was used as a model system. Immunolocalization of three barley 14-3-3 isoforms, 14-3-3A, 14-3-3B and 14-3-3C, was carried out using isoform-specific antibodies. In immature microspore-derived embryos, 14-3-3C was specifically expressed underneath the L1 layer of the shoot apical meristem and in the scutellum. Comparative studies showed that 14-3-3C was also expressed underneath the L1 layer of the shoot apical meristem and in the scutellum of immature zygotic embryos. We further demonstrated that 14-3-3C expression is restricted to L2 layer-derived cells of in vitro shoot meristematic cultures. Our results reveal that 14-3-3C isoform tissue-specific expression is closely related to defined events during differentiation processes in embryogenesis and in vitro meristematic cultures.

Wydawca

-

Rocznik

Tom

45

Numer

1

Opis fizyczny

p.103-106,fig.

Twórcy

autor
  • Leiden University, Wassenaarseweg 64, 2333 AL Leiden, The Netherlands
autor
autor

Bibliografia

  • Chang HC, and Rubin GM. 1997. 14-3-3 ε positively regulates Ras-mediated signalling in Drosophila. Genes and Development 11: 1132-1139.
  • Daugherty CJ, Rooney MF, Miller PW, and Ferl RJ. 1996. Molecular organization and tissue-specific expression of an Arabidopsis 14-3-3 gene. Plant Cell 8: 1239-1248.
  • Hoekstra S, Van Zijderveld MH, Louwerse JD, Heidekamp F, and Van Der Mark F. 1992. Anther and microspore culture of Hordeum vulgare L. cv. Igri. Plant Science 86: 89-96.
  • Jenik PD, and Irish VF. 2000. Regulation of cell proliferation patterns by homeotic genes during Arabidopsis floral development. Development 127: 1267-1276.
  • Kockel L, Vorbrüggen G, Jäckle H, Mlodzik M, and Bohmann D. 1997. Requirement for Drosophila 14-3-3 ξ in Raf-dependent photoreceptor development. Genes and Development 11: 1140-1147.
  • Louwerse JD. 2002. Transformation of barley with the maize transposable element En/Spm. Ph.D. dissertation, Heriot-Watt University, Edinburgh, Scotland, UK.
  • Mordhorst AP, Toonen MAJ, and De Vries SC. 1997. Plant embryogenesis. Critical Reviews in Plant Sciences 16: 535-578.
  • Pnueli L, Gutfinger T, Hareven D, Ben-Naim O, Ron N, Adir N, and Lifschitz E. 2001. Tomato SP-interacting proteins define a conserved signaling system that regulates shoot architecture and flowering. Plant Cell 13: 2687-2702.
  • Rosenquist M, Alsterfjord M, Larsson C, and Sommarin M. 2001. Data mining the Arabidopsis genome reveals fifteen 14-3-3 genes. Expression is demonstrated for two out of five novel genes. Plant Physiology 127: 142-149.
  • Sehnke PC, Delille J, and Ferl RJ. 2002. Consummating signal transduction: The role of 14-3-3 proteins in the completion of signal-induced transitions in protein activity. Plant Cell S339-S354.
  • Testerink C, Van Der Meulen RM, Oppedijk BJ, De Boer AH, Heimovaara-Dijkstra S, Kijne JW, and Wang M. 1999. Differences in spatial expression between 14-3-3 isoforms in germinating barley embryos. Plant Physiology 121: 81-87.
  • Tien AC, Hsei HY, and Chien CT. 1999. Dynamic expression and cellular localization of the Drosophila 14-3-3 ε during embryonic development. Mechanisms of Development 81: 209-212.
  • Van Heudsen GPH, Van Der Zanden AL, Ferl RJ, and Steensma HY. 1996. Four Arabidopsis thaliana 14-3-3 protein isoforms can complement the lethal yeast bmh1 bmh2 double disruption. FEBS Letters 391: 252-256.

Typ dokumentu

Bibliografia

Identyfikatory

Identyfikator YADDA

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