Literature DB >> 11596636

Automorphogenesis and gravitropism of plant seedlings grown under microgravity conditions.

T Hoson1, M Saiki, S Kamisaka, M Yamashita.   

Abstract

Plant seedlings exhibit automorphogenesis on clinostats. The occurrence of automorphogenesis was confirmed under microgravity in Space Shuttle STS-95 flight. Rice coleoptiles showed an inclination toward the caryopsis in the basal region and a spontaneous curvature in the same adaxial direction in the elongating region both on a three-dimensional (3-D) clinostat and in space. Both rice roots and Arabidopsis hypocotyls also showed a similar morphology in space and on the 3-D clinostat. In rice coleoptiles, the mechanisms inducing such an automorphic curvature were studied. The faster-expanding convex side of rice coleoptiles showed a higher extensibility of the cell wall than the opposite side. Also, in the convex side, the cell wall thickness was smaller, the turnover of the matrix polysaccharides was more active, and the microtubules oriented more transversely than the concave side, and these differences appear to be causes of the curvature. When rice coleoptiles grown on the 3-D clinostat were placed horizontally, the gravitropic curvature was delayed as compared with control coleoptiles. In clinostatted coleoptiles, the corresponding suppression of the amyloplast development was also observed. Similar results were obtained in Arabidopsis hypocotyls. Thus, the induction of automorphogenesis and a concomitant decrease in graviresponsiveness occurred in plant shoots grown under microgravity conditions. c 2001 COSPAR. Published by Elsevier Science Ltd. All rights reserved.

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Year:  2001        PMID: 11596636     DOI: 10.1016/s0273-1177(01)00157-0

Source DB:  PubMed          Journal:  Adv Space Res        ISSN: 0273-1177            Impact factor:   2.152


  6 in total

1.  Cellular basis for the automorphic curvature of rice coleoptiles on a three-dimensional clinostat: possible involvement of reorientation of cortical microtubules.

Authors:  Mizue Saiki; Hiroshi Fujita; Kouichi Soga; Kazuyuki Wakabayashi; Seiichiro Kamisaka; Masamichi Yamashita; Takayuki Hoson
Journal:  J Plant Res       Date:  2005-06-04       Impact factor: 2.629

2.  Cell wall changes involved in the automorphic curvature of rice coleoptiles under microgravity conditions in space.

Authors:  Takayuki Hoson; Kouichi Soga; Ryuji Mori; Mizue Saiki; Yukiko Nakamura; Kazuyuki Wakabayashi; Seiichiro Kamisaka
Journal:  J Plant Res       Date:  2004-11-03       Impact factor: 2.629

3.  Pectin methylesterase gene AtPMEPCRA contributes to physiological adaptation to simulated and spaceflight microgravity in Arabidopsis.

Authors:  Peipei Xu; Haiying Chen; Jinbo Hu; Xiaocheng Pang; Jing Jin; Weiming Cai
Journal:  iScience       Date:  2022-04-29

4.  Arabidopsis thaliana root elongation growth is sensitive to lunisolar tidal acceleration and may also be weakly correlated with geomagnetic variations.

Authors:  Peter W Barlow; Joachim Fisahn; Nima Yazdanbakhsh; Thiago A Moraes; Olga V Khabarova; Cristiano M Gallep
Journal:  Ann Bot       Date:  2013-03-26       Impact factor: 4.357

5.  (Not) Keeping the stem straight: a proteomic analysis of maritime pine seedlings undergoing phototropism and gravitropism.

Authors:  Raul Herrera; Catherine Krier; Celine Lalanne; El Hadji Maodo Ba; Alexia Stokes; Franck Salin; Thierry Fourcaud; Stéphane Claverol; Christophe Plomion
Journal:  BMC Plant Biol       Date:  2010-10-06       Impact factor: 4.215

6.  Effects of the Extraterrestrial Environment on Plants: Recommendations for Future Space Experiments for the MELiSSA Higher Plant Compartment.

Authors:  Silje A Wolff; Liz H Coelho; Irene Karoliussen; Ann-Iren Kittang Jost
Journal:  Life (Basel)       Date:  2014-05-05
  6 in total

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