Plant Development in Space or in Simulated Microgravity

Author:

Perbal Gérald

Publisher

Springer Netherlands

Reference33 articles.

1. Aarrouf J., N. Darbelley, C. Demandre, N. Razafindramboa, and G. Perbal. 1999a. Effect of horizontal clinorotation on the root system development and on lipid breakdown in Rapeseed (Brassica napus) seedlings. Plant Cell Physiol. 40 (4): 396–405.

2. Aarrouf J., D. Schoevadrt, R. Maldiney, and G. Perbal. 1999b. Changes in hormonal balance and meristematic activity in primary root tips on the slowly rotating clinostat and their effect on the development of the rapeseed root system. Physiol. Plant. 105: 708–718.

3. Albrecht-Buehler G. 1991. Possible mechanisms of indirect gravity sensing by cells. ASGSB Bull. 4 (2): 25–34.

4. Claassen D.E., and S. Spooner. 1994. Impact of altered gravity on aspects of cell biology. Int. Rev. Cytol. 156: 301–373.

5. Driss-Ecole D., A. Cottignies, B. Jeune, F. Corbineau, and G. Perbal. 1994a. Increased mass production of Veronica arvensis grown on a slowly rotating clinostat. Environ. Exptl. Bot. 34 (3): 303–310.

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