Comparative anatomy of embryogenic and non-embryogenic calli frompimpinella brachycarpa
Author:
Publisher
Springer Science and Business Media LLC
Subject
Plant Science
Link
http://link.springer.com/content/pdf/10.1007/BF03030665.pdf
Reference31 articles.
1. Albarran J, Bertrand B, Lartaud M, Etienne H (2005) Cycle characteristics in a temporary immersion bioreactor affect regeneration, morphology, water and mineral status of coffee (Coffeeaarabica) somatic embryo. Plant Cell Tiss Org Cult81: 27–36
2. Charbit E, Legavre T, Lardet L, Bourgeois E, Ferriere N, Carron MP (2004) Identification of differentially expressed cDNA sequences and histological characteristics ofHevea brasiliensis calli in relation to their embryogenic and regenerative capacities. Plant Cell Rep22: 539–548
3. Debergh P, Aitken-Christie J, Cohen D, Grout B, von Arnold S, Zimmerman R, Ziv M (1992) Reconsideration of the term ‘vitrification’ as used in micropropagation. Plant Cell Tiss Org Cult30: 135–140
4. Lee EJ, Mobin M, Hahn EJ, Paek KY (2006) Effects of sucrose, inoculum density, auxins, and aeration volume on cell growth ofCymnema sylvestre. J Plant Biol49: 427–431
5. Ibaraki Y, Kaneko Y, Kurata K (1998) Evaluation of embryogenic potential of cell suspension culture by texture analysis. Trans Amer Soc Agric Engr41: 247–252
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