Comparison of NAA and 2,4-D induced somatic embryogenesis in Cassava View Full Text


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Article Info

DATE

1997-07

AUTHORS

E. Sofiari, C.J.J.M. Raemakers, E. Kanju, K. Danso, A.M. van Lammeren, E. Jacobsen, R.G.F. Visser

ABSTRACT

NAA and 2,4-D were compared for their ability to induce somatic embryogenesis in cassava (Manihot esculenta Crantz). In all seven cultivars tested, only 2,4-D had the capacity to induce primary somatic embryos from leaf explants, however, both NAA and 2,4-D were capable of inducing secondary somatic embryos. More secondary somatic embryos were formed in NAA than in 2,4-D medium. Furthermore, the maturation period for secondary somatic embryos was shorter in NAA medium than in 2,4-D medium. In some cultivars, repeated subculture of secondary somatic embryos in NAA medium resulted in a gradual shift from somatic embryogenesis to adventitious root formation. This shift could be stopped and reversed by subculture of the material in 2,4-D medium. In NAA medium the most secondary somatic embryos were formed when they were subcultured every 15 days whereas in 2,4-D a 20 day subculture interval was optimal. Subculture of secondary somatic embryos at a high inoculum density (>1.5 g jar−1) in NAA medium did not result in the formation of secondary somatic embryos, whereas in 2,4-D it lead to the formation of globular secondary somatic embryos. With 2,4-D the newly induced secondary somatic embryos were connected vertically to the explant and with NAA medium horizontally. For all cultivars tested, desiccation stimulated normal germination of NAA-induced somatic embryos. However, the desiccated, secondary somatic embryos required a medium supplemented with BA for high frequency germination. The concentration of BA needed for high frequency germination was higher when the desiccated secondary somatic embryos were cultured in light instead of dark. In only one cultivar desiccation enhanced germination of 2,4-D induced secondary somatic embryos and in three other cultivars it stimulated only root formation. More... »

PAGES

45-56

References to SciGraph publications

  • 1993-05. Induction, germination and shoot development of somatic embryos in cassava in PLANT CELL, TISSUE AND ORGAN CULTURE (PCTOC)
  • 1993-02. Improvements of cyclic somatic embryogenesis of cassava (Manihot esculenta Crantz) in PLANT CELL REPORTS
  • 1993-04. Improvement of somatic embryogenesis and plant recovery in cassava in PLANT CELL REPORTS
  • 1987-01. Soybean somatic embryogenesis: Effects of hormones and culture manipulations in PLANT CELL, TISSUE AND ORGAN CULTURE (PCTOC)
  • 1987-01. Secondary somatic embryogenesis and plant regeneration in cassava in PLANT CELL, TISSUE AND ORGAN CULTURE (PCTOC)
  • 1987-06. In vitro somatic embryogenesis and plant regeneration of cassava in PLANT CELL REPORTS
  • 1993-09. Efficient adventitious shoot regeneration and somatic embryogenesis in pea in PLANT CELL, TISSUE AND ORGAN CULTURE (PCTOC)
  • 1989-04. A simple, rapid protocol for adventitious shoot development from mature cotyledons of glycine max cv bragg in IN VITRO CELLULAR & DEVELOPMENTAL BIOLOGY
  • 1991. Bamboos in TREES III
  • 1994-05. Somatic embryogenesis from cultured mature cotyledons of cassava (Manihot esculenta Crantz) in PLANT CELL, TISSUE AND ORGAN CULTURE (PCTOC)
  • 1986-05. In vitro propagation of cassava (Manihot esculenta Crantz) in PLANT CELL, TISSUE AND ORGAN CULTURE (PCTOC)
  • 1989-04. Plant regeneration from immature embryos of peanut in PLANT CELL REPORTS
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    http://scigraph.springernature.com/pub.10.1023/a:1005844414258

    DOI

    http://dx.doi.org/10.1023/a:1005844414258

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