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Abstract

The establishment of cocoa embryogenic cell lines in liquid medium starting from high frequency somatic embryogenesis (HFSE) callus is described. The growth kinetics of the cultures during the multiplication and the expression steps conducted in 250 mL Erlenmeyer flasks were described for three genotypes selected for their agronomical traits (EET95, EET96, and EET103). The glucose and dissolved oxygen concentrations and the absorption of Murashige and Skoog medium macronutrients (nitrate, ammonium, potassium, sulfate, calcium, phosphorus, and magnesium) were monitored. The multiplication of the embryogenic calluses in a medium containing 2,4,5-trichlorophenoxyacetic acid (2,4,5-T) at 1 mg L 1, initiated with an inoculation density of 20 g L-1 of callus, was achieved. The growth rate was characterized by two phases, with the second being concomitant with a depletion of phosphorus and magnesium, and a decrease in the embryogenic potential of the callus. The expression of the callus embryogenic capacity was conducted in an auxin-free medium. The embryo production starting from 1 and 5 g L-1 inoculation densities was compared. When placed in the optimal expression conditions in flasks, 1 g of callus produced 1000 to 1500 embryos within 5 to 7 wk. Finally, two paths for improving the plantlet regenerative capacities of cocoa SE produced in liquid medium were identified. Supplementing the expression medium with myo-inositol used as an osmotic agent at a concentration of 50 g L-1 increased the embryo-to-plantlet conversion rate from 13-16% to 40-48%. A 6-wk culture of the embryos on a maturation medium in Petri dishes optimized their subsequent development into plantlets.

Details

Title
Indirect somatic embryogenesis of Theobroma cacao L. in liquid medium and improvement of embryo-to-plantlet conversion rate
Author
Guillou, Caroline 1 ; Fillodeau, Audrey 1 ; Brulard, Eric 1 ; Breton, David 1 ; Maraschin, Simone De Faria 1 ; Verdier, Dorothée; Simon, Mathieu; Ducos, Jean-Paul

 Nestlé Research & Development Centre Tours-Plant Science Research Unit, 101 avenue Gustave Eiffel BP49716, 37097 Tours CEDEX 2, France 
Pages
377-391
Section
EMBRYO CULTURE
Publication year
2018
Publication date
Aug 2018
Publisher
Springer Nature B.V.
ISSN
10545476
e-ISSN
14752689
Source type
Scholarly Journal
Language of publication
English
ProQuest document ID
2132566102
Copyright
Copyright Society for In Vitro Biology Aug 2018