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African Journal of Biotechnology

     
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  Afr. J. Biotechnol.

  Vol. 9 No. 35

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Emile M

  Omokolo DN

 

 

 
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African Journal of Biotechnology Vol. 9 (35), pp. 5665-5675, 30 August, 2010

ISSN 1684-5315 © 2010 Academic Journals  

 

 

Full Length Research Paper

 

Sulphur depletion altered somatic embryogenesis in Theobroma cacao L. Biochemical difference related to sulphur metabolism between embryogenic and non embryogenic calli

 

Minyaka Emile1,4*, Niemenak Nicolas2, Issali Emmanuel Auguste3, Sangare Abdourahamane3 and Denis Ndoumou Omokolo3

 

1Department of Biochemistry, Faculty of Sciences, University of Douala P.O. Box 24157 Douala - Cameroon.

2Department of Biological Sciences, Higher Teachers Training College, University of Yaounde I, P.O. Box 47 Yaounde - Cameroon.

3Laboratoire Central de Biotechnologies, Centre National de Recherche Agronomique 01 P.O. Box 1740 Abidjan 01 -Côte d’Ivoire.

4Laboratoire de génétique, UFR Biosciences, University of Cocody/Abidjan, 22 P.O. Box 582 Abidjan 22 - Côte d’Ivoire.

 

*Corresponding author. E-mail: minyakae@yahoo.fr.

 

Accepted 22 July, 2010

 

   Abstract

 

Somatic embryogenesis is a useful tool for Theobroma cacao improvement and propagation. Depending on culture medium composition, different morphogenetic structures (including somatic embryo) occur in response to alteration of genes expression patterns and biochemical changes. The effect of SO42- ion deficiency in culture media on somatic embryogenesis was studied through sequential replacement of MgSO4 and K2SO4 by MgCl2 and KCl, respectively, at different steps of somatic embryogenesis. It appears that explants gradually lost their embryogenic competence as the period of exposition to sulphur free medium increases. These results suggest that, sulphur availability and the duration to sulphur exposition might modulate the expression of genes involved in somatic embryo differentiation in T. cacao. Cysteine, glutathione, reducing sugars, cysteine synthase and cysteine desulfurase activities were analysed in different morphogenetic structures obtained in vitro. Cysteine and reducing sugars contents appeared to be higher in embryogenic calli than their non-embryogenic homologues, whereas glutathione content appears to be lower in embryogenic calli. Cysteine synthase activities also discriminate the embryogenic calli from non embryogenic calli. In the embryogenic calli, the ratio cysteine synthase/cysteine desulfurase activities were above unit. The assimilation of exogenous sulphur (sulphate) for the synthesis of cysteine might hence be crucial for somatic embryogenesis in T. cacao. This explains the reduction and the absence of somatic embryo response observed during sulphur depletion in culture media. Sulphur nutrition is therefore critical in cacao somatic embryogenesis.

 

Keys words: Cacao, embryo, sulphate, cysteine synthase, glutathione, deficiency.

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