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      Overcome of Carbon Catabolite Repression of Bioinsecticides Production by Sporeless Bacillus thuringiensis through Adequate Fermentation Technology

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          Abstract

          The overcoming of catabolite repression, in bioinsecticides production by sporeless Bacillus thuringiensis strain S22 was investigated into fully controlled 3 L fermenter, using glucose based medium. When applying adequate oxygen profile throughout the fermentation period (75% oxygen saturation), it was possible to partially overcome the catabolite repression, normally occurring at high initial glucose concentrations (30 and 40 g/L glucose). Moreover, toxin production yield by sporeless strain S22 was markedly improved by the adoption of the fed-batch intermittent cultures technology. With 22.5 g/L glucose used into culture medium, toxin production was improved by about 36% when applying fed-batch culture compared to one batch. Consequently, the proposed fed-batch strategy was efficient for the overcome of the carbon catabolite repression. So, it was possible to overproduce insecticidal crystal proteins into highly concentrated medium.

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          Most cited references41

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          An improved method for enzymic determination of glucose in the presence of maltose.

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            Bacillus thuringiensis growth, sporulation and δ-endotoxin production in oxygen limited and non-limited cultures.

            The production of crystals and spores ofBacillus thuringiensis var.israelensis was studied under different aeration conditions. The results with 4 l batch cultures showed that for O2 non-limited, cultures cell yield, toxin production and spore count were constant for all oxygen transfer rates (OTR). Under O2 limitation, °-endotoxin concentrations and spore counts were lower than those obtained in non-limited cultures. In addition, δ-endotoxin yields diminished under O2 limitation, suggesting that the toxin synthesis mechanism could have been affected.
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              Use of sea water as salts source in starch- and soya bean-based media, for the production of Bacillus thuringiensis bioinsecticides

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                Author and article information

                Journal
                Biotechnol Res Int
                Biotechnol Res Int
                BTRI
                Biotechnology Research International
                Hindawi Publishing Corporation
                2090-3138
                2090-3146
                2014
                17 September 2014
                : 2014
                : 698587
                Affiliations
                1Team of Biopesticides (LPIP), Centre of Biotechnology of Sfax, Sfax University, 3018 Sfax, Tunisia
                2Department of Biological & Environmental Sciences, College of Arts and Sciences, Qatar University, P.O. Box 2713, Doha, Qatar
                Author notes

                Academic Editor: Marc Beauregard

                Article
                10.1155/2014/698587
                4182890
                bee0dfe3-959e-4680-ba26-ffeba02bd73e
                Copyright © 2014 Saoussen Ben Khedher et al.

                This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.

                History
                : 20 February 2014
                : 3 July 2014
                : 3 September 2014
                Categories
                Research Article

                Biotechnology
                Biotechnology

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