Enhanced Cry1Da production in Bacillus thuringiensis by driving expression from the σE-dependent BtI promoter

Aims: To increase the Cry1Da production in Bacillus thuringiensis by enhancing BtI promoter activity and fusion with upstream sequence from cry1Ab. Methods and Results: The effects of joining the upstream sequence of cry1Ab that contains E2 subunit pyruvate dehydrogenase (PDH) recognition site to th...

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Main Authors: P. Wanapaisan, O. Chumsakul, W. Panbangred
Other Authors: Mahidol University
Format: Article
Published: 2018
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Online Access:https://repository.li.mahidol.ac.th/handle/123456789/31221
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spelling th-mahidol.312212018-10-19T12:01:33Z Enhanced Cry1Da production in Bacillus thuringiensis by driving expression from the σE-dependent BtI promoter P. Wanapaisan O. Chumsakul W. Panbangred Mahidol University Biochemistry, Genetics and Molecular Biology Immunology and Microbiology Aims: To increase the Cry1Da production in Bacillus thuringiensis by enhancing BtI promoter activity and fusion with upstream sequence from cry1Ab. Methods and Results: The effects of joining the upstream sequence of cry1Ab that contains E2 subunit pyruvate dehydrogenase (PDH) recognition site to the cry1Da promoter as well as the effects of substitution mutation of conserved sequences of its BtI promoter on cry1Da expression was monitored by constructing cry1Da promoter-lacZ fusions. Changing the -35 region of the cry1Da BtI promoter to that of cry1Ab enhanced β-galactosidase activity about three fold as comparing to that of the wild-type promoter with its own upstream sequence. In contrast, the same cry1Da mutated promoter linked to the above upstream sequence of cry1Ab enhanced enzyme activity up to seven fold, but was five fold lower than that of the full-length cry1Ab promoter. The cry1Ab-cry1Da hybrid promoter with the -35 BtI mutation efficiently increased Cry1Da synthesis by 133% and resulted in a 2·3-fold increase in insect larval toxicity when comparing to the wild type. Conclusions: The cry1Ab promoter as well as mutation of -35 region of BtI promoter together with fusion with E2 subunit PDH recognition site efficiently enhanced Cry1Da production in B. thuringiensis. Significance and Impact of the study: The results provide useful information to construct an efficient cry1Da gene expression in B. thuringiensis. © 2013 The Society for Applied Microbiology. 2018-10-19T04:36:11Z 2018-10-19T04:36:11Z 2013-09-01 Article Journal of Applied Microbiology. Vol.115, No.3 (2013), 859-871 10.1111/jam.12276 13652672 13645072 2-s2.0-84881666271 https://repository.li.mahidol.ac.th/handle/123456789/31221 Mahidol University SCOPUS https://www.scopus.com/inward/record.uri?partnerID=HzOxMe3b&scp=84881666271&origin=inward
institution Mahidol University
building Mahidol University Library
continent Asia
country Thailand
Thailand
content_provider Mahidol University Library
collection Mahidol University Institutional Repository
topic Biochemistry, Genetics and Molecular Biology
Immunology and Microbiology
spellingShingle Biochemistry, Genetics and Molecular Biology
Immunology and Microbiology
P. Wanapaisan
O. Chumsakul
W. Panbangred
Enhanced Cry1Da production in Bacillus thuringiensis by driving expression from the σE-dependent BtI promoter
description Aims: To increase the Cry1Da production in Bacillus thuringiensis by enhancing BtI promoter activity and fusion with upstream sequence from cry1Ab. Methods and Results: The effects of joining the upstream sequence of cry1Ab that contains E2 subunit pyruvate dehydrogenase (PDH) recognition site to the cry1Da promoter as well as the effects of substitution mutation of conserved sequences of its BtI promoter on cry1Da expression was monitored by constructing cry1Da promoter-lacZ fusions. Changing the -35 region of the cry1Da BtI promoter to that of cry1Ab enhanced β-galactosidase activity about three fold as comparing to that of the wild-type promoter with its own upstream sequence. In contrast, the same cry1Da mutated promoter linked to the above upstream sequence of cry1Ab enhanced enzyme activity up to seven fold, but was five fold lower than that of the full-length cry1Ab promoter. The cry1Ab-cry1Da hybrid promoter with the -35 BtI mutation efficiently increased Cry1Da synthesis by 133% and resulted in a 2·3-fold increase in insect larval toxicity when comparing to the wild type. Conclusions: The cry1Ab promoter as well as mutation of -35 region of BtI promoter together with fusion with E2 subunit PDH recognition site efficiently enhanced Cry1Da production in B. thuringiensis. Significance and Impact of the study: The results provide useful information to construct an efficient cry1Da gene expression in B. thuringiensis. © 2013 The Society for Applied Microbiology.
author2 Mahidol University
author_facet Mahidol University
P. Wanapaisan
O. Chumsakul
W. Panbangred
format Article
author P. Wanapaisan
O. Chumsakul
W. Panbangred
author_sort P. Wanapaisan
title Enhanced Cry1Da production in Bacillus thuringiensis by driving expression from the σE-dependent BtI promoter
title_short Enhanced Cry1Da production in Bacillus thuringiensis by driving expression from the σE-dependent BtI promoter
title_full Enhanced Cry1Da production in Bacillus thuringiensis by driving expression from the σE-dependent BtI promoter
title_fullStr Enhanced Cry1Da production in Bacillus thuringiensis by driving expression from the σE-dependent BtI promoter
title_full_unstemmed Enhanced Cry1Da production in Bacillus thuringiensis by driving expression from the σE-dependent BtI promoter
title_sort enhanced cry1da production in bacillus thuringiensis by driving expression from the σe-dependent bti promoter
publishDate 2018
url https://repository.li.mahidol.ac.th/handle/123456789/31221
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