American Journal of Molecular Biology

Volume 2, Issue 2 (April 2012)

ISSN Print: 2161-6620   ISSN Online: 2161-6663

Google-based Impact Factor: 0.47  Citations  

Molecular cloning and characterization of fruit specific promoter from Cucumis sativus L.

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DOI: 10.4236/ajmb.2012.22015    6,396 Downloads   15,005 Views  Citations

ABSTRACT

The isolation and characterization of fruit specific promoters are critical for the manipulation of nutritional value and agronomic quality of fruits by genetic engineering and also opened a new era in edible vaccine technology. Expansins are proteins that induce loosening of individual plant cells by disrupting the non-covalent interactions between cellulose and hemicellulose microfibrils and hence have role in growth programs including fruit ripening. We report the identification of an expansin gene (CsExp) from Cucumis sativus that exhibits high levels of mRNA abundance and is specifically expressed in ripened fruit. The promoter region of CsExp also contains elements responsible for its fruit specific expression. Transient expression studies of the CsExp promoter were conducted with particle bombardment, followed by GUS histochemical assay and real time PCR. CaMV35S promoter was used as the positive control in all these experiments. Clear fruit specificity was observed for CsExp promoter in all the experiments. Thus CsExp promoter from Cucumber is a good candidate to target expression of the foreign genes to engineer fruit specific traits.

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Unni, S. , Vivek, P. , Maju, T. , Varghese, R. and Soniya, E. (2012) Molecular cloning and characterization of fruit specific promoter from Cucumis sativus L.. American Journal of Molecular Biology, 2, 132-139. doi: 10.4236/ajmb.2012.22015.

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[2] Promoter deletion analysis reveals root-specific expression of the alkenal reductase gene (OsAER1) in Oryza sativa
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[4] Isolation and functional characterization of seed-specific FAD2-1 promoter from cotton (Gossypium hirsutum L)
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[5] Temporal and spatial control of gene expression in horticultural crops
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[6] Isolation and characterization of soybean promoters
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[7] Learning from nature: new approaches to the metabolic engineering of plant defense pathways
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