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Expression of Drosera rotundifolia Chitinase in Transgenic Tobacco Plants Enhanced Their Antifungal Potential. | LitMetric

Expression of Drosera rotundifolia Chitinase in Transgenic Tobacco Plants Enhanced Their Antifungal Potential.

Mol Biotechnol

Institute of Plant Genetics and Biotechnology, Plant Science Biodiversity Center, Slovak Academy of Sciences, Akademicka 2, P. O. Box 39A, 950 07, Nitra, Slovak Republic.

Published: December 2019

AI Article Synopsis

  • A chitinase gene (DrChit) from the carnivorous plant Drosera rotundifolia L. was isolated and transformed into tobacco plants using Agrobacterium-mediated methods.
  • Among 14 transgenic lines examined, two lines (9 and 14) showed significantly higher expression of the DrChit gene, leading to enhanced chitinolytic activity compared to non-transgenic controls.
  • The crude protein extracts from these two lines effectively suppressed the growth of the fungus Trichoderma viride, demonstrating the potential antifungal properties of the chitinase from this carnivorous plant.

Article Abstract

In this study, a chitinase gene (DrChit) that plays a role in the carnivorous processes of Drosera rotundifolia L. was isolated from genomic DNA, linked to a double CaMV35S promoter and nos terminator in a pBinPlus plant binary vector, and used for Agrobacterium-mediated transformation of tobacco. RT-qPCR revealed that within 14 transgenic lines analysed in detail, 57% had DrChit transcript abundance comparable to or lower than level of a reference actin gene transcript. In contrast, the transgenic lines 9 and 14 exhibited 72 and 152 times higher expression level than actin. The protein extracts of these two lines exhibited five and eight times higher chitinolytic activity than non-transgenic controls when measured in a fluorimetric assay with FITC-chitin. Finally, the growth of Trichoderma viride was obviously suppressed when the pathogen was exposed to 100 μg of crude protein extract isolated from line 9 and line 14, with the area of mycelium growth reaching only 56.4% and 45.2%, of non-transgenic control, respectively. This is the first time a chitinase from a carnivorous plant with substrate specificity for long chitin polymers was tested in a transgenic plant with the aim of exploring its antifungal potential.

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Source
http://dx.doi.org/10.1007/s12033-019-00214-1DOI Listing

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