Enhanced protection against two major fungal pathogens of groundnut, Cercospora arachidicola and Aspergillus flavus in transgenic groundnut over-expressing a tobacco ... View Full Text


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Article Info

DATE

2010-04

AUTHORS

S. Sundaresha, A. Manoj Kumar, S. Rohini, S. A. Math, E. Keshamma, S. C. Chandrashekar, M. Udayakumar

ABSTRACT

Groundnut is an important oilseed crop of the Indian subcontinent. Yield losses due to fungal diseases are enormous in the cultivation of this crop. Over-expression of PR proteins leads to increased resistance to pathogenic fungi in several crops. The PR protein glucanase hydrolyses a major cell-wall component, glucan, of pathogenic fungi and acts as a plant defense barrier. We report in this paper, overexpression of a tobacco glucanase in transgenic groundnut and its resistance towards Cercospora arachidicola and Aspergillus flavus. PCR, Southern and Northern hybridization confirmed stable integration and expression of the glucanase gene in groundnut transgenics. When screened for resistance against Cercospora arachidicola the transgenics showed not only reduction in the number of spots but also delay in the onset of disease. Resistance was also demonstrated against one another important pathogen of groundnut, Aspergillus flavus. The transgenics not only resisted hyphal spread but also did not accumulate aflatoxin in the seeds. The results demonstrate the potential of a PR protein from a heterologous source in developing fungal disease resistant groundnut. More... »

PAGES

497-508

References to SciGraph publications

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  • 1998-06. Transgenic peanut plants containing a nucleocapsid protein gene of tomato spotted wilt virus show divergent levels of gene expression in PLANT CELL REPORTS
  • 2007-02. Transgenic Indian mustard (Brassica juncea) expressing tomato glucanase leads to arrested growth of Alternaria brassicae in PLANT CELL REPORTS
  • 2006-08. Agrobacterium-mediated in planta transformation of maize via pistil filaments in RUSSIAN JOURNAL OF GENETICS
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  • 2004-12. Transgenic tomato plants expressing the Arabidopsis NPR1 gene display enhanced resistance to a spectrum of fungal and bacterial diseases in TRANSGENIC RESEARCH
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    http://scigraph.springernature.com/pub.10.1007/s10658-009-9556-6

    DOI

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    DIMENSIONS

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