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Dive into the research topics where Lily Gavilano is active.

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Featured researches published by Lily Gavilano.


Journal of Biological Chemistry | 2007

Functional Analysis of Nicotine Demethylase Genes Reveals Insights into the Evolution of Modern Tobacco

Lily Gavilano; Nicholas P. Coleman; Steven W. Bowen; Balazs Siminszky

Tobacco (Nicotiana tabacum L.) is a natural allotetraploid derived from the interspecific hybridization between ancestral Nicotiana sylvestris and Nicotiana tomentosiformis. The majority of cultivated tobacco differs from both of its progenitor species in that tobacco typically contains nicotine as the primary alkaloid, in contrast to its two progenitors that accumulate nornicotine in the senescing leaves. However, most, if not all, tobacco cultivars possess an unstable mutation, commonly referred to as the conversion locus, that when activated mediates the conversion of a large percentage of nicotine to nornicotine in the senescing leaf. We have recently identified CYP82E4, a tobacco nicotine N-demethylase gene whose expression was highly induced during senescence in plants that have converted, and CYP82E3, a closely related homolog that exhibited no nicotine N-demethylase activity. In this study, domain swapping and site-directed mutagenesis studies identified a single amino acid change that fully restored nicotine N-demethylase activity to CYP82E3. An examination of the N. tomentosiformis orthologs of CYP82E3 and CYP82E4 revealed that both are functional nicotine N-demethylase genes in N. tomentosiformis. Collectively, our results suggest that a single base pair mutation in CYP82E3 and transcriptional suppression of CYP82E4 played important roles in the evolution of the alkaloid profile characteristic of modern tobacco.


Proceedings of the National Academy of Sciences of the United States of America | 2005

Conversion of nicotine to nornicotine in Nicotiana tabacum is mediated by CYP82E4, a cytochrome P450 monooxygenase

Balazs Siminszky; Lily Gavilano; Steven W. Bowen; Ralph E. Dewey


Journal of Agricultural and Food Chemistry | 2006

Genetic Engineering of Nicotiana tabacum for Reduced Nornicotine Content

Lily Gavilano; Nicholas P. Coleman; Leigh-Emma Burnley; Melissa L. Bowman; Newton E. Kalengamaliro; Alec J. Hayes; Lowell P. Bush; Balazs Siminszky


Plant Biotechnology Journal | 2008

RNA interference (RNAi)‐induced suppression of nicotine demethylase activity reduces levels of a key carcinogen in cured tobacco leaves

Ramsey S. Lewis; Anne M. Jack; Jerry W. Morris; Vincent J. M. Robert; Lily Gavilano; Balazs Siminszky; Lowell P. Bush; Alec J. Hayes; Ralph E. Dewey


Plant and Cell Physiology | 2007

Isolation and Characterization of the Cytochrome P450 Gene CYP82E5v2 that Mediates Nicotine to Nornicotine Conversion in the Green Leaves of Tobacco

Lily Gavilano; Balazs Siminszky


New Phytologist | 2007

Inactivation of the cytochrome P450 gene CYP82E2 by degenerative mutations was a key event in the evolution of the alkaloid profile of modern tobacco

Manohar Chakrabarti; Karen M. Meekins; Lily Gavilano; Balazs Siminszky


Archive | 2008

Änderung des tabakalkaloidgehalts durch modifizierung spezifischer cytochrom-p450-gene

Ralph E. Dewey; Balazs Siminszky; Steven W. Bowen; Lily Gavilano


Archive | 2005

Alteration de la teneur en alcaloide de tabac par modification des genes cytochrome p450 specifiques

Ralph E. Dewey; Balazs Siminszky; Steven W. Bowen; Lily Gavilano


Archive | 2005

Veränderung des alkaloidgehaltes in tabak durch modifikation spezifischer cytochrome p450 gene.

Ralph E. Dewey; Balazs Siminszky; Steven W. Bowen; Lily Gavilano


Archive | 2005

Änderung des Alkaloidgehalts von Tabak mittels Modifizierung spezifischer P450-Cytochromgene

Ralph E. Dewey; Balazs Siminszky; Steven W. Bowen; Lily Gavilano

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Ralph E. Dewey

North Carolina State University

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Steven W. Bowen

North Carolina State University

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