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Fred Rook

Showing results (1-10 of 15) with videos related to

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Trends in Plant Science|May 22, 2012
Why biosynthetic genes for chemical defense compounds clusterAdam M Takos, Fred Rook
Journal of Experimental Botany|January 1, 2003
Genetic approaches to understanding sugar-response pathwaysFred Rook, Michael W Bevan
International Journal of Molecular Sciences|June 4, 2013
Towards a molecular understanding of the biosynthesis of amaryllidaceae alkaloids in support of their expanding medical useAdam M Takos, Fred Rook
Biological Reviews of the Cambridge Philosophical Society|August 29, 2014
How insects overcome two-component plant chemical defence: plant β-glucosidases as the main target for herbivore adaptationStefan Pentzold, Mika Zagrobelny, Fred Rook, et al.
Plant, Cell & Environment|November 4, 2006
Sugar and ABA response pathways and the control of gene expressionFred Rook, Sophie A Hadingham, Yunhai Li, et al.
The Plant Journal : for Cell and Molecular Biology|June 30, 2006
Impaired sucrose induction1 encodes a conserved plant-specific protein that couples carbohydrate availability to gene expression and plant growthFred Rook, Fiona Corke, Margarete Baier, et al.
Scientific Reports|November 15, 2016
The biosynthetic gene cluster for the cyanogenic glucoside dhurrin in Sorghum bicolor contains its co-expressed vacuolar MATE transporterBehrooz Darbani, Mohammed Saddik Motawia, Carl Erik Olsen, et al.
Plant Physiology|December 20, 2003
Characterization of mutants in Arabidopsis showing increased sugar-specific gene expression, growth, and developmental responsesMargarete Baier, Georg Hemmann, Rachel Holman, et al.
Plant Molecular Biology|August 8, 2015
Lotus japonicus flowers are defended by a cyanogenic β-glucosidase with highly restricted expression to essential reproductive organsDaniela Lai, Martina Pičmanová, Maher Abou Hachem, et al.
The Plant Journal : for Cell and Molecular Biology|May 28, 2014
The evolutionary appearance of non-cyanogenic hydroxynitrile glucosides in the Lotus genus is accompanied by the substrate specialization of paralogous β-glucosidases resulting from a crucial amino acid substitutionDaniela Lai, Maher Abou Hachem, Fran Robson, et al.
Pageof 2

Showing results (1-10 of 15) with videos related to

Sort By:
Pageof 2
Trends in Plant Science|May 22, 2012
Why biosynthetic genes for chemical defense compounds clusterAdam M Takos, Fred Rook
Journal of Experimental Botany|January 1, 2003
Genetic approaches to understanding sugar-response pathwaysFred Rook, Michael W Bevan
International Journal of Molecular Sciences|June 4, 2013
Towards a molecular understanding of the biosynthesis of amaryllidaceae alkaloids in support of their expanding medical useAdam M Takos, Fred Rook
Biological Reviews of the Cambridge Philosophical Society|August 29, 2014
How insects overcome two-component plant chemical defence: plant β-glucosidases as the main target for herbivore adaptationStefan Pentzold, Mika Zagrobelny, Fred Rook, et al.
Plant, Cell & Environment|November 4, 2006
Sugar and ABA response pathways and the control of gene expressionFred Rook, Sophie A Hadingham, Yunhai Li, et al.
The Plant Journal : for Cell and Molecular Biology|June 30, 2006
Impaired sucrose induction1 encodes a conserved plant-specific protein that couples carbohydrate availability to gene expression and plant growthFred Rook, Fiona Corke, Margarete Baier, et al.
Scientific Reports|November 15, 2016
The biosynthetic gene cluster for the cyanogenic glucoside dhurrin in Sorghum bicolor contains its co-expressed vacuolar MATE transporterBehrooz Darbani, Mohammed Saddik Motawia, Carl Erik Olsen, et al.
Plant Physiology|December 20, 2003
Characterization of mutants in Arabidopsis showing increased sugar-specific gene expression, growth, and developmental responsesMargarete Baier, Georg Hemmann, Rachel Holman, et al.
Plant Molecular Biology|August 8, 2015
Lotus japonicus flowers are defended by a cyanogenic β-glucosidase with highly restricted expression to essential reproductive organsDaniela Lai, Martina Pičmanová, Maher Abou Hachem, et al.
The Plant Journal : for Cell and Molecular Biology|May 28, 2014
The evolutionary appearance of non-cyanogenic hydroxynitrile glucosides in the Lotus genus is accompanied by the substrate specialization of paralogous β-glucosidases resulting from a crucial amino acid substitutionDaniela Lai, Maher Abou Hachem, Fran Robson, et al.
Pageof 2