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<title>Selected publications</title>
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<title>Herbivore feeding preference corroborates optimal defense theory for specialized metabolites within plants</title>
<link>https://dynamo.ku.dk/nyheder/selected_publications/herbivore-feeding-preference-corroborates-optimal-defense-theory-for-specialized-metabolites-within-plants/</link>
<description>PNAS, Nov. 2021 &#x3C;div class=&#x22;item-image&#x22;&#x3E;&#x3C;a href=&#x22;https://dynamo.ku.dk/nyheder/selected_publications/herbivore-feeding-preference-corroborates-optimal-defense-theory-for-specialized-metabolites-within-plants/&#x22; alt=&#x22;Herbivore feeding preference corroborates optimal defense theory for specialized metabolites within plants&#x22; title=&#x22;Herbivore feeding preference corroborates optimal defense theory for specialized metabolites within plants&#x22;&#x3E;&#x3C;img src=&#x22;https://dynamo.ku.dk/nyheder/selected_publications/herbivore-feeding-preference-corroborates-optimal-defense-theory-for-specialized-metabolites-within-plants/PNAS_logo.JPG/&#x22; border=&#x22;0&#x22; alt=&#x22;&#x22; /&#x3E;&#x3C;/a&#x3E;&#x3C;/div&#x3E;</description>
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<pubDate>Fri, 19 Nov 2021 14:00:00 +0100</pubDate>
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<title>Sugar transporters enable a leaf beetle to accumulate plant defense compounds</title>
<link>https://dynamo.ku.dk/nyheder/selected_publications/sugar-transporters-enable-a-leaf-beetle-to-accumulate-plant-defense-compounds/</link>
<description>Nature Communications, May 2021&#x3C;div class=&#x22;item-image&#x22;&#x3E;&#x3C;a href=&#x22;https://dynamo.ku.dk/nyheder/selected_publications/sugar-transporters-enable-a-leaf-beetle-to-accumulate-plant-defense-compounds/&#x22; alt=&#x22;Sugar transporters enable a leaf beetle to accumulate plant defense compounds&#x22; title=&#x22;Sugar transporters enable a leaf beetle to accumulate plant defense compounds&#x22;&#x3E;&#x3C;img src=&#x22;https://dynamo.ku.dk/nyheder/selected_publications/sugar-transporters-enable-a-leaf-beetle-to-accumulate-plant-defense-compounds/Logo_picture.JPG/&#x22; border=&#x22;0&#x22; alt=&#x22;&#x22; /&#x3E;&#x3C;/a&#x3E;&#x3C;/div&#x3E;</description>
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<pubDate>Wed, 19 May 2021 16:15:00 +0200</pubDate>
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<title>The GORKY glycoalkaloid transporter is indispensable for preventing tomato bitterness</title>
<link>https://dynamo.ku.dk/nyheder/selected_publications/the-gorky-glycoalkaloid-transporter-is-indispensable-for-preventing-tomato-bitterness/</link>
<description>Nature Plants, March 2021&#x3C;div class=&#x22;item-image&#x22;&#x3E;&#x3C;a href=&#x22;https://dynamo.ku.dk/nyheder/selected_publications/the-gorky-glycoalkaloid-transporter-is-indispensable-for-preventing-tomato-bitterness/&#x22; alt=&#x22;The GORKY glycoalkaloid transporter is indispensable for preventing tomato bitterness&#x22; title=&#x22;The GORKY glycoalkaloid transporter is indispensable for preventing tomato bitterness&#x22;&#x3E;&#x3C;img src=&#x22;https://dynamo.ku.dk/nyheder/selected_publications/logo/nature-plants.jpg/&#x22; border=&#x22;0&#x22; alt=&#x22;&#x22; /&#x3E;&#x3C;/a&#x3E;&#x3C;/div&#x3E;</description>
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<pubDate>Wed, 28 Apr 2021 15:15:00 +0200</pubDate>
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<title>IDDomainSpotter: Compositional bias reveals domains in long disordered protein regions - Insights from transcription factors</title>
<link>https://dynamo.ku.dk/nyheder/selected_publications/iddomainspotter-compositional-bias-reveals-domains-in-long-disordered-protein-regions-insights-from-transcription-factors/</link>
<description>Protein Science Jan. 2020&#x3C;div class=&#x22;item-image&#x22;&#x3E;&#x3C;a href=&#x22;https://dynamo.ku.dk/nyheder/selected_publications/iddomainspotter-compositional-bias-reveals-domains-in-long-disordered-protein-regions-insights-from-transcription-factors/&#x22; alt=&#x22;IDDomainSpotter: Compositional bias reveals domains in long disordered protein regions - Insights from transcription factors&#x22; title=&#x22;IDDomainSpotter: Compositional bias reveals domains in long disordered protein regions - Insights from transcription factors&#x22;&#x3E;&#x3C;img src=&#x22;https://dynamo.ku.dk/nyheder/selected_publications/iddomainspotter-compositional-bias-reveals-domains-in-long-disordered-protein-regions-insights-from-transcription-factors/Protein_science_55x55.jpg/&#x22; border=&#x22;0&#x22; alt=&#x22;&#x22; /&#x3E;&#x3C;/a&#x3E;&#x3C;/div&#x3E;</description>
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<pubDate>Fri, 12 Jun 2020 09:15:00 +0200</pubDate>
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<title>Specificity of MYB interactions relies on motifs in ordered and disordered contexts</title>
<link>https://dynamo.ku.dk/nyheder/selected_publications/specificity-of-myb-interactions-relies-on-motifs-in-ordered-and-disordered-contexts/</link>
<description>Nucleic Acids Research 2019&#x3C;div class=&#x22;item-image&#x22;&#x3E;&#x3C;a href=&#x22;https://dynamo.ku.dk/nyheder/selected_publications/specificity-of-myb-interactions-relies-on-motifs-in-ordered-and-disordered-contexts/&#x22; alt=&#x22;Specificity of MYB interactions relies on motifs in ordered and disordered contexts&#x22; title=&#x22;Specificity of MYB interactions relies on motifs in ordered and disordered contexts&#x22;&#x3E;&#x3C;img src=&#x22;https://dynamo.ku.dk/nyheder/selected_publications/specificity-of-myb-interactions-relies-on-motifs-in-ordered-and-disordered-contexts/NAR_picture.jpg/&#x22; border=&#x22;0&#x22; alt=&#x22;&#x22; /&#x3E;&#x3C;/a&#x3E;&#x3C;/div&#x3E;</description>
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<pubDate>Mon, 19 Aug 2019 09:45:00 +0200</pubDate>
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<title>GTR-mediated radial import directs accumulation of defensive glucosinolates to sulfur-rich cells (S-cells) in phloem cap of inflorescence stem of Arabidopsis thaliana.</title>
<link>https://dynamo.ku.dk/nyheder/selected_publications/gtr-mediated-radial-import-directs-accumulation-of-defensive-glucosinolates/</link>
<description>Cover story of Molecular Plant Nov.&#xA0;2019&#x3C;div class=&#x22;item-image&#x22;&#x3E;&#x3C;a href=&#x22;https://dynamo.ku.dk/nyheder/selected_publications/gtr-mediated-radial-import-directs-accumulation-of-defensive-glucosinolates/&#x22; alt=&#x22;GTR-mediated radial import directs accumulation of defensive glucosinolates to sulfur-rich cells (S-cells) in phloem cap of inflorescence stem of Arabidopsis thaliana.&#x22; title=&#x22;GTR-mediated radial import directs accumulation of defensive glucosinolates to sulfur-rich cells (S-cells) in phloem cap of inflorescence stem of Arabidopsis thaliana.&#x22;&#x3E;&#x3C;img src=&#x22;https://dynamo.ku.dk/nyheder/selected_publications/logo/Molecular.png/&#x22; border=&#x22;0&#x22; alt=&#x22;&#x22; /&#x3E;&#x3C;/a&#x3E;&#x3C;/div&#x3E;</description>
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<pubDate>Fri, 05 Jul 2019 09:45:00 +0200</pubDate>
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<title>De Novo production of benzyl glucosinolate in Escherichia coli</title>
<link>https://dynamo.ku.dk/nyheder/selected_publications/de-novo-production-of-benzyl-glucosinolate-in-escherichia-coli/</link>
<description>Metabolic Engineering 2019&#x3C;div class=&#x22;item-image&#x22;&#x3E;&#x3C;a href=&#x22;https://dynamo.ku.dk/nyheder/selected_publications/de-novo-production-of-benzyl-glucosinolate-in-escherichia-coli/&#x22; alt=&#x22;De Novo production of benzyl glucosinolate in Escherichia coli&#x22; title=&#x22;De Novo production of benzyl glucosinolate in Escherichia coli&#x22;&#x3E;&#x3C;img src=&#x22;https://dynamo.ku.dk/nyheder/selected_publications/logo/Metabolic_Eng_3.jpg/&#x22; border=&#x22;0&#x22; alt=&#x22;&#x22; /&#x3E;&#x3C;/a&#x3E;&#x3C;/div&#x3E;</description>
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<pubDate>Fri, 12 Apr 2019 10:45:00 +0200</pubDate>
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<title>Direct comparison of leaf plasmodesma structure and function in relation to phloem loading type</title>
<link>https://dynamo.ku.dk/nyheder/selected_publications/direct-comparison-of-leaf-plasmodesma-structure-and-function-in-relation-to-phloem-loading-type/</link>
<description>Plant Physiology 2019 - F1000 recommendation&#x3C;div class=&#x22;item-image&#x22;&#x3E;&#x3C;a href=&#x22;https://dynamo.ku.dk/nyheder/selected_publications/direct-comparison-of-leaf-plasmodesma-structure-and-function-in-relation-to-phloem-loading-type/&#x22; alt=&#x22;Direct comparison of leaf plasmodesma structure and function in relation to phloem loading type&#x22; title=&#x22;Direct comparison of leaf plasmodesma structure and function in relation to phloem loading type&#x22;&#x3E;&#x3C;img src=&#x22;https://dynamo.ku.dk/nyheder/selected_publications/logo/plant_physiology_55_x55.jpg/&#x22; border=&#x22;0&#x22; alt=&#x22;&#x22; /&#x3E;&#x3C;/a&#x3E;&#x3C;/div&#x3E;</description>
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<pubDate>Fri, 12 Apr 2019 10:15:00 +0200</pubDate>
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<title>Dynamic modelling of indole glucosinolate hydrolysis and its impact on auxin signaling</title>
<link>https://dynamo.ku.dk/nyheder/selected_publications/dynamic-modelling-of-indole-glycosinolate/</link>
<description>Frontiers in Plant Science, 2018&#x3C;div class=&#x22;item-image&#x22;&#x3E;&#x3C;a href=&#x22;https://dynamo.ku.dk/nyheder/selected_publications/dynamic-modelling-of-indole-glycosinolate/&#x22; alt=&#x22;Dynamic modelling of indole glucosinolate hydrolysis and its impact on auxin signaling&#x22; title=&#x22;Dynamic modelling of indole glucosinolate hydrolysis and its impact on auxin signaling&#x22;&#x3E;&#x3C;img src=&#x22;https://dynamo.ku.dk/nyheder/selected_publications/logo/55_frontiers.jpg/&#x22; border=&#x22;0&#x22; alt=&#x22;&#x22; /&#x3E;&#x3C;/a&#x3E;&#x3C;/div&#x3E;</description>
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<pubDate>Fri, 13 Jul 2018 09:30:00 +0200</pubDate>
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<title>Comparison of the relative potential for epigenetic variation to contribute to trait stability</title>
<link>https://dynamo.ku.dk/nyheder/selected_publications/comparison-of-the-relative-potential-for-epigenetic/</link>
<description>G3: Genes|Genomes|Genetics, 2018.&#x3C;div class=&#x22;item-image&#x22;&#x3E;&#x3C;a href=&#x22;https://dynamo.ku.dk/nyheder/selected_publications/comparison-of-the-relative-potential-for-epigenetic/&#x22; alt=&#x22;Comparison of the relative potential for epigenetic variation to contribute to trait stability&#x22; title=&#x22;Comparison of the relative potential for epigenetic variation to contribute to trait stability&#x22;&#x3E;&#x3C;img src=&#x22;https://dynamo.ku.dk/nyheder/selected_publications/logo/G3logo_55x55.png/&#x22; border=&#x22;0&#x22; alt=&#x22;&#x22; /&#x3E;&#x3C;/a&#x3E;&#x3C;/div&#x3E;</description>
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<title>Localization of the glucosinolate biosynthetic enzymes</title>
<link>https://dynamo.ku.dk/nyheder/selected_publications/localization-of-the-glucosinolate-biosynthetic-enzymes/</link>
<description>Physiologia Plantarum, 2018&#x3C;div class=&#x22;item-image&#x22;&#x3E;&#x3C;a href=&#x22;https://dynamo.ku.dk/nyheder/selected_publications/localization-of-the-glucosinolate-biosynthetic-enzymes/&#x22; alt=&#x22;Localization of the glucosinolate biosynthetic enzymes&#x22; title=&#x22;Localization of the glucosinolate biosynthetic enzymes&#x22;&#x3E;&#x3C;img src=&#x22;https://dynamo.ku.dk/nyheder/selected_publications/logo/plant_physiology_55_x55.jpg/&#x22; border=&#x22;0&#x22; alt=&#x22;&#x22; /&#x3E;&#x3C;/a&#x3E;&#x3C;/div&#x3E;</description>
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<pubDate>Mon, 09 Jul 2018 11:15:00 +0200</pubDate>
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<title>Differential roles of glucosinolates and camalexin at different stages of Agrobacterium-mediated transformation</title>
<link>https://dynamo.ku.dk/nyheder/selected_publications/differential-roles-of-glucosinolates/</link>
<description>Molecular Plant Pathology, 2018&#x3C;div class=&#x22;item-image&#x22;&#x3E;&#x3C;a href=&#x22;https://dynamo.ku.dk/nyheder/selected_publications/differential-roles-of-glucosinolates/&#x22; alt=&#x22;Differential roles of glucosinolates and camalexin at different stages of Agrobacterium-mediated transformation&#x22; title=&#x22;Differential roles of glucosinolates and camalexin at different stages of Agrobacterium-mediated transformation&#x22;&#x3E;&#x3C;img src=&#x22;https://dynamo.ku.dk/nyheder/selected_publications/differential-roles-of-glucosinolates/MPP_normal.jpg/&#x22; border=&#x22;0&#x22; alt=&#x22;&#x22; /&#x3E;&#x3C;/a&#x3E;&#x3C;/div&#x3E;</description>
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<pubDate>Mon, 09 Jul 2018 10:45:00 +0200</pubDate>
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<title>An evolutionary young defense metabolite influences the root growth of plants via the ancient TOR signaling pathway</title>
<link>https://dynamo.ku.dk/nyheder/selected_publications/an-evolutionary-young-defense-metabolite-influences-the-root-growth-of-plants-via-the-ancient-tor-signaling-pathway/</link>
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<pubDate>Thu, 14 Dec 2017 15:45:00 +0100</pubDate>
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<title>Reduction of antinutritional glucosinolates in Brassica oilseeds by mutation of genes encoding transporters</title>
<link>https://dynamo.ku.dk/nyheder/selected_publications/reduction-of-antinutritional-glucosinolates-in-brassica-oilseeds-by-mutation-of-genes-encoding-transporters/</link>
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<pubDate>Mon, 13 Mar 2017 14:00:00 +0100</pubDate>
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<title>Origin and evolution of transporter substrate specificity within the NPF family</title>
<link>https://dynamo.ku.dk/nyheder/selected_publications/origin-and-evolution-of-transporter-substrate-specificity-within-the-npf-family/</link>
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<title>An NPF transporter exports a central monoterpene indole alkaloid intermediate from the vacuole</title>
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<description>Nature Plants, 2017&#x3C;div class=&#x22;item-image&#x22;&#x3E;&#x3C;a href=&#x22;https://dynamo.ku.dk/nyheder/selected_publications/nat_plants/&#x22; alt=&#x22;An NPF transporter exports a central monoterpene indole alkaloid intermediate from the vacuole&#x22; title=&#x22;An NPF transporter exports a central monoterpene indole alkaloid intermediate from the vacuole&#x22;&#x3E;&#x3C;img src=&#x22;https://dynamo.ku.dk/nyheder/selected_publications/logo/nature-plants.jpg/&#x22; border=&#x22;0&#x22; alt=&#x22;&#x22; /&#x3E;&#x3C;/a&#x3E;&#x3C;/div&#x3E;</description>
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<title>Characterization of methylsulfinylalkyl glucosinolate specific polyclonal antibodies</title>
<link>https://dynamo.ku.dk/nyheder/selected_publications/characterization-of-methylsulfinylalkyl-glucosinolate-specific-polyclonal-antibodies/</link>
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<title>Rhizosecretion of stele-synthesized glucosinolates and their catabolites requires GTR-mediated import in Arabidopsis</title>
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<title>Genome wide association mapping in Arabidobsis thaliana identifies novel genes involved in linking allyl glucosinolate to altered biomass and defense</title>
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<title>Improving analytical methods for protein-protein interaction through implementation of chemically inducible dimerization</title>
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<title>The Defense Metabolite, Allyl Glucosinolate, Modulates Arabidopsis thaliana Biomass Dependent upon the Endogenous Glucosinolate Pathway</title>
<link>https://dynamo.ku.dk/nyheder/selected_publications/the-defense/</link>
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<title>Fuctional expression and characterization of plant abc transporters in Xenopus laevis oocytes for transport engineering purposes</title>
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<title>Engineering of methionine chain elongation part of glucoraphanin pathway in E. coli</title>
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<title>The Arabidopsis NPF3 protein is a GA transporter</title>
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<title>Optimization of engineered production of the glucoraphanin precursor dihomomethionine in Nicotiana benthamiana</title>
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<title>Feeding on Leaves of the Glucosinolate Transporter Mutant gtr1gtr2 Reduces Fitness of Myzus persicae</title>
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<title>A functional EXXEK motif is essential for proton coupling and active glucosinolate transport by NPF2.11</title>
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<title>Investigation of the multifunctional gene AOP3 expands the regulatoruy network fine-tuning glucosinolate production in Arabidobsis </title>
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<title>Phosphorylation at serine 52 and 635 does not alter the transport properties of glucosinolate transporter AtGTR1</title>
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<title>Transport of defense compounds from source to sink: lessons learned from glucosinolates</title>
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<title>Natural variation in cross-talk between glucosinolates and onset of flowering in Arabidopsis</title>
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<title>The Glucosinolate Biosynthetic Gene AOP2 Mediates Feed-back Regulation of Jasmonic Acid Signaling in Arabidopsis </title>
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<title>Novel approach to measure the size of plasma-membrane nanodomains in single molecule localization microscopy</title>
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<title>An Arabidopsis gene regulatory network for secondary cell wall synthesis</title>
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<title>Elucidating the Role of Transport Processes in Leaf Glucosinolate Distribution</title>
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<title>How to discover a metabolic pathway? An update on gene identification in aliphatic glucosinolate biosynthesis, regulation and transport</title>
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<title>Orchestration of plant defense systems: genes to populations</title>
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<description>Trends Plant Science, 2014&#x3C;div class=&#x22;item-image&#x22;&#x3E;&#x3C;a href=&#x22;https://dynamo.ku.dk/nyheder/selected_publications/orchestration-of-plant-defense-systems-genes-to-populations/&#x22; alt=&#x22;Orchestration of plant defense systems: genes to populations&#x22; title=&#x22;Orchestration of plant defense systems: genes to populations&#x22;&#x3E;&#x3C;img src=&#x22;https://dynamo.ku.dk/nyheder/selected_publications/logo/Trends.png/&#x22; border=&#x22;0&#x22; alt=&#x22;&#x22; /&#x3E;&#x3C;/a&#x3E;&#x3C;/div&#x3E;</description>
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<title>A unified nomenclature of NITRATE TRANSPORTER 1/PEPTIDE TRANSPORTER family members in plants</title>
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<title>De novo genetic engineering of the camalexin biosynthetic pathway</title>
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<title>Integration of Biosynthesis and Long-Distance Transport Establish Organ-Specific Glucosinolate Profiles in Vegetative Arabidopsis</title>
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<title>Hierarchical Nuclear and Cytoplasmic Genetic Architectures for Plant Growth and Defense within Arabidopsis</title>
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<title>The emerging field of transport engineering of plant specialized metabolites</title>
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<title>Assigning Gene Function in Biosynthetic Pathways: Camalexin and Beyond</title>
<link>https://dynamo.ku.dk/nyheder/selected_publications/assigning-gene-function-in-biosynthetic-pathways-camalexin-and-beyond/</link>
<description>Plant Cell, 2013&#x3C;div class=&#x22;item-image&#x22;&#x3E;&#x3C;a href=&#x22;https://dynamo.ku.dk/nyheder/selected_publications/assigning-gene-function-in-biosynthetic-pathways-camalexin-and-beyond/&#x22; alt=&#x22;Assigning Gene Function in Biosynthetic Pathways: Camalexin and Beyond&#x22; title=&#x22;Assigning Gene Function in Biosynthetic Pathways: Camalexin and Beyond&#x22;&#x3E;&#x3C;img src=&#x22;https://dynamo.ku.dk/nyheder/selected_publications/logo/PlantCell.png/&#x22; border=&#x22;0&#x22; alt=&#x22;&#x22; /&#x3E;&#x3C;/a&#x3E;&#x3C;/div&#x3E;</description>
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<title>NRT/PTR transporters are essential for translocation of glucosinolate defence compounds to seeds</title>
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