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Farmers’ knowledge, use and preferences of parasitic weed management strategies in rain-fed rice production systems
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February 2016 |
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Strigolactone biosynthesis, transport and perception
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November 2020 |
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Structure-function analysis identifies highly sensitive strigolactone receptors in Striga
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October 2015 |
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Inhibition of strigolactone receptors by N-phenylanthranilic acid derivatives: Structural and functional insights
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April 2018 |
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Investigating the binding interactions of the anti-Alzheimer’s drug donepezil with CYP3A4 and P-glycoprotein
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January 2015 |
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SwissDock, a protein-small molecule docking web service based on EADock DSS
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May 2011 |
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Striga infestation of cereal crops – an unsolved problem in resource limited agriculture
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April 2008 |
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Mutation in sorghum LOW GERMINATION STIMULANT 1 alters strigolactones and causes Striga resistance
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April 2017 |
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A femtomolar-range suicide germination stimulant for the parasitic plant Striga hermonthica
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December 2018 |
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Quantitating drug-target engagement in single cells in vitro and in vivo
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December 2016 |
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PHENIX: a comprehensive Python-based system for macromolecular structure solution
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January 2010 |
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CHARMM36m: an improved force field for folded and intrinsically disordered proteins
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November 2016 |
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Observations on the current status of Orobanche and Striga problems worldwide
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May 2009 |
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Opportunities and challenges in phenotypic drug discovery: an industry perspective
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July 2017 |
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Thermoinhibition Uncovers a Role for Strigolactones in Arabidopsis Seed Germination
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December 2011 |
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Isothermal Analysis of ThermoFluor Data can readily provide Quantitative Binding Affinities
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February 2019 |
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Three mutations repurpose a plant karrikin receptor to a strigolactone receptor
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July 2021 |
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HKL -3000: the integration of data reduction and structure solution – from diffraction images to an initial model in minutes
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July 2006 |
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Evaluation of field resistance toStriga hermonthica(Del.) Benth. inSorghum bicolor(L.) Moench. The relationship with strigolactones
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September 2016 |
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DAD2 Is an α/β Hydrolase Likely to Be Involved in the Perception of the Plant Branching Hormone, Strigolactone
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November 2012 |
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AutoDock4 and AutoDockTools4: Automated docking with selective receptor flexibility
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December 2009 |
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Control-theStrigaconundrum
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May 2009 |
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Target-based selectivity of strigolactone agonists and antagonists in plants and their potential use in agriculture
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April 2018 |
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GROMACS: High performance molecular simulations through multi-level parallelism from laptops to supercomputers
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September 2015 |
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Avogadro: an advanced semantic chemical editor, visualization, and analysis platform
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August 2012 |
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Structural analysis of HTL and D14 proteins reveals the basis for ligand selectivity in Striga
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September 2018 |
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Found in Translation: Applying Lessons from Model Systems to Strigolactone Signaling in Parasitic Plants
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July 2017 |
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Highly accurate protein structure prediction with AlphaFold
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July 2021 |
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The Strigolactone Story
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July 2010 |
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VMD: Visual molecular dynamics
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February 1996 |
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Role of Molecular Dynamics and Related Methods in Drug Discovery
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February 2016 |
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Stereospecificity in strigolactone biosynthesis and perception
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April 2016 |
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Structural basis for specific inhibition of the highly sensitive Sh HTL 7 receptor
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July 2018 |
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Molecular Docking: Shifting Paradigms in Drug Discovery
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September 2019 |
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Probing strigolactone receptors in Striga hermonthica with fluorescence
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August 2015 |
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Flexibility of the petunia strigolactone receptor DAD2 promotes its interaction with signaling partners
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March 2020 |
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Coot model-building tools for molecular graphics
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November 2004 |
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Whyin vivomay not equalin vitro- new effectors revealed by measurement of enzymatic activities under the samein vivo-like assay conditions
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October 2012 |
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Management of Infection by Parasitic Weeds: A Review
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September 2020 |
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Molecular basis for high ligand sensitivity and selectivity of strigolactone receptors in Striga
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January 2021 |
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In‐silico analysis of the strigolactone ligand‐receptor system
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September 2020 |
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LigPlot+: Multiple Ligand–Protein Interaction Diagrams for Drug Discovery
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October 2011 |
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Triazole Ureas Covalently Bind to Strigolactone Receptor and Antagonize Strigolactone Responses
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January 2019 |
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Accurate prediction of protein structures and interactions using a three-track neural network
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July 2021 |
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Infection time and density influence the response of sorghum to the parasitic angiosperm Striga hermonthica
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September 1999 |
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The Effect of Virulence and Resistance Mechanisms on the Interactions between Parasitic Plants and Their Hosts
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November 2020 |
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Strigolactones as Germination Stimulants for Root Parasitic Plants
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April 2010 |
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A classification system for seed dormancy
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March 2004 |
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Rationally Designed Strigolactone Analogs as Antagonists of the D14 Receptor
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May 2018 |
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Molecular basis of strigolactone perception in root-parasitic plants: aiming to control its germination with strigolactone agonists/antagonists
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October 2019 |
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Practicality of the suicidal germination approach for controlling Striga hermonthica
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February 2016 |
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High-Throughput Crystallization Screening
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book
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January 2014 |
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Delayed or early sowing: Timing as parasitic weed control strategy in rice is species and ecosystem dependent
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journal
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December 2017 |
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Structural Basis of Karrikin and Non-natural Strigolactone Perception in Physcomitrella patens
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journal
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January 2019 |
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Small-molecule antagonists of germination of the parasitic plant Striga hermonthica
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journal
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July 2016 |
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Changes in the sensitivity of parasitic weed seeds to germination stimulants
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December 2004 |
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SMAX1-dependent seed germination bypasses GA signalling in Arabidopsis and Striga
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May 2020 |
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Crystal structures of two phytohormone signal-transducing α/β hydrolases: karrikin-signaling KAI2 and strigolactone-signaling DWARF14
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February 2013 |
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DWARF14 is a non-canonical hormone receptor for strigolactone
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August 2016 |