36 results on '"Hildreth, Sherry B."'
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2. Genetically Encoded, Noise-Tolerant, Auxin Biosensors in Yeast.
3. The unusual cell wall of the Lyme disease spirochaete Borrelia burgdorferi is shaped by a tick sugar
4. The dynamic response of the Arabidopsis root metabolome to auxin and ethylene is not predicted by changes in the transcriptome
5. Genetically encoded, noise-tolerant, auxin biosensors in yeast facilitate metabolic engineering and directed evolution
6. Evolutionary correlations in flavonoid production across flowers and leaves in the Iochrominae (Solanaceae)
7. A metabolomic assessment of NAC154 transcription factor overexpression in field grown poplar stem wood
8. Catechol-containing compounds are a broad class of protein aggregation inhibitors: Redox state is a key determinant of the inhibitory activities
9. Mutations that alter Arabidopsis flavonoid metabolism affect the circadian clock
10. Mutations that alter Arabidopsis flavonoid metabolism affect the circadian clock
11. Tobacco nicotine uptake permease (NUP1) affects alkaloid metabolism
12. Comparative Metabolomics of Fruits and Leaves in a Hyperdiverse Lineage Suggests Fruits Are a Key Incubator of Phytochemical Diversification
13. A Role for Inositol Pyrophosphates in the Metabolic Adaptations to Low Phosphate in Arabidopsis
14. Comparative Metabolomics of Fruits and Leaves in a Hyperdiverse Lineage Suggests Fruits Are a Key Incubator of Phytochemical Diversification
15. McpT, a Broad-Range Carboxylate Chemoreceptor in Sinorhizobium meliloti
16. Crosstalk between Flavonoids and the Plant Circadian Clock
17. A Role for Inositol Pyrophosphates in the Metabolic Adaptations to Low Phosphate in Arabidopsis
18. Comparative Metabolomics of Fruits and Leaves in a Hyperdiverse Lineage Suggests Fruits Are a Key Incubator of Phytochemical Diversification
19. A Role for Inositol Pyrophosphates in the Metabolic Adaptations to Low Phosphate in Arabidopsis
20. An Updated Perspective on Sinorhizobium meliloti Chemotaxis to Alfalfa Flavonoids
21. The dynamic response of the Arabidopsis root metabolome to auxin and ethylene is not predicted by changes in the transcriptome
22. Catechol-Containing Compounds are a Broad Class of Protein Aggregation Inhibitors: Redox State is a Key Determinant of the Inhibitory Activities
23. An Updated Perspective on Sinorhizobium meliloti Chemotaxis to Alfalfa Flavonoids
24. Catechol-Containing Compounds are a Broad Class of Amyloid Inhibitors: Redox State is a Key Determinant of the Inhibitory Activities
25. Sinorhizobium meliloti Chemoreceptor McpV Senses Short-Chain Carboxylates via Direct Binding
26. Identification of MOS9 as an interaction partner for chalcone synthase in the nucleus
27. Sinorhizobium meliloti Chemoreceptor McpV Senses Short-Chain Carboxylates via Direct Binding
28. Identification of MOS9 as an interaction partner for chalcone synthase in the nucleus
29. Identification of MOS9 as an interaction partner for chalcone synthase in the nucleus
30. Exogenous Auxin Elicits Changes in the Arabidopsis thaliana Root Proteome in a Time-Dependent Manner.
31. Exogenous Auxin Elicits Changes in the Arabidopsis thaliana Root Proteome in a Time-Dependent Manner.
32. A Comparative Analysis of the Proteins and Lipids in Breast, Leg, and Thigh Meats of a Commercial Domesticated Turkey
33. Metabolite Profiling of Soybean Seed Extracts from Near-Isogenic Low and Normal Phytate Lines Using Orthogonal Separation Strategies
34. Investigation of Protein-Protein Interactions among Nicotine Biosynthetic Enzymes and Characterization of a Nicotine Transporter
35. Cloning and characterization of a Nicotiana tabacum methylputrescine oxidase transcript
36. Exogenous Auxin Elicits Changes in the Arabidopsis thaliana Root Proteome in a Time-Dependent Manner.
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