224 results on '"Champion, Antony"'
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2. Transcriptomic and metabolomic reveal OsCOI2 as the jasmonate-receptor master switch in rice root.
3. Nitrate and ammonium, the yin and yang of nitrogen uptake: a time-course transcriptomic study in rice.
4. Glutaredoxin regulation of primary root growth is associated with early drought stress tolerance in pearl millet
5. Author Response: Glutaredoxin regulation of primary root growth is associated with early drought stress tolerance in pearl millet
6. Author Response: Glutaredoxin regulation of primary root growth is associated with early drought stress tolerance in pearl millet
7. Genetic analysis of the rice jasmonate receptors reveals specialized functions for OsCOI2
8. Advances in Frankia genome studies and molecular aspects of tolerance to environmental stresses
9. Establishment of Actinorhizal Symbiosis in Response to Ethylene, Salicylic Acid, and Jasmonate
10. Use of Fluorescent Reporters to Analyse Dynamic and Spatial Responses to Mechanical Wounding
11. CRISPR/Cas9-Mediated Gene Editing of the Jasmonate Biosynthesis OsAOC Gene in Rice
12. Remediation of Heavy Metal-Contaminated Soils and Enhancement of Their Fertility with Actinorhizal Plants
13. Glutaredoxin regulation of primary root growth confers early drought stress tolerance in pearl millet
14. Jasmonate signaling controls negative and positive effectors of salt stress tolerance in rice
15. Unraveling the Genetic Elements Involved in Shoot and Root Growth Regulation by Jasmonate in Rice Using a Genome-Wide Association Study
16. Genetic analysis of the rice jasmonate receptors reveals specialized function forOsCOI2
17. Rapid evolution of an RNA virus to escape recognition by a rice nucleotide‐binding and leucine‐rich repeat domain immune receptor
18. Bacterial blight of cotton
19. Inhibition of Auxin Signaling in Frankia Species-Infected Cells in Casuarina glauca Nodules Leads to Increased Nodulation
20. Establishment of Actinorhizal Symbioses
21. PUCHI represses early meristem formation in developing lateral roots of Arabidopsis thaliana
22. Symbiotic ability of diverse Frankia strains on Casuarina glauca plants in hydroponic conditions
23. Tolerance to environmental stress by the nitrogen-fixing actinobacterium Frankia and its role in actinorhizal plants adaptation
24. CROWN ROOTLESS1 binds DNA with a relaxed specificity and activates OsROP and OsbHLH044 genes involved in crown root formation in rice
25. Physiological and genetic control of transpiration efficiency in African rice, Oryza glaberrima Steud
26. Regulatory Mechanisms Underlying Oil Palm Fruit Mesocarp Maturation, Ripening, and Functional Specialization in Lipid and Carotenoid Metabolism
27. The AP2/ERF Domain Transcription Factor ORA59 Integrates Jasmonic Acid and Ethylene Signals in Plant Defense
28. Rapid evolution of an RNA virus to escape recognition by a rice nucleotide‐binding and leucine‐rich repeat domain immune receptor.
29. How Transcriptomics Revealed New Information on Actinorhizal Symbioses Establishment and Evolution
30. High-throughput phenotyping reveals a link between transpiration efficiency and transpiration restriction under high evaporative demand and new loci controlling water use-related traits in African rice, Oryza glaberrima Steud.
31. Correction: Corrigendum: A fluorescent hormone biosensor reveals the dynamics of jasmonate signalling in plants
32. Two GCC boxes and AP2/ERF-domain transcription factor ORA59 in jasmonate/ethylene-mediated activation of the PDF1.2 promoter in Arabidopsis
33. Transcriptome profiling of laser-captured crown root primordia reveals new pathways activated during early stages of crown root formation in rice
34. Physiological and molecular comparative analysis of two contrasting rice varieties under jasmonic acid treatment
35. Effect of Casuarina Plantations Inoculated with Arbuscular Mycorrhizal Fungi and Frankia on the Diversity of Herbaceous Vegetation in Saline Environments in Senegal
36. What Makes Adventitious Roots?
37. Additional file 1: of Unraveling the Genetic Elements Involved in Shoot and Root Growth Regulation by Jasmonate in Rice Using a Genome-Wide Association Study
38. Jasmonates : the master regulator of rice development, adaptation and defense
39. Additional file 4: of Unraveling the Genetic Elements Involved in Shoot and Root Growth Regulation by Jasmonate in Rice Using a Genome-Wide Association Study
40. Additional file 2: of Unraveling the Genetic Elements Involved in Shoot and Root Growth Regulation by Jasmonate in Rice Using a Genome-Wide Association Study
41. Unraveling the genetic elements involved in shoot and root growth regulation by jasmonate in rice using a genome-wide association study
42. Additional file 6: of Unraveling the Genetic Elements Involved in Shoot and Root Growth Regulation by Jasmonate in Rice Using a Genome-Wide Association Study
43. Inference of the gene regulatory network acting downstream of CROWN ROOTLESS 1 in rice reveals a regulatory cascade linking genes involved in auxin signaling, crown root initiation, and root meristem specification and maintenance
44. Actinorhizal signaling molecules : Frankia root hair deforming factor shares properties with NIN inducing factor
45. SELECTION OF ARBUSCULAR MYCORRHIZAL FUNGI TO IMPROVE SALT TOLERANCE OF CASUARINA EQUISETIFOLIA AND CASUARINA GLAUCA
46. Inference of the gene regulatory network acting downstream of CROWN ROOTLESS1 in rice reveals a regulatory cascade linking genes involved in auxin signaling, crown root initiation, and root meristem specification and maintenance
47. Jasmonates—the Master Regulator of Rice Development, Adaptation and Defense
48. Genomic, transcriptomic, and proteomic approaches towards understanding the molecular mechanisms of salt tolerance in Frankia strains isolated from Casuarina trees
49. Additional file 5: of Genomic, transcriptomic, and proteomic approaches towards understanding the molecular mechanisms of salt tolerance in Frankia strains isolated from Casuarina trees
50. Additional file 6: Table S3. of Genomic, transcriptomic, and proteomic approaches towards understanding the molecular mechanisms of salt tolerance in Frankia strains isolated from Casuarina trees
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