788 results on '"Gresshoff, Peter M"'
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2. Characterisation of Medicago truncatula CLE34 and CLE35 in nitrate and rhizobia regulation of nodulation
3. Role of hydroxymethylglutaryl-coenzyme A (HMG-CoA) reductase 1 in nodule development of soybean
4. Soybean CLE peptides and their CLAVATA-like signaling pathways
5. Hypernodulating soybean mutant line nod4 lacking ‘Autoregulation of Nodulation’ (AON) has limited root-to-shoot water transport capacity
6. Multiple Arbitrary Amplicon Profiling Using Short Oligonucleotide Primers
7. Cell Cycle Genes and Their Plant Homologues
8. Plant Telomeres as Molecular Markers
9. A differential k-mer analysis pipeline for comparing RNA-Seq transcriptome and meta-transcriptome datasets without a reference
10. Long-Distance Signaling in Nodulation Directed by a CLAVATA1-like Receptor Kinase
11. Differential Sensitivity of Nodulation to Ethylene in Soybean cv. Bragg and a Supernodulating Mutant
12. Functional genomics dissection of the nodulation autoregulation pathway (AON) in soybean (Glycine max)
13. Physiological Implications of Legume Nodules Associated with Soil Acidity
14. Commercial Applications of DNA Profiling by Amplification with Arbitrary Oligonucleotide Primers
15. Legumes Regulate Symbiosis with Rhizobia via Their Innate Immune System
16. Functional analysis of duplicated Symbiosis Receptor Kinase (SymRK) genes during nodulation and mycorrhizal infection in soybean (Glycine max)
17. MicroRNA167-Directed Regulation of the Auxin Response Factors GmARF8a and GmARF8b Is Required for Soybean Nodulation and Lateral Root Development
18. Identification of the Primary Lesion of Toxic Aluminum in Plant Roots
19. The value of biodiversity in legume symbiotic nitrogen fixation and nodulation for biofuel and food production
20. Systemic Signalling in Legume Nodulation: Nodule Formation and Its Regulation
21. A nitrogen fixing symbiosis-specific pathway required for legume flowering
22. Genome-wide annotation and characterization of CLAVATA/ESR (CLE) peptide hormones of soybean ( Glycine max ) and common bean ( Phaseolus vulgaris ), and their orthologues of Arabidopsis thaliana
23. Molecular Biology of Symbiotic Nitrogen Fixation
24. Soybean miR172c Targets the Repressive AP2 Transcription Factor NNC1 to Activate ENOD40 Expression and Regulate Nodule Initiation
25. Identification of two genes encoding microsomal oleate desaturases (FAD2) from the biodiesel plant Pongamia pinnata L.
26. Functional Genomics of the Regulation of Nodule Number in Legumes
27. Workshop summary: How can we couple the genetics and physiology of nodule function?
28. Rhizobial and Mycorrhizal Symbioses in Lotus japonicus Require Lectin Nucleotide Phosphohydrolase, Which Acts Upstream of Calcium Signaling
29. Structure–function analysis of the GmRIC1 signal peptide and CLE domain required for nodulation control in soybean
30. Systemic Regulation of Soybean Nodulation by Acidic Growth Conditions
31. Isolation and Characterization of Circadian Clock Genes in the Biofuel Plant Pongamia (Millettia pinnata)
32. Seed shape in model legumes: Approximation by a cardioid reveals differences in ethylene insensitive mutants of Lotus japonicus and Medicago truncatula
33. Molecular mechanisms controlling legume autoregulation of nodulation
34. A functional-structural modelling approach to autoregulation of nodulation
35. Suppression of hypernodulation in soybean by a leaf-extracted, NARK- and Nod factor-dependent, low molecular mass fraction
36. The REDUCED LEAFLET Genes Encode Key Components of the trans-Acting Small Interfering RNA Pathway and Regulate Compound Leaf and Flower Development in Lotus japonicus
37. Ethylene insensitivity conferred by a mutated Arabidopsis ethylene receptor gene alters nodulation in transgenic Lotus japonicus
38. Advances in the positional cloning of nodulation genes in soybean
39. Molecular and Genetic Insights into Shoot Control of Nodulation in Soybean
40. Spatiotemporal changes in gibberellin content are required for soybean nodulation
41. Chapter Six - Soybean CLE peptides and their CLAVATA-like signaling pathways
42. pHairyRed: A Novel Binary Vector Containing the DsRed2 Reporter Gene for Visual Selection of Transgenic Hairy Roots
43. Tree legumes as feedstock for sustainable biofuel production: Opportunities and challenges
44. Plant Function in Nodulation and Nitrogen Fixation in Legumes
45. Functional Genomics and Genetic Analysis of Nodulation of Soybean and Lotus japonicus
46. Plant Genetic Control of Nodulation in Legumes
47. Spatiotemporal changes in gibberellin content are required for soybean nodulation
48. Transformation of Lotus japonicus using the herbicide resistance bar gene as a selectable marker
49. Inoculation and nitrate alter phytohormone levels in soybean roots: differences between a supernodulating mutant and the wild type
50. De novo sequencing and characterization of seed transcriptome of the tree legume Millettia pinnata for gene discovery and SSR marker development
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