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1. Biocontrol traits of Bacillus licheniformis GL174, a culturable endophyte of Vitis vinifera cv. Glera

2. The Role of the Endophytic Microbiome in the Grapevine Response to Environmental Triggers

3. Salt tolerance in indica rice cell cultures depends on a fine tuning of ROS signalling and homeostasis.

4. H2O2 Signature and Innate Antioxidative Profile Make the Difference Between Sensitivity and Tolerance to Salt in Rice Cells

5. Transcriptome and Cell Physiological Analyses in Different Rice Cultivars Provide New Insights Into Adaptive and Salinity Stress Responses

6. Fast Regulation of Hormone Metabolism Contributes to Salt Tolerance in Rice (Oryza sativa spp. Japonica, L.) by Inducing Specific Morpho-Physiological Responses

7. Mitochondria change dynamics and morphology during grapevine leaf senescence.

19. Louis I. Kahn in Rome and Venice : Tangible Forms

20. The Role of the Endophytic Microbiome in the Grapevine Response to Environmental Triggers

21. Salt tolerance in indica rice cell cultures depends on a fine tuning of ROS signalling and homeostasis

22. Rome, the place of ‘realisation’

28. Sun and shadow

35. Transcriptome and Cell Physiological Analyses in Different Rice Cultivars Provide New Insights Into Adaptive and Salinity Stress Responses

36. Plant Cell Cultures as Model Systems to Study Programmed Cell Death

37. Fast Regulation of Hormone Metabolism Contributes to Salt Tolerance in Rice (Oryza sativa spp. Japonica, L.) by Inducing Specific Morpho-Physiological Responses

38. Plant cell cultures as model systems to study programmed cell death

39. Rome and the Legacy of Louis I. Kahn

40. Transcriptome analysis of Medicago truncatula leaf senescence: similarities and differences in metabolic and transcriptional regulations as compared with Arabidopsis , nodule senescence and nitric oxide signalling

41. Growth and senescence of Medicago truncatula cultured cells are associated with characteristic mitochondrial morphology

42. Somatic embryogenesis from stigmas and styles of grapevine

43. Mitochondria Change Dynamics and Morphology during Grapevine Leaf Senescence

44. Agroinfiltration of grapevine leaves for fast transient assays of gene expression and for long-term production of stable transformed cells

45. Potassium and carrot embryogenesis: Are K+channels necessary for development?

47. Agroinfiltration of grapevine leaves for fast transient assays of gene expression and for long-term production of stable transformed cells.

48. SOMATIC EMBRYOGENESIS FROM STIGMAS AND STYLES OF GRAPEVINE.

49. Potassium and carrot embryogenesis: Are K+channels necessary for development?

50. Evidence suggesting protein tyrosine phosphorylation in plants depends on the developmental conditions

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