233 results on '"Fabra, Adriana"'
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2. The native strain Paenibacillus sp. A224 induces systemic tolerance and mitigates stresses caused in peanut plants by high temperatures and the pathogen Sclerotium rolfsii
3. Role of phytohormones in legumes infected intercellularly by rhizobia without infection threads formation
4. Induced systemic resistance - like responses elicited by rhizobia
5. The Protection of the Marine Environment Pollution and Fisheries
6. Simultaneous inoculation with beneficial and pathogenic microorganisms modifies peanut plant responses triggered by each microorganism
7. Growth promotion of rapeseed (Brassica napus) associated with the inoculation of phosphate solubilizing bacteria
8. Genetic diversity and symbiotic efficiency of rhizobial strains isolated from nodules of peanut (Arachis hypogaea L.) in Senegal
9. Bacterial Endophytes of Plants: Diversity, Invasion Mechanisms and Effects on the Host
10. Effects of P limitation and molecules from peanut root exudates on pqqE gene expression and pqq promoter activity in the phosphate-solubilizing strain Serratia sp. S119
11. Induced systemic resistance and symbiotic performance of peanut plants challenged with fungal pathogens and co-inoculated with the biocontrol agent Bacillus sp. CHEP5 and Bradyrhizobium sp. SEMIA6144
12. Identification of miRNAs linked to peanut nodule functional processes
13. Starting points in plant-bacteria nitrogen-fixing symbioses : intercellular invasion of the roots
14. Effect of pesticides application on peanut (Arachis hypogaea L.) associated phosphate solubilizing soil bacteria
15. Role of bacterial pyrroloquinoline quinone in phosphate solubilizing ability and in plant growth promotion on strain Serratia sp. S119
16. Endophytic Bacteria and Their Role in Legumes Growth Promotion
17. Evolution of LysM-RLK Gene Family in Wild and Cultivated Peanut Species
18. Influence of cadmium on the symbiotic interaction established between peanut (Arachis hypogaea L.) and sensitive or tolerant bradyrhizobial strains
19. Biocontrol bacterial communities associated with diseased peanut (Arachis hypogaea L.) plants
20. Sequence and expression analysis of putative Arachis hypogaea (peanut) Nod factor perception proteins
21. Beneficial effects of native phosphate solubilizing bacteria on peanut (Arachis hypogaea L) growth and phosphorus acquisition
22. Phosphate-solubilizing peanut associated bacteria: screening for plant growth-promoting activities
23. Peanut priming induced by biocontrol agents
24. Genetic diversity of rhizobia nodulating Arachis hypogaea L. in Central Argentinean Soils
25. Interrelationships between Bacillus sp. CHEP5 and Bradyrhizobium sp. SEMIA6144 in the induced systemic resistance against Sclerotium rolfsii and symbiosis on peanut plants
26. Experimental evidences of pSym transfer in a native peanut-associated rhizobia
27. Nod factor‐independent ‘crack‐entry’ symbiosis in dalbergoid legume Arachis hypogaea
28. The effects of pesticides on bacterial nitrogen fixers in peanut-growing area
29. Genetic diversity of phosphate-solubilizing peanut (Arachis hypogaea L.) associated bacteria and mechanisms involved in this ability
30. Diversity and Symbiotic Effectiveness of Indigenous Rhizobia-Nodulating Adesmia bicolor in Soils of Central Argentina
31. Effects of single and co-inoculation with native phosphate solubilising strain Pantoea sp J49 and the symbiotic nitrogen fixing bacterium Bradyrhizobium sp SEMIA 6144 on peanut (Arachis hypogaea L.) growth
32. Involvement of glutathione and enzymatic defense system against cadmium toxicity in Bradyrhizobium sp. strains (peanut symbionts)
33. A Study on the Prevalence of Bacteria that Occupy Nodules within Single Peanut Plants
34. Cadmium Accumulation and Tolerance in Bradyrhizobium spp. (Peanut Microsymbionts)
35. Symbiotic nitrogen fixation and nitrate reduction in two peanut cultivars with different growth habit and branching pattern structures
36. First insights into the role of PQQ cofactor in the modulation of bacterial redox state and in the early interaction with peanut (Arachis hypogaea L.)
37. Signal molecules in the peanut–bradyrhizobia interaction
38. Influence of pH and calcium on the growth, polysaccharide production and symbiotic association of Sinorhizobium meliloti SEMIA 116 with alfalfa roots
39. Genome sequence of the endophytic strain Enterobacter sp. J49, a potential biofertilizer for peanut and maize
40. Response of Azospirillum brasilense Cd to Sodium Chloride Stress
41. Peanut nodulation kinetics in response to low pH
42. Role of rhizobial exopolysaccharides in crack entry/intercellular infection of peanut
43. Interaction of the fungicide mancozeb and Rhizobium sp. in pure culture and under field conditions
44. The Convention on the Conservation of Antarctic Marine Living Resources (CCAMLR) and the ecosystem approach.
45. Role of glutathione in the growth of Bradyrhizobium sp. (peanut microsymbiont) under different environmental stresses and in symbiosis with the host plant
46. A calcium-dependent bacterial surface protein is involved in the attachment of rhizobia to peanut roots
47. Strain Serratia sp. S119: A potential biofertilizer for peanut and maize and a model bacterium to study phosphate solubilization mechanisms
48. Untangling Squid: Regulatory Gaps and Opportunities to Improve High Seas Squid Fisheries Management.
49. Indigenous Peoples, Environmental Degradation, and Human Rights: a Case Study
50. Alterations in root colonization and nodC gene induction in the peanut–rhizobia interaction under acidic conditions
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