147 results on '"Mauchline, Tim"'
Search Results
2. Geographic bioprospection of maize rhizoplane-associated bacteria for consortia construction and impact on plant growth and nutrient uptake under low P availability
3. Microbial Catabolic Activity: Methods, Pertinence, and Potential Interest for Improving Microbial Inoculant Efficiency
4. Phosphorus availability drives the effect of legume-wheat intercropping on prokaryotic community interactions
5. Repeated exposure of wheat to the fungal root pathogen Bipolaris sorokiniana modulates rhizosphere microbiome assembly and disease suppressiveness
6. The UK Crop Microbiome Cryobank: a utility and model for supporting Phytobiomes research
7. Changes in the potato rhizosphere microbiota richness and diversity occur in a growth stage-dependent manner.
8. Defining the wheat microbiome: Towards microbiome-facilitated crop production
9. Indexing the Pseudomonas specialized metabolome enabled the discovery of poaeamide B and the bananamides
10. Multiple toxins and a protease contribute to the aphid‐killing ability of Pseudomonas fluorescensPpR24
11. Phosphorus Availability Drives the Effect of Legume-Wheat Intercropping on Bacterial Community Interactions
12. Identification of microbial signatures linked to oilseed rape yield decline at the landscape scale
13. Culture-based Methods for Studying the Bacterial Root Microbiome of Wheat
14. Is there sufficient Ensifer and Rhizobium species diversity in UK farmland soils to support red clover (Trifolium pratense), white clover (T. repens), lucerne (Medicago sativa) and black medic (M. lupulina)?
15. Life in earth – the root microbiome to the rescue?
16. Correction to: Microbiome definition re-visited: old concepts and new challenges
17. Microbiome definition re-visited: old concepts and new challenges
18. Diversity and multifunctional potential for plant growth promotion in bacteria from soil and the rhizosphere.
19. Characterising the Influence of First-Year Wheat Cultivar on Pseudomonas Selection and Function in a Take-All Infected Field
20. Endophytic bacterial community composition in wheat (Triticum aestivum) is determined by plant tissue type, developmental stage and soil nutrient availability
21. Wheat dwarfing influences selection of the rhizosphere microbiome
22. Author Correction: Changes in the potato rhizosphere microbiota richness and diversity occur in a growth stage-dependent manner.
23. Land Management Legacy Affects Abundance and Function of the acdS Gene in Wheat Root Associated Pseudomonads
24. Inorganic chemical fertilizer application reduces putative plant growth-promoting rhizobacteria in wheat
25. Additional file 7 of Identification of microbial signatures linked to oilseed rape yield decline at the landscape scale
26. Additional file 10 of Identification of microbial signatures linked to oilseed rape yield decline at the landscape scale
27. Additional file 9 of Identification of microbial signatures linked to oilseed rape yield decline at the landscape scale
28. Additional file 8 of Identification of microbial signatures linked to oilseed rape yield decline at the landscape scale
29. Identification of novel aphid‐killing bacteria to protect plants
30. Inorganic Chemical Fertilizer Application to Wheat Reduces the Abundance of Putative Plant Growth-Promoting Rhizobacteria
31. Cryopreservation of a soil microbiome using a Stirling 1 cycle approach - a genomic assessment.
32. Effect of Plant Growth Promoting Bacteria on the Growth of Wheat Seedlings Subjected to Phosphate Starvation
33. Identification of novel aphid‐killing bacteria to protect plants.
34. Additional file 1 of Microbiome definition re-visited: old concepts and new challenges
35. Multitrophic interactions in the rhizosphere microbiome of wheat: from bacteria and fungi to protists
36. Multitrophic interactions in the rhizosphere microbiome of wheat: from bacteria and fungi to protists
37. Land Management and Microbial Seed Load Effect on Rhizosphere and Endosphere Bacterial Community Assembly in Wheat
38. Inorganic nitrogen application affects both taxonomical and predicted functional structure of wheat rhizosphere bacterial communities
39. De novoassembly of thePasteuria penetransgenome reveals high plasticity, host dependency, and BclA-like collagens
40. Evidence for diversifying selection of genetic regions of encoding putative collagen-like host-adhesive fibers inPasteuria penetrans
41. Co-occurrence patterns of litter decomposing communities in mangroves indicate a robust community resistant to disturbances
42. Inorganic Nitrogen Application Affects Both Taxonomical and Predicted Functional Structure of Wheat Rhizosphere Bacterial Communities
43. Erratum: Indexing the Pseudomonas specialized metabolome enabled the discovery of poaeamide B and the bananamides
44. Indexing the Pseudomonas specialized metabolome enabled the discovery of poaeamide B and the bananamides.
45. Exploitation of endophytes for sustainable agricultural intensification
46. Indexing the Pseudomonas specialized metabolome enabled the discovery of poaeamide B and the bananamides
47. Erratum: Pseudomonas spp. diversity is negatively associated with suppression of the wheat take-all pathogen
48. Pseudomonas spp. diversity is negatively associated with suppression of the wheat take-all pathogen
49. Wheat seed embryo excision enables the creation of axenic seedlings and Koch’s postulates testing of putative bacterial endophytes
50. Agricultural intensification reduces selection of putative plant growth-promoting rhizobacteria in wheat
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