Sort   by:  
 Page size 
Bacteria that inhabit the rhizosphere of agricultural crops can have a beneficial effect on crop growth, including through the solubilisation and remineralisation of complex forms of phosphorus (P). However[1], our understanding of the bacterial proteomic response to P stress is limited. Here, ex...
ORGANISM(S): Pseudomonas putida (strain BIRD-1) 
2016-08-22 | PXD003731 | Pride
Bacteria that inhabit the rhizosphere of agricultural crops can have a beneficial effect on crop growth, including through the solubilisation and remineralisation of complex forms of phosphorus (P). However[1], our understanding of the bacterial proteomic response to P stress is limited. Here, exop...
ORGANISM(S): Pseudomonas putida (strain BIRD-1) 
2016-08-22 | PXD003830 | Pride
Bacteria that inhabit the rhizosphere of agricultural crops can have a beneficial effect on crop growth, including through the solubilisation and remineralisation of complex forms of phosphorus (P). However [1], our understanding of the bacterial proteomic response to P stress is limited. Here, ex...
ORGANISM(S): Pseudomonas putida (strain BIRD-1) 
2016-08-22 | PXD003829 | Pride
Bacteria that inhabit the rhizosphere of agricultural crops can have a beneficial effect on crop growth, including through the solubilisation and remineralisation of complex forms of phosphorus (P). However[1], our understanding of the bacterial proteomic response to P stress is limited. Here, exop...
ORGANISM(S): Pseudomonas putida (strain BIRD-1) 
2016-08-22 | PXD003826 | Pride
Bacteria that inhabit the rhizosphere of agricultural crops can have a beneficial effect on crop growth, including through the solubilisation and remineralisation of complex forms of phosphorus (P). However [1], our understanding of the bacterial proteomic response to P stress is limited. Here, ex...
ORGANISM(S): Pseudomonas fluorescens (strain SBW25) 
2016-08-22 | PXD003827 | Pride
Bacteria that inhabit the rhizosphere of agricultural crops can have a beneficial effect on crop growth, including through the solubilisation and remineralisation of complex forms of phosphorus (P). However[1], our understanding of the bacterial proteomic response to P stress is limited. Here, exop...
ORGANISM(S): Pseudomonas putida (strain BIRD-1) 
2016-08-22 | PXD004065 | Pride
Bacteria that inhabit the rhizosphere of agricultural crops can have a beneficial effect on crop growth, including through the solubilisation and remineralisation of complex forms of phosphorus (P). However [1], our understanding of the bacterial proteomic response to P stress is limited. Here, ex...
ORGANISM(S): Pseudomonas putida (strain BIRD-1) 
2016-08-22 | PXD004064 | Pride
Bacteria that inhabit the rhizosphere of agricultural crops can have a beneficial effect on crop growth, including through the solubilisation and remineralisation of complex forms of phosphorus (P). However [1], our understanding of the bacterial proteomic response to P stress is limited. Here, ex...
ORGANISM(S): Pseudomonas stutzeri (Pseudomonas perfectomarina) 
2016-08-22 | PXD003828 | Pride
Advances in DNA sequencing technologies has drastically changed our perception of the structure and complexity of the plant microbiome. By comparison, our ability to accurately identify the metabolically active fraction of soil microbiota and its specific functional role in augmenting plant health i...
ORGANISM(S): Pseudomonas putida (strain BIRD-1) 
2022-07-01 | PXD033802 | Pride
Advances in DNA sequencing technologies has drastically changed our perception of the structure and complexity of the plant microbiome. By comparison, our ability to accurately identify the metabolically active fraction of soil microbiota and its specific functional role in augmenting plant health i...
ORGANISM(S): Brassica napus (Rape) 
2022-07-01 | PXD033803 | Pride
Sort   by:  
 Page size