215
N
Nanosensors, 134
Natural products (NPs), 159
Natural resistance-associated macrophage
protein (NRAMP) family, 103
Neovossia indica, 128
Neurospora crassa, 100, 101, 112, 132
Non-ribosomal peptide (NRP), 159
Non-ribosomal peptide synthetase (NRPS),
17, 143, 150, 158, 159, 176
dependent biosynthesis, 57, 58
independent, 56–59
independent biosynthesis, 58, 59
multi enzymes dependent, 56
Nuclear magnetic resonance (NMR)
techniques, 165
O
Oxygen, 107
P
Parasitic metal changes, 92
Parasitic-mediated corruption, 91
Pathogenicity, 9, 206, 207
Pattern recognition receptors (PRRs), 59
Penicillium, 164, 201
Penicillium parvum, 100
Peptide-based inhibitors, 23, 24
Peptidogenomics approach, 165
Perisporiopsis melioloides, 205
Persisters, 13
Phytosiderophores, 108
Plant growth-promoting rhizobacteria
(PGPR), 72
Plant immune responses, 59, 60
Positron emission tomography (PET), 45, 135
Protein Data Bank (PDB), 20
Proteomic Investigation of Secondary
Metabolism (PrISM), 164
Pseudomonas aeruginosa, 22, 134
Pseudomonas protegens, 24
R
Radioimaging, 135
Ralstonia eutropha, 93
Reactive oxygen species (ROS), 206
Redox responses, 84
Reductive iron acquisition (RIA) system,
102, 142
Remediation, 85
Remediation ex situ, 81
Remediation in situ, 80
Residual liquid/oil sludge, 82
Rhinocerebral rhizopus, 204
Rhizopus microspores, 104
Rhizopus microsporus, 17
Rhizopus oryzae, 207
Rhodotorula pilmanae, 100
RP-HPLC technique, 151
S
Saccharomyces cerevisiae, 8, 101, 103, 120
Saccharomyces species, 119
Salmycins, 134
Scedosporium apiospermum, 203
Seagoing parasites, 90
Siderocalins, 150
Sideromycins, 134
Siderophore
benefits, 71, 72
biological inoculants, 70, 71
carboxylate, 71
hydroxamates, 71
iron-chelating secondary metabolites, 71
mechanism of action, 72
metal contamination, 70
microbial strain, 71
phytoremediation studies, 71
soil fertility, 69, 70
Siderophore biosynthesis, 149, 150
Siderophore biosynthetic pathway, 39, 40, 42
Siderophore inhibitors
antimicrobial resistance, 14
autoinducers, 14
biomonitor organism, 19
fungal pathogens, 16
hemoproteins, 14
iron-binding proteins, 14
iron carriers, 14
iron chelators, 14
microbial infections, 13
microbial nutrients, 14
microbial population, 15
microorganism, 14
national and international agencies, 14
nutritional deficiency, 16
nutritional immunity, 14
pathogens, 14
production, 16–18
quorum sensing, 14, 15
structural similarity approach, 19
Siderophore mimics, 181
Siderophore-drug conjugate, 181
Siderophore-iron transporter (SIT), 102, 120
Index
N
Nanosensors, 134
Natural products (NPs), 159
Natural resistance-associated macrophage
protein (NRAMP) family, 103
Neovossia indica, 128
Neurospora crassa, 100, 101, 112, 132
Non-ribosomal peptide (NRP), 159
Non-ribosomal peptide synthetase (NRPS),
17, 143, 150, 158, 159, 176
dependent biosynthesis, 57, 58
independent, 56–59
independent biosynthesis, 58, 59
multi enzymes dependent, 56
Nuclear magnetic resonance (NMR)
techniques, 165
O
Oxygen, 107
P
Parasitic metal changes, 92
Parasitic-mediated corruption, 91
Pathogenicity, 9, 206, 207
Pattern recognition receptors (PRRs), 59
Penicillium, 164, 201
Penicillium parvum, 100
Peptide-based inhibitors, 23, 24
Peptidogenomics approach, 165
Perisporiopsis melioloides, 205
Persisters, 13
Phytosiderophores, 108
Plant growth-promoting rhizobacteria
(PGPR), 72
Plant immune responses, 59, 60
Positron emission tomography (PET), 45, 135
Protein Data Bank (PDB), 20
Proteomic Investigation of Secondary
Metabolism (PrISM), 164
Pseudomonas aeruginosa, 22, 134
Pseudomonas protegens, 24
R
Radioimaging, 135
Ralstonia eutropha, 93
Reactive oxygen species (ROS), 206
Redox responses, 84
Reductive iron acquisition (RIA) system,
102, 142
Remediation, 85
Remediation ex situ, 81
Remediation in situ, 80
Residual liquid/oil sludge, 82
Rhinocerebral rhizopus, 204
Rhizopus microspores, 104
Rhizopus microsporus, 17
Rhizopus oryzae, 207
Rhodotorula pilmanae, 100
RP-HPLC technique, 151
S
Saccharomyces cerevisiae, 8, 101, 103, 120
Saccharomyces species, 119
Salmycins, 134
Scedosporium apiospermum, 203
Seagoing parasites, 90
Siderocalins, 150
Sideromycins, 134
Siderophore
benefits, 71, 72
biological inoculants, 70, 71
carboxylate, 71
hydroxamates, 71
iron-chelating secondary metabolites, 71
mechanism of action, 72
metal contamination, 70
microbial strain, 71
phytoremediation studies, 71
soil fertility, 69, 70
Siderophore biosynthesis, 149, 150
Siderophore biosynthetic pathway, 39, 40, 42
Siderophore inhibitors
antimicrobial resistance, 14
autoinducers, 14
biomonitor organism, 19
fungal pathogens, 16
hemoproteins, 14
iron-binding proteins, 14
iron carriers, 14
iron chelators, 14
microbial infections, 13
microbial nutrients, 14
microbial population, 15
microorganism, 14
national and international agencies, 14
nutritional deficiency, 16
nutritional immunity, 14
pathogens, 14
production, 16–18
quorum sensing, 14, 15
structural similarity approach, 19
Siderophore mimics, 181
Siderophore-drug conjugate, 181
Siderophore-iron transporter (SIT), 102, 120
Index
