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Fitness for 5 genes in
Pseudomonas fluorescens SBW25-INTG
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Top 30 experiments (either direction), sorted by average fitness
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500 nt
PFLU_RS22000 and PFLU_RS31765 are separated by 37 nucleotides
PFLU_RS31765 and PFLU_RS22005 are separated by 861 nucleotides
PFLU_RS22005 and PFLU_RS22010 overlap by 4 nucleotides
PFLU_RS22010 and PFLU_RS22015 overlap by 8 nucleotides
PFLU_RS22000: PFLU_RS22000 - bifunctional adenosylcobinamide kinase/adenosylcobinamide-phosphate guanylyltransferase, at 4,951,392 to 4,951,913
_RS22000
PFLU_RS31765: PFLU_RS31765 - hypothetical protein, at 4,951,951 to 4,952,187
_RS31765
PFLU_RS22005: PFLU_RS22005 - cobyric acid synthase, at 4,953,049 to 4,954,500
_RS22005
PFLU_RS22010: PFLU_RS22010 - threonine-phosphate decarboxylase, at 4,954,497 to 4,955,486
_RS22010
PFLU_RS22015: PFLU_RS22015 - cobalamin biosynthesis protein, at 4,955,479 to 4,956,387
_RS22015
Group
Condition
PFLU
_RS22000
PFLU
_RS31765
PFLU
_RS22005
PFLU
_RS22010
PFLU
_RS22015
stress
Glucose (C) and Ammonium chloride (N); with MOPS; with chloride
-2.7
+0.3
-2.2
-2.4
-3.1
stress
D,L-Malic Acid (C) and Ammonium chloride (N); with TAPS; with chloride
-2.5
-0.6
-1.7
-2.3
-2.9
stress
Glucose (C) and Ammonium chloride (N); with MOPS; with chloride
-2.4
-0.1
-2.4
-2.3
-2.3
no stress control
4-Hydroxybenzoic Acid (C) and Ammonium chloride (N); with MOPS
-1.9
-0.4
-2.3
-2.6
-2.4
no stress control
4-Hydroxybenzoic Acid (C) and Ammonium chloride (N); with MOPS
-1.8
-0.7
-2.0
-2.5
-2.5
stress
D,L-Malic Acid (C) and Ammonium chloride (N); with TAPS; with chloride
-1.4
-1.0
-2.0
-2.4
-2.1
no stress control
4-Hydroxybenzoic Acid (C) and Ammonium chloride (N); with MOPS
-1.9
-0.1
-1.7
-2.4
-2.3
stress
Glucose (C) and Ammonium chloride (N); with MOPS; with chloride
-1.8
+0.5
-2.2
-2.3
-2.4
stress
D,L-Malic Acid (C) and Ammonium chloride (N); with TAPS; with chloride
-1.3
+0.1
-2.0
-2.5
-2.4
stress
D,L-Malic Acid (C) and Ammonium chloride (N); with TAPS; with chloride
-2.4
+0.3
-1.9
-1.8
-2.2
stress
Glucose (C) and Ammonium chloride (N); with MOPS; with chloride
-2.2
-0.0
-2.2
-1.0
-2.5
stress
Glucose (C) and Ammonium chloride (N); with MOPS; with chloride
-1.8
+0.5
-2.0
-2.6
-1.8
temperature shift
Temperature shift 30_to_34
-1.6
+0.0
-1.8
-1.9
-2.2
stress
Glucose (C) and Ammonium chloride (N); with MOPS; with chloride
-1.2
+0.1
-1.7
-2.7
-2.0
carbon source
D,L-Malic Acid (C)
-1.6
-0.1
-1.9
-1.8
-2.0
stress
Glucose (C) and Ammonium chloride (N); with MOPS; with chloride
-1.1
-0.0
-2.1
-2.2
-1.9
carbon source
4-Hydroxybenzoic Acid 2 mM (C)
-2.5
+0.0
-1.6
-1.9
-1.3
carbon source
NAG (C)
-2.1
-0.8
-2.0
-1.3
-1.2
stress
Glucose (C) and Ammonium chloride (N); with MOPS; with chloride
-1.8
+0.6
-1.4
-2.4
-2.3
temperature shift
Temperature shift 30_to_34
-1.6
-0.4
-1.5
-1.8
-1.5
carbon source
NAG (C)
-1.2
-1.2
-2.0
-1.2
-1.2
stress
Glucose (C) and L-Glutamine (N); with MOPS; with chloride
-1.6
+0.1
-1.6
-2.0
-1.6
stress
Glucose (C) and L-Glutamine (N); with MOPS; with chloride
-2.2
+0.0
-1.7
-1.4
-1.4
carbon source
D,L-Malic Acid (C)
-2.2
+0.5
-2.0
-1.3
-1.8
no stress control
Glucose (C) and L-Glutamine (N); with MOPS
-1.2
-0.1
-1.4
-2.1
-1.7
carbon source
NAG (C)
-1.7
+0.0
-1.5
-1.9
-1.4
stress
Betaine (C)(N); with TAPS; with chloride
-2.2
+0.4
-1.1
-2.1
-1.4
carbon source
4-Hydroxybenzoic Acid 2 mM (C)
-2.3
+0.2
-1.6
-1.1
-1.3
carbon source
D,L-Malic Acid (C)
-1.8
+0.4
-1.4
-1.3
-1.6
stress
D,L-Malic Acid (C) and Ammonium chloride (N); with TAPS; with chloride
-0.8
+0.5
-1.8
-1.3
-2.0
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