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Fitness for 5 genes in
Rhodospirillum rubrum S1H
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Top 30 experiments (either direction), sorted by average fitness
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500 nt
Rru_A0544 and Rru_A0545 are separated by 60 nucleotides
Rru_A0545 and Rru_A0546 are separated by 585 nucleotides
Rru_A0546 and Rru_A0547 are separated by 195 nucleotides
Rru_A0547 and Rru_A0548 are separated by 28 nucleotides
Rru_A0544: Rru_A0544 - Flagellar motor switch protein FliG (NCBI), at 639,784 to 640,803
_A0544
Rru_A0545: Rru_A0545 - Flagellar FliF M-ring protein (NCBI), at 640,864 to 642,519
_A0545
Rru_A0546: Rru_A0546 - hypothetical protein (NCBI), at 643,105 to 645,090
_A0546
Rru_A0547: Rru_A0547 - Flagellar hook capping protein (NCBI), at 645,286 to 646,023
_A0547
Rru_A0548: Rru_A0548 - Flagellar hook-length control protein (NCBI), at 646,052 to 647,875
_A0548
Group
Condition
Rru
_A0544
Rru
_A0545
Rru
_A0546
Rru
_A0547
Rru
_A0548
anaerboic nitrogen source
L-Malic Acid (C) and N2; no light
+0.1
-0.2
-0.2
-0.3
-0.5
light
Succinic Acid; Light intensity 18 uM
+0.5
-0.2
+0.0
-0.2
-0.7
light
acetate; Light intensity 9 uM
-0.2
-0.5
-0.1
+0.2
+0.0
carbon source
Succinic Acid 31.25 mM; anaerobic
-0.1
-0.2
+0.1
-0.3
+0.2
carbon source
Succinic Acid 31.25 mM; anaerobic
-0.5
-0.2
+0.2
-0.2
+0.5
anaerboic nitrogen source
L-Malic Acid (C) with ammonium chloride; high light
+0.4
-0.1
-0.1
-0.4
+0.4
light
Succinic Acid; Light intensity 38 uM
-0.1
-0.2
+0.0
+0.1
+0.5
light
acetate; Light intensity 18 uM
-0.2
-0.2
+0.1
+0.3
+0.3
anaerboic nitrogen source
L-Malic Acid (C) with ammonium chloride; high light
+0.3
-0.1
-0.1
-0.4
+0.7
light
acetate; Light intensity 38 uM
-0.1
-0.1
+0.1
+0.5
+0.3
carbon source
Hexanoic 21 mM; anaerobic
+0.3
-0.1
+0.1
-0.3
+0.7
light
acetate; Light intensity 75 uM
+0.1
-0.3
-0.0
+0.4
+0.4
light
acetate; Light intensity 18 uM
-0.3
-0.1
+0.1
+0.4
+0.6
carbon source
carbon source anaerobic Succinic Acid 31.25 mM
+0.5
+0.2
+0.3
+0.1
-0.3
carbon source
Valeric 25 mM; anaerobic
+0.7
+0.1
+0.1
+0.3
-0.3
carbon source
Valeric 25 mM; anaerobic
+0.0
-0.1
+0.2
+0.0
+0.8
anaerboic nitrogen source
L-Malic Acid (C) with ammonium chloride; no light
-0.0
+0.2
+0.2
+0.2
+0.4
light
Succinic Acid; Light intensity 150 uM
+0.1
-0.2
+0.1
+0.2
+0.7
carbon source
Succinic Acid 31.25 mM; anaerobic
+0.7
+0.1
+0.1
+0.2
-0.2
anaerboic nitrogen source
L-Malic Acid (C) and N2; anaerobic; high light
+0.2
-0.0
+0.1
+0.1
+0.6
anaerboic nitrogen source
L-Malic Acid (C) and N2; no light
+0.4
+0.2
+0.0
+0.2
+0.2
anaerboic nitrogen source
L-Malic Acid (C) and N2; no light
+0.3
+0.0
+0.2
-0.0
+0.6
anaerboic nitrogen source
L-Malic Acid (C) with ammonium chloride; high light
+0.4
+0.1
+0.1
+0.1
+0.3
anaerboic nitrogen source
L-Malic Acid (C) with ammonium chloride; no light
+0.3
+0.3
+0.1
+0.2
+0.4
anaerboic nitrogen source
L-Malic Acid (C) and N2; high light
+0.2
+0.1
+0.2
+0.1
+0.7
anaerboic nitrogen source
SMN_rich_anaerobic
+0.2
+0.2
+0.1
+0.2
+0.6
light
Succinic Acid; Light intensity 150 uM
+0.1
-0.2
+0.0
+0.3
+1.1
light
Succinic Acid; Light intensity 18 uM
+0.2
+0.2
-0.1
+0.6
+0.5
anaerboic nitrogen source
L-Malic Acid (C) and N2; high light
+0.3
+0.2
+0.2
+0.3
+0.6
carbon source
Hexanoic 21 mM; anaerobic
+0.7
+0.2
+0.1
+0.4
+0.2
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