Fitness for 5 genes in Rhodospirillum rubrum S1H

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500 ntRru_A1674 and Rru_A1675 are separated by 44 nucleotidesRru_A1675 and Rru_A1676 are separated by 223 nucleotidesRru_A1676 and Rru_A1677 are separated by 2 nucleotidesRru_A1677 and Rru_A1678 are separated by 98 nucleotides Rru_A1674: Rru_A1674 - bifunctional enzyme, 2-C-methyl-D-erythritol 4-phosphate cytidylyltransferase, 4-diphosphocytidyl-2C- methyl-D-erythritol synthase (NCBI), at 1,963,245 to 1,964,399 _A1674 Rru_A1675: Rru_A1675 - Cytochrome c assembly protein (NCBI), at 1,964,444 to 1,965,322 _A1675 Rru_A1676: Rru_A1676 - Dihydrouridine synthase TIM-barrel protein nifR3 (NCBI), at 1,965,546 to 1,966,634 _A1676 Rru_A1677: Rru_A1677 - Signal transduction histidine kinase, nitrogen specific, NtrB (NCBI), at 1,966,637 to 1,967,737 _A1677 Rru_A1678: Rru_A1678 - Nitrogen Metabolism Transcriptional Regulator, NtrC, Fis Family (NCBI), at 1,967,836 to 1,969,281 _A1678
Group Condition Rru_A1674 Rru_A1675 Rru_A1676 Rru_A1677 Rru_A1678
anaerboic nitrogen source L-Malic Acid (C) and N2; anaerobic; high light N.D. -4.1 -0.5 -2.0 -2.5
anaerboic nitrogen source L-Malic Acid (C) and N2; anaerobic; high light N.D. -4.2 -0.3 -1.6 -3.0
anaerboic nitrogen source L-Malic Acid (C) with ammonium chloride; high light N.D. -5.2 -0.3 -2.0 -1.1
anaerboic nitrogen source L-Malic Acid (C) with ammonium chloride; high light N.D. -4.9 -0.3 -2.0 -1.0
carbon source carbon source anaerobic Succinic Acid 31.25 mM N.D. -2.8 +0.2 -1.9 -1.8
carbon source Succinic Acid 31.25 mM; anaerobic N.D. -2.3 +0.2 -1.2 -0.5
carbon source Valeric 25 mM; anaerobic N.D. -1.9 -0.1 -0.9 -0.8
anaerboic nitrogen source L-Malic Acid (C) with ammonium chloride; high light N.D. -3.5 -0.6 +0.1 +0.5
carbon source Valeric 25 mM; anaerobic N.D. -1.2 -0.6 -1.1 -0.3
light Succinic Acid; Light intensity 9 uM N.D. -0.5 -0.3 -0.6 -1.7
anaerboic nitrogen source L-Malic Acid (C) with ammonium chloride; high light N.D. -3.4 -0.5 +0.2 +0.6
smn_rich SMN_rich N.D. -0.6 -0.3 -0.8 -1.3
smn_rich SMN_rich N.D. -0.7 -0.1 -0.7 -1.3
light Succinic Acid; Light intensity 18 uM N.D. -1.4 +0.8 -1.1 -1.2
carbon source Succinate (C) N.D. -0.2 -0.3 -0.8 -1.4
carbon source Valeric 25 mM; anaerobic N.D. -0.4 -0.3 -0.9 -1.1
carbon source Hexanoic 21 mM; anaerobic N.D. -1.1 -0.5 -0.7 -0.3
carbon source Hexanoic 21 mM; anaerobic N.D. -1.9 -0.3 -0.8 +0.6
light Succinic Acid; Light intensity 38 uM N.D. -0.9 +0.5 -0.4 -1.2
anaerboic nitrogen source L-Malic Acid (C) with ammonium chloride; no light N.D. -1.8 -0.1 -0.6 +0.9
carbon source Succinic Acid 31.25 mM; anaerobic N.D. +0.7 +0.5 -1.2 -1.4
carbon source Succinic Acid 31.25 mM; anaerobic N.D. +0.2 +0.6 -1.0 -1.2
anaerboic nitrogen source L-Malic Acid (C) with ammonium chloride; no light N.D. -1.7 -0.1 -0.2 +0.9
light Succinic Acid; Light intensity 75 uM N.D. +0.4 +0.8 -0.6 -1.4
anaerboic nitrogen source L-Malic Acid (C) and N2; no light N.D. -1.2 +0.6 +0.6 +0.4
anaerboic nitrogen source Low light with ammonium chloride N.D. -1.0 -0.2 +0.3 +1.5
light acetate; Light intensity 18 uM N.D. +0.8 +0.3 +0.8 +0.9
light acetate; Light intensity 38 uM N.D. +1.3 +0.7 +1.3 +1.3
light Succinic Acid; Light intensity 150 uM N.D. +4.7 -0.1 +1.9 +0.7
light Succinic Acid; Light intensity 150 uM N.D. +4.6 +1.3 +3.0 +2.8
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