Fitness data for SGL_RS03585 in Synechocystis sp000284455 PCC 6803

DegT/DnrJ/EryC1/StrS family aminotransferase
SEED: perosamine synthetase

All 146 fitness values, sorted by group and condition


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group condition fitness t score  
growth in full media -3.9 -12.6 compare
growth in full media but diluted to prevent light attenuation -5.5 -8.3 compare
carbon dioxide growth in full media -3.0 -9.9 compare
growth in full media bubbled with air enriched in 1% CO2 -1.5 -6.4 compare
growth in full media bubbled with air enriched in 1% CO2 -3.0 -11.2 compare
growth in full media bubbled with air enriched in 1% CO2 but diluted to prevent light attenuation -1.5 -4.8 compare
growth in full media bubbled with air enriched in 5% CO2 -1.3 -5.9 compare
growth in full media bubbled with air enriched in 5% CO2 -1.0 -6.3 compare
growth in full media bubbled with air enriched in 5% CO2 but diluted to prevent light attenuation +0.2 +1.4 compare
growth in full media bubbled with ambient air -4.4 -7.1 compare
growth in full media bubbled with ambient air -3.2 -9.2 compare
growth in full media bubbled with ambient air but diluted to prevent light attenuation -7.0 -4.8 compare
growth in full media but diluted to prevent light attenuation -3.3 -12.6 compare
growth in media lacking HCO3 buffered with 10 mM TES pH8 -1.6 -4.4 compare
growth in media lacking HCO3 buffered with 10 TES pH8 and bubbled with air enriched with 5% CO2 -0.1 -0.4 compare
growth in media lacking HCO3 buffered with 10 TES pH8 and bubbled with air enriched with 5% CO2 but diluted to prevent light attenuation +0.0 +0.1 compare
growth in media lacking HCO3 buffered with 10 TES pH8 and bubbled with ambient air -0.2 -0.9 compare
growth in media lacking HCO3 buffered with 10 TES pH8 and bubbled with ambient air but diluted to prevent light attenuation -0.8 -2.9 compare
growth in media lacking HCO3 but diluted to prevent light attenuation -1.4 -3.9 compare
Short day light/dark (8/16) in full media +0.6 +4.2 compare
control control -10.0 -9.7 compare
glucose Na NO2 10 mM as N source, buffered with TES 20 mM TES pH8 but diluted to prevent light attenuation +2.5 +13.9 compare
light_bubbling control for light_bubbling experiments -2.2 -13.3 compare
control for light_bubbling experiments -8.6 -9.5 compare
control for light_bubbling experiments +0.3 +2.0 compare
control for light_bubbling experiments -2.6 -13.3 compare
control for light_bubbling experiments -4.0 -9.8 compare
high light; bubbling -4.7 -4.9 compare
high light; bubbling -5.2 -3.6 compare
high light; bubbling -6.8 -5.6 compare
high light; bubbling -6.9 -5.5 compare
high light; bubbling -9.2 -7.0 compare
high light; bubbling -7.3 -7.0 compare
L/D cycles short day -2.5 -13.5 compare
L/D cycles short day -0.0 -0.1 compare
L/D cycles short day -0.6 -4.3 compare
low light; bubbling -8.2 -11.8 compare
low light; bubbling -9.3 -5.9 compare
low light; bubbling -3.4 -15.3 compare
low light; bubbling -9.6 -8.9 compare
low light; bubbling -9.3 -7.5 compare
low light; bubbling -9.5 -7.4 compare
medium light; bubbling -7.6 -9.6 compare
medium light; bubbling -7.6 -4.0 compare
medium light; bubbling -6.0 -4.1 compare
medium light; bubbling -5.3 -5.4 compare
metal stress growth in full media -3.7 -6.7 compare
growth in full media -1.7 -9.6 compare
growth in full media but diluted to prevent light attenuation -5.3 -9.6 compare
growth in full media but diluted to prevent light attenuation -2.7 -10.9 compare
Synechocystis_PCC6803_ML3a diversity barseq (outgrowth of original library) -1.1 -5.9 compare
growth in full media supplemented with 300 .M BCSA to remove any trace of Cu -1.9 -6.2 compare
growth in full media supplemented with 300 .M BCSA to remove any trace of Cu but diluted to prevent light attenuation -4.9 -9.3 compare
growth in full media supplemented with 300 .M BCSA to remove any trace of Cu -2.0 -10.7 compare
growth in full media supplemented with 300 .M BCSA to remove any trace of Cu but diluted to prevent light attenuation -2.6 -10.6 compare
growth in full media supplemented with 3 .M Cl2Co -3.8 -7.3 compare
growth in full media supplemented with 3 .M Cl2Co but diluted to prevent light attenuation -4.8 -10.8 compare
growth in full media supplemented with 3 .M Cl2Co +0.1 +0.5 compare
growth in full media supplemented with 3 .M Cl2Co but diluted to prevent light attenuation +0.1 +0.5 compare
growth in full media supplemented with 5 .M Cl2Co -3.7 -6.5 compare
growth in full media supplemented with 5 .M Cl2Co but diluted to prevent light attenuation -5.5 -9.2 compare
growth in full media supplemented with 5 .M Cl2Co +0.2 +0.9 compare
growth in full media supplemented with 5 .M Cl2Co but diluted to prevent light attenuation +0.3 +2.0 compare
growth in full media supplemented with 3 .M CuSO4 -4.1 -8.2 compare
growth in full media supplemented with 3 .M CuSO4 but diluted to prevent light attenuation -4.3 -9.0 compare
growth in full media supplemented with 3 .M CuSO4 -4.1 -8.0 compare
growth in full media supplemented with 3 .M CuSO4 but diluted to prevent light attenuation -5.0 -8.5 compare
growth in full media supplemented with 5 .M CuSO4 -3.8 -8.8 compare
growth in full media supplemented with 5 .M CuSO4 but diluted to prevent light attenuation -5.4 -7.4 compare
growth in full media supplemented with 5 .M CuSO4 -5.5 -11.2 compare
growth in full media supplemented with 5 .M CuSO4 but diluted to prevent light attenuation -7.0 -8.4 compare
growth in full media supplemented with 2mM sodum metaarsenite -2.2 -9.2 compare
growth in full media supplemented with 2mM sodum metaarsenite but diluted to prevent light attenuation -3.2 -11.3 compare
growth in full media supplemented with 2mM sodum metaarsenite -2.2 -7.7 compare
growth in full media supplemented with 2mM sodum metaarsenite but diluted to prevent light attenuation -1.5 -5.8 compare
growth in full media supplemented with 5mM sodum metaarsenite -1.5 -7.5 compare
growth in full media supplemented with 5mM sodum metaarsenite but diluted to prevent light attenuation -2.9 -7.9 compare
growth in full media supplemented with 5mM sodum metaarsenite -0.5 -2.7 compare
growth in full media supplemented with 5mM sodum metaarsenite but diluted to prevent light attenuation -1.1 -5.3 compare
nitrogen source Arg 10 mM as N source, buffered with TES 20 mM TES pH8 but diluted to prevent light attenuation -0.2 -1.2 compare
growth in full media -4.3 -8.1 compare
growth in full media but diluted to prevent light attenuation -7.0 -6.8 compare
Inoculated in media lacking a N source and incubated for 1 week -0.3 -1.0 compare
Inoculated in media lacking a N source and incubated for 1 week, NaNo3 added and recovered for 3 days -3.1 -8.1 compare
no (N) 1 week -4.5 -11.6 compare
no (N) 1 week recovered -6.0 -12.7 compare
Ammonium chloride (N) -4.3 -8.9 compare
ClNH4 10 mM as N source, buffered with 20 mM TES pH8 -1.1 -7.8 compare
ClNH4 10 mM as N source, buffered with 20 mM TES pH8 but diluted to prevent light attenuation -0.4 -2.2 compare
ClNH4 10 mM as N source, buffered with 20 mM TES pH8 -0.5 -3.2 compare
ClNH4 10 mM10 mM as N source, buffered with 20 mM TES pH8 but diluted to prevent light attenuation +0.2 +0.8 compare
growth in full media and 10 mM glucose= photomixotrophic growth -2.6 -3.0 compare
growth in full media and 10 mM glucose= photoheterotrophic growth -1.4 -4.7 compare
Guanidine Hydrochloride (N) -7.9 -7.9 compare
L-Arginine (N) -4.2 -10.3 compare
Arg 10 mM as N source, buffered with 20 mM TES pH8 -1.2 -6.6 compare
Arg 10 mM as N source, buffered with TES 20 mM TES pH8 but diluted to prevent light attenuation -1.2 -4.9 compare
Arg 10 mM as N source, buffered with 20 mM TES pH8 -0.5 -1.5 compare
L-Glutamic Acid Monosodium Salt Monohydrate (N); from biofilm -8.7 -13.3 compare
L-Glutamic Acid Monosodium Salt Monohydrate (N) -8.6 -10.1 compare
L-Proline (N) -5.7 -7.8 compare
L-Proline (N); from biofilm -3.5 -7.8 compare
L-Proline (N); from biofilm -5.9 -10.8 compare
nitrate (N) -5.9 -10.0 compare
Na NO3 10 mM as N source, buffered with 20 mM TES pH8 but diluted to prevent light attenuation -2.8 -13.1 compare
NaNO3 10 mM as N source, buffered with 20 mM TES pH8 -0.9 -3.9 compare
Na NO3 10 mM as N source, buffered with TES 20 mM TES pH8 but diluted to prevent light attenuation -1.2 -4.9 compare
NaNO3 10 mM as N source, buffered with TES 20 mM TES pH8 -2.8 -11.0 compare
nitrite (N) -0.7 -3.1 compare
NaNO2 10 mM as N source, buffered with 20 mM TES pH8 +1.5 +8.6 compare
NaNO2 10 mM as N source, buffered with 20 mM TES pH8 +2.3 +12.9 compare
Urea (N) -6.4 -7.7 compare
no kan control no antibiotic (Km) -3.8 -10.7 compare
no stress control no stress control -2.1 -9.6 compare
no stress control -3.9 -14.2 compare
no stress control -1.8 -11.5 compare
no stress control -2.4 -9.3 compare
no stress control -1.3 -7.4 compare
photoheterotrophic growth in full media and 10 mM glucose= photoheterotrophic growth -2.9 -9.7 compare
growth in full media and 10 mM glucose= photoheterotrophic growth but diluted to prevent slight attenuation and replinshing of glucose -4.0 -8.5 compare
stress Bathocuproine disulfonic 0.3 mM -0.9 -5.8 compare
Cobalt chloride 3 uM -0.5 -2.9 compare
Cobalt chloride 5 uM +0.2 +1.4 compare
Copper (II) sulfate 3 uM -7.3 -12.7 compare
Copper (II) sulfate 5 uM -9.0 -8.7 compare
D-Sorbitol 500 mM -7.1 -7.8 compare
D-Sorbitol 500 mM -7.4 -8.7 compare
D-Sorbitol 500 mM -7.9 -12.9 compare
Ethanol 2 vol% +0.8 +5.6 compare
Ethanol 2 vol% +1.8 +15.5 compare
Manganese (II) chloride tetrahydrate 100 uM -2.0 -8.2 compare
Manganese (II) chloride tetrahydrate 150 uM +0.0 +0.0 compare
Nickel (II) sulfate 3 uM -10.0 -6.9 compare
Nickel (II) sulfate 5 uM -5.9 -9.8 compare
Chloride 500 mM -0.3 -2.3 compare
Chloride 500 mM -0.8 -4.8 compare
Chloride 500 mM -0.1 -0.9 compare
Chloride 500 mM -0.2 -1.8 compare
Chloride 800 mM -0.4 -3.0 compare
Chloride 800 mM -1.2 -8.4 compare
Chloride 800 mM -0.0 -0.3 compare
Chloride 800 mM -0.1 -0.3 compare
m-arsenite 2 mM -1.5 -11.7 compare
m-arsenite 5 mM -0.9 -5.1 compare
Zinc 15 uM -2.6 -12.9 compare
Zinc 20 uM -3.9 -19.6 compare