Experiment: L-Lysine (N)
Only strains with sufficient reads to estimate fitness are shown,
but the strain fitness values are still rather noisy and may be biased towards zero.
Strains near the edge of a gene are not shown as being associated with that
gene (they are in grey).
Strains in the central 10-90% of a gene are color coded by the insertion's strand.
Usually, "+" means that the selectable marker is encoded on the forward strand,
i.e., transcribed rightward.
500 nt BPHYT_RS30090 and BPHYT_RS30095 are separated by 135 nucleotides BPHYT_RS30095 and BPHYT_RS30100 are separated by 54 nucleotides BPHYT_RS30100 and BPHYT_RS30105 are separated by 37 nucleotides
BPHYT_RS30090: BPHYT_RS30090 - hypothetical protein, at 2,304,871 to 2,306,454
_RS30090
BPHYT_RS30095: BPHYT_RS30095 - RND transporter, at 2,306,590 to 2,306,925
_RS30095
BPHYT_RS30100: BPHYT_RS30100 - copper oxidase, at 2,306,980 to 2,308,275
_RS30100
BPHYT_RS30105: BPHYT_RS30105 - RND transporter, at 2,308,313 to 2,309,737
_RS30105
Position (kb)
2306
2307
2308
2309 Strain fitness (log2 ratio)
-5
-4
-3
-2
-1
0
1 at 2306.046 kb on - strand, within BPHYT_RS30090 at 2306.107 kb on - strand, within BPHYT_RS30090 at 2306.555 kb on - strand at 2307.005 kb on + strand at 2307.006 kb on - strand at 2307.056 kb on + strand at 2307.770 kb on + strand, within BPHYT_RS30100 at 2307.990 kb on - strand, within BPHYT_RS30100 at 2308.683 kb on + strand, within BPHYT_RS30105 at 2308.974 kb on + strand, within BPHYT_RS30105 at 2308.975 kb on - strand, within BPHYT_RS30105 at 2309.076 kb on + strand, within BPHYT_RS30105
Per-strain Table
Position Strand Gene LocusTag Fraction L-Lysine (N) remove 2,306,046 - BPHYT_RS30090 0.74 -0.3 2,306,107 - BPHYT_RS30090 0.78 +1.1 2,306,555 - +0.5 2,307,005 + -2.0 2,307,006 - -1.2 2,307,056 + -5.2 2,307,770 + BPHYT_RS30100 0.61 -4.0 2,307,990 - BPHYT_RS30100 0.78 -4.6 2,308,683 + BPHYT_RS30105 0.26 -1.0 2,308,974 + BPHYT_RS30105 0.46 -3.4 2,308,975 - BPHYT_RS30105 0.46 -2.7 2,309,076 + BPHYT_RS30105 0.54 -0.6
Or see this region's nucleotide sequence