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. 2012 May 15;3(3):e00094-12. doi: 10.1128/mBio.00094-12

TABLE 3 .

Comparison of PalgD induction in mutants of the σ22 stimulon when in the planktonic and sessile states of growth

Phenotype Strain/
mutation
Activity
of untreated planktonic
PalgD-lacZ:activity
of that treated
with d-cycloserinea
Sessile PalgD-cat
treated
with d-cycloserineb
Putative role
of gene product
Wild type PAO1 1:100 Ring
Alterations in stressed
PalgD expression

PA3459

1:67

Weaker ring

Osmoprotectant
PA5424 1:52 Weaker ring Membrane protein
PA1243 1:153 Ring Sensor/regulator
PA5107 1:134 Ring Lipocalin
Growth-independent alterations
in unstressed PalgD expression

PA0062

6:131 (Ts)

Lawn

Lipoprotein
PA1324 1.7:151 (Ts) Lawn Polysaccharide binding
Planktonic growth-specific
alterations in unstressed
PalgD expression
PA5178 7:215 Ring LysM, BON domains
Sessile growth-specific
alterations in unstressed
PalgD expression


PA0567


1:100


Lawn


UPF0057 domain
PA3040 1:100 Lawn DUF883 family
PA2717 1:142 Lawn Chloroperoxidase
PA0920 1:55 Lawn A-PG synthasec
a

 PalgD-lacZ Miller units of β-galactosidase in PAO1 strains were 13 (±7) if untreated and 1,161 (±231) if treated with d-cycloserine. To be significant in the fold change, the ratio needed to be <0.5 or >1.5 for untreated cultures and <80 or >120 for treated cultures. When maximum activity was normalized to 100%, the untreated/treated ratio of PalgD-lacZ expression in PAO1 was typically 1:100. Ts indicates a temperature-sensitive growth defect at 45°C.

b

 PalgD-cat activity in PAO1 strains was estimated on L agar plates containing chloramphenicol to prevent growth unless the cat fusion was activated by d-cycloserine placed in the center of the plate, which resulted in a ring of growth. In some mutants, a weaker ring of growth was observed. A lawn of growth indicated constitutive PalgD-lacZ expression under such sessile conditions.

c

 A-PG, aminoacyl-phosphatidyl glycerol.