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Transfer of a genetic marker from a megaplasmid of Anabaena sp. strain PCC 7120 to a megaplasmid of a different Anabaena strain

Abstract

The 410-kb α megaplasmid of the heterocyst-forming cyanobacterium Anabaena sp. strain PCC 7120 was found to bear the nucA gene that encodes a sugar-nonspecific nuclease. That gene was mutated by insertion of a cassette that confers resistance to neomycin. The resulting strain, AMP2, was mated with a streptomycin-resistant derivative of Anabaena sp. strain PCC 7118, a strain that does not form heterocysts. Cells resistant to both neomycin and streptomycin that were derived from such matings were found to bear the neomycin resistance cassette of the donor strain in a larger megaplasmid characteristic of the recipient strain and did not form heterocysts. This is the first example of transfer of a genetic marker directly between strains of cyanobacteria in which incontrovertible physical evidence of transfer has been obtained. DNA sequences homologous to the nucA gene were present in 13 heterocyst-forming cyanobacteria that were tested but in none of six diverse unicellular strains that were examined.

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Transfer of a genetic marker from a megaplasmid of Anabaena sp. strain PCC 7120 to a megaplasmid of a different Anabaena strain

Author: Muro Pastor, Alicia María; Kuritz, Tanya; Flores García, Enrique; Herrero Moreno, Antonia; Wolk, C. Peter
Publisher: American Society for Microbiology
Year: 1994
Source: https://idus.us.es/bitstreams/02b6b60e-f8a7-42d2-a7b6-4cd11e65b55d/download
JOURNAL
OF
BAC ERIOLOGY,
Feb.
1994,
p.
1093-1098
Vol.
176,
No.
4
0021-9193/94/$04.00
+
0
Copy igh
©
1994,
Ame ican
Socie y
o
Mic obiology
T ans e
o
a
Gene ic
Ma ke
om
a
Megaplasmid
o
Anabaena
sp.
S ain
PCC
7120
o
a
Megaplasmid
o
a
Di e en
Anabaena
S ain
ALICIA
M.
MURO-PASTOR,'
TANYA
KURITZ,2
ENRIQUE
FLORES,l*
ANTONIA
HERRERO,'
AND
C.
PETER
WOLK2
Ins i u o
de
Bioquimica
Vege al
y
Fo os n esis,
Uni e sidad
de
Se illa-CSIC,
Facul ad
de
Biologia,
Apa ado
1113,
E-41080
Se ille,
Spain,'
and
MSU-DOE
Plan
Resea ch
Labo a o y
and
Cen e
o
Mic obial
Ecology,
Michigan
S a e
Uni e si y,
Eas
Lansing,
Michigan
488242
Recei ed
4
Augus
1993/Accep ed
7
Decembe
1993
The
410-kb
a
megaplasmid
o
he
he e ocys - o ming
cyanobac e ium
Anabaena
sp.
s ain
PCC
7120
was
ound
o
bea
he
nucA
gene
ha
encodes
a
suga -nonspeci ic
nuclease.
Tha
gene
was
mu a ed
by
inse ion
o
a
casse e
ha
con e s
esis ance
o
neomycin.
The
esul ing
s ain,
AMP2,
was
ma ed
wi h
a
s ep omycin-
esis an
de i a i e
o
Anabaena
sp.
s ain
PCC
7118,
a
s ain
ha
does
no
o m
he e ocys s.
Cells
esis an
o
bo h
neomycin
and
s ep omycin
ha
we e
de i ed
om
such
ma ings
we e
ound
o
bea
he
neomycin
esis ance
casse e
o
he
dono
s ain
in
a
la ge
megaplasmid
cha ac e is ic
o
he
ecipien
s ain
and
did
no
o m
he e ocys s.
This
is
he
i s
example
o
ans e
o
a
gene ic
ma ke
di ec ly
be ween
s ains
o
cyanobac e ia
in
which
incon o e ible
physical
e idence
o
ans e
has
been
ob ained.
DNA
sequences
homologous
o
he
nucA
gene
we e
p esen
in
13
he e ocys - o ming
cyanobac e ia
ha
we e
es ed
bu
in
none
o
six
di e se
unicellula s ains
ha
we e
examined.
The
cyanobac e ia
a e
pho o ophic
eubac e ia
ha
can
ca y
ou
oxygenic
(plan - ype)
pho osyn hesis.
Many
ilamen-
ous
cyanobac e ia
a e
able
o
ix
dini ogen
in
specialized
cells
called
he e ocys s
ha
de elop
a
semi egula
in e als
along
he
ilamen s.
We
ha e
ecen ly
shown
ha Anabaena
sp.
s ain
PCC
7120,
a
he e ocys - o ming
cyanobac e ium,
p oduces
an
exocy oplasmic
suga -nonspeci ic
nuclease
ha
is
able
o
de-
g ade
linea
o
co alen ly
closed
ci cula
double-s anded
DNA
as
well
as
single-s anded
DNA
o
RNA
(16).
The
gene,
nucA,
encoding
his
enzyme
has
been
cloned
and
sequenced
(16).
In
his
epo ,
we
show
ha
nucA
is
loca ed
on
he
o
megaplasmid,
whose
p esence
in
s ain
PCC
7120
had
been
epo ed
p e iously
(4).
A
casse e
con e ing
esis ance
o
neomycin
(NM),
when
in oduced
in o
he
nucA
gene
o
s ain
PCC
7120,
could
he eupon
be
ans e ed
o
a
la ge
megaplasmid
o
a
s ep omycin
(SM)- esis an
de i a i e
o
Anabaena
sp.
s ain
PCC
7118.
We
ha e
also
ound
ha
he
nucA
gene
is
p esen
in
nume ous
he e ocys - o ming
cya-
nobac e ia.
MATERIALS
AND
METHODS
O ganisms
and
cul u e
condi ions.
Cyanobac e ial
s ains
we e
g own
pho oau o ophically
a
30°C
in
BG11
medium
(18)
wi h
shaking.
Whe e
speci ied,
BG11
medium
was
solid-
i ied
by
he
addi ion
o
1%
sepa a ely
au ocla ed
Bac o
Aga
(Di co).
Fo
es ing
g ow h
on
dini ogen,
BG11
lacking
NaNO3
was
used.
Fo
g ow h
o
de i a i e
AMP2
o
Anabaena
sp.
s ain
PCC
7120,
liquid
BG11
medium
was
supplemen ed
wi h
5
jig
o
NM
pe
ml
and
solidi ied
BG11
medium
was
supplemen ed
wi h
25
jig
o
NM
pe
ml.
De i a i e
NW18
o
Anabaena
sp.
s ain
PCC
7118
was
g own
in
BG11
medium
*
Co esponding
au ho .
Telephone:
34-5-455.70.86.
Fax:
34-5-
462.01.54.
Elec onic
mail
add ess:
[email p o ec ed].
P esen
add ess:
Depa men
o
Mic obiology,
Uni e si y
o
Illi-
nois
a
U bana-Champaign,
U bana,
IL
61801.
supplemen ed
wi h
20
jig
o
SM
pe
ml.
Nm
Sm
de i a i es
o
s ain
NW18
we e
g own
in
BG11
medium
supplemen ed
wi h
a
combina ion
o
20
jig
o
SM
pe
ml
and
NM
ei he
a
5
jig/ml
in
liquid
medium
o
25
,ug/ml
in
solid
medium.
Chlo ophyll
a
was
de e mined
in
me hanolic
ex ac s
(13).
Esche ichia
coli
DH5o ,
used
o
all
plasmid
cons uc ions,
was
g own
in
Lu ia
b o h
as
desc ibed
p e iously
(14).
P epa a ion
and
manipula ion
o
DNA.
To al
DNA
om
cyanobac e ia
was
isola ed
as
desc ibed
by
Cai
and
Wolk
(6).
DNA
o
high
molecula
weigh
om
Anabaena
sp.
s ains
PCC
7120
and
PCC
7118
and
hei
de i a i es
was
p epa ed
and
cu
wi h
es ic ion
endonucleases,
and
he
esul ing
plasmids
we e
subjec ed
o
pulsed
homogeneous
o hogonal
ield
gel
elec o-
pho esis
(PHOGE)
(2)
as
desc ibed
by
Ku i z
e
al.
(11).
Bands
wi h
a
size
o
less
han
50
kb
we e
measu ed
by
using
HindIll
diges s
o
coliphage
lambda
DNA
as
s anda ds
in
pulsed- ield
gels
(11).
Plasmid
isola ion
om
E.
coli,
ans o ma ion
o
E.
coli,
es ic ion,
and
liga ion
wi h
T4
DNA
ligase
we e
pe o med
by
s anda d
p ocedu es
(1,
14).
DNA
agmen s
we e
pu i ied
om
aga ose
gels
wi h
he
GeneClean
ki
(Bio
101,
Inc.).
The
nucA-con aining
hyb idiza ion
p obes
we e
ei he
plasmid
pRLA1,
which
ca ies
12
kb
o
s ain
PCC
7120
genomic
DNA
including
he
nucA
gene
and
lanking
sequences,
o
a
473-bp
HindIII-Bs NI
agmen
in e nal
o
nucA,
isola ed
om
pCSAM29
(16).
The
neomycin
phospho ans e ase
(np )
p obe
used
was
casse e
C.K3
(7)
excised
wi h
BamHI.
DNA
p obes
we e
32P
labeled
wi h
[oL-32P]dCTP
by
using
a
nick
ansla ion
ki
(Boeh inge
Mannheim)
o
wi h
[a_-32P]dATP
by
using
a
andomly
p imed
DNA
labeling
sys em
ki
(Be hesda
Re-
sea ch
Labo a o ies)
o
we e
digoxigenin
labeled
wi h
a
Ge-
nius
II
ki
and
he
signal
was
enhanced by
Lumi-Phos
530
(Boeh inge
Mannheim).
Sou he n
blo ing
o
o al
DNA
om
cyanobac e ia
o
Hybond-N+
memb anes
(Ame sham)
was
pe o med
unde
alkaline
condi ions
(14).
Hyb idiza ion
was
ca ied
ou
unde
low-s ingency
condi ions
a
55°C
as
de-
sc ibed
p e iously
(1)
o
unde
high-s ingency
condi ions
a
1093
on July 25, 2017 by USE/BTCA.GENERAL UNIVERSITARIA Se illah p://jb.asm.o g/Downloaded om
1094
MURO-PASTOR
ET
AL.
J.
BAC ERIOL.
65°C
as
desc ibed
in
he
ecommenda ions
o
he
manu ac u e
o
Hybond-N+
memb anes
by
using
5
mM
KHP04
bu e
(pH
7.2)
con aining
1
mM
EDTA
and
0.2%
sodium
dodecyl
sul a e
(SDS)
o
wash
he
il e s.
PHOGE- esol ed
agmen s
o
DNA
we e
blo ed
o
GeneSc een
memb anes
(DuPon ),
and
hy-
b idiza ion
was
ca ied
ou
as
desc ibed
p e iously
(4,
11).
Plasmid
RP-4
was
diges ed
wi h
EcoRV
be o e
labeling
wi h
32p.
Hyb idiza ion
o
2P-labeled
RP-4
wi h
HindIII
o
EcoRV
diges s
o
genomic
DNA
om
s ains
AMP2
and
PCC
7120
was
ca ied
ou
unde
high-s ingency
condi ions.
Ma ings
be ween
cyanobac e ia.
Cells
o
s ain
NW18
and
o
a
dono
s ain
ca ying
he
np
gene
in eg a ed
in
i s
genome
we e
ha es ed
and
washed
wi h
BG11
medium
by
low-speed
cen i uga ion,
mixed,
and
sp ead
on
Nuclepo e
REC-85
il e s
se
a op
pla es
o
solid
BG11
medium.
The
dono
s ain
used
in
mos
expe imen s
was
AMP2
(16),
bu
s ain
EFI
16(pRL52)
(9)
was
also
ied.
An
amoun
o
cells
con aining
abou
4
,ug
o
chlo ophy!l
o
he
dono
s ain
and
8
,ug
o
chlo ophyll
o
s ain
NW18
was
inocula ed
pe
pla e
(1
,ug
o
chlo ophyll
co e-
sponds
o
ca.
3.3
x
106
cells
o
hese
cyanobac e ia).
A e
48
h
o
incuba ion
unde
g ow h
condi ions,
he
il e s
we e
ans e ed
o
pla es
o
BG11
medium
supplemen ed
wi h
25
,ug
o
NM
pe
ml
and
20
p,g
o
SM
pe
ml
and
u he
incuba ed
o
2
o
4
weeks.
Nuclease
assays.
Nuclease
assays
in
DNA-con aining
SDS-
polyac ylamide
gel
elec opho esis
(SDS-PAGE)
gels
we e
pe o med
essen ially
as
desc ibed
p e iously
(19)
bu
wi h
modi ica ions
(16).
Samples
we e
subjec ed
o
elec opho esis
in
gels
con aining
15
,ug
o
cal
hymus
DNA
( ype
IV;
Sigma)
pe
ml.
A e
elec opho esis,
p o eins
we e
ena u ed
by
gen le
agi a ion
o
he
gels
in
nuclease
bu e ,
and
gels
we e
incuba ed
o e nigh
in
he
same
bu e
o
allow
enzyma ic
deg ada ion
o
embedded
nucleic
acids.
The
gels
we e
hen
s ained
wi h
e hidium
b omide
and
pho og aphed
unde
UV
illumina ion.
Fo
p epa a ion
o
cell
ex ac s
o
cyanobac e ia,
cells
(ca.
200
,ug
o
chlo ophyll)
we e
suspended
in
0.25
ml
o 10
mM
T is-HCl
bu e
(pH
7.5)
con aining
1
mM
phenylme hylsul o-
nyl
luo ide
and
hen
subjec ed
o
eezing
in
liquid
ai
in
a
p echilled
mo a
and
g inding.
The
homogena e
was
cen i-
uged
a
10,000
x
g
o
10
min.
The
esul ing
supe na an
solu ion
cons i u ed
he
cell
ex ac .
P o ein
concen a ion
in
cell
ex ac s
was
es ima ed
as
desc ibed
p e iously
(5).
P o ein
concen a ion
in
cell
suspensions
was
es ima ed
by
he
me hod
o
Ma kwell
e
al.
(15).
RESULTS
AND
DISCUSSION
Loca ion
o
nucA
in
he
a
megaplasmid.
S ain
AMP2
is
a
de i a i e
o
Anabaena
sp.
s ain
PCC
7120
in
which
he
nucA
gene
had
been
inac i a ed
by
he
inse ion
o
C.K3,
a
casse e
bea ing
he
np
gene
om
Tn5
(16).
DNA
o
high
molecula
weigh
was
isola ed
om
PCC
7120
and
AMP2
and
subjec ed
o
diges ion
wi h
Ps I
o
Sall,
and
he
es ic ion
agmen s
hus
gene a ed
we e
esol ed
as
desc ibed
p e iously
(2).
The
pa e n
o
bands
(4,
11)
ob ained
in
each
o
he
wo
diges ions
was
iden ical
o
PCC
7120
and
AMP2,
excep
ha
he
band
co esponding
o
he
o
megaplasmid
(Fig.
1,
a ow
a),
a
plasmid
o
410
kb
p esen
in
Anabaena
sp.
s ain
PCC
7120
ha
bea s
a
single
si e
o
Sall
(3,
4),
was
eplaced
by
bands
o
ca.
390
(Fig.
1,
a ow
c)
and
19
(no
seen
in
Fig.
1)
kb
in
he
Sall
diges
o
AMP2
because
o
he
p esence
o
a
Sall
si e
nea
he
end
o
he
np -con aining
casse e
inse ed
in
nucA
in
AMP2.
In
addi ion,
he
a
megaplasmid
om
AMP2
is
linea -
ized
by
Ps I
(Fig.
1,
a ow
b)
because
o
he
in oduc ion
o
a
Ps I
es ic ion
si e
on
he
inse ed
casse e.
These
esul s
1
2
3
4
b
c
-500
*-
a
-400
-300
-200
100
FIG.
1.
Al e a ion
o
Anabaena
sp.
s ain
PCC
7120
a
megaplasmid
by
he
inse ion
o
casse e
C.K3
in o
he
nucA
gene
encoding
a
suga -nonspeci ic
nuclease.
DNA
o
high
molecula
weigh
om
s ains
AMP2
(lanes
1
and
2)
o
PCC
7120
(lanes
3
and
4)
was
subjec ed
o
diges ion
wi h
Ps I
(lanes
1
and
3)
o
Sall
(lanes
2
and
4)
and
esol ed
by
he
PHOGE
sys em.
A ow
a
poin s
o
plasmid
ao
(410
kb)
in
Sall-diges ed
s ain
PCC
7120
DNA,
whe eas
a ow
c
poin s
o
a
diges ion
p oduc
o
his
plasmid
in
Sall-diges ed
DNA
o
s ain
AMP2.
A ow
b
poin s
o
plasmid
a
in
Ps I-diges ed
DNA
o
s ain
AMP2.
The
posi ions
o
se e al
size
ma ke s
(in
kilobases),
as
deduced
om
a
48.5-kb
lambda
ladde ,
a e
shown
o
he
igh
o
he
igu e.
The
e ec
o
DNA
concen a ion
on
he
dis ance
o
mig a ion
was
dis-
cussed
p e iously
(11).
sugges ed
ha
he
nucA
gene
was
loca ed
in
he
a
megaplas-
mid.
To
es
his
possibili y
u he ,
labeled
plasmid
pRLA1,
which
ca ies
he
nucA
gene
and
lanking
DNA,
was
used
o
p obe
high-molecula -weigh
DNA
o
s ain
PCC
7120
ha
had
been
diges ed
wi h
BlnI,
Ps I,
o
Sall,
esol ed
by
PHOGE,
and
blo ed.
A
s ong
hyb idiza ion
signal
esul ed
in
he
band
ha ep esen s
he
linea ized
a
megaplasmid
(Fig.
2).
Megaplasmid
a,
poo ly
seen
on
he
PHOGE
gels
o
ei he
Ps I
o
BlnI
diges s
o
DNA
om
wild- ype
PCC
7120
( he e
a e
no
si es
o
Ps I
o
BlnI
in
he
(x
megaplasmid),
is
isualized
in
Sou he n
hyb idiza ions
because
some
megaplasmid
linea ized
by
nicking
en e s
he
gel.
Plasmids
anging
in
size
om
ca.
1.5
kb
o
1
Mb
ha e
been
desc ibed
in
he
cyanobac e ia
(10,
17,
26).
All
cyanobac e ial
plasmids
he e o o e
s udied
emain
c yp ic;
i.e.,
beyond
epli-
ca ion
unc ions
(20,
24-26,
30),
he e
a e
no
known
unc ions
encoded
by
hem
excep
ha
a
no mally
silen
copy
o
psbG
has
been
ound
o
be
plasmid
localized
in
Synechocys is
sp.
s ain
PCC
6803
(22).
Ou
da a
show
ha
nucA
ep esen s
he
i s
exp essed
ma ke
o
an
indigenous
cyanobac e ial
plasmid
(11).
T ans e
o
nucA::C.K3
be ween
cyanobac e ial
s ains.
Many
la ge,
bac e ial
plasmids
a e
sel - ansmissible
by
conju-
ga ion
(27).
Conjugal
ans e
o
plasmid
DNA
om
E.
coli
o
Anabaena
sp.
p oceeds
e icien ly
(29),
bu
gene ic
ans e
be ween
cyanobac e ial
cells
(see,
e.g.,
e e ence
23)
has
no
been
unequi ocally
demons a ed
p e iously.
The
nucA
gene,
and
he e o e
he
nucA
::C.K3
cons uc ion
p esen
in
s ain
AMP2,
ep esen s
a
ma ke
o
he
a-
megaplasmid
o
Anabaena
sp.
s ain
PCC
7120.
Conjuga ion
be ween
cya-
nobac e ia
was
sough
by
using
his
ma ke .
We
sough
o
ans e
nucA::C.K3
om
s ain
AMP2
o
NW18,
an
Sm
de i a i e
o
Anabaena
sp.
s ain
PCC
7118.
Like
i s
pa en
s ain
PCC
7118,
s ain
NW18
is
unable
o
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B
1
2
3
4
5
a
a
11.38-
4.4-
2.61-
1.7-
FIG.
2.
Localiza ion
o
he
nucA
gene
in
he
a
megaplasmid.
(A)
High-molecula -weigh
DNA
om
Anabaena
sp.
s ain
PCC
7120
was
diges ed
wi h
BlnI
(lane
1),
Ps I
(lane
2),
o
Sall
(lane
3),
and
he
agmen s
we e
esol ed
by
PHOGE.
Lane
4
con ains
lambda
DNA
oligome s.
(B)
Hyb idiza ion
o
he
PHOGE- esol ed
agmen s
wi h
32P-labeled
nucA-con aining
plasmid
pRLA1
is
shown.
The
posi ion
o
he
linea ized
a
megaplasmid
is
indica ed.
The
posi ions
o
se e al
size
ma ke s
(in
kilobases),
as
deduced
om
he
48.5-kb
lambda
ladde ,
a e
shown
o
he
igh
o
he
igu e.
de elop
he e ocys s
o
o
ix
dini ogen
unde
ae obic
condi-
ions,
whe eas
AMP2,
like
i s
pa en
PCC
7120,
makes
he e o-
cys s
and
can
g ow
on
dini ogen
unde
ae obic
condi ions.
Anabaena
sp.
s ain
PCC
7120
and
i s
de i a i e
AMP2
ha e
he
410-kb
megaplasmid
men ioned
abo e,
whe eas
de i a i e
NW18
o
Anabaena
sp.
s ain
PCC
7118
bea s
a
510-kb
plasmid,
de ec ed
by
pulsed- ield
gel
elec opho esis
o
un e-
s ic ed
DNA
(da a
no
shown).
Cells
o
s ains
AMP2
and
NW18
we e
mixed
and
sp ead
on
il e s
se
a op
pla es
o
solid
cyanobac e ial
medium
(see
Ma e ials
and
Me hods
o
de-
ails).
F om
a
o al
amoun
o
ca.
6.6
x
108
cells
o
s ain
NW18
and
ca.
3.3
x
108
cells
o
s ain
AMP2,
in
se e al
expe imen s,
117
Nm
Sm
colonies
we e
ob ained.
Se en y-six
o
hese
colonies
we e
es ed
o
he
abili y
o
g ow
on
dini ogen
unde
ae obic
condi ions
(an
unselec ed
ma ke ),
and
all
we e
ound
o
be
unable
o
do
so,
implying
ha
hey
we e
Nm
de i a i es
o
s ain
NW18
a he
han
Sm
de i a-
i es
o
s ain
AMP2.
Because
we
ha e
ound
ha
spon aneous
Nm
mu an s
appea
a
a
equency
o
less
han
10-9
pe
cell,
Nm
de i a i es
o
s ain
NW18
we e
expec ed
o
ha e
e-
cei ed
he
C.K3
casse e
om
s ain
AMP2
a he
han
o
ha e
a isen
om
spon aneous
mu a ion.
Sou he n
blo
analysis
o
o al
DNA
isola ed
om
se e al
Nm
Sm
de i a i es
ha
was
p obed
wi h
a
32P-labeled,
C.K3-con aining
DNA
agmen
showed
ha
hose
de i a i es
con ained
he
C.K3
casse e
(Fig.
3A).
In
addi ion,
a
Sou he n
blo
o
o al
DNA
isola ed
om
s ains
AMP2
and
NW18
and
i e
Nm
Sm
de i a i es
was
p obed
wi h
a
32P-labeled
in e nal
agmen
o
he
nucA
gene
(Fig.
3B).
The
esul s
ob ained
(see
lowe
band
in
each
lane)
indica e
ha
he
nucA::C.K3
cons uc
o iginally
p esen
in
s ain
AMP2
( ha
esul s
in
a
Clal
band
o
ca.
5.7
kb)
had
eplaced
he
wild- ype
nucA
gene
o
s ain
NW18
( ha
esul s
in
a
ClaI
band
o
ca.
4.4
kb)
in
he
i e
Nm
Sm
de i a i es
ha
we e
examined.
Mo eo e ,
unlike
NW18,
hese
s ains
exhib-
i ed
no
ac i i y
o
he
29-kDa
nuclease
in
SDS-PAGE
assays
(Fig.
4).
The
uppe
nucA-hyb idizing
bands
obse ed
in
AMP2
FIG.
3.
Sou he n
analysis
o
Nm
Sm
de i a i es.
To al
DNA
om
dono
s ain
AMP2,
ecipien
s ain
NW18,
and
i e
Nm
Sm
de i a-
i es
(lanes
1
o
5)
was
diges ed
wi h
Clal
and
hyb idized
wi h
a
1.1-kb
BamHI
DNA
agmen
con aining
he
TnS
np
gene
in
casse e
C.K3
(A)
o
a
473-bp
HindIlI-Bs NI
DNA
agmen
in e nal
o
he
nucA
gene
o
Anabaena
sp.
s ain
PCC
7120
(B).
Hyb idiza ion
was
ca ied
ou
unde
condi ions
o
high
s ingency
(see
Ma e ials
and
Me hods).
The
posi ions
o
se e al
size
s anda ds
(in
kilobases)
a e
shown
o
he
le
o
he
igu e.
and
NW18
in
Fig.
3B
do
no
co espond
o
a
gene
ha
encodes
an
ac i e
29-kDa
nuclease
(16)
(Fig.
4).
Figu e
5
p esen s
a
Sou he n
blo
o
PHOGE- esol ed
high-molecula -weigh
DNA
om
s ains
PCC
7120,
AMP2,
and
NW18,
and
wo
Nm
Sm
de i a i es,
p obed
wi h
pRLA1
(nucA).
The
a
megaplasmid
o
Anabaena
sp.
s ain
PCC
7120
has
single
es ic ion
si es
o
SphI
and
Sall
ha
a e
abou
105
kb
dis an
om
one
ano he
(4).
In oduc ion
o
C.K3
in o
nucA
added
a
second
Sall
si e
ca.
19
kb
dis an
om
he
i s
(sizing
da a
no
shown),
a
Ps I
si e
a
which
he
plasmid
can
be
linea ized,
and
a
second
SphI
si e
ca.
126
kb
dis an
om
he
i s
(Fig.
5,
lanes
4
and
5;
Fig.
1).
The
510-kb
megaplasmid
o
s ain
NW18
also
appea s
o
ha e
single
si es
o
SphI
and
Sall
(no
shown)
as
well
as
a
locus
ha
hyb idizes
wi h
pRLA1
(Fig.
0
N
co
<
Z
1
2
3
4
5
29-kDa
nuclease
FIG.
4.
Nuclease
ac i i y
o
cell
suspensions
om
wild- ype
Anabaena
sp.
s ain
PCC
7120,
dono
s ain
AMP2,
ecipien
s ain
NW18,
and
se e al
Nm
Sm
de i a i es
(lanes
1
o
5).
Cul u e
samples
con aining
5
o
10
,ug
o
p o ein
we e
used.
The
loca ion
o
he
29-kDa
nuclease
(NucA)
is
indica ed.
A
1
234
A
1
234
!
I:
N
Co
0z
2
3
4
5
VOL.
176,
1994
1
im.
I-
7717.
`
77"77777..
I
on July 25, 2017 by USE/BTCA.GENERAL UNIVERSITARIA Se illah p://jb.asm.o g/Downloaded om
1096
MURO-PASTOR
ET
AL.
Sphl
Ps l
Sall
1
23
4
5
X1
23
4
5
X
1
23
4
5
510
kb
**
***
440
0;
i*
0
i
*
i
i
;
X;0i-
410kb
FIG.
5.
Sou he n
analysis
o
PHOGE
gel
o
NM
SM
de i a i es.
Aga ose
beads
con aining
DNA
de i ed
om
NW18
(lanes
1)
NM
SM
de i a i e
2
(lanes
2),
NM
Sm
de i a i e
(lanes
3),
AMP2
(lanes
4),
and
wild- ype
PCC
7120
(lanes
5)
we e
subjec ed
o
PHOGE
analysis
as
desc ibed
p e iously
(11)
a e
diges ion
wi h
Sphl
(pa ial
diges
[
1
1]),
Ps l,
o
Sall.
A
Sou he n
blo
o
he
gel
was
p obed
wi h
pRLAL.
X,
beads
con aining
conca eme s
o
DNA
om
coliphage
lambda;
*,
size
o
his
agmen
measu ed
sepa a ely.
5,
lanes
1).
We
shall
e e
o
his
locus
as
he
nucA
gene
o
NW18.
The
NM
Sm
de i a i es
con ain
plasmids
ha
a e
app oxima ely
equal
in
size
o
he
ca.
510-kb
megaplasmid
o
NW18
(Fig.
5,
lanes
1
o
3;
Ps l
diges ion).
Upon
pa ial
diges ion
wi h
Sphl,
hese
plasmids
as
well
as
he
smalle
a.
megaplasmid
o
AMP2
gi e
ise
o
a
agmen
o
abou
126
kb
(Fig.
5,
lanes
2
o
4;
SphI
diges ion)
ha
measu es
he
dis ance
om
SphI
in
CdK3
(in
nucA)
o
he
unique
SphI
o
he
megaplasmid.
SaIl
cu s
he
same
megaplasmids
and
gi es
ise
o
agmen s
wi h
a
size
close
o
19
kb
(sizing
da a
no
shown).
(Bands
p esen
in
lanes
3
ha
a e
absen
om
lanes
2
a e
o
unclea
o igin.)
Acco ding
o
hese
esul s,
he
Sphl
and
Sail
si es
a e
as
a
om
nucA
in
he
la ges
megaplasmid
o
he
NM
SM
de i a i es
o
s ain
NW18
as
hey
a e
in
he
a
megaplasmid
o
PCC
7120.
These
esul s
sugges ed
ha ,
in
he
wo
NM
SM
de i a i es
in es iga ed,
he
nucA::C.K3
ma ke
had
been
inco po a ed
by
ecombina ion
in
he
megaplasmid
o
s ain
NW18.
The
p esence
o
he
CK3
ma ke
in
he
510-kb
plasmid
o
he
NM
SM
de i a i es
o
s ain
NW18
was
con i med
by
hyb idiza ion
using
casse e
CaK3
as
a
p obe.
When
DNA
diges ed
wi h
Sall
was
es ed,
Cu3
was
obse ed
o
hyb idize
(unde
he
condi ions
o
hyb idiza ion
used
o
he
PHOGE
gels)
only
o
he
19-kb
band
(da a
no
shown).
T ans e
o
he
C
a3
casse e
om
s ain
AMP2
o
s ain
NW18
was
no
a ec ed
by
he
p esence
o
bo ine
panc ea ic
DNase
(g ade
II;
Boeh inge
Mannheim),
which
was
added
a
7.5
s g/ml
bo h
o
he
mix u e
o
cells
be o e
hey
we e
sp ead
in
he
solid
medium
and
o
he
medium
in
he
pla es.
The e-
o e,
he
ans e
p esumably
did
no
in ol e
DNA
ee
in
he
medium.
T ans e
by
conjuga ion
is
possible,
al hough
o he
mechanisms
a e
no
excluded
(21).
Because
he
dono
s ain
used
in
he
ma ings,
AMP2,
is
i sel
an
exconjugan ,
de i ed
om
Anabaena
sp.
s ain
PCC
7120,
which
o igina ed
in
an
RP-4-p omo ed
conjuga ion
wi h
E.
coli,
i
was
possible
ha
s ain
AMP2
bo e
he
a
genes
om
RP-4
and
ha
hese
genes
we e
esponsible
o
he
phenom-
enon
o
DNA
ans e
be ween
cyanobac e ia
ha
we
ha e
obse ed.
The e o e,
we
es ed
by
hyb idiza ion
he
p esence
o
DNA
sequences
om
RP-4
in
s ain
AMP2.
No
e idence
o
he
p esence
o
RP-4
o
RP-4
agmen s
in
his
s ain
was
ound
(da a
no
shown).
To
es
whe he
ans e
occu s
speci ically
o
genes
in
he
a
megaplasmid,
we
sough
o
ans e
he
np
gene
om
s ain
EF116(pRL52)
o
s ain
NW18.
EF116
is
a
mu an
o
Anabaena
sp.
s ain
PCC
7120
ha
is
unable
o
ix
dini ogen
unde
ae obic
condi ions,
and
pRL52
is
an
np -bea ing
shu le
plasmid
whose
inse
complemen s
he
mu a ion
in
EF116
(9,
28).
In
ma ings
in ol ing, in
se e al
expe imen s,
a
o al
amoun
o
ca.
2.3
x
108
cells
o
s ain
NW18
and
ca.
1.15
x
108
cells
o
s ain
EF116(pRL52),
no
Nm
Sm
colonies
we e
ob ained.
These
nega i e
esul s
p o ide
no
e idence
ha
genes
loca ed
ou side
he
ao
megaplasmid
can
be
ans e ed.
Widesp ead
occu ence
o
nucA
in
he e ocys - o ming
cya-
nobac e ia.
I
was
o
in e es
o
es
how
widesp ead
he
nucA
gene
is
in
cyanobac e ia
o he
han
s ain
PCC
7120.
Judging
by
DNA-DNA
eassocia ion
expe imen s,
Anabaena
sp.
s ains
010
u
C)~~~~~~~~~"
.
C
qj
UC
a^
qb
s
.
U
xu
e~
xu
xu
x
Cu
2
0
o0
CQ
11.38
*
10.50'
*
4.40-
2.61
-
2.06
-
1.70
-
1.11
-
0.66
-
FIG.
6.
Hyb idiza ion
o
DNA
om
se e al
he e ocys - o ming
cyanobac e ia
wi h
he
nucA
gene
om
Anabaena
sp.
s ain
PCC
7120.
To al
DNA
om
each
o
he
cyanobac e ia
was
diges ed
wi h
EcoRV
and
hyb idized
o
a
473-bp
HindIII-Bs NI
agmen
in e nal
o
he
nucA
gene
o
Anabaena
sp.
s ain
PCC
7120.
Hyb idiza ion
was
ca ied
ou
unde
condi ions
o
high
s ingency
(see
Ma e ials
and
Me hods).
The
posi ions
o
size
s anda ds
(in
kilobases)
a e
indica ed
o
he
le
o
he
igu e.
J.
BACTERIOL.
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TRANSFER
BETWEEN
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1097
TABLE
1.
P esence
o
absence
o
nucA
gene-hyb idizing
DNA
and
a
nuclease
o
abou
29
kDa
in
some
unicellula
and
ilamen ous,
he e ocys - o ming
cyanobac e ia
S aina
Hyb idi-
29-kDa
za ionb
nucleasec
G oup
A
Anabaena
a iabilis
ATCC
29413-FD
+
+
Anabaena
sp.
s ain
PCC
6411
(ATCC
27898)
+
+
Anabaena
sp.
s ain
PCC
7118
(ATCC
27892)
+
+
Anabaena
sp.
s ain
PCC
7119
(ATCC
29151)
+
+
Nos oc
sp.
s ain
PCC
6705
(ATCC
29131)
+
+
Nos oc
sp.
s ain
PCC
6719
(ATCC
29105)
+
+
G oup
B
Calo h ix
sp.
s ain
PCC
7601
+
+
Fische ella
muscicola
UTEX
1829
+
Nos oc
ellipsospo um
B
1453-7d
+
+
Nos oc
sp.
s ain
ATCC
43237
+
NDe
Nos oc
sp.
s ain
PCC
7107
(ATCC
29150)
+
Nos oc
sp.
s ain
PCC
7422
(ATCC
29132)
+
+
Nos oc
sp.
s ain
PCC
7413
(ATCC
29106)
+
+
G oup
C
Gloeobac e
sp.
s ain
PCC
7421
(ATCC
29082)
-
ND
Synechococcus
sp.
s ain
PCC
7202
(ATCC
29140)
-
-
Synechococcus
sp.
s ain
PCC
7425
(ATCC
29141)
-
-
Synechococcus
sp.
s ain
PCC
7942
-
-
Synechocys is
sp.
s ain
PCC
6308
(ATCC
27150)
-
-
Synechocys is
sp.
s ain
PCC
6803
(ATCC
27184)
-
-
a
G oup
A
includes
de i a i e
FD
o
A.
a iabilis
(6a)
and
cyanobac e ia
ha ,
as
desc ibed
by
Lachance
(12),
a e
closely
ela ed
o
Anabaena
sp.
s ain
PCC
7120.
a
G oup
B
includes
he e ocys - o ming
cyanobac e ia
ha
a e
no
(see
oo no e
d
below)
as
closely
ela ed
o
Anabaena
sp.
s ain
PCC
7120.
G oup
C
includes
unicellula
s ains.
ATCC,
Ame ican
Type
Cul u e
Collec ion;
PCC,
Pas eu
Cul u e
Collec ion;
UTEX,
Uni e si y
o
Texas
Cul u e
Collec ion.
N.
ellipsospo um
B
1453-7
was
ob ained
om
he
Uni e si y
o
Go ingen.
b
Hyb idiza ion
was
ca ied
ou
a
high
s ingency
o
s ains
in
g oup
A
and
a
low
s ingency
o
s ains
in
g oups
B
and
C
(see
Ma e ials
and
Me hods).
c
P esence
o
a
nuclease
o
abou
29
kDa
as
shown
by
he
SDS-PAGE
nuclease
assay
(see
Ma e ials
and
Me hods)
o
cell
ex ac s
(30
,ug
o
p o ein
o
s ains
in
g oup
A
and
90
,ug
o
p o ein
o
s ains
in
g oups
B
and
C).
dN.
ellipsospo um
ga e
a
pa icula ly
s ong
hyb idiza ion
signal
and,
as
p e iously
discussed
(8),
may
be
closely
ela ed
o
s ains
in
g oup
A.
'ND,
no
de e mined.
PCC
6411,
PCC
7118,
and
PCC
7119
and
Nos oc
sp.
s ains
PCC
6719
and
PCC
6705
a e
phylogene ically
e y
closely
ela ed
o
s ain
PCC
7120
(12).
We
ha e
in es iga ed,
by
means
o
Sou he n
analysis,
whe he
he
nucA
gene
is
p esen
in
hese
cyanobac e ia.
A
32P-labeled
in e nal
p obe
o
he
nucA
gene
(co esponding
o
amino
acids
52
o
210
o
he
NucA
p o ein)
was
used
o
hyb idiza ion
wi h
o al
DNA
om
he
cyanobac e ia
men ioned
abo e
unde
condi ions
o
high
s ingency.
The
esul s
in
Fig.
6
show
ha
all
o
hese
s ains,
as
well
asA.
a iabilis
ATCC
29413,
ca y
DNA
sequences
ha
exhibi
homology
o
nucA.
DNA
om
o he
he e ocys - o m-
ing
cyanobac e ia
ha
a e
no
as
closely
ela ed
o
s ain
PCC
7120
and
om
six
di e se
unicellula
cyanobac e ia
was
es ed
o
hyb idiza ion
wi h
he
nucA
p obe
om
s ain
PCC
7120
unde
condi ions
o
low
s ingency.
All
o
he
ilamen ous,
he e ocys - o ming
s ains
es ed,
bu
none
o
he
unicellula
s ains,
showed
hyb idiza ion
o
he
nucA
p obe
(da a
no
shown).
The
esul s
ob ained
a e
summa ized
in
Table
1.
Table
1
also
shows
he
esul s
o
es ing,
by
means
o
a
DNA-
con aining,
SDS-PAGE
assay
(see
Ma e ials
and
Me hods),
whe he
some
o
he
cyanobac e ial
s ains
con ain
a
nuclease
o
abou
29
kDa,
which
is
he
size
o
he
p o ein
encoded
by
he
nucA
gene
o
Anabaena
sp.
s ain
PCC
7120.
Wi h
he
excep-
ion
o
Fische ella
muscicola
and
Nos oc
sp.
s ain
PCC
7107,
in
which
no
nuclease
ac i i y
was
de ec ed,
all
o
he
s ains
es ed
whose
DNA
hyb idized
wi h
he
nucA
p obe
also
exhibi ed
a
nuclease
o
ca.
29
kDa.
I
is
possible
ha
he
nucA-hyb idizing
sequences
in
F.
muscicola
and
Nos oc
sp.
s ain
PCC
7107
do
no
encode
an
ac i e
nuclease
o
ha
assay
by
SDS-PAGE
is
no
sui able
o
he
nuclease
om
hose
pa icula
cyanobac-
e ia.
We
conclude
ha
he
nucA
gene
is
commonly
p esen
in
he
he e ocys - o ming
cyanobac e ia
bu
no
in
some
o he
cyanobac e ia.
I
he
gene
ans e
ha
we
obse ed
was
due
o
conjuga ion,
conjuga ion
could
accoun
o
la e al
ans e
o
a
megaplasmid,
and
hus
o
nucA,
be ween
s ains.
Concluding
ema ks.
The
esul s
p esen ed
in
his
wo k
show
ha
he
nucA
gene
is
loca ed
in
he
a.
megaplasmid
o
Anabaena
sp.
s ain
PCC
7120
and
ha
a
ma ked
e sion
o
nucA
(nucA::np )
can
be
ans e ed
om
s ain
PCC
7120
di ec ly
o
ano he
s ain
o
Anabaena
sp.
Al hough
he
e iciency
o
ans e
plus
ecombina ion
appea s
low,
i
may
be
amenable
o
inc ease
by
mu a ion
(27).
The
inding
o
a
na u ally
occu ing
ans e
sys em
ep esen s
a
no el
aspec
o
he
biology
o
cyanobac e ia.
Fu he
esea ch
will
be
neces-
sa y
i
he
p ocess
is
o
be
made
use ul
as
a
gene ic
ool.
The
ac
ha
he
a
megaplasmid
om
PCC
7120
ecom-
bined
wi h
he
megaplasmid
om
PCC
7118
a he
han
eplacing
i
may
sugges
ha
he
a
megaplasmid
is
no
ans e ed
en i ely,
al hough
o he
in e p e a ions
a e
possi-
ble.
T ans e
by
conjuga ion
migh
be
abo ed
be o e
he
plasmid
is
comple ely
ans e ed
so
ha
(i)
he
equency
o
ans e
o
a
plasmid-bo ne
gene ic
ma ke
would
depend
on
i s
dis ance
om
he
o igin
o
ans e ,
and
(ii)
acquisi ion
o
a
ma ke
would
depend
upon
i s
inco po a ion
in o
an
endoge-
nous
eplicon.
I
ecombina ion
is
a
low- equency
e en ,
as
i
is
upon
conjugal
ans e
om
E.
coli
(ou
unpublished
obse -
a ions),
ans e
o
nucA::np
o
NW18
may
be
a
much
mo e
equen
e en
han
we
obse ed.
ACKNOWLEDGMENTS
We
hank
Nancy
Wood
o
Anabaena
sp.
s ain
NW18
and
Ma ia
Isabel
Mu o-Pas o
o
help
wi h
some
hyb idiza ions.
Wo k
in
Se ille
was
suppo ed
by
he
Jun a
de
Andalucia
(g oup
no.
3057)
and
by
he
Di ecci6n
Gene al
de
In es igaci6n
Cien i ica
y
Tecnica
(g an
no.
PB90-0114),
Spain.
Wo k
in
Eas
Lansing
was
suppo ed
by
he
U.S.
Depa men
o
Ene gy
g an
DE-FG02-
90ER20021
and
he
Cen e
o
Mic obial
Ecology.
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