Abstract

A combined subtraction hybridization and polymerase chain reaction/amplification technique was used to develop a DNA probe which was specific for the Rhizobium leguminosarum biovar phaseoli and the Rhizobium tropici group. Total genomic DNA preparations from Rhizobium leguminosarum biovar viciae, Rhizobium leguminosarum biovar trifolii, Rhizobium sp., Agrobacterium tumefaciens, Rhizobium fredii, Bradyrhizobium japonicum, Bradyrhizobium ssp. and Rhizobium meliloti were pooled and used as subtracter DNA against total genomic DNA from the Rhizobium leguminosarum biovar phaseolo strain KIM5s. Only one round of subtraction hybridization at 65°C was necessary to remove all cross-hybridizing sequences. Dot blot hybridizations with total genomic DNA of the eight subtracter organisms and 29 bacteria of different groups confirmed the high specificity of the isolated DNA sequences. Dot blot hybridizations and total genomic DNA from ten different R. Leguminosarum biovar phaseoli and R. tropici strains resulted in strong hybridization signals for all strains tested. The DNA probe for the R. tropici and R. leguminosarum biovar phaseoli group was used for dot blot hybridization with DNA extracts from three tropical and one boreal soil. When correlated with data from Most Probable Number analyses the probe was capable of detecting as low as 3 × 104 homologous indigenous rhizobia per g soil. The technique offers great benefits for the development of DNA probes for monitoring bacterial populations in environmental samples.

References

1

Bottomley
P.J.
(
1992
)
Ecology of Bradyrhizobium and Rhizobium
In
Biological Nitrogen Fixation
Stacey
G.
Burris
R.H.
Evans
H.J.
, Eds) pp
293
348
Chapman & Hall
,
New York, London
.

2

Eaglesham
A.R.J.
(
1989
)
Global importance of Rhizobium as an inoculant
In
Microbial Inoculation of Crop Plants
Campbell
R.
, Ed) pp
29
48
IRL Press
,
Oxford, New York and Tokyo
.

3

Smith
R.S.
(
1992
)
Legume inoculant formulation and application
Can. J. Microbiol.
,
38
,
485
492
.

4

Dowling
D.N.
Broughton
W.J.
(
1986
)
Competition for nodulation of legumes
Ann. Rev. Microbiol.
,
40
,
131
157
.

5

Thies
J.E.
Singleton
P.W.
Bohlool
B.B.
(
1991
)
Influence of the size of indigenous rhizobial populations on establishment and symbiotic performance of introduced rhizobia on field-grown legumes
Appl. Environm. Microbiol.
,
57
,
19
28
.

6

Thies
J.E.
Singleton
P.W.
Bohlool
B.B.
(
1991
)
Modeling symbiotic performance of introduced rhizobia in the field by use of indices of indigenous population size and nitrogen status of the soil
Appl. Environm. Microbiol.
,
57
,
29
37
.

7

Thies
J.E.
Singleton
P.W.
Bohlool
B.B.
(
1991
)
Sub-groups of the cowpea miscellany: Symbiotic specificity within Bradyrhizobium ssp. for Vigna unguiculata, Phaseolus lunatus, Arachis hypogaea and Macroptilium atropureum.
Appl. Environm. Microbiol.
,
57
,
1540
1545
.

8

Thies
J.E.
Singleton
P.W.
Bohlool
B.B.
(
1992
)
Environmental effects on competition for nodule occupancy between introduced and indigenous rhizobia and among introduced strains
Can. J. Microbiol.
,
38
,
493
500
.

Drahos, 1991

Drahos
D.J.
(
1991
)
Methods for the detection, identification and enumeration of microbes
In
Microbial Ecology of Leaves
Andrews
J.H.
Hirano
S.S.
, Eds)
Springer Publishers
,
New York
.

10

Hiney
M.
Dawson
M.T.
Heery
D.M.
Smith
P.R.
Gannon
F.
Powell
R.
(
1992
)
DNA probe for Aeromonas salmonicida
Appl. Environm. Microbiol.
,
58
,
1039
1042
.

11

Ruben
F.A.
Kopecko
D.J.
Noon
K.F.
Baron
L.S.
(
1985
)
Development of a DNA probe to detect Salmonella typhi
J. Clin. Microbiol.
,
22
,
600
605
.

12

Wood
P.K.
Morris
J.G.
Small
P.L.
Sethabutr
O.
Toledo
M.R.F.
Trabulsi
K.J.B.
(
1986
)
Comparison of DNA probes with the sereny test in the identification of invasive strains of Shigella and Escherichia coli
J. Clin. Microbiol.
,
24
,
498
500
.

13

Blackburn
J.W.
Jain
R.K.
Sayler
G.S.
(
1987
)
Molecular microbiol ecology of a naphtalene-degrading genotype in activated sludge
Environm. Sci. Technol.
,
21
,
884
889
.

14

Holben
W.E.
Jansson
J.K.
Chelm
B.K.
Tiedje
J.M.
(
1988
)
DNA probe method for the detection of specific microorganisms in the soil bacterial community
Appl. Environm. Microbiol.
,
54
,
703
711
.

15

Linne von Berg
K.H.
Bothe
H.
(
1992
)
The distribution of denitrifying bacteria in soils monitored by DNA-probing
FEMS Microbiol. Ecol.
,
86
,
331
340
.

16

Walia
S.
Khan
A.
Rosenthal
N.
(
1992
)
Construction and application of DNA probes for detection of polychlorinated biphenyl degrading genotypes in toxic organic contaminated soil environments
Appl. Environm. Microbiol.
,
56
,
254
259
.

17

Bjourson
A.J.
Stone
C.E.
Cooper
J.E.
(
1992
)
Combined subtraction hybridization and polymerase chain reaction amplification procedure for isolation strain-specific Rhizobium DNA sequences
Appl. Environm. Microbiol.
,
58
,
2296
2301
.

18

Werner
D.
Wilcockson
J.
Zimmerman
E.
(
1975
)
Adsorption and selection of rhizobia by ion exchange papers
Arch. Microbiol.
,
105
,
27
32
.

19

Sylvester-Bradley
R.
Kipe-Nolt
J.
(
1988
)
Legume-Rhizobium symbiosis: Methods manual for evaluation, selection and agronomic management
Centro Internacional de Agricultura Tropical
Cali, Colombia
.

20

Normand
P.
Bousquet
J.
(
1989
)
Phylogeny of nitrogenase sequences in Frankia and other nitrogen-fixing organims
J. Mol. Evol.
,
29
,
437
447
.

21

Woese
C.R.
(
1987
)
Bacterial evolution
Microbiol. Rev.
,
51
,
221
271
.

22

Woese
C.R.
Stackebrandt
E.
Weisburg
W.E.
Paster
B.J.
Madigan
M.T.
Fowler
V.J.
Hahn
C.M.
Blanz
P.
Gupta
R.
Nealson
K.H.
Fox
G.E.
(
1984
)
The phylogeny of purple bacteria: The alpha subdivision
Syst. Appl. Microbiol.
,
5
,
315
326
.

23

Steffan
R.J.
Goksoyr
J.A.
Bej
K.
Atlas
R.M.
(
1988
)
Recovery of DNA from soils and sediments
Appl. Environm. Microbiol.
,
54
,
2908
2915
.

24

Tsai
Y.L.
Olson
B.H.
(
1991
)
Rapid method for direct extractions of DNA from soil and sediments
Appl. Environm. Microbiol.
,
57
,
1070
1074
.

This content is only available as a PDF.