Abstract
The spatial and genetic unit of bacterial population structure is the clone. Surprisingly, very little is known about the spread of a clone (spatial distance between clonally related bacteria) and the relationship between spatial distance and genetic distance, especially at very short scale (microhabitat scale), where cell division takes place. Agrobacterium spp. Biovar 1 was chosen because it is a soil bacterial taxon easy to isolate. A total of 865 microsamples 500 microm in diameter were sampled with spatial coordinates in 1 cm(3) of undisturbed soil. The 55 isolates obtained yielded 42 ribotypes, covering three genomic species based on amplified ribosomal DNA restriction analysis (ARDRA) of the intergenic spacer 16S-23S, seven of which contained two to six isolates. These clonemates (identical ARDRA patterns) could be found in the same microsample or 1 cm apart. The genetic diversity did not change with distance, indicating the same habitat variability across the cube. The mixing of ribotypes, as assessed by the spatial position of clonemates, corresponded to an overlapping of clones. Although the population probably was in a recession stage in the cube (10(3) agrobacteria g(-1)), a high genetic diversity was maintained. In two independent microsamples (500 microm in diameter) at the invasion stage, the average genetic diversity was at the same level as in the cube. Quantification of the microdiversity landscape will help to estimate the probability of encounter between bacteria under realistic natural conditions and to set appropriate sampling strategies for population genetic analysis.
MeSH Terms
Agriculture
Ecosystem
Genetic Variation
Population Dynamics
Rhizobium/classification,genetics,growth & development
Ribotyping
Soil Microbiology
Zea mays
Authors & Affiliations
5 authors, click to expand affiliations / ORCID
Vogel J
Ecologie Microbienne, UMR-CNRS 5557 and INRA, Université Claude Bernard-Lyon I, Boulevard du Novembre 11 1918, 69622 Villeurbanne Cedex, France.
Normand P
Thioulouse J
Nesme X
Grundmann G L
References (24)
24 references, click to expand
-
Adaptive radiation in a heterogeneous environment.
Nature. 1998 Jul 2;394(6688):69-72
PMID: 9665128
-
Strain, clone and species: comments on three basic concepts of bacteriology.
J Med Microbiol. 2000 May;49(5):397-401
PMID: 10798550
-
How clonal are bacteria?
Proc Natl Acad Sci U S A. 1993 May 15;90(10):4384-8
PMID: 8506277
-
High diversity in DNA of soil bacteria.
Appl Environ Microbiol. 1990 Mar;56(3):782-7
PMID: 2317046
-
Interpreting chromosomal DNA restriction patterns produced by pulsed-field gel electrophoresis: criteria for bacterial strain typing.
J Clin Microbiol. 1995 Sep;33(9):2233-9
PMID: 7494007
-
Detecting linkage disequilibrium in bacterial populations.
Genetics. 1998 Dec;150(4):1341-8
PMID: 9832514
-
What are bacterial species?
Annu Rev Microbiol. 2002;56:457-87
PMID: 12142474
-
Are eukaryotic microorganisms clonal or sexual? A population genetics vantage.
Proc Natl Acad Sci U S A. 1991 Jun 15;88(12):5129-33
PMID: 1675793
-
Seasonal fluctuations and long-term persistence of pathogenic populations of Agrobacterium spp. in soils.
Appl Environ Microbiol. 2002 Jul;68(7):3358-65
PMID: 12089015
-
Identification of Agrobacterium strains by PCR-RFLP analysis of pTi and chromosomal regions.
Arch Microbiol. 1994;161(4):300-9
PMID: 7911654
-
A mathematical method for determining genome divergence and species delineation using AFLP.
Int J Syst Evol Microbiol. 2002 Mar;52(Pt 2):573-86
PMID: 11931171
-
Assessing the genetic structure of microbial populations.
Proc Natl Acad Sci U S A. 1993 May 15;90(10):4334-6
PMID: 8506269
-
Sexuality in a natural population of bacteria--Bacillus subtilis challenges the clonal paradigm.
Mol Ecol. 1992 Aug;1(2):95-103
PMID: 1344989
-
Mathematical model for studying genetic variation in terms of restriction endonucleases.
Proc Natl Acad Sci U S A. 1979 Oct;76(10):5269-73
PMID: 291943
-
Genetic differentiation between sympatric populations of Bacillus cereus and Bacillus thuringiensis.
Appl Environ Microbiol. 2002 Mar;68(3):1414-24
PMID: 11872495
-
Genetic Diversity through the Looking Glass: Effect of Enrichment Bias.
Appl Environ Microbiol. 1997 Apr;63(4):1326-31
PMID: 16535569
-
Genetic structure of a lotic population of Burkolderia (Pseudomonas) cepacia.
Appl Environ Microbiol. 1995 May;61(5):1791-8
PMID: 7646017
-
Microscale diversity of the genus Nitrobacter in soil on the basis of analysis of genes encoding rRNA.
Appl Environ Microbiol. 2000 Oct;66(10):4543-6
PMID: 11010914
-
[Taxonomic position of Agrobacterium strains of hospital origin].
Ann Microbiol (Paris). 1984 May-Jun;135A(3):427-42
PMID: 6087709
-
Biogeography and degree of endemicity of fluorescent Pseudomonas strains in soil.
Appl Environ Microbiol. 2000 Dec;66(12):5448-56
PMID: 11097926
-
Spatial Homogeneity of Abundant Bacterial 16S rRNA Molecules in Grassland Soils
Microb Ecol. 1998 Jul;36(1):31-6
PMID: 9622562
-
Novel tellurite-amended media and specific chromosomal and Ti plasmid probes for direct analysis of soil populations of Agrobacterium biovars 1 and 2.
Appl Environ Microbiol. 2001 Jan;67(1):65-74
PMID: 11133429
-
Genetic Structure of Rhizobium etli biovar phaseoli Associated with Wild and Cultivated Bean Plants (Phaseolus vulgaris and Phaseolus coccineus) in Morelos, Mexico.
Appl Environ Microbiol. 1994 Apr;60(4):1260-8
PMID: 16349234
-
Genetic diversity in natural populations of a soil bacterium across a landscape gradient.
Proc Natl Acad Sci U S A. 1988 Dec;85(24):9621-4
PMID: 16594009