» Articles » PMID: 8425061

DNA Amplification Fingerprinting of the Azolla-Anabaena Symbiosis

Overview
Journal Plant Mol Biol
Date 1993 Jan 1
PMID 8425061
Citations 8
Authors
Affiliations
Soon will be listed here.
Abstract

The Azolla-Anabaena symbiosis has been used for centuries as a nitrogen biofertilizer in rice paddies. Genetic improvement of the symbiosis has been limited by the difficulty in identifying Azolla-Anabaena accessions and Anabaena azollae strains. The recently developed technique of DNA amplification fingerprinting (DAF) was applied to this problem. DAF uses single, short, oligonucleotide primers of arbitrary sequence to direct amplification of a characteristic set of DNA products by a thermostable DNA polymerase in a thermocycling reaction. The products are separated in polyacrylamide gels and detected by silver staining. DAF could easily distinguish and positively identify accessions of Azolla-Anabaena with DNA extracted from the intact symbiosis. The contribution of prokaryotic Anabaena sequences to the fingerprint of the intact symbiosis, however, ranged from 0 to 77%, depending on the primer sequence. Therefore, DNA extracted from the intact symbiosis would not be suitable for Azolla taxonomy studies. The fingerprints of Anabaena strains isolated by sucrose gradient centrifugation from different species of Azolla could be easily distinguished, and DAF patterns were used to confirm the maternal pattern of transmission of Anabaena in a sexual hybrid. Template DNA extracted from roots was used to produce fingerprints for Azolla without interference from the microsymbiont. Comparison of the patterns from the parents and a hybrid gave strong evidence confirming sexual hybridization.

Citing Articles

Microbial Biodeterioration of Cultural Heritage: Events, Colonization, and Analyses.

Negi A, Sarethy I Microb Ecol. 2019; 78(4):1014-1029.

PMID: 31025063 DOI: 10.1007/s00248-019-01366-y.


RAPD fingerprinting of blackcurrant (Ribes nigrum L.) cultivars.

Lanham P, Brennan R, Hackett C, McNicol R Theor Appl Genet. 2013; 90(2):166-72.

PMID: 24173887 DOI: 10.1007/BF00222198.


Genetic diversity and phylogeny analysis of Anabaena azollae based on RFLPs detected in Azolla-Anabaena azollae DNA complexes using nif gene probes.

Van Coppenolle B, McCouch S, Watanabe I, Huang N, Van Hove C Theor Appl Genet. 2013; 91(4):589-97.

PMID: 24169885 DOI: 10.1007/BF00223284.


Phenotypic and genotypic comparison of symbiotic and free-living cyanobacteria from a single field site.

West N, Adams D Appl Environ Microbiol. 2006; 63(11):4479-84.

PMID: 16535734 PMC: 1389290. DOI: 10.1128/aem.63.11.4479-4484.1997.


Fingerprinting of cyanobacteria based on PCR with primers derived from short and long tandemly repeated repetitive sequences.

Rasmussen U, Svenning M Appl Environ Microbiol. 2005; 64(1):265-72.

PMID: 16349487 PMC: 124704. DOI: 10.1128/AEM.64.1.265-272.1998.


References
1.
Gebhardt J, Nierzwicki-Bauer S . Identification of a common cyanobacterial symbiont associated with Azolla spp. through molecular and morphological characterization of free-living and symbiotic cyanobacteria. Appl Environ Microbiol. 1991; 57(8):2141-6. PMC: 183541. DOI: 10.1128/aem.57.8.2141-2146.1991. View

2.
G Williams J, Kubelik A, Livak K, Rafalski J, Tingey S . DNA polymorphisms amplified by arbitrary primers are useful as genetic markers. Nucleic Acids Res. 1990; 18(22):6531-5. PMC: 332606. DOI: 10.1093/nar/18.22.6531. View

3.
Welsh J, McClelland M . Fingerprinting genomes using PCR with arbitrary primers. Nucleic Acids Res. 1990; 18(24):7213-8. PMC: 332855. DOI: 10.1093/nar/18.24.7213. View

4.
Plazinski J, Zheng Q, Taylor R, Croft L, Rolfe B, Gunning B . DNA probes show genetic variation in cyanobacterial symbionts of the azolla fern and a closer relationship to free-living nostoc strains than to free-living anabaena strains. Appl Environ Microbiol. 1990; 56(5):1263-70. PMC: 184393. DOI: 10.1128/aem.56.5.1263-1270.1990. View

5.
Caetano-Anolles G, Bassam B, Gresshoff P . DNA amplification fingerprinting using very short arbitrary oligonucleotide primers. Biotechnology (N Y). 1991; 9(6):553-7. DOI: 10.1038/nbt0691-553. View