Microbiology Molecular Biology Reviews 1997, 61:121–135 50 Davi

Microbiology Molecular Biology Reviews 1997, 61:121–135. 50. Davidson J: Genetic exchange between bacteria and the environment. Plasmid 1999, 42:73–91.CrossRef 51. Sessitsch A, Howieson JC, Perret X, Antoun H, CP673451 datasheet Martinez-Romero E:

Advances in Rhizobium Research. Critical Reviews in Plant Sciences 2002, 21:323–378.CrossRef 52. Vincent JM: A Manual for the Study of Root-Nodule Bacteria. IBP Handbook No. 15 England: Oxford; Blackwell scientific Publications 1970. 53. Hewitt EJ: Sand and Water Culture Methods Used in the Study of Plant Nutrition. Technical Communication No. 22 England: Farnham Royal; Commonwealth Agricultural Bureau 1966. 54. Zar JH: Biostatistical Analysis 2 Edition New Jersey: Prentice Hall 1984, 49–52. 55. Kishinevsky OICR-9429 price B, Maoz A: ELISA identification of rhizobium strains by use of enzyme-labelled protein A. Current Microbiology 1983, 9:45–49.CrossRef 56. Evans J, Gregory A, Dobrowolski N, Morris SG, O’Connor GE, Wallace C: Nodulation of field-grown Pisum sativum and Vicia faba: Competitiveness of inoculant strains of

Rhizobium leguminosarum bv. viciae determined by an indirect, competitive ELISA method. Soil Biology and Biochemistry 1996, 28:247–255.CrossRef 57. Kock M: Diveristy of root-nodulating bacteria associated with Cyclopia species. Ph.D Thesis University of Pretoria, Pretoria, South selleck compound Africa, Microbiology Department 2003. 58. Sinclair MJ, Eaglesham ARJ: Intrinsic antibiotic resistance in relation to colony morphology in three populations of West African cowpea rhizobia. Soil Biology selleck and Biochemistry 1984, 16:247–252.CrossRef 59. Lucrecia M, Ramos G, Magalhaes FM, Boddey RM: Native and inoculated rhizobia isolated from field grown Phaseolus vulgaris: Effects of liming an acid soil on antibiotic resistance. Soil Biology and Biochemistry 1987, 19:179–185.CrossRef 60. Davies J: Origins and evolution of antibiotic resistance. Microbiologia 1996, 12:9–16.PubMed 61. Salyers AA, Shoemaker NB: Resistance gene transfer

in anaerobes: New insights, new problems. Clinical Infectious Diseases 1996, 23:36–43. 62. Kishinevsky B, Bar-Joseph M: Rhizobium strain identification in Arachis hypogaea by enzyme-linked immunosorbent assay (ELISA). Canadian Journal of Microbiology 1978, 24:1537–1543.CrossRefPubMed Authors’ contributions AS conducted the studies as a PhD student in FD’s laboratory, and prepared the draft paper. FD conceptualized the study, supervised all aspects of the work, and critically edited the paper. All authors read and approved the final manuscript.”
“Background Bovine tuberculosis (BTB), caused by Mycobacterium bovis, has been reported to be endemic in the Zambian traditional livestock sector [1–3], with relatively high prevalence being recorded in areas within and adjacent the Kafue Basin [1, 4, 5]. Prevalence rates at individual animal level vary from 0.8% in low prevalence settings to 9.6% in high prevalence settings, whilst herd level prevalence vary from 5.6% in low prevalence settings to 49.

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