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Abstract:

Three strains-C107, C207, and C307-of sporeforming Gram-positive motile rod-shaped bacteria were isolated from dead larvae of Culex pipiens in La Plata city, Argentina. The three bacterial strains have different phenotypic and molecular characteristics. A comparative analysis of their 16S rRNA gene sequences and phylogenetic analysis demonstrated that isolates C107 and C207 were related to reference strains of Lysinibacillus sphaericus, while C307 was related to Bacillus licheniformis. The cytomorphology, biochemical characterization, and phylogenetic relatedness corroborated these respective group assignments. The isolated bacterial strain exhibited the same PCR amplified pattern for the binA, binB, and mtx genes as did the reference strains used. These bacterial strains presented different pathogenic actions among the following mosquito species tested: Culex pipiens, Aedes aegypti, Culex dolosus, Culex apicinus, Ochlerotatus albifasciatus, and Anopheles albitarsis. Only isolates C107 and C207 exhibited mosquitocidal activity. Culex pipiens was the species most susceptible to C107 (LC50, 4× 104 spores/ml), while O. albifasciatus was most susceptible to C207 (LC 50, 3.4× 106 spores/ml). © Springer-Verlag and the University of Milan 2010.

Registro:

Documento: Artículo
Título:Isolation, characterization and evaluation of mosquitocidal activity of Lysinibacillus strains obtained from Culex pipiens larvae
Autor:Tranchida, M.C.; Riccillo, P.M.; Micieli, M.V.; García, J.J.; Rodriguero, M.S.
Filiación:Centro de Estudios Parasitológicos y Vectores, CEPAVE-CCT-CONICET, Universidad Nacional de La Plata, Calle 2. No. 584, CP 1900, La Plata, Buenos Aires, Argentina
Comisión de Investigaciones Científicas (CIC), Calle 526 entre 10 y 11, CP 1900, La Plata, Buenos Aires, Argentina
Laboratorio de Genética Evolutiva, Departamento de Ecología, Genética y Evolución, Intendente Güiraldes y Costanera Norte, s/n Pabellon II, Ciudad Universitaria, CP 1428, Ciudad Autónoma de Buenos Aires, Argentina
Palabras clave:16S rRNA gene; Biological control; Culex pipiens; Lysinibacillus sphaericus; Mosquito larvae; Aedes aegypti; Anopheles albitarsis; Bacillus licheniformis; Bacteria (microorganisms); Culex pipiens; Ochlerotatus albifasciatus; Posibacteria
Año:2011
Volumen:61
Número:3
Página de inicio:575
Página de fin:584
DOI: http://dx.doi.org/10.1007/s13213-010-0175-4
Título revista:Annals of Microbiology
Título revista abreviado:Ann. Microbiol.
ISSN:15904261
Registro:https://bibliotecadigital.exactas.uba.ar/collection/paper/document/paper_15904261_v61_n3_p575_Tranchida

Referencias:

  • Aguilar O.Mario, Lopez M.Veronica, Riccillo, P.M., The diversity of rhizobia nodulating beans in Northwest Argentina as a source of more efficient inoculant strains (2001) Journal of Biotechnology, 91 (2-3), pp. 181-188. , DOI 10.1016/S0168-1656(01)00336-4, PII S0168165601003364
  • Ahmed, I., Yokota, A., Yamazoe, A., Fujiwara, T., Proposal of Lysinibacillus boronitolerans gen. nov. sp. nov., and transfer of Bacillus fusiformis to Lysinibacillus fusiformis comb. nov. and Bacillus sphaericus to Lysinibacillus sphaericus comb. nov (2007) International Journal of Systematic and Evolutionary Microbiology, 57 (5), pp. 1117-1125. , DOI 10.1099/ijs.0.63867-0
  • Alice, A.F., Perez-Martinez, G., Sanchez-Rivas, C., Phosphoenolpyruvate phosphotransferase system and N-acetylglucosamine metabolism in Bacillus sphaericus (2003) Microbiology, 149 (7), pp. 1687-1698
  • Altschul, S.F., Madden, T.L., Schaffer, A.A., Zhang, J., Zhang, Z., Miller, W., Lipman, D.J., Gapped BLAST and PSI-BLAST: A new generation of protein database search programs (1997) Nucleic Acids Research, 25 (17), pp. 3389-3402. , DOI 10.1093/nar/25.17.3389
  • Baumann, P., Clark, M.A., Baumann, L., Broadwell, A.H., Bacillus sphaericus as a mosquito pathogen: Properties of the organism and its toxins (1991) Microbiological Reviews, 55 (3), pp. 425-436
  • Broadwell, A.H., Baumann, L., Baumann, P., The 42- and 51-kilodalton mosquitocidal proteins of Bacillus sphaericus 2362: Construction of recombinants with enhanced expression and in vivo studies of processing and toxicity (1990) Journal of Bacteriology, 172 (5), pp. 2217-2223
  • Charles, J.-F., Nielsen-LeRoux, C., Delécluse, A., Bacillus sphaericus toxins: Molecular biology and mode of action (1996) Annu Rev Entomol, 41, pp. 451-472
  • Chi, H., (1997) Computer Program for the Probit Analysis, , National Chung Hsing University, Taichung
  • Darsie, R.F., Mosquitoes of Argentina. Part I. Keys for identification of adult females and fourth stages larvae in English and Spanish (Diptera: Culicidae) (1985) Mosq Syst, 17, pp. 153-253
  • Davidson, E.W., Oei, C., Meyer, M., Bieber, A.L., Hindley, J., Berry, C., Interaction of the Bacillus sphaericus mosquito larvicidal proteins (1990) Can J Microbiol, 36, pp. 870-878
  • De Barjac, H., Thiery, I., Cosmao-Dumanoir, V., Frachon, E., Laurent, P., Charles, J.F., Hamon, S., Ofori, J., Another Bacillus sphaericus serotype harbouring strains very toxic to mosquito larvae: Serotype H6 (1988) Ann Inst Pasteur Microbiol, 139 (3), pp. 363-377
  • Días, J.M.C.S., Gomes Monnerat, R., Silva-Werneck, J.O., Aulas prácticas de bacteriología (1992) Segundo Curso de Controle Microbiano de Insetos, p. 23. , Brasilia. Brasil
  • Federici, B.A., Park, H.-W., Sakano, Y., Insecticidal protein crystals of Bacillus thuringiensis (2006) Microbiology Monographs Series, 1, pp. 195-236. , Shively JM ed, Inclusions in Prokaryotes. Springer, Berlin
  • Federici, B.A., Park, H.-W., Bideshi, D.K., Wirth, M.C., Johnson, J.J., Sakano, Y., Tang, M., Developing recombinant bacteria for control of mosquito larvae (2007) Journal of the American Mosquito Control Association, 23 (2 SUPPL.), pp. 164-175
  • Felsenstein, J., Confidence limits on phylogenies: An approach using the bootstrap (1985) Evolution, 39, pp. 783-791
  • From, C., Pukall, R., Schumann, P., Hormazabal, V., Granum, P.E., Toxin-producing ability among Bacillus spp. outside the Bacillus cereus group (2005) Applied and Environmental Microbiology, 71 (3), pp. 1178-1183. , DOI 10.1128/AEM.71.3.1178-1183.2005
  • Hall, T.A., BioEdit: A user-friendly biological sequence alignment editor and analysis program for Windows 95/98/NT (1999) Nucleic Acids Symp Ser, 41, pp. 95-98
  • Hu, X., Fan, W., Han, B., Liu, H., Zheng, D., Li, Q., Dong, W., Yuan, Z., Complete genome sequence of the mosquitocidal bacterium Bacillus sphaericus C3-41 and comparison with those of closely related bacillus species (2008) Journal of Bacteriology, 190 (8), pp. 2892-2902. , DOI 10.1128/JB.01652-07
  • Kimura, M., A simple method for estimating evolutionary rates of base substitutions through comparative studies of nucleotide sequences (1980) Journal of Molecular Evolution, 16 (2), pp. 111-120. , DOI 10.1007/BF01731581
  • Lacey, L.A., Bacillus thuringiensis serovariety Israelensis and bacillus sphaericus for mosquito control (2007) Journal of the American Mosquito Control Association, 23 (2 SUPPL.), pp. 133-163
  • Lacey, L.A., Brooks, W.M., Initial handling and diagnosis of diseased insect (1997) Manual of Techniques in Insect Pathology, pp. 1-12. , Lacey LA ed, Academic, San Diego
  • Lane, J., Neotropical Culicidae (1953) Faculdade de Saüde Püblica da Universidade de São Paulo, 2, pp. 633-729
  • Lane, D.J., 16S-23S rRNA sequencing (1991) Nucleic Acid in Bacterial Systematics, pp. 125-175. , Stackebrandt E, Goodfellow M eds, Wiley, Chichester
  • Logan, N.A., Berkeley, R.C.W., Identification of Bacillus strains using the API system (1984) Journal of General Microbiology, 130 (7), pp. 1871-1882
  • Logan, N.A., Berkeley, R.C., International committee on systematic bacteriology subcommittee on the taxonomy of genus Bacillus and related organisms (2000) Int J Syst Evol Microbiol, 50, p. 1409
  • Mulla, M.S., Darwazeh, H.A., Davidson, E.W., Dulmage, H.T., Efficacy and persistence of the microbial agent Bacillus sphaericus againts mosquito larvae in organically enriched habitats (1984) Mosq News, 44, pp. 166-173
  • Nakamura, L.K., Phylogeny of Bacillus sphaericus-like organisms (2000) Int J Syst Evol Microbiol, 50, pp. 1715-1722
  • Otsuki, K., Guaycurüs, T.V., Vicente, A.C., Bacillus sphaericus entomocidal potencial determined by Polymerase chain reaction. 1997 (1997) Mem Inst Oswaldo Cruz, 92 (1), pp. 107-108
  • Park, H.W., Hayes, S.R., Mágnum, C.M., Distribution of mosquitocidal Bacillus thuringiensis and Bacillus sphaericus from sediment samples in Florida (2008) J Asia-Pacific Entomol, 11, pp. 217-220
  • Porter, A.G., Davidson, E.W., Liu, J.-W., Mosquitocidal toxins of bacilli and their genetic manipulation for effective biological control of mosquitoes (1993) Microbiological Reviews, 57 (4), pp. 838-861
  • Priest, F.G., Ebdrup, L., Zahner, V., Carter, P.E., Distribution and characterization of mosquitocidal toxin genes in some strains of Bacillus sphaericus (1997) Applied and Environmental Microbiology, 63 (4), pp. 1195-1198
  • Saitou, N., Nei, M., The neighbor-joining method: A new method for reconstructing phylogenetic trees (1987) Mol Biol Evol, 4, pp. 406-425
  • Siegel, J.P., Smith, A.R., Novak, R.J., Recovery of commercially produced Bacillus thuringiensis var. israelensis and Bacillus sphaericus from tires and prevalence of bacilli in artificial and natural containers (2001) Journal of the American Mosquito Control Association, 17 (1), pp. 33-41
  • Stackebrandt, E., Goebel, B.M., Taxonomic note: A place for DNA-DNA reassociation and 16S rRNA sequence analysis in the present species definition in bacteriology (1994) International Journal of Systematic Bacteriology, 44 (4), pp. 846-849
  • Swofford, D.L., (2003) PAUP* 4.00: Phylogenetic Analysis Using Parsimony ( *and Other Methods), , Sinauer, Sunderland, MA
  • Thanabalu, T., Hindley, J., Jackson-Yap, J., Berry, C., Cloning, sequencing, and expression of a gene encoding a 100-kilodalton mosquitocidal toxin from Bacillus sphaericus SSII-1 (1991) J Bacteriol, 173 (9), pp. 2776-2785
  • Thanabalu, T., Hindley, J., Berry, C., Proteolytic processing of the mosquitocidal toxin from Bacillus sphaericus SSII-1 (1992) J Bacteriol, 174 (15), pp. 5051-5056
  • Thiery, I., Frachon, E., Identification, isolation, culture and preservation of entomopathogenic bacteria (1997) Manual of Techniques in Insect Pathology, pp. 55-90. , Lacey LA ed, Academic, New York
  • Thompson, J.D., Higgins, D.G., Gibson, T.J., CLUSTAL W: Improving the sensitivity of progressive multiple sequence alignment through sequence weighting, position-specific gap penalties and weight matrix choice (1994) Nucleic Acids Research, 22 (22), pp. 4673-4680
  • Weisburg, W., Barns, S., Pelletier, D., Lane, J., 16S Ribosomal DNA amplification for phylogenetic study (1991) J Bacteriol, 173 (2), pp. 697-703
  • Weiser, J., A mosquito-virulent bacillus sphaericus in adult Simulium damnosum from northem Nigeria (1984) Zentralbl Microbiol, 139, pp. 57-60
  • Woodburn, M.A., Yousten, A.A., Hilu, K.H., Random amplified polymorphic DNA fingerprinting of mosquito-pathogenic and nonpathogenic strains of Bacillus sphaericus (1995) Int J Syst Bacteriol, 45, pp. 212-217
  • Wraight, S.P., Molloy, D.P., Singer, S., Studies on the culicine mosquito host range of Bacillus sphaericus and Bacillus thuringiensis var. Israelensis with Notes on the Effects of temperature and instar on bacterial efficacy (1987) J Invertebr Pathol, 49, pp. 291-302
  • Xu, B.Z., Becker, N., Xianqui, X., Ludwig, H.W., Microbial control of malaria vectors in Hubei Province, People'sRepublic of China (1992) Bull Soc Vect Ecol, 17, pp. 140-149
  • Yousten, A.A., Fretz, S.B., Jelley, S.A., Selective medium for mosquito-pathogenic strains of Bacillus sphaericus (1985) Applied and Environmental Microbiology, 49 (6), pp. 1532-1533

Citas:

---------- APA ----------
Tranchida, M.C., Riccillo, P.M., Micieli, M.V., García, J.J. & Rodriguero, M.S. (2011) . Isolation, characterization and evaluation of mosquitocidal activity of Lysinibacillus strains obtained from Culex pipiens larvae. Annals of Microbiology, 61(3), 575-584.
http://dx.doi.org/10.1007/s13213-010-0175-4
---------- CHICAGO ----------
Tranchida, M.C., Riccillo, P.M., Micieli, M.V., García, J.J., Rodriguero, M.S. "Isolation, characterization and evaluation of mosquitocidal activity of Lysinibacillus strains obtained from Culex pipiens larvae" . Annals of Microbiology 61, no. 3 (2011) : 575-584.
http://dx.doi.org/10.1007/s13213-010-0175-4
---------- MLA ----------
Tranchida, M.C., Riccillo, P.M., Micieli, M.V., García, J.J., Rodriguero, M.S. "Isolation, characterization and evaluation of mosquitocidal activity of Lysinibacillus strains obtained from Culex pipiens larvae" . Annals of Microbiology, vol. 61, no. 3, 2011, pp. 575-584.
http://dx.doi.org/10.1007/s13213-010-0175-4
---------- VANCOUVER ----------
Tranchida, M.C., Riccillo, P.M., Micieli, M.V., García, J.J., Rodriguero, M.S. Isolation, characterization and evaluation of mosquitocidal activity of Lysinibacillus strains obtained from Culex pipiens larvae. Ann. Microbiol. 2011;61(3):575-584.
http://dx.doi.org/10.1007/s13213-010-0175-4