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Identification and characterization of proteins from Bacillus thuringiensis with high toxic activity against the sheep blowfly, Lucilia cuprina
Authors:Gough Joanne M  Kemp David H  Akhurst Raymond J  Pearson Roger D  Kongsuwan Kritaya
Affiliation:CSIRO Livestock Industries, Queensland Bioscience Precinct, 306 Carmody Rd., St Lucia, Qld., 4067, Australia. joanne.gough@csiro.au
Abstract:Current control of the sheep blowfly (Lucilia cuprina) relies on chemical insecticides, however, with the development of resistance and increasing concerns about human health and environmental residues, alternative strategies to control this economically important pest are required. In this study, we have identified several isolates of Bacillus thuringiensis (Bt), collected from various Australian soil samples, that produce crystals containing 130 and 28 kDa proteins. These isolates were highly toxic to feeding larvae in both in vitro bioassays and in vivo on sheep. By N-terminal amino acid sequencing, we identified the smaller crystal band (28 kDa) as a cytological (Cyt) protein. Upon solubilization and proteolytic processing by trypsin, the 130 kDa crystal protein yielded among others, a truncated 55-60 kDa toxin moiety which exhibited larvicidal activity against sheep blowfly. The amino-terminal sequence of the trypsin-resistant protein band revealed that this Bt endotoxin was encoded by a new cry gene. The novel cry protein was present in all the strains that were highly toxic in the larval assay. We have also identified from one of the isolates, a novel secretory toxin with larvicidal activity.
Keywords:Bacillus thuringiensis   Crystal endotoxin   Secretory toxin   Sheep blowfly   Lucilia cuprina   Bioassay   Biocontrol   Novel toxins   Larvicidal   Sheep assay
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