Journal of Applied Bacteriology · 1996 · 95 citations · 15 references
BiologyPossible SourceEngineeringInsect ConservationEntomologyThuringiensis PopulationsH Serotype 13Mulberry LeavesPest ControlPest ManagementPlant PathologyMicrobiologyForest EntomologySymbiosisBacillus ThuringiensisPublic HealthPlant Health
Mulberry leaves were examined for the occurrence of Bacillus thuringiensis. This organism was recovered from both abaxial and adaxial surfaces: a total of 186 B. thuringiensis colonies were isolated from 24 (96·0%) out of 25 mulberry trees, and from 112 (11·2%) out of 1004 leaves from 25 trees. The frequency of B. thuringiensis colonies was 3·2% among 5900 colonies belonging to the Bacillus cereus/B. thuringiensis group. Single colonies were associated with 75·9% of the B. thuringiensis ‐positive leaves and 2–16 colonies were occasionally found on a single phylloplane. Flagellar (H) serotypying of the isolates revealed that, among the 19 H serotypes (serovars) detected, the H serotype 13 (serovar pakistani ) was the predominant, followed by the H serotypes 3abc ( kurstaki ), 6ac ( oyamensis ), 16 ( indiana ), 24 ( neoleonesis ), 4ac ( kenyae ), 7 ( aizawai ) and 10 ( darmstadiensis ). Larvicidal activity, against the silkworm ( Bombyx mori ) and/or the mosquito ( Aedes aegypti ), was exhibited by 18 isolates (9·7%) belonging to H serovars kurstaki, kenyae, canadensis and aizawai , and an unidentified H serogroup.
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Microbial control of pests and plant diseases 1970–1980
Bendek Selman · Crop Protection · 1982 · 1.2K citations
Engineering, Plant-microbe Interaction, Microbial Ecology +6