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Dive into the research topics where Lidia Sicari Watrud is active.

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Featured researches published by Lidia Sicari Watrud.


Gene | 1986

Integration of the delta-endotoxin gene of Bacillus thuringiensis into the chromosome of root-colonizing strains of pseudomonads using Tn5.

Mark Gerard Obukowicz; Frederick J. Perlak; Kuniko Kusano-Kretzmer; Ernest J. Mayer; Lidia Sicari Watrud

The delta-endotoxin gene (tox) from Bacillus thuringiensis subsp. kurstaki HD-1 was cloned into Tn5 and the resulting Tn5-tox element transposed from a vector plasmid into the chromosome of six corn-root-colonizing strains of Pseudomonas fluorescens and Agrobacterium radiobacter. Chromosomal integration of the tox gene maximized stability and minimized the potential for horizontal transfer of the tox gene to other bacterial species. Expression of the tox gene was demonstrated by Western blot analysis and by toxicity against larvae of the tobacco hornworm (Manduca sexta). The method described illustrates how a given gene can be stably integrated into the chromosome of diverse bacterial species.


Gene | 1987

IS50L as a non-self transposable vector used to integrate the Bacillus thuringiensis delta-endotoxin gene into the chromosome of root-colonizing pseudomonads

Mark Gerard Obukowicz; Frederick J. Perlak; Suzanne L. Bolten; Kuniko Kusano-Kretzmer; Ernest J. Mayer; Lidia Sicari Watrud

Insertion sequence IS50L of transposon Tn5 was used as a non-self transposable vector to integrate the delta-endotoxin gene (tox) from Bacillus thuringiensis subsp. kurstaki HD-1 into the chromosome of two corn-root colonizing strains of Pseudomonas fluorescens (112-12 and Ps3732-3-7). A DNA fragment containing the KmR gene from Tn5 and tox was inserted into an IS50L element (IS50L-tox) contained on a suicide plasmid. Transposition of IS50L-tox into the chromosome of P. fluorescens 112-12 and Ps3732-3-7 occurred by selecting for KmR transconjugants and supplying transposase in cis from a linked IS50R element. A frameshift mutation in the transposase gene of the IS50L-tox element was also constructed to decrease the likelihood that suppression or a spontaneous reversion at the UAA (ochre) termination codon of IS50L would create an active transposase. The inability of IS50L-tox to transpose further minimizes the potential for horizontal gene transfer of the tox gene to other bacterial species. Expression of the Tox protein in strains 112-12 and Ps3732-3-7 was demonstrated by an immunological assay (Western blot) and toxicity against larvae of the tobacco hornworm (Manduca sexta).


Archive | 1989

Combatting plant insect pests with plant-colonizing microorganisms containing the toxin gene B. thuringiensis as a chromosomal insertion

Mark Gerard Obukowicz; Frederick J. Perlak; Lidia Sicari Watrud


Archive | 1999

Insertion of the bacillus thuringiensis crystal protein gene into plant-colonizing microorganisms and their use

Lidia Sicari Watrud; Frederick J. Perlak


Archive | 1986

Truncated gene of Bacillus thuringiensis encoding a polypeptide toxin

Lidia Sicari Watrud; Frederick J. Perlak


Archive | 1986

Plant-colonizing microorganisms containing the toxin gene of B. thuringiensis as a chromosomal insertion

Mark Gerard Obukowicz; Frederick J. Perlak; Lidia Sicari Watrud


Archive | 1986

microorganisms plant-that contain the bacillus thuringiensis toxin gene as a chromosome insert.

Mark Gerard Obukowicz; Frederick J. Perlak; Lidia Sicari Watrud


Archive | 1986

Pflanzenkolonisierende mikroorganismen, die das bacillus thuringiensis-toxingen als chromosomeinsetzung enthalten.

Mark Gerard Obukowicz; Frederick J. Perlak; Lidia Sicari Watrud


Archive | 1986

Pflanzenkolonisierende mikroorganismen, die das bacillus thuringiensis-toxingen als chromosomeinsetzung enthalten. Plant-microorganisms that contain the bacillus thuringiensis toxin gene as a chromosome insert.

Mark Gerard Obukowicz; Frederick J. Perlak; Lidia Sicari Watrud


Archive | 1985

Einsetzung des bacillus thuringiensis kristallproteingens in pflanzen kolonisierende mikroorganismen und deren verwendung. Establishment of bacillus thuringiensis crystal protein gens in plant colonizing microorganisms and their use.

Lidia Sicari Watrud; Frederick J. Perlak

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