Results 181 to 190 of about 21,095 (208)
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Resistance of Syringa vulgaris Cultivars to Pseudomonas syringae Infection
1997Pseudomonas syringae infections are a continuing problem in Pacific Northwest nurseries. Although copper and streptomycin sulfate sprays have been used in the past to control disease, the bacteria are becoming resistant to both materials. Identifying resistant plant material is another method of reducing P. Syringae infections.
Marilyn L. Canfield +2 more
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Ecological Genomics of Pseudomonas syringae
2014Pseudomonas syringae is well known as a model bacterial phytopathogen in the laboratory, environment, and the field. A focus on understanding mechanisms of virulence in planta has motivated extensive research into genetic, genomic, and evolutionary factors that influence disease. However, in recent years, appreciation has grown for the life cycle of P.
David A. Baltrus +2 more
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Brominated metabolites of Pseudomonas syringae pv. syringae
1990Viene descritta la produzione e la caratterizzazione di derivati bromurati di due lipodepsinonapeptidi da Pseudomonas syringae pv. syringae, siringomicina e siringotossina.
GRGURINA, Ingeborg +4 more
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Global Regulation in Pseudomonas Syringae
2004Two questions come rather quickly to mind when one is confronted with writing a chapter on global regulation in Pseudomonas syringae. The first of these is very basic, and goes to the eventual scope of the article: what is P. syringae? This is not a straightforward quest ion, as the species is something of a taxonomic mess. P.
David K. Willis, Thomas G. Kinscherf
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Control of Pseudomonas syringae Pathovars
2003Control of Pseudomonas syringae pathovars is similar to other phytopathogenic bacteria. Primary control protocols include quarantine, chemical control, host plant resistance, and seed certification. Recently, non protein amino acids such as β-aminobutyric acid and chemical activators including 2, 6-dichloroisonicotinic acid (INA) and benzo (1,2,3 ...
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RecTEPsy-Mediated Recombineering in Pseudomonas syringae
2014A recently developed Pseudomonas syringae recombineering system simplifies the procedure for installing specific mutations at a chosen genomic locus. The procedure involves transforming P. syringae cells expressing recombineering functions with a PCR product that contains desired changes flanked by sequences homologous to a target location.
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