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1.
Can J Microbiol ; 57(6): 525-32, 2011 Jun.
Artículo en Inglés | MEDLINE | ID: mdl-21635220

RESUMEN

Phytopathogenic spiroplasmas can multiply in vascular plants and insects. A deeper understanding of this dual-host life could be furthered through the identification by random mutagenesis of spiroplasma genes required. The ability of the EZ::TN™ Tnp transposome™ system to create random insertional mutations in the genome of Spiroplasma citri was evaluated. The efficiency of electroporation-mediated transformation of S. citri BR3-3X averaged 28.8 CFUs/ng transposome for 10(9) spiroplasma cells. Many transformants appearing on the selection plates were growth impaired when transferred to broth. Altering broth composition in various ways did not improve their growth. However, placing colonies into a small broth volume resulted in robust growth and successful subsequent passages of a subset of transformants. PCR using primers for the dihydrofolate reductase gene confirmed the transposon's presence in the genomes of selected transformants. Southern blot hybridization and nucleotide sequencing suggested that insertion was random within the chromosome and usually at single sites. The insertions were stable. Growth rates of all transformants were lower than that of the wild-type S. citri, but none lost the ability to adhere to a Circulifer tenellus (CT-1) cell line. The EZ::TN™ Tnp transposome™ system represents an additional tool for genetic manipulation of the fastidious spiroplasmas.


Asunto(s)
Técnicas Bacteriológicas/métodos , Mutagénesis Insercional , Spiroplasma citri/crecimiento & desarrollo , Spiroplasma citri/genética , Animales , Línea Celular , Medios de Cultivo , ADN Bacteriano/genética , Electroporación , Genoma Bacteriano , Hemípteros/microbiología , Viabilidad Microbiana , Reacción en Cadena de la Polimerasa , Análisis de Secuencia de ADN , Transformación Genética
2.
Phytopathology ; 98(9): 960-8, 2008 Sep.
Artículo en Inglés | MEDLINE | ID: mdl-18943733

RESUMEN

Spiroplasma citri, a phloem-limited pathogen, causes citrus stubborn disease (CSD). Losses due to CSD in California orchards have grown over the past decade. To investigate the possibility of introduction or emergence of a new strain, a study of genetic diversity among S. citri strains from various locations was conducted using random amplified polymorphism DNA-polymerase chain reaction (RAPD-PCR) of 35 strains cultured from 1980 to 1993, and of 35 strains cultured from 2005 to 2006. Analysis using 20 primer pairs revealed considerable diversity among strains. However, no unique genetic signatures were associated with recently collected strains compared with those collected 15 to 28 years ago, and no geographically associated pattern was distinguishable. S. citri strains from carrot and daikon radish contain some unique DNA fragments, suggesting some host plant influence. Multiple strains from single trees also showed genetic diversity. Sequencing of five RAPD bands that differed among strains showed that diversity-related gene sequences include virus fragments, and fragments potentially encoding a membrane lipoprotein, a DNA modification enzyme, and a mobilization element. No differences in colony morphology were observed among the strains. The lack of correlation between PCR patterns and isolation date or collection site is inconsistent with the hypothesis that recent infections are due to the introduction or emergence of novel pathogen strains.


Asunto(s)
Variación Genética , Spiroplasma citri/genética , California , Genoma Bacteriano , Geografía , Medio Oriente , Filogenia , Reacción en Cadena de la Polimerasa , Técnica del ADN Polimorfo Amplificado Aleatorio , Spiroplasma citri/clasificación , Spiroplasma citri/crecimiento & desarrollo , Spiroplasma citri/aislamiento & purificación , Estados Unidos
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