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Transposable elements in <i>Escherichia coli</i>antimicrobial resistance 被引量:6
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作者 Archana Iyer Elie Barbour +11 位作者 Esam Azhar Alaaeddin Ali El Salabi Hani mutlak A. Hassan Ishtiaq Qadri Adeel Chaudhary Adel Abuzenadah Taha Kumosani Ghazi Damanhouri maha Alawi Tarek Na’was afif m. abdel nour Steve Harakeh 《Advances in Bioscience and Biotechnology》 2013年第3期415-423,共9页
Transposable elements are capable of switching their positions on the genome thereby causing gene arrangements and contributing to genome evolution. The aim of this review is to specifically discuss the role of transp... Transposable elements are capable of switching their positions on the genome thereby causing gene arrangements and contributing to genome evolution. The aim of this review is to specifically discuss the role of transposable elements in transferring antimicrobial resistance genes in E. coli, thus contributing to increase in virulence and conferring the possibility of multidrug resistance. Different types of transposable elements such as transposons and integrons and their profound influence on E. coli antimicrobial resistance are the focus of this review. 展开更多
关键词 TRANSPOSABLE Elements E. COLI ANTIMICROBIAL Resistance INTEGRONS
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Pathogenicity and amino acid sequences of hemagglutinin cleavage site and neuraminidase stalk of differently passaged H9N2-avian influenza virus in broilers 被引量:1
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作者 Houssam A. Shaib Nelly Cochet +4 位作者 Thierry Ribeiro afif m. abdel nour Georges Nemer maya F. Saade Elie K. Barbour 《Advances in Bioscience and Biotechnology》 2011年第4期198-206,共9页
Low pathogenic Avian Influenza (AI) virus has the ability to evolve to high pathogenic viruses resulting in significant economic losses in the poultry sector. This study aims at assessing the impact of H9N2 viral pass... Low pathogenic Avian Influenza (AI) virus has the ability to evolve to high pathogenic viruses resulting in significant economic losses in the poultry sector. This study aims at assessing the impact of H9N2 viral passaging in broilers and its relatedness to pathogenicity and amino acid (a.a) sequences of the hemagglutinin (HA) cleavage site and neuraminidase (NA) stalk. The original H9N2 AI virus (P0) was used to challenge ten-21 days old broilers. Individual recovery of H9N2 virus from homogenates of trachea, lungs and airsacs was attempted in 9 days old chicken embryos, as a conclusion of the first passage (P1). Tracheal isolates of H9N2 were passaged for a second (P2) and a third (P3) time in broilers, followed by a similar embryonic recovery procedure. The a.a. sequence of a part of HA1 cleavage site and Neuraminidase stalk were compared among the differently passaged viruses;an assessement of the relatedness of the determined a.a. sequences to the pathogenicity in broilers, based on frequency of mortality, morbidity signs, gross and microscopic lesions at 3 days post challenge with the P1, P2, and P3-H9N2, is concluded. An increase in certain morbidity signs and specific lesions was observed in P2- and P3-H9N2 challenged broilers compared to birds challenged with P1-H9N2. A conserved R-S-S-R amino acid sequence at the HA1 cleavage site was observed in the differently passaged H9N2, associated with a variability in the NA stalk-a.a sequences. The passaging of the low pathogenic H9N2 virus in broilers leads to a trend of increase in pathogenicity, manifested in higher frequency of morbidity signs, and of specific gross and microscopic lesions of the examined organs. This passaging was associated with a conserved a.a. sequence of the hemaglutinin cleavage site and a variability in the sequence of the neuraminidase stalk. A detailed study of the potential of the detected variability in the neuraminidase stalk of H9N2 in induction of a higher pathogenicity in broilers will be the subject of future investigations. 展开更多
关键词 H9N2 Avian Influenza PATHOGENICITY Passaging BROILERS Amino Acid Sequences HEMAGGLUTININ (HA) NEURAMINIDASE (NA) STALK
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Bacteriophages in <i>Escherichia coli</i>antimicrobial resistance
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作者 Archana Iyer Elie Barbour +9 位作者 Esam Azhar Ishtiaq Qadri Adeel Chaudhary Adel Abuzenadah Taha Kumosani Ghazi Damanhouri Suhad Bahijri Ahmed Al-Hejin afif m. abdel nour Steve Harakeh 《Advances in Bioscience and Biotechnology》 2013年第3期469-476,共8页
The continuous battle between humans and the multitude of pathogenic microorganisms in the environment has sought relief in the form of antimicrobials. But the counter attack by pathogenic organisms in the form of mul... The continuous battle between humans and the multitude of pathogenic microorganisms in the environment has sought relief in the form of antimicrobials. But the counter attack by pathogenic organisms in the form of multidrug resistance, acquired by various mechanisms such as transformation, transposition, conjugation and transduction is a major reason for concern. Bacteriophages have contributed in a significant way to dissemination of genes encoding antimicrobial resistance, heavy metal resistance and virulence factors through the phenomenon of transduction. This review aims at compiling information about the different mechanisms by which bacteriophages aid in transferring genes involved in antimicrobial resistance to Escherischia coli in various environments. 展开更多
关键词 BACTERIOPHAGES Escherischia COLI ANTIMICROBIAL Resistance
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