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In this study, using Japanese flounder, an important economic teleost species, as a host model, we examined viral and host miRNAs associated with megalocytivirus infection by the approach of high-throughput sequencing.
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Lawyers may also opt for a hosting model if they want to automate their case management systems through our extranet.
This could represent a drawback for the fruit fly as a host-model because Drosophila experiments are usually performed at temperatures of 21°C or 25°C.
Based on multilocus sequence typing of coding and noncoding regions and virulence in a heterologous host model, the leg and brain isolates are identical, but the two differed in mating fertility.
To investigate the role of temperature sensitivity in the virulence attenuation we will test the virulence of these mutants in a heterologous host model, such as wax moths (Galleria mellonella), which does not require high temperature during infection.
The fact that this finding in C. elegans also proved relevant in the mammalian cell culture system demonstrates that C. elegans can function as a useful host model system to study the pathogenesis of LF82.
This study establishes the fruit fly Drosophila melanogaster as an alternative host model to explore systemic infection by Candida.
This paper demonstrates that the fruit fly Drosophila melanogaster is an appropriate host model to explore the basic biology of host- Candida interaction following GI infection.
Taking advantage of the tractability and simplicity of C. elegans as an intact host model, we characterized the anti-infective effect of O. stamineus leaf extract (UE-12) in the context of a whole organism.
The powerful genetic tools in Drosophila, coupled to the simplicity to cultivate germ-free (GF) animals and to manipulate its commensal bacterial species makes Drosophila an ideal host model to study the molecular mechanisms underlying bacteria-mediated physiological benefits.
This system has been used successfully as an invertebrate host model to assess the virulence determinants of human pathogens, such as Vibrio cholerae (Sahu et al. 2012) and S. Typhimurium (Aballay et al. 2000).
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com