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He also described what made this strain of the flu unusual and unusually deadly: Typically, influenza infects the inner lining of the respiratory tract, damaging the air-filled cells of the lungs known as alveoli.
The stability of BPH resistance in Rathu Heenati (RH), a traditional Sri Lankan rice cultivar containing qBph3, has made this strain one of the most popular hopper-resistance donors in the Mekong sub-region, where rice production is highly intensive.
The stability of brown planthopper (BPH) resistance in Rathu Heenati (RH), a traditional Sri Lankan rice cultivar containing BPH 3, has made this strain one of the most popular hopper resistance donors in the Mekong subregion, where rice production is highly intensive.
The origin of V583 as a nosocomial isolate, causing a persistent bloodstream infection made this strain suitable for investigating responses of virulence traits by growth in blood.
In the latter singular case transposon mutagenesis had hit the phiCTX phage [47] that probably made this strain vulnerable to the attack of phage –proficient competitors so that it could not survive.
Increased toxin production and high-level resistance to fluoroquinolones have made this strain a very successful pathogen in healthcare settings.
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A deadly combination of emerging multi-drug resistance on the bug's part and poorly functioning immune systems on the part of the hungry children and HIV-infected adults who are most susceptible to infection makes this strain's resulting rapid spread across continental Africa a matter of concern to public-health authorities.
Its inability to grow above 37° C makes this strain unlikely to be pathogenic thus holding advantages as a potential industrial scale biosurfactant producer strain.
As a consequence, only plasmid-carrying bacterial cells can survive, making this strain totally dependent on the maintenance of the infA + plasmid.
Depending on the substrate, S. cyaneus produced from 5.5- to 46-times more laccase activity than S. ipomoea, making this strain the best candidate among the tested Streptomyces strains for laccase production during wastewater treatment.
S. cerevisiae JP1 (and its derivative JPU) demonstrated to be dominant in fermentation vats and to possess desirable characteristics in strains used in the production of ethanol (Della-Bianca and Gombert 2013; da Silva-Filho et al. 2005a, b), making this strain a suitable candidate for genetic modifications and use in the industrial process.
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