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This contribution presents an overview of how these challenges were addressed within Co-Lab, a collaborative learning environment in which groups of learners can experiment through simulations and remote laboratories, and express acquired understanding in a runnable computer model.
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The mode number of antibiotics that E. faecalis expressed acquired resistance against was one and three, among isolates from newly organic houses and conventional houses, respectively.
The mode number of antibiotics that E. faecium expressed acquired resistance against was one and four, among isolates from newly organic houses and conventional houses, respectively.
Conventional feed was contaminated with E. faecium that expressed acquired resistance to 10 antimicrobials (CIP, ERY, KAN, LIN, NIT, PEN, STR, SYN, TET, and TYL), whereas organic feed was contaminated with E. faecium that expressed acquired resistance to 6 antimicrobials (ERY, KAN, LIN, NIT, SYN, and TET) (Table 4).
Conventional waterline samples were contaminated with E. faecium that expressed acquired resistance to 11 antimicrobials (CIP, ERY, GEN, KAN, LIN, NIT, PEN, STR, SYN, TET, and TYL), whereas organic waterline samples were not contaminated with antibiotic-resistant E. faecium (Table 4).
E. faecalis recovered from newly organic and conventional farms expressed acquired resistance against a mode number of one and three antibiotics, respectively, and E. faecium from newly organic and conventional farms were resistant against a mode number of one and four antibiotics, respectively.
E. faecalis isolated from conventional feed samples also expressed acquired resistance to eight antimicrobials (CHL, ERY, FLA, KAN, NIT, STR, TET, and TYL), indicating that conventional poultry feed could be a potential source of exposure to antibiotic-resistant E. faecalis among broilers (Table 4).
Inquiry learning can be facilitated by having students investigate the domain through a computer simulation and express their acquired understanding in a runnable computer model.
In tomato plants, a PR-5 protein was detected in plastids where it specifically accumulated in chloroplast starch granules when plants were manipulated to express systemic acquired resistance [ 41].
Fourth, the Bcl-2 expressing cells acquired enhanced motile and invasive activities.
Moreover, they show that CTCL cells genetically engineered to re-express Fas acquire a sensitivity to FasL-induced apoptosis, opening new avenues for therapeutic intervention strategies in CTCL.
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