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1.
Braz J Microbiol ; 50(2): 533-537, 2019 Apr.
Article in English | MEDLINE | ID: mdl-30637628

ABSTRACT

To examine the growth of Candida norvegensis (strain Levazoot 15), four experiments were conducted with different sources of energy, nitrogen, vitamins, and microminerals. Optical density was used as an indirect measure of strain growth in a fully randomized factorial design, in which principal factor A was the source of energy, nitrogen, vitamins, or microminerals and principal factor B was the measurement time point (0, 20, or 40 h). The results showed that the yeast strain used glucose (primarily sucrose and lactose) as the energy source and tryptone as the nitrogen source. The addition of B-complex vitamins or microminerals was not necessary for strain growth. It is concluded that the strain Levazoot 15 preferentially utilizes glucose as a source of energy, tryptone as a source of nitrogen and manganese as a mineral source, and that no vitamin source was necessary for growth.


Subject(s)
Candida/growth & development , Candida/metabolism , Glucose/metabolism , Manganese/metabolism , Peptones/metabolism , Energy Metabolism/physiology , Minerals/metabolism , Nitrogen/metabolism , Vitamin B 12/analogs & derivatives , Vitamin B 12/metabolism , Vitamins/metabolism
2.
J Anim Sci ; 94(11): 4799-4808, 2016 Nov.
Article in English | MEDLINE | ID: mdl-27898956

ABSTRACT

Bovine respiratory disease (BRD) is the most common and economically detrimental disease of beef cattle during the postweaning period, causing the majority of morbidity and mortality in feedlots. The pathogenesis of this disease often includes an initial viral infection, which can predispose cattle to a secondary bacterial infection. The objective of this experiment was to determine the effects of timing of an intratracheal (MH) challenge relative to 72 h of natural exposure to bovine viral diarrhea virus (BVDV) type 1b persistently infected (PI) calves on performance, serum antibody production, total and differential white blood cell (WBC) count, rectal temperature, clinical severity score (CS), and haptoglobin (Hp). Steers ( = 24; 276 ± 31 kg initial BW) were randomly allocated to 1 of 3 treatments (8 steers/treatment) in a randomized complete block design. Treatments were steers not exposed to calves PI with BVDV 1b and not challenged with MH (CON), steers intratracheally challenged with MH 84 h after being exposed to calves PI with BVDV 1b for 72 h (LateCh), and steers intratracheally challenged with MH 12 h after being exposed to calves PI with BVDV 1b for 72 h (EarlyCh). Performance (ADG, DMI, and G:F) was decreased ( < 0.001) for both EarlyCh and LateCh from d 0 to 4. From d 5 to 17, LateCh appeared to compensate for this lost performance and demonstrated increased ADG ( = 0.01) and G:F ( = 0.01) compared with EarlyCh. Both EarlyCh and LateCh had decreased platelet counts ( < 0.001) compared with CON. Antibody concentrations of BVDV and MH were higher ( < 0.05) for both EarlyCh and LateCh compared with CON. Rectal temperature, CS, and Hp increased ( < 0.001) across time from h 4 to 48, h 4 to 36, and h 8 to 168, respectively. Within 24 h of MH challenge, WBC and neutrophil concentrations within the blood increased whereas lymphocyte concentrations decreased. The timing of BVDV exposure relative to a MH challenge appears to influence the CS and acute phase response associated with BRD. As typical beef cattle marketing channels allow for variation in the timing of respiratory pathogen exposure, understanding the physiological changes in morbid cattle will lead to improved management of BRD.


Subject(s)
Bovine Virus Diarrhea-Mucosal Disease/immunology , Cattle/physiology , Diarrhea Virus 1, Bovine Viral/immunology , Mannheimia haemolytica/immunology , Pasteurellaceae Infections/veterinary , Animals , Body Temperature , Bovine Virus Diarrhea-Mucosal Disease/complications , Bovine Virus Diarrhea-Mucosal Disease/metabolism , Bovine Virus Diarrhea-Mucosal Disease/virology , Cattle/immunology , Haptoglobins/analysis , Haptoglobins/metabolism , Male , Pasteurellaceae Infections/complications , Pasteurellaceae Infections/immunology , Pasteurellaceae Infections/microbiology , Random Allocation , Red Meat , Time Factors
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