Literature DB >> 12918817

Thermoregulatory response of dairy cows fed ergotized barley during summer heat stress.

Hosam J Al-Tamimi1, George E Rottinghaus, Donald E Spiers, Jim Spain, Darryl Chatman, Peggy A Eichen, Thomas L Carson.   

Abstract

Claviceps purpurea infects the seed heads of cereal grains and grasses and produces ergopeptine alkaloids that cause hyperthermia and agalactia in cattle during periods of heat stress. A field experiment was undertaken to examine the effects of ergopeptine alkaloids found in barley on thermal status of dairy cattle during periods of heat stress. Production end points were also measured to identify the effect of the change in thermal status. Contaminated barley screenings containing known levels of ergopeptine alkaloids were fed to lactating Holstein cattle (10 microg total ergopeptine alkaloids/kg BW/day) for 10 days during summer heat stress. Air temperature increased 14.4 C during the first 8 days of treatment and then declined the same during the last 2 days. Extreme daily values for rectal temperature and respiration rate, using averages of all animals, showed maximum increases of 2.3 C and 56.8 breaths/minute, respectively, during this period. Group afternoon milk production decreased 2 kg/day during the heat stress period, with no measurable change in feed intake. A greater level of hyperthermia occurred in cattle consuming the diet with ergopeptine alkaloids, with only marginal symptoms of ergot toxicosis reflected in feed intake and milk production. Therefore, the ergopeptine alkaloid dose used in this study represents a level for minimal induction of the ergot toxicity response.

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Year:  2003        PMID: 12918817     DOI: 10.1177/104063870301500409

Source DB:  PubMed          Journal:  J Vet Diagn Invest        ISSN: 1040-6387            Impact factor:   1.279


  1 in total

1.  Effects of the level of feed intake and ergot contaminated concentrate on ruminal fermentation and on physiological parameters in cows.

Authors:  B Schumann; P Lebzien; K-H Ueberschär; J Spilke; M Höltershinken; S Dänicke
Journal:  Mycotoxin Res       Date:  2008-06       Impact factor: 3.833

  1 in total

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