Tiago Leiva, Reinaldo F Cooke, Pedro V F Lasmar, Rodrigo L Valarelli, José M C De Simas, Dina Maria B Zapa, Luiz Felipe M Couto, Luciana M Heller, Welber D Z Lopes
{"title":"Supplementing narasin or monensin to control coccidiosis in naturally infected calves.","authors":"Tiago Leiva, Reinaldo F Cooke, Pedro V F Lasmar, Rodrigo L Valarelli, José M C De Simas, Dina Maria B Zapa, Luiz Felipe M Couto, Luciana M Heller, Welber D Z Lopes","doi":"10.1093/tas/txae069","DOIUrl":null,"url":null,"abstract":"<p><p>This experiment compared narasin and monensin as anticoccidials for calves naturally infected with <i>Eimeria</i> spp. Twenty-four weaned, non-castrated male calves (<i>Bos indicus</i> × <i>B. taurus</i> cross) were assigned to this experiment (days -8 to 42). All calves were infected by <i>Eimeria</i> spp. according to oocyst count per gram (<b>OPG</b>) from fecal samples collected on days -8 and -7 (average 1,059 ± 101 oocysts/g). Calves were housed in individual pens, received corn silage, mineral mix, and water for ad libitum consumption, in addition to a grain-based supplement at 200 g/head daily. Fecal samples were collected on days -2 and -1 for OPG, and results averaged as initial OPG value. Calves were blocked according to initial OPG into eight blocks of three calves each, ranked within each block according to body weight (<b>BW</b>) recorded on day -1, and assigned to receive narasin (<b>NAR;</b> 0.8 mg/kg of BW), monensin (<b>MON;</b> 1 mg/kg of BW), or no ionophore (<b>CON</b>; negative control). Ionophores were added to the grain-based supplement, and offered from days 0 to 42 of the experiment. Calf BW was recorded on days 7, 14, 21, 28, 35, and 42. Fecal samples were collected on days 6 and 7, 13 and 14, 20 and 21, 26 and 27, 34 and 35, and 41 and 42 for OPG analysis, and results from samples collected on consecutive days were averaged. Aliquoted fecal samples were also pooled across calves from the same treatment and collection days, and used to determine the prevalence of individual species of <i>Eimeria</i>. No treatment effects were detected (<i>P </i>≥ 0.51) for calf BW or growth rate. A treatment × day interaction was detected (<i>P </i>< 0.01) for OPG, as NAR and MON calves had less (<i>P </i>< 0.01) OPG compared with CON calves beginning on day 7. The OPG was also less (<i>P </i>≤ 0.03) in MON compared with NAR calves on days 7, 14, and 28, but did not differ (<i>P </i>≥ 0.48) on days 21, 35, and 42. The anticoccidial efficacy of NAR and MON did not differ (<i>P </i>≥ 0.16) when calculated across all <i>Eimeria</i> spp., or according to prevalence of <i>E. bovis</i> and <i>E. alabamensins</i>. A treatment × day interaction was detected (<i>P </i>= 0.04) for anticoccidial efficacy to <i>E. alabamensis</i>, which was greater (<i>P </i>< 0.01) in MON calves on days 7 and 14 and did not differ (<i>P </i>≥ 0.40) afterward. Collectively, both ionophores were similarly effective in controlling coccidiosis upon completion of the 42-d study, although the anticoccidial effects of monensin were noted earlier in the experiment. Nonetheless, these results corroborate narasin as an efficient anticoccidial ionophore for naturally infected calves.</p>","PeriodicalId":23272,"journal":{"name":"Translational Animal Science","volume":null,"pages":null},"PeriodicalIF":1.3000,"publicationDate":"2024-04-26","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"https://www.ncbi.nlm.nih.gov/pmc/articles/PMC11127485/pdf/","citationCount":"0","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"Translational Animal Science","FirstCategoryId":"1085","ListUrlMain":"https://doi.org/10.1093/tas/txae069","RegionNum":0,"RegionCategory":null,"ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"2024/1/1 0:00:00","PubModel":"eCollection","JCR":"Q3","JCRName":"AGRICULTURE, DAIRY & ANIMAL SCIENCE","Score":null,"Total":0}
引用次数: 0
Abstract
This experiment compared narasin and monensin as anticoccidials for calves naturally infected with Eimeria spp. Twenty-four weaned, non-castrated male calves (Bos indicus × B. taurus cross) were assigned to this experiment (days -8 to 42). All calves were infected by Eimeria spp. according to oocyst count per gram (OPG) from fecal samples collected on days -8 and -7 (average 1,059 ± 101 oocysts/g). Calves were housed in individual pens, received corn silage, mineral mix, and water for ad libitum consumption, in addition to a grain-based supplement at 200 g/head daily. Fecal samples were collected on days -2 and -1 for OPG, and results averaged as initial OPG value. Calves were blocked according to initial OPG into eight blocks of three calves each, ranked within each block according to body weight (BW) recorded on day -1, and assigned to receive narasin (NAR; 0.8 mg/kg of BW), monensin (MON; 1 mg/kg of BW), or no ionophore (CON; negative control). Ionophores were added to the grain-based supplement, and offered from days 0 to 42 of the experiment. Calf BW was recorded on days 7, 14, 21, 28, 35, and 42. Fecal samples were collected on days 6 and 7, 13 and 14, 20 and 21, 26 and 27, 34 and 35, and 41 and 42 for OPG analysis, and results from samples collected on consecutive days were averaged. Aliquoted fecal samples were also pooled across calves from the same treatment and collection days, and used to determine the prevalence of individual species of Eimeria. No treatment effects were detected (P ≥ 0.51) for calf BW or growth rate. A treatment × day interaction was detected (P < 0.01) for OPG, as NAR and MON calves had less (P < 0.01) OPG compared with CON calves beginning on day 7. The OPG was also less (P ≤ 0.03) in MON compared with NAR calves on days 7, 14, and 28, but did not differ (P ≥ 0.48) on days 21, 35, and 42. The anticoccidial efficacy of NAR and MON did not differ (P ≥ 0.16) when calculated across all Eimeria spp., or according to prevalence of E. bovis and E. alabamensins. A treatment × day interaction was detected (P = 0.04) for anticoccidial efficacy to E. alabamensis, which was greater (P < 0.01) in MON calves on days 7 and 14 and did not differ (P ≥ 0.40) afterward. Collectively, both ionophores were similarly effective in controlling coccidiosis upon completion of the 42-d study, although the anticoccidial effects of monensin were noted earlier in the experiment. Nonetheless, these results corroborate narasin as an efficient anticoccidial ionophore for naturally infected calves.
期刊介绍:
Translational Animal Science (TAS) is the first open access-open review animal science journal, encompassing a broad scope of research topics in animal science. TAS focuses on translating basic science to innovation, and validation of these innovations by various segments of the allied animal industry. Readers of TAS will typically represent education, industry, and government, including research, teaching, administration, extension, management, quality assurance, product development, and technical services. Those interested in TAS typically include animal breeders, economists, embryologists, engineers, food scientists, geneticists, microbiologists, nutritionists, veterinarians, physiologists, processors, public health professionals, and others with an interest in animal production and applied aspects of animal sciences.