饲喂不同水平含真菌毒素玉米粉对保育猪日粮选择和生长性能的影响。

IF 1.3 Q3 AGRICULTURE, DAIRY & ANIMAL SCIENCE
Translational Animal Science Pub Date : 2025-02-04 eCollection Date: 2025-01-01 DOI:10.1093/tas/txaf015
Duncan B Paczosa, Tyler B Chevalier, Sunday A Adedokun, Lan Zheng, Merlin D Lindemann
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引用次数: 0

摘要

饲料中的真菌毒素已知会对猪的生长和其他生理过程产生负面影响。进行了两项试验,以研究饲粮中添加不同水平的真菌毒素和硼(一种据报道可减轻真菌中毒某些方面的营养物质)的影响。从2020年作物年的玉米中筛选出的霉菌毒素水平为总伏马菌素(FUM) 23,038 ppb,玉米霉烯酮(ZEA) 1,446 ppb,脱氧雪腐菌烯醇(DON) 5,032 ppb。将玉米粉添加到玉米-豆粕日粮中,以满足或超过NRC(国家研究委员会,2012年)的要求。猪的营养需求。第十一修订版。华盛顿特区:国家科学院出版社。(doi:10.17226/13298)在饲粮1至3中替代玉米的0、10和20%的营养需求。饲粮4至6分别为饲粮1至3,加上40 ppm的硼(来自十水四硼酸钠)。饮食3和6的制定是为了接近伏马菌素的指导水平和FDA规定的DON的建议水平。试验1选用48头按性别和体重分组的杂交猪(初始体重= 9.18 kg±0.12 kg),随机分为3个处理组中的1个:比较1)饲粮1 vs饲粮2;对比2)饮食1与饮食3;3)饮食2和饮食3。试验期为21 d,共4个重复(4头猪/栏)。试验2选用144头按性别和体重分组的杂交猪(平均初始体重= 10.20±0.23 kg),随机分为6个重复(每栏4头猪),进行21 d的生长试验。第21天,每个猪圈中最重和最轻的猪采集血清进行临床化学评价。在比较2和比较3中,实验1证明了犊牛区分日粮的能力(P P = 0.06)。试验2中霉菌毒素水平的升高对平均日增重、平均ADFI和G:F均无显著影响(P分别为0.16、0.53和0.92)。升高的霉菌毒素水平影响血清葡萄糖和胆固醇(P = 0.03, P = 0.81, 0.59和0.76),但降低血清葡萄糖(P = 0.02)。综上所述,猪可以区分和选择含有这些混合真菌毒素的饲粮,但在没有选择的情况下,使用本评估框架内的特定真菌毒素和浓度,猪的生长性能并不一定不同。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effects of feeding varying levels of mycotoxin-containing corn fines on diet choice and growth performance of nursery pigs.

Mycotoxins in feed are known to negatively affect growth and other physiological processes in pigs. Two experiments were conducted to investigate the effects of feeding diets with varying levels of mycotoxins and boron (a nutrient reported to mitigate some aspects of mycotoxicosis). Screenings from the 2020 crop year corn contained mycotoxin levels of 23,038 ppb total fumonisins (FUM), 1,446 ppb zearalenone (ZEA), and 5,032 ppb total deoxynivalenol (DON). The corn fines were added to a corn-soybean meal diet formulated to meet or exceed NRC (National Research Council. 2012. Nutrient requirements of swine. 11th Revised Edition. Washington, DC: The National Academies Press. doi:10.17226/13298) nutrient requirements as a replacement for corn at 0, 10, and 20% for Diets 1 to 3. Diets 4 to 6 were Diets 1 to 3, respectively, plus 40 ppm boron from sodium tetraborate decahydrate. Diets 3 and 6 were formulated to approximate the guidance level of fumonisin and the advisory level of DON stated by the FDA. Exp. 1 used 48 crossbred pigs (initial body weight [BW] = 9.18 kg ± 0.12 kg) blocked by sex and BW and randomly allotted to 1 of 3 treatment comparisons: Comparison 1) Diet 1 vs. Diet 2; Comparison 2) Diet 1 vs. Diet 3; and Comparison 3) Diet 2 vs. Diet 3. There were 4 replicates (4 pigs/pen) for the 21-d preference trial. Exp. 2 used 144 crossbred pigs (mean initial BW = 10.20 ± 0.23 kg) blocked by sex and BW and randomly allotted to diets for a total of 6 replicates (4 pigs/pen) for a 21-d growth trial. On d 21, serum was collected from the heaviest and lightest pig in each pen for clinical chemistry assessment. Exp. 1 demonstrated the barrows' ability to discern between diets in Comparisons 2 and 3 (P < 0.01) for each week while gilts only started to exhibit that ability during Week 3 for Comparison 2 (P = 0.06). Increasing mycotoxin levels in Exp. 2 had no effect on overall ADG, ADFI, and G:F (P = 0.16, 0.53, and 0.92, respectively). The increasing mycotoxin levels affected serum glucose and cholesterol (P = 0.03, and P < 0.01, respectively). There was no effect of boron on the same performance measures (P = 0.81, 0.59, and 0.76, respectively) although it did lower serum glucose (P = 0.02). In conclusion, pigs can differentiate and choose between diets containing these mixed mycotoxins but when not given a choice, the pigs do not necessarily have different growth performance using the particular mycotoxins and concentrations within the framework of this assessment.

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来源期刊
Translational Animal Science
Translational Animal Science Veterinary-Veterinary (all)
CiteScore
2.80
自引率
15.40%
发文量
149
审稿时长
8 weeks
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.
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