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41.
应用 PEG沉淀法 ,对种貂进行循环免疫复合物检测 ,比较阴阳性种貂的生长状况和生产指标 ,阴性貂显著好于阳性貂 ,提出适合我国国情的针对阿留申病的水貂育种措施 相似文献
42.
中国荷斯坦牛乳蛋白分子遗传多态性和产奶性状相关性的研究 总被引:16,自引:1,他引:16
从北京两个主要牛场共采得187头中国荷斯坦奶牛的血样,提取基因组DNA,通过PCR-RFLP方法对Kappa酪蛋白、Beta乳球蛋白(βlg)和Alpha乳白蛋白(α-la)进行了基因型的鉴定,并结合产奶性状进行统计分析,结果表明,牛群中上述3种乳蛋白基因的基因频率分别为K-cnA79%,K-caB21%,β-lgA43%,β-lgB57%,α-lgB100%,K-CN和β-lg基因位眯对产奶量没 相似文献
43.
选用5种常用消毒药物进行消毒试验,抑菌试验。结果表明实验动物房选择消毒药物的顺序为:乳酸、醋酸钠、百毒杀、卫康、过氧乙酸,消毒间隔以3个月为宜。 相似文献
44.
水解蛋白婴儿配方奶粉的研究 总被引:1,自引:0,他引:1
本文介绍了婴儿对牛乳蛋白过敏的原因,并根据水解蛋白防过敏的特性生产加工了低过敏婴儿配方奶粉,通过研究分析发现其感官品质和营养成分与常规配方婴儿奶粉无明显差异。 相似文献
45.
大豆抗原蛋白对幼龄动物致敏作用的研究进展 总被引:1,自引:0,他引:1
大豆抗原蛋白对幼龄动物的致敏作用及不易灭活性使其成为大豆及其制品在动物养殖中有效利用的主要瓶颈。本文从主要抗原蛋白的特性、致敏机制、对幼龄动物的影响、降低抗原蛋白的方法及有待进一步探索问题等方面进行了阐述,旨在为高效利用大豆及其制品,以及进一步深入研究提供参考。 相似文献
46.
47.
Yanfen Ma Ying Feng Liwen Song Muyang Li Hongyu Dai Hua Bao Guijie Zhang Lei Zhao Chunhua Zhang Jing Yi Yusheng Liang 《动物营养(英文)》2021,7(1):206
Peripartal cows often experience negative energy balance, and are therefore prone to suffering from metabolic diseases such as hyperketonemia, which causes financial losses in dairy farms. This study aimed to investigate the effect of green tea polyphenol (GTP) supplementation during the periparturient period on production performance, oxidative stress and immunometabolism in dairy cows with hyperketonemia. One hundred Holstein cows were assigned to GTP (0.2 g/kg DM; n = 50) or control (without GTP; n = 50) group based on body weight, previous milk yield, and parity on d 15 before expected parturition. Subsequently, 10 cows with hyperketonemia were selected from each group, according to blood β-hydroxybutyric acid (BHBA) concentration between 1.2 and 2.9 mmol/L from 2 to 3 d postpartum. All cows were fed a close-up diet and a lactation diet with or without GTP supply from 15 d prepartum until 30 d postpartum. Milk and blood samples were obtained from 20 cows selected with hyperketonemia on 10, 20, and 30 d postpartum. Compared with control cows, greater milk yield and lower somatic cell count were observed in GTP cows. The GTP group had lower concentrations of BHBA, free fatty acids, cholesterol, triglyceride, reactive oxygen species, malondialdehyde, and hydrogen peroxide, greater concentrations of glucose, lower activities of aspartate aminotransferase, alanine aminotransferase, and glutamyl transpeptidase, alongside greater activities of superoxide dismutase, glutathione peroxidase, and total antioxidant capacity. Additionally, GTP supplementation up-regulated concentrations of interleukin-6 and interleukin-10, but down-regulated concentrations of tumor necrosis factor-α, interleukin-1β, interleukin-2, interleukin-8, and interferon-γ in plasma. Greater concentrations of plasma immunoglobulin G were also detected in the GTP group. Overall, the data suggested that GTP supplementation from 15 d prepartum to 30 d postpartum improved the milk yield and health status in cows with hyperketonemia during early lactation. 相似文献
48.
49.
Nan‐Xi Hu Mei Chen Yi‐Song Liu Qi Shi Bo Yang Huan‐Cheng Zhang Pi Cheng Qi Tang Zhao‐Ying Liu Jian‐Guo Zeng 《Journal of veterinary pharmacology and therapeutics》2019,42(2):197-206
Sanguinarine (SA) and chelerythrine (CHE) are the main active components of the phytogenic livestock feed additive, Sangrovit®. However, little information is available on the pharmacokinetics of Sangrovit® in poultry. The goal of this work was to study the pharmacokinetics of SA, CHE, and their metabolites, dihydrosanguinarine (DHSA) and dihydrochelerythrine (DHCHE), in 10 healthy female broiler chickens following oral (p.o.) administration of Sangrovit® and intravenous (i.v.) administration of a mixture of SA and CHE. The plasma samples were processed using two different simple protein precipitation methods because the parent drugs and metabolites are stable under different pH conditions. The absorption and metabolism of SA following p.o. administration were fast, with half‐life (t1/2) values of 1.05 ± 0.18 hr and 0.83 ± 0.10 hr for SA and DHSA, respectively. The maximum concentration (Cmax) of DHSA (2.49 ± 1.4 μg/L) was higher that of SA (1.89 ± 0.8 μg/L). The area under the concentration vs. time curve (AUC) values for SA and DHSA were 9.92 ± 5.4 and 6.08 ± 3.49 ng/ml hr, respectively. Following i.v. administration, the clearance (CL) of SA was 6.79 ± 0.63 (L·h?1·kg?1) with a t1/2 of 0.34 ± 0.13 hr. The AUC values for DHSA and DHCHE were 7.48 ± 1.05 and 0.52 ± 0.09 (ng/ml hr), respectively. These data suggested that Sangrovit® had low absorption and bioavailability in broiler chickens. The work reported here provides useful information on the pharmacokinetic behavior of Sangrovit® after p.o. and i.v. administration in broiler chickens, which is important for the evaluation of its use in poultry. 相似文献
50.
用食盐作为助溶剂采用细胞自溶法,对解脂假丝酵母33M candida lipolytica细胞壁进行破碎后提取神经酰胺,用SPE(固相萃取法)将神经酰胺与膜中其它脂类分离,分别应用TLC(薄层色谱)方法和HPLC-ELSD(高效液相色谱-蒸发光散射器)对其进行定性和定量分析,取得了良好效果。 相似文献