治疗和预防复合物DLK(Dironet、Lactobifadol、Forage Keratin)对毒杀蓝霜狐肠道微生物群落的影响

A. Konovalov, I. I. Tsepilova, F. Vasilevich, S. Pigina
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引用次数: 0

摘要

本研究的目的是确定dionet、乳脂酚和饲料角蛋白(DLK)治疗和预防复合物对蓝霜狐弓形虫病感染肠道菌群的定性和定量组成的影响。材料和方法。该研究是在基洛夫州斯洛博德斯科伊区“维亚特卡”毛皮养殖场进行的。研究对象是从繁殖群中挑选出来的24只雌性蓝霜狐。为了确定实验动物皮肤的质量,我们对燧石干燥的皮肤进行了分类。结果和讨论。在患病动物的饮食中引入治疗和预防复合物DLK后,在肠道微生物的定量和定性组成中观察到积极的动态。在给予DLK的实验组动物中,双歧杆菌、乳酸菌和粪便肠球菌的数量增加;致病性微生物和条件致病性微生物、梭杆菌、链球菌、梭菌、典型的乳糖阴性和溶血性埃希菌、金黄色葡萄球菌和腐生葡萄球菌、常见的变形杆菌和念珠菌属真菌显著减少或完全没有。在被狮子弓形虫感染的动物中,没有接受复合治疗,乳酸菌减少,致病微生物和共生微生物含量增加。在毛皮生产产量下,染病动物的毛皮质量百分比最低,为7.16%,比健康狐狸低0.38%,比处理过的蓝霜狐狸低0.51%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effect of therapeutic and prophylactic complex DLK (Dironet, Lactobifadol, Forage Keratin) on the intestinal microbiocenosis of the Blue Frost fox at toxascariosis
The purpose of the research is determining the effect of the therapeutic and prophylactic complex of Dironet, Lactobifadol and fodder Keratin (DLK) on the qualitative and quantitative composition of the intestinal microflora affected by toxascariosis in the Blue Frost fox.Materials and methods. The research was carried out on the Fur Breeding Farm “Vyatka”, Slobodskoy District, the Kirov Region. The study objects were 24 female Blue Frost foxes culled from the breeding herd. To determine the quality of the skins obtained from the experimental animals, we sorted flint-dried skins.Results and discussion. After the introduction of the therapeutic and preventive complex DLK into the diet of sick animals, the positive dynamics was observed in the quantitative and qualitative composition of intestinal microorganisms. In animals of the experimental groups that were administered DLK, the number of bifidus bacteria, lactic bacteria and fecal enterococci increased; there was a significant decrease or complete absence of pathogenic and conditionally pathogenic microorganisms, fusobacteria, streptococci, clostridia, typical lactose-negative and hemolytic Escherichia, aureus and saprophytic staphylococcus, common Proteus and fungi of the Candida genus. In animals infected by Toxascaris leonina that did not receive the complex therapy, a decrease in lactic acid bacteria and an increase in the content of pathogenic and commensal microorganisms were noted. Under the output of the fur production, the infected animals showed the lowest percentage of skins in terms of quality of 7.16%, which was 0.38% less in comparison with healthy foxes, and 0.51% less in comparison with treated Blue Frost foxes.
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