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A commentary on methodological aspects of hydrolysable tannins metabolism in ruminant: a perspective view

机译:反刍动物水解单宁代谢方法的方法论方面的评论:透视图

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Although, the application of tannic acid (TA), gallic acid (GA), natural hydrolysable tannins (HT)-rich ingredients, and HT-rich feeds in ruminant feeding have been explored in order to modify or manipulate microbial activities of digestive tract of animals, the interaction between HT and gastrointestinal microbiota and the fate of HT metabolites (GA, ellagic acid, pyrogallol, resorcinol, phloroglucinol, catechol and urolithin) derived from gastrointestinal microbial HT metabolism in the animal as a whole and animal products are missing. Incomplete biotransformation of HT and TA to GA, pyrogallol, resorcinol, phloroglucinol and other phenolic metabolites is a prevalent phenomenon discovered by researchers who examine the fate of HT metabolites in ruminant. While the rest of fellow researchers do not even examine the fate of HT metabolites and assume the complete biotransformation and fermentation of HT metabolites to volatile fatty acids (VFA). Only three studies have successfully identified the complete biotransformation and fermentation of HT metabolites to VFA in ruminant. The HT metabolites, mostly pyrogallol, produced through incomplete biotransformation of HT have adverse effects on gastrointestinal microbiota and host animal. Lack of awareness regarding the metabolism of HT metabolites and its consequences would compromise ruminant gastrointestinal microbiota, animal welfare, our environment and the power of research papers' findings. In this perspective paper, I will bring to attention a new angle on the biotransformation and fermentation of HT metabolites in gastrointestinal tract, the role of gastrointestinal microbiota and deficiency of current approach in isolating tannin-degrading bacteria from rumen. Also, suggestions for better monitoring and understanding HT metabolisms in ruminant are presented.
机译:虽然已经探讨了鞣酸(Ta),无碱酸(Ga),天然水解单宁(HT) - 富含反刍动物喂养的富含饲料的施用,以便修饰或操纵消化道的微生物活性动物,HT和胃肠道微生物之间的相互作用和HT代谢物(GA,鞣花酸,吡糖醇,间苯二酚,游离毒素,作为整个动物产品中的胃肠微生物HT代谢源自胃肠微生物HT代谢的源自源自和动物产品。 HT和TA的不完全生物转化,吡吡咯,间苯二酚,甘油蛋白和其他酚醛代谢物是研究人员发现的普遍存存现象,他们在反刍动物中检查HT代谢物的命运。虽然其余的研究人员甚至没有检查HT代谢物的命运,并假设HT代谢物的完全生物转化和发酵,以挥发脂肪酸(VFA)。只有三项研究已经成功地确定了反刍动物VFA的完整生物转化和HT代谢物的发酵。通过不完全生物转化产生的HT代谢物大多是吡羟基醇对胃肠微生物群和宿主动物产生不利影响。缺乏关于HT代谢物代谢的代谢及其后果的意识将损害反刍动物胃肠微生物群,动物福利,我们的环境和研究论文的能力。在这篇透视论文中,我将注意胃肠道中HT代谢物的生物转化和发酵的新角度,胃肠微生物的作用和当前方法的缺乏分离瘤胃中的单宁降解细菌。此外,提出了更好地监测和理解反刍动物中HT代谢的建议。

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