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Effects of red clover isoflavones on tall fescue seed fermentation and microbial populations in vitro

机译:红三叶草异黄酮对高羊茅种子发酵及体外微生物种群的影响

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摘要

Negative impacts of endophyte-infected Lolium arundinaceum (Darbyshire) (tall fescue) are responsible for over $2 billion in losses to livestock producers annually. While the influence of endophyte-infected tall fescue has been studied for decades, mitigation methods have not been clearly elucidated. Isoflavones found in Trifolium pratense (red clover) have been the subject of recent research regarding tall fescue toxicosis mitigation. Therefore, the aim of this study was to determine the effect of ergovaline and red clover isoflavones on rumen microbial populations, fiber degradation, and volatile fatty acids (VFA) in an in vitro system. Using a dose of 1.10 mg × L-1, endophyte-infected or endophyte-free tall fescue seed was added to ANKOM fiber bags with or without 2.19 mg of isoflavones in the form of a control, powder, or pulverized tablet, resulting in a 2 × 3 factorial arrangements of treatments. Measurements of pH, VFA, bacterial taxa, as well as the disappearance of neutral detergent fiber (aNDF), acid detergent fiber (ADF), and crude protein (CP) were taken after 48 h of incubation. aNDF disappearance values were significantly altered by seed type (P = 0.003) and isoflavone treatment (P = 0.005), and ADF disappearance values were significantly different in a seed × isoflavone treatment interaction (P ≤ 0.05). A seed × isoflavone treatment interaction was also observed with respect to CP disappearance (P ≤ 0.05). Eighteen bacterial taxa were significantly altered by seed × isoflavone treatment interaction groups (P ≤ 0.05), eight bacterial taxa were increased by isoflavones (P ≤ 0.05), and ten bacterial taxa were altered by seed type (P ≤ 0.05). Due to the beneficial effect of isoflavones on tall fescue seed fiber degradation, these compounds may be viable options for mitigating fescue toxicosis. Further research should be conducted to determine physiological implications as well as microbiological changes in vivo.
机译:内生细菌感染的黑麦草(达比郡)(高羊茅)的负面影响每年给畜牧生产者造成超过20亿美元的损失。尽管已经研究了内生菌感染的高羊茅的影响数十年,但尚未明确阐明缓解方法。在三叶草(红三叶草)中发现的异黄酮已成为缓解高羊茅毒素中毒的最新研究对象。因此,本研究的目的是确定在体外系统中麦角新碱和红三叶草异黄酮对瘤胃微生物种群,纤维降解和挥发性脂肪酸(VFA)的影响。使用1.10 mg×L -1 剂量,将内生真菌感染或不含内生真菌的高羊茅种子加到含或不含2.19 mg异黄酮的ANKOM纤维袋中,以对照,粉末,或粉状片剂,导致2×3阶乘安排的治疗。孵育48小时后,测量pH,VFA,细菌类群以及中性洗涤剂纤维(aNDF),酸性洗涤剂纤维(ADF)和粗蛋白(CP)的消失。种子类型(P = 0.003)和异黄酮处理(P = 0.005)显着改变了aNDF消失值,并且种子×异黄酮处理相互作用中ADF消失值显着不同(P≤0.05)。关于CP消失,也观察到了种子×异黄酮处理的相互作用(P≤0.05)。种子×异黄酮处理相互作用组显着改变了18个细菌类群(P≤0.05),异黄酮增加了8个细菌类群(P≤0.05),种子类型改变了10个细菌类群(P≤0.05)。由于异黄酮对高羊茅种子纤维降解的有益作用,这些化合物可能是缓解羊茅中毒的可行选择。应该进行进一步的研究以确定体内的生理影响以及微生物学变化。

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