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首页> 外文期刊>Journal of Applied Animal Research >Effects of pistachio by-products in replacement of alfalfa hay on ruminal fermentation, blood metabolites, and milk fatty acid composition in Saanen dairy goats fed a diet containing fish oil
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Effects of pistachio by-products in replacement of alfalfa hay on ruminal fermentation, blood metabolites, and milk fatty acid composition in Saanen dairy goats fed a diet containing fish oil

机译:阿月浑子副产物代替苜蓿干草对饲喂含鱼油日粮的萨嫩奶山羊瘤胃发酵,血液代谢产物和牛奶脂肪酸组成的影响

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The objective of this study was to investigate the effects of pistachio by-products (PBP) in replacement of alfalfa hay (AH) on ruminal fermentation, blood metabolites, and milk fatty acid composition in Saanen dairy goats fed a diet containing fish oil. For this purpose, 15 multiparous lactating Saanen goats (on day 25 postpartum, 38.15???±1.2 kg) were randomly assigned to three treatment diets in a completely randomized design with five goats per treatment. The treatment consisted of feeding the following diets: (1) control (AH), (2) 30% PBP, and (3) 30% PBP + polyethylene glycol (PEG, 1 g/Kg of dry matter [DM]). The experiment lasted 21 days, including 16 days of adaptation to the experimental diets followed by a five-day sampling period for determining milk yield and composition, dry matter intake (DMI), and blood metabolites. The results showed that DMI was affected ( P <0.05) by using PBP in the diets. The goats fed PBP had a lower ( P <0.05) DMI than those in other treatments. No differences were observed in milk yield and composition among the dietary treatments. The goats fed PBP (with and without PEG) had higher ( P <0.05) amounts of C16:0 and trans-C18:1 isomer in their milk fat than those fed AH. C24:0 was detected at higher ( P <0.05) concentrations in goats fed AH than those in other treatments. Overall, different treatments had no significant effects on the concentrations of saturated, monounsaturated, and polyunsaturated fatty acids (PUFA) in milk fat. Trans fatty acids (TFA) in milk fat exhibited higher ( P <0.05) concentrations in PBP and PBP-PEG treatments than in AH. However, no differences were detected in the concentrations of short, medium, and long chain fatty acids among the treatments. No differences were observed in rumen pH among the treatments, while rumen ammonia-N concentrations were lower ( P <0.01) in goats fed PBP than those in the other treatments. Treatments showed no differences with regard to blood metabolites (i.e., cholesterol, triglyceride, blood urea nitrogen, total protein, albumin, and glucose). These findings indicate that the inclusion of PBP in replacement of AH in the diet of dairy Saanen goats have no adverse effects on ruminal fermentation and blood metabolites. Moreover, PBP is capable of modifying the fatty acid profile of milk in dairy goat.
机译:这项研究的目的是调查开心果副产物(PBP)替代苜蓿干草(AH)对饲喂含鱼油的萨嫩奶山羊的瘤胃发酵,血液代谢产物和牛奶脂肪酸组成的影响。为此,以完全随机的设计将15只多产的哺乳Saanen山羊(产后第25天,38.15±1.2公斤)随机分配给三种处理日粮,每处理五只山羊。该治疗包括喂养以下饮食:(1)对照(AH),(2)30%PBP和(3)30%PBP +聚乙二醇(PEG,1 g / Kg干物质[DM])。实验持续21天,包括适应实验饮食的16天,然后是5天的采样期,以确定牛奶的产量和成分,干物质摄入量(DMI)和血液代谢产物。结果表明,饮食中使用PBP对DMI有影响(P <0.05)。饲喂PBP的山羊的DMI比其他处理的山羊低(P <0.05)。在饮食治疗之间,未观察到牛奶产量和组成方面的差异。饲喂PBP(有和没有PEG)的山羊的乳脂中C16:0和反式C18:1异构体的含量比AH山羊高(P <0.05)。在饲喂AH的山羊中,检测到的C24:0浓度高于(P <0.05),高于其他处理。总体而言,不同的处理方法对乳脂中饱和,单不饱和和多不饱和脂肪酸(PUFA)的浓度没有显着影响。乳脂中的反式脂肪酸(TFA)在PBP和PBP-PEG处理中的浓度高于AH中(P <0.05)。然而,在处理之间,未检测到短链,中链和长链脂肪酸的浓度差异。各处理之间瘤胃pH值没有差异,而饲喂PBP的山羊的瘤胃氨氮浓度低于其他处理(P <0.01)。治疗在血液代谢产物(即胆固醇,甘油三酸酯,血液尿素氮,总蛋白,白蛋白和葡萄糖)方面没有差异。这些发现表明,在Saanen奶山羊的日粮中添加PBP替代AH对瘤胃发酵和血液代谢产物没有不利影响。此外,PBP能够修饰奶山羊中牛奶的脂肪酸谱。

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