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Unprocessed whole flaxseed is as effective as dry-rolled flaxseed at increasing l-linolenic acid concentration in milk of dairy cows

机译:未加工的全亚麻籽与干轧亚麻籽在提高奶牛牛奶中的l-亚麻酸浓度方面一样有效

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Effects of flaxseed processing on the appearance of l-linolenic acid in milk were evaluated using ten primiparous Holstein cows (153pl30.7 d in milk) in a crossover design with two 14-d periods. We hypothesized that feeding unprocessed whole flaxseed (WF) is as effective as dry-rolled flaxseed (RF) at increasing l-linolenic acid concentration in milk fat. Experimental diets contained either WF or RF at 100 g kgp# of dietary dry matter. Dietary concentrations of neutral detergent fiber, crude protein, and ether extract were 379, 164, and 60 g kgp#, respectively (dry matter basis). Dry matter intake, milk yield, and concentrations of milk fat, protein, and lactose were not affected by treatments, and averaged 17.5 kg dp#, 27.5 kg dp#, 36.0 g kgp#, 30.0 g kgp#, 47.3 g kgp#, respectively. Apparent total tract digestibility of ether extract was lower for WF compared with RF (486 vs. 624 g kgp#; P <0.01). Moreover, excretion of l-linolenic acid in feces was greater for WF compared with RF treatment (259 vs. 129 g dp#; P <0.001). However, l-linolenic acid concentration in milk was not affected by treatment (8.3 and 8.6 g kgp# for WF and RF, respectively), and both treatments had three times as much l-linolenic acid concentration as the period prior to the experiment (2.6 g kgp#), during which sunflower seed was fed in place of flaxseed. These data indicate that both WF and RF treatments increased the absorption of l-linolenic acid to a similar extent despite the lower digestibility for WF treatment, which can be attributed to reduced lipolysis in the rumen or fatty acid biohydrogenation for WF compared with RF. This speculation is supported by that WF treatment decreased concentration of vaccenic acid, a fatty acid intermediate during biohydrogenation, in milk fat compared with RF (19 vs. 30 g kgp#; P <0.01). Dry-rolling of flaxseed does not necessarily improve the absorption of l-linolenic acid probably because processing increases the extent of biohydrogenation in the rumen as well as digestibility. Although some intact whole flaxseed appeared in the feces of cows fed unprocessed flaxseed, the EE content was quite low, indicating that the fats present in flaxseed were available to cattle even in the absence of any visible damage to the seed coat.
机译:使用十个初生荷斯坦奶牛(牛奶中153pl30.7 d),采用两个14天的交叉设计,评估了亚麻籽加工对牛奶中l-亚麻酸外观的影响。我们假设饲喂未加工的全亚麻籽(WF)与干轧亚麻籽(RF)在增加牛奶脂肪中的亚麻酸含量方面一样有效。实验饮食中的膳食干物质含量为100 g kgp#。中性洗涤剂纤维,粗蛋白和乙醚提取物的日粮浓度分别为379、164和60 g kgp#(以干物质计)。干物质摄入量,产奶量以及乳脂,蛋白质和乳糖的浓度不受处理的影响,平均分别为17.5公斤dp#,27.5公斤dp#,36.0克kgp#,30.0克kgp#,47.3克kgp#,分别。 WF的醚提取物的表观总道消化率比RF低(486对624 g kgp#; P <0.01)。此外,与RF处理相比,WF中粪便中1-亚麻酸的排泄量更大(259 vs 129 g dp#; P <0.001)。但是,牛奶中的l-亚麻酸浓度不受处理的影响(WF和RF分别为8.3和8.6 g kgp#),两种处理中l-亚麻酸的浓度是实验前的三倍( 2.6 g kgp#),在此期间,用向日葵种子代替亚麻籽。这些数据表明,尽管WF处理的消化率较低,但WF和RF处理均增加了1-亚麻酸的吸收至相似的程度,这可归因于与RF相比,WF对瘤胃的脂解作用减少或脂肪酸的生物氢化作用。与RF相比,WF处理降低了乳脂中牛乳酸(生物氢化过程中的一种脂肪酸中间产物)的浓度(19 vs. 30 g kgp#; P <0.01)。亚麻籽的干轧不一定能提高1-亚麻酸的吸收率,这可能是因为加工会增加瘤胃中生物氢化的程度以及消化率。尽管未加工亚麻籽饲喂的母牛的粪便中出现了一些完整的亚麻籽,但EE含量很低,这表明即使没有对种皮的明显损害,亚麻籽中存在的脂肪仍可被牛食用。

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