Department of Animal Science, Michigan State University, East Lansing 48824.
Department of Animal Science, Michigan State University, East Lansing 48824.
J Dairy Sci. 2019 Nov;102(11):9870-9882. doi: 10.3168/jds.2019-16581. Epub 2019 Aug 22.
Effects of culture pH and corn oil (CO) concentration on biohydrogenation (BH) of unsaturated fatty acids and disappearance of neutral detergent fiber (NDF) in batch culture were evaluated in a 2 × 3 factorial design experiment. Culture vessels (100 mL; 4 replicates/treatment per time point) included ground alfalfa hay plus CO at 0, 1, or 2% dry matter inclusion rate and were incubated at pH 5.8 (low pH) or 6.2 (high pH) for 0, 6, 12, 18, or 24 h. Effects of culture pH, CO, time, and their interactions were determined. Adding CO increased total fatty acid concentration in substrates to 1.01, 2.31, and 3.58% dry matter for 0, 1, and 2% CO, respectively. Corn oil concentration interacted with culture pH and resulted in different effects on BH of cis-9,cis-12 18:2 at low or high culture pH. After 24 h of incubation, low pH, compared with high pH, reduced disappearance of NDF by 35% and BH extent of cis-9,cis-12 18:2 by 31%. Increasing CO increased disappearance of NDF across pH treatments and decreased BH extent of cis-9,cis-12 18:2 at low pH and increased it at high pH over 24 h. Compared with high pH, low pH reduced concentrations of 18:0 by 31% and increased concentrations of trans-10,cis-12 18:2 and trans-10 18:1 by 110 and 79% after 24 h, respectively. Adding CO at low pH had greater effect on BH intermediates of cis-9,cis-12 18:2 compared with adding oil at high pH. In particular, increasing CO to 1 and 2% DM at low pH, compared with at high pH, resulted in a 36 and 46% reduction in the concentration of 18:0, an 84 and 131% increase in the concentration of trans-10,cis-12 18:2, and an 81 and 129% increase in the concentration of trans-10 18:1, respectively. Despite the interactions between culture pH and CO concentration, main effects across time were also significant for the response variables of interest. In conclusion, culture pH interacted with CO concentration to affect BH of UFA and disappearance of NDF in batch culture, as the effects were greater at low culture pH than at high culture pH.
采用 2×3 析因设计试验,评估了培养 pH 值和玉米油(CO)浓度对不饱和脂肪酸生物氢化(BH)和中性洗涤纤维(NDF)在分批培养中消失的影响。培养容器(100mL;每个处理 4 个重复,每个时间点)包括苜蓿干草粉和 0、1 或 2%干物质添加率的 CO,并在 pH5.8(低 pH)或 6.2(高 pH)下孵育 0、6、12、18 或 24 小时。确定了培养 pH 值、CO、时间及其相互作用的影响。添加 CO 将底物中的总脂肪酸浓度分别提高到 0、1 和 2% CO 时的 0.01、0.23 和 0.35%干物质。CO 浓度与培养 pH 值相互作用,导致低或高培养 pH 值下 cis-9,cis-12 18:2 的 BH 不同。孵育 24 小时后,与高 pH 值相比,低 pH 值使 NDF 的消失减少了 35%,cis-9,cis-12 18:2 的 BH 程度减少了 31%。随着 CO 的增加,整个 pH 值处理的 NDF 消失增加,低 pH 值下 cis-9,cis-12 18:2 的 BH 程度降低,高 pH 值下则增加。与高 pH 值相比,低 pH 值使 18:0 的浓度降低了 31%,使 trans-10,cis-12 18:2 和 trans-10 18:1 的浓度分别增加了 110%和 79%,分别在 24 小时后。在低 pH 值下添加 CO 对 cis-9,cis-12 18:2 的 BH 中间产物的影响大于在高 pH 值下添加油。特别是,与高 pH 值相比,在低 pH 值下将 CO 添加到 1%和 2% DM,使 18:0 的浓度分别降低 36%和 46%,trans-10,cis-12 18:2 的浓度分别增加 84%和 131%,trans-10 18:1 的浓度分别增加 81%和 129%。尽管培养 pH 值与 CO 浓度之间存在相互作用,但随着时间的推移,对感兴趣的反应变量的主要影响也很显著。总之,培养 pH 值与 CO 浓度相互作用,影响分批培养中 UFA 的 BH 和 NDF 的消失,低培养 pH 值的影响大于高培养 pH 值。