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体外产气动力学受谷物加工、薄片密度、淀粉回生以及含α-淀粉酶活性的米曲霉发酵提取物的影响。

In vitro gas production kinetics are influenced by grain processing, flake density, starch retrogradation, and Aspergillus oryzae fermentation extract containing α-amylase activity.

机构信息

Department of Animal and Food Sciences, University of Kentucky, Lexington, KY 40546, USA.

Center for Animal Nutrigenomics and Applied Animal Nutrition, Alltech Biotechnology Inc., Nicholasville, KY 40356, USA.

出版信息

J Anim Sci. 2023 Jan 3;101. doi: 10.1093/jas/skad031.

Abstract

Grain processing such as particle size, flake density, or starch retrogradation can influence ruminal degradability characteristics; however, it is unclear how exogenous α-amylase supplementation interacts with different processed grains. Four experiments were conducted to compare the effects of Aspergillus oryzae fermentation extract (Amaize; Alltech Biotechnology Inc., Nicholasville, KY) supplementation on in vitro gas production kinetics of grain substrates with different processing methods that are common in the feedlot industry. In experiment 1, corn processing (dry-rolled, high-moisture, steam-flaked) and Amaize supplementation (0 or 15 U α-amylase activity/100 mL) were evaluated in a 3 × 2 factorial arrangement of treatments. The rate of gas production for dry-rolled corn was higher (P < 0.001) with Amaize supplementation. In experiment 2, flake density (296, 322, 348, 373, and 399 g/L) and starch retrogradation (storage in heat-sealed foil bags for 3 d at 23 or 55°C) were evaluated in a 5 × 2 factorial arrangement of treatments. There was a flake density × starch retrogradation interaction (P < 0.01) for the rate of gas production because the decrease in the rate of gas production with starch retrogradation was greater at lighter flake densities compared with heavier flake densities. In experiment 3, Amaize supplementation was evaluated across flake densities of nonretrograded steam-flaked corn (stored at 23°C) used in experiment 2. There was a flake density × Amaize interaction (P < 0.01) for the rate of gas production where Amaize supplementation resulted in a lower rate of gas production at lighter flake densities (296, 322, and 348 g/L) but a higher rate of gas production at heavier flake densities (373 and 399 g/L). In experiment 4, Amaize supplementation was evaluated across flake densities of retrograded steam-flaked corn (stored at 55°C) used in experiment 2. Gas production was lower after 24 h with Amaize supplementation for retrograded flakes produced to a density of 322 and 399 g/L while Amaize supplementation did not influence gas production at 24 h at other flake densities. There was a flake density × Amaize interaction for the rate of gas production because Amaize supplementation resulted in a faster (P < 0.01) rate of gas production for all flake densities except retrograded flakes produced to a density of 296 g/L. Enzymatic starch availability was positively correlated with the rate of gas production. These data demonstrate that supplementation of 15 U/100 mL of Amaize resulted in greater rates of gas production for dry-rolled corn, corn steam-flaked to heavier densities, and retrograded steam-flaked corn.

摘要

谷物加工,如粒径、薄片密度或淀粉回生,会影响瘤胃降解特性;然而,外源α-淀粉酶补充与不同加工谷物如何相互作用尚不清楚。进行了四项实验,以比较不同加工方法(在育肥场中很常见)的谷物底物的体外产气动力学中添加 Aspergillus oryzae 发酵提取物(Amaize;Alltech Biotechnology Inc.,Nicholasville,KY)的效果。在实验 1 中,以 3×2 因子设计处理评估了玉米加工(干压、高水分、蒸汽压片)和 Amaize 补充(0 或 15 U α-淀粉酶活性/100 mL)。添加 Amaize 可提高干压玉米的产气量(P<0.001)。在实验 2 中,以 5×2 因子设计处理评估了薄片密度(296、322、348、373 和 399 g/L)和淀粉回生(在 23 或 55°C 的热密封箔袋中储存 3 d)。由于与较重的薄片密度相比,较轻的薄片密度下淀粉回生导致产气量下降更大,因此存在薄片密度×淀粉回生的相互作用(P<0.01)。在实验 3 中,在实验 2 中使用的未回生蒸汽压片玉米的不同薄片密度(在 23°C 下储存)上评估了 Amaize 补充。产气量存在薄片密度×Amaize 相互作用(P<0.01),其中在较轻的薄片密度(296、322 和 348 g/L)下,Amaize 补充导致产气量降低,但在较重的薄片密度(373 和 399 g/L)下产气量增加。在实验 4 中,在实验 2 中使用的回生蒸汽压片玉米的不同薄片密度上评估了 Amaize 补充。与未添加 Amaize 的薄片相比,添加 Amaize 会降低 24 h 时回生薄片(密度为 322 和 399 g/L)的产气量,而在其他薄片密度下,添加 Amaize 对 24 h 时的产气量没有影响。产气量存在薄片密度×Amaize 相互作用,因为 Amaize 补充会使所有薄片密度的产气量更快(P<0.01),除了密度为 296 g/L 的回生薄片。酶解淀粉可用性与产气量呈正相关。这些数据表明,补充 15 U/100 mL 的 Amaize 可提高干压玉米、压片密度较大的玉米蒸汽压片和回生蒸汽压片玉米的产气量。

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