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植物化合物对山羊瘤胃发酵、微生物丰度和甲烷排放的体外-体内研究。

In vitro-in vivo study on the effects of plant compounds on rumen fermentation, microbial abundances and methane emissions in goats.

机构信息

1 Instituto de Nutrición Animal, Estación Experimental del Zaidín (CSIC). C/Camino del Jueves s/n, 18100, Armilla, Granada, Spain.

出版信息

Animal. 2013 Dec;7(12):1925-34. doi: 10.1017/S1751731113001699.

Abstract

Two in vitro and one in vivo experiments were conducted to investigate the effects of a selection of plant compounds on rumen fermentation, microbial concentration and methane emissions in goats. Treatments were: control (no additive), carvacrol (CAR), cinnamaldehyde (CIN), eugenol (EUG), propyl propane thiosulfinate (PTS), propyl propane thiosulfonate (PTSO), diallyl disulfide (DDS), a mixture (40 : 60) of PTS and PTSO (PTS+PTSO), and bromochloromethane (BCM) as positive control with proven antimethanogenic effectiveness. Four doses (40, 80, 160 and 320 µl/l) of the different compounds were incubated in vitro for 24 h in diluted rumen fluid from goats using two diets differing in starch and protein source within the concentrate (Experiment 1).The total gas production was linearly decreased (P<0.012) by all compounds, with the exception of EUG and PTS+PTSO (P≥ 0.366). Total volatile fatty-acid (VFA) concentration decreased (P≤ 0.018) only with PTS, PTSO and CAR, whereas the acetate:propionate ratio decreased (P≤ 0.002) with PTS, PTSO and BCM, and a tendency (P=0.064) was observed for DDS. On the basis of results from Experiment 1, two doses of PTS, CAR, CIN, BCM (160 and 320 µl/l), PTSO (40 and 160 µl/l) and DDS (80 and 320 µl/l) were further tested in vitro for 72 h (Experiment 2). The gas production kinetics were affected (P≤ 0.045) by all compounds, and digested NDF (DNDF) after 72 h of incubation was only linearly decreased (P≤ 0.004) by CAR and PTS. The addition of all compounds linearly decreased (P≤ 0.009) methane production, although the greatest reductions were observed for PTS (up to 96%), DDS (62%) and BCM (95%). No diet-dose interaction was observed. To further test the results obtained in vitro, two groups of 16 adult non-pregnant goats were used to study in vivo the effect of adding PTS (50, 100 and 200 mg/l rumen content per day) and BCM (50, 100 and 160 mg/l rumen content per day) during the 9 days on methane emissions (Experiment 3). The addition of PTS and BCM resulted in linear reductions (33% and 64%, respectively, P≤ 0.002) of methane production per unit of dry matter intake, which were lower than the maximum inhibition observed in vitro (87% and 96%, respectively). We conclude that applying the same doses in vivo as in vitro resulted in a proportional lower extent of methane decrease, and that PTS at 200 mg/l rumen content per day has the potential to reduce methane emissions in goats. Whether the reduction in methane emission observed in vivo persists over longer periods of treatments and improves feed conversion efficiency requires further research.

摘要

进行了两项体外和一项体内实验,以研究选择的植物化合物对山羊瘤胃发酵、微生物浓度和甲烷排放的影响。处理方法为:对照(无添加剂)、香芹酚(CAR)、肉桂醛(CIN)、丁香酚(EUG)、丙基丙烷硫代亚磺酸酯(PTS)、丙基丙烷硫代亚磺酸钠(PTSO)、二烯丙基二硫醚(DDS)、PTS 和 PTSO(PTS+PTSO)混合物(40:60)和溴氯甲烷(BCM)作为具有已证明抗甲烷生成效果的阳性对照。在两种不同饲料的山羊稀释瘤胃液中,在体外 24 小时内孵育了不同剂量(40、80、160 和 320µl/l)的不同化合物(实验 1)。所有化合物均线性降低(P<0.012)总气体产量,除了 EUG 和 PTS+PTSO(P≥0.366)。总挥发性脂肪酸(VFA)浓度仅 PTS、PTSO 和 CAR 降低(P≤0.018),而乙酸:丙酸比例仅 PTS、PTSO 和 BCM 降低(P≤0.002),DDS 呈趋势(P=0.064)。基于实验 1 的结果,进一步在体外 72 小时内测试了 PTS、CAR、CIN、BCM(160 和 320µl/l)、PTSO(40 和 160µl/l)和 DDS(80 和 320µl/l)的两个剂量(实验 2)。所有化合物均影响气体产生动力学(P≤0.045),孵育 72 小时后消化的中性洗涤纤维(DNDF)仅由 CAR 和 PTS 线性降低(P≤0.004)。添加所有化合物均线性降低(P≤0.009)甲烷生成量,尽管 PTS(高达 96%)、DDS(62%)和 BCM(95%)的减少幅度最大。未观察到饮食剂量的相互作用。为了进一步测试体外获得的结果,使用两组 16 只非妊娠成年山羊进行体内实验,研究在 9 天内添加 PTS(每天 50、100 和 200mg/l 瘤胃液含量)和 BCM(每天 50、100 和 160mg/l 瘤胃液含量)对甲烷排放的影响(实验 3)。添加 PTS 和 BCM 导致单位干物质采食量的甲烷生成量呈线性降低(分别为 33%和 64%,P≤0.002),低于体外观察到的最大抑制(分别为 87%和 96%)。我们得出结论,在体内应用与体外相同的剂量会导致甲烷减少的比例降低,并且每天 200mg/l 瘤胃液含量的 PTS 有可能减少山羊的甲烷排放。在更长时间的治疗和提高饲料转化率方面,体内观察到的甲烷排放减少是否持续需要进一步研究。

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