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布氏乳杆菌和植物乳杆菌对低干物质玉米青贮和高粱青贮发酵、有氧稳定性及瘤胃降解率的影响

The effect of Lactobacillus buchneri and Lactobacillus plantarum on the fermentation, aerobic stability, and ruminal degradability of low dry matter corn and sorghum silages.

作者信息

Filya I

机构信息

Department of Animal Science, Faculty of Agriculture, Uludag University, 16059 Bursa, Turkey.

出版信息

J Dairy Sci. 2003 Nov;86(11):3575-81. doi: 10.3168/jds.S0022-0302(03)73963-0.

Abstract

The effect of Lactobacillus buchneri, alone or in combination with Lactobacillus plantarum, on the fermentation, aerobic stability, and ruminal degradability of low dry matter corn and sorghum silages was studied under laboratory conditions. The inoculants were applied at 1 x 10(6) cfu/g. Silages with no additives served as control. After treatment, the chopped forages were ensiled in 1.5-L anaerobic jars. Three jars per treatment were sampled on d 2, 4, 8, 15, and 90. After 90 d of storage, the silages were subjected to an aerobic stability test lasting 5 d, in which CO2 production, as well as chemical and microbiological parameters, was measured to determine the extent of aerobic deterioration. At the end of the ensiling period (d 90), the L. buchneri- and L. buchneri + L. plantarum-inoculated silages had significantly higher levels of acetic acid than the control and L. plantarum-inoculated silages. Therefore, yeast activity was impaired in the L. buchneri- and L. buchneri + L. plantarum-inoculated silages. As a result, L. buchneri, alone or in combination with L. plantarum, improved aerobic stability of the low dry matter corn and sorghum silages. The combination of L. buchneri and L. plantarum reduced ammonia N concentrations and fermentation losses in the silages compared with L. buchneri alone. However, L. buchneri, L. plantarum, and a combination of L. buchneri + L. plantarum did not effect in situ rumen dry matter, organic matters, or neutral detergent fiber degradability of the silages. The L. buchneri was very effective in protecting the low dry matter corn and sorghum silages exposed to air under laboratory conditions. The use of L. buchneri, alone or in combination with L. plantarum, as a silage inoculant can improve the aerobic stability of low dry matter corn and sorghum silages by inhibition of yeast activity.

摘要

在实验室条件下,研究了布氏乳杆菌单独或与植物乳杆菌联合使用,对低干物质玉米和高粱青贮饲料发酵、有氧稳定性及瘤胃降解性的影响。接种剂用量为1×10(6) cfu/g。未添加任何添加剂的青贮饲料作为对照。处理后,将切碎的草料装入1.5升厌氧罐中。每个处理设置3个罐子,分别在第2、4、8、15和90天取样。储存90天后,对青贮饲料进行为期5天的有氧稳定性测试,测定二氧化碳产生量以及化学和微生物参数,以确定有氧变质程度。在青贮期末(第90天),接种布氏乳杆菌和布氏乳杆菌+植物乳杆菌的青贮饲料中乙酸含量显著高于对照和接种植物乳杆菌的青贮饲料。因此,接种布氏乳杆菌和布氏乳杆菌+植物乳杆菌的青贮饲料中酵母活性受到抑制。结果表明,布氏乳杆菌单独或与植物乳杆菌联合使用,可提高低干物质玉米和高粱青贮饲料的有氧稳定性。与单独使用布氏乳杆菌相比,布氏乳杆菌与植物乳杆菌联合使用可降低青贮饲料中的氨态氮浓度和发酵损失。然而,布氏乳杆菌、植物乳杆菌以及布氏乳杆菌+植物乳杆菌的组合对青贮饲料的原位瘤胃干物质、有机物或中性洗涤纤维降解率没有影响。在实验室条件下,布氏乳杆菌对暴露于空气中的低干物质玉米和高粱青贮饲料具有很好的保护作用。单独或与植物乳杆菌联合使用布氏乳杆菌作为青贮接种剂,可通过抑制酵母活性提高低干物质玉米和高粱青贮饲料的有氧稳定性。

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