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接种和未接种干酪乳杆菌或布氏乳杆菌的全株玉米及全混合日粮的微生物计数、发酵产物和好氧稳定性

Microbial counts, fermentation products, and aerobic stability of whole crop corn and a total mixed ration ensiled with and without inoculation of Lactobacillus casei or Lactobacillus buchneri.

作者信息

Nishino N, Wada H, Yoshida M, Shiota H

机构信息

Department of Animal Science, Faculty of Agriculture, Okayama University, Okayama 700-8530, Japan.

出版信息

J Dairy Sci. 2004 Aug;87(8):2563-70. doi: 10.3168/jds.S0022-0302(04)73381-0.

Abstract

Whole crop corn (DM 29.2%) and a total mixed ration (TMR, DM 56.8%) containing wet brewers grains, alfalfa hay, dried beet pulp, cracked corn, soybean meal, and molasses at a ratio of 5:1:1:1:1:1 on fresh weight basis, were ensiled with and without Lactobacillus casei or Lactobacillus buchneri in laboratory silos. The effects of inoculation on microbial counts, fermentation products, and aerobic stability were determined after 10 and 60 d. Untreated corn silage was well preserved with high lactic acid content, whereas large numbers of remaining yeasts resulted in low stability on exposure to air. Inoculation with L. casei suppressed heterolactic fermentation, but no improvements were found in aerobic stability. The addition of L. buchneri markedly enhanced the aerobic stability, while not affecting the DM loss and NH3-N production. Large amounts of ethanol were found when the TMR was ensiled, and the content of ethanol overwhelmed that of lactic acid in untreated silage. This fermentation was related to high yeast populations and accounted for a large loss of DM found in the initial 10 d. The ethanol production decreased when inoculated with L. casei and L. buchneri, but the effects diminished at 60 d of ensiling. Inoculation with L. buchneri lowered the yeasts in TMR silage from the beginning of storage; however, the populations decreased to undetectable levels when stored for 60 d, regardless of inoculation. No heating was observed in TMR silage during aerobic deterioration test for 7 d. This stability was achieved even when a high population of yeasts remained and was not affected by either inoculation or ensiling period. The results indicate that inoculation with L. buchneri can inhibit yeast growth and improve aerobic stability of corn and TMR silage; however, high stability of TMR silage can be obtained even when no treatments were made and high population (>10(5) cfu/g) of yeasts were detected.

摘要

将全株玉米(干物质含量29.2%)和一种全混合日粮(TMR,干物质含量56.8%)在实验室青贮窖中进行青贮,该全混合日粮按鲜重比5:1:1:1:1:1包含湿酒糟、苜蓿干草、干甜菜粕、碎玉米、豆粕和糖蜜,青贮时分别添加和不添加干酪乳杆菌或布氏乳杆菌。在青贮10天和60天后测定接种对微生物数量、发酵产物及有氧稳定性的影响。未处理的玉米青贮料保存良好,乳酸含量高,而大量残留酵母导致其暴露于空气中时稳定性较低。接种干酪乳杆菌抑制了异型乳酸发酵,但有氧稳定性未得到改善。添加布氏乳杆菌显著提高了有氧稳定性,同时不影响干物质损失和氨态氮产生。对TMR进行青贮时发现有大量乙醇,且未处理青贮料中乙醇含量超过乳酸含量。这种发酵与酵母数量多有关,是青贮最初10天内干物质大量损失的原因。接种干酪乳杆菌和布氏乳杆菌后乙醇产量下降,但青贮60天时这种效果减弱。从青贮开始,接种布氏乳杆菌可降低TMR青贮料中的酵母数量;然而,无论是否接种,储存60天时酵母数量均降至检测不到的水平。在7天的有氧变质试验中,TMR青贮料未观察到发热现象。即使残留大量酵母,也能实现这种稳定性,且不受接种或青贮期的影响。结果表明,接种布氏乳杆菌可抑制酵母生长并提高玉米和TMR青贮料的有氧稳定性;然而,即使不进行处理且检测到大量(>10(5) cfu/g)酵母,TMR青贮料仍可获得高稳定性。

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