首页> 美国卫生研究院文献>Asian-Australasian Journal of Animal Sciences >Dynamics Associated with Prolonged Ensiling and Aerobic Deterioration of Total Mixed Ration Silage Containing Whole Crop Corn
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Dynamics Associated with Prolonged Ensiling and Aerobic Deterioration of Total Mixed Ration Silage Containing Whole Crop Corn

机译:包含完整农作物玉米的总混合日粮青贮饲料的长期包埋和有氧退化相关的动力学

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摘要

This study investigated the dynamics associated with prolonged ensiling and aerobic deterioration of whole crop corn (WCC) silages and total mixed ration (TMR) silages containing WCC (C-TMR silages) to clarify the differences that account for the enhanced aerobic stability of TMR silages. Laboratory-scale barrel silos were randomly opened after 7, 14, 28, and 56 d of ensiling and were subjected to analyses of fermentation quality, microbial and temperature dynamics during aerobic exposure. WCC and C-TMR silages were both well preserved and microorganisms were inhibited with prolonged ensiling, including lactic acid bacteria. Yeast were inhibited to below the detection limit of 500 cfu/g fresh matter within 28 d of ensiling. Aerobic stability of both silages was enhanced with prolonged ensiling, whereas C-TMR silages were more aerobically stable than WCC silages for the same ensiling period. Besides the high moisture content, the weak aerobic stability of WCC silage is likely attributable to the higher lactic acid content and yeast count, which result from the high water-soluble carbohydrates content in WCC. After silo opening, yeast were the first to propagate and the increase in yeast levels is greater than that of other microorganisms in silages before deterioration. Besides, increased levels of aerobic bacteria were also detected before heating of WCC silages. The temperature dynamics also indicated that yeast are closely associated with the onset of the aerobic deterioration of C-TMR silage, whereas for WCC silages, besides yeast, aerobic bacteria also function in the aerobic deterioration. Therefore, the inclusion of WCC might contribute to the survival of yeast during ensiling but not influence the role of yeast in deterioration of C-TMR silages.
机译:这项研究调查了与整粒玉米(WCC)青贮饲料和含有WCC(C-TMR青贮饲料)的总混合日粮(TMR)青贮饲料长期保藏和有氧退化相关的动力学,以阐明差异,这些差异说明了TMR青贮饲料的有氧稳定性增强。实验室规模的筒仓在装瓶7、14、28和56天后随机打开,并在有氧暴露期间进行发酵质量,微生物和温度动态的分析。 WCC和C-TMR青贮饲料均得到了很好的保存,微生物被包括细菌在内的长时间细菌抑制了。在发酵后28 d内,酵母被抑制到500 cfu / g新鲜物质的检测极限以下。随着青贮时间的延长,两种青贮饲料的有氧稳定性得到了增强,而在相同青贮期,C-TMR青贮饲料的需氧稳定性比WCC青贮饲料更好。除了水分含量高外,WCC青贮饲料的弱需氧稳定性也可能归因于WCC中水溶性碳水化合物含量高而导致的乳酸含量和酵母数增加。筒仓打开后,酵母首先繁殖,酵母水平的增加大于青贮饲料中其他微生物在变质前的增加。此外,在加热WCC青贮饲料之前,还检测到需氧菌水平升高。温度动态还表明,酵母与C-TMR青贮饲料好氧降解的发生密切相关,而对于WCC青贮饲料,除了酵母外,好氧细菌还可以在好氧降解中起作用。因此,包含WCC可能有助于青贮过程中酵母的存活,但不影响酵母在C-TMR青贮饲料劣化中的作用。

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