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双乙酸钠对苜蓿青贮发酵特性、化学成分及有氧稳定性的影响

Effects of sodium diacetate on the fermentation profile, chemical composition and aerobic stability of alfalfa silage.

作者信息

Yuan XianJun, Wen AiYou, Desta Seare T, Wang Jian, Shao Tao

机构信息

Institute of Ensiling and Processing of Grass, Nanjing Agricultural University, Nanjing 210095, China.

College of Animal Science, Anhui Science and Technology University, Fengyang 233100, China.

出版信息

Asian-Australas J Anim Sci. 2017 Jun;30(6):804-810. doi: 10.5713/ajas.16.0773. Epub 2016 Dec 26.

Abstract

OBJECTIVE

The objective of this study was to evaluate the effect of sodium diacetate (SDA) on fermentation profile, chemical composition and aerobic stability of alfalfa ( L.) silage.

METHODS

Fresh alfalfa was ensiled with various concentrations of SDA (0, 3, 5, 7, and 9 g/kg of fresh forage). After 60 days of the ensiling, the samples were collected to examine the fermentative quality, chemical composition and aerobic stability.

RESULTS

The application of SDA significantly (p<0.05) decreased silage pH with the lowest value in silage with 7 g/kg of SDA. The proliferations of enterobacteria, yeasts, molds and clostridia were inhibited by SDA, resulted in lower ethanol, propionic and butyric acid concentrations and dry matter loss in SDA treated silages than control. The increasing SDA linearly decreased free amino acid N (p<0.001), ammonia N (p = 0.018) and non-protein N (p<0.001), while linearly increased water soluble carbohydrate (p<0.001) and peptide N (p<0.001). It is speculated that SDA accelerated the shift from homofermentative to heterofermentative lactic acid bacteria during the silage fermentation, indicated by lower lactic acid production in SDA-9 than SDA-7 silages after 60 days of ensiling. Alfalfa silages treated with SDA at 7 g/kg had highest Flieg's point and remained stable more than 9 d during aerobic exposure under humid and hot conditions in southern China.

CONCLUSION

SDA may be used as an additive for alfalfa silages at a level of 7 g/kg.

摘要

目的

本研究旨在评估双乙酸钠(SDA)对苜蓿青贮饲料发酵特性、化学成分及有氧稳定性的影响。

方法

将新鲜苜蓿与不同浓度的SDA(0、3、5、7和9 g/kg鲜饲草)进行青贮。青贮60天后,采集样本检测发酵品质、化学成分及有氧稳定性。

结果

SDA的使用显著(p<0.05)降低了青贮饲料的pH值,其中添加7 g/kg SDA的青贮饲料pH值最低。SDA抑制了肠杆菌、酵母菌、霉菌和梭菌的增殖,导致SDA处理的青贮饲料中乙醇、丙酸和丁酸浓度以及干物质损失低于对照组。SDA用量增加使游离氨基酸氮(p<0.001)、氨态氮(p = 0.018)和非蛋白氮(p<0.001)呈线性下降,而水溶性碳水化合物(p<0.001)和肽氮(p<0.001)呈线性增加。据推测,SDA加速了青贮发酵过程中同型发酵乳酸菌向异型发酵乳酸菌的转变,青贮60天后,添加9 g/kg SDA的青贮饲料中乳酸产量低于添加7 g/kg SDA的青贮饲料即表明了这一点。添加7 g/kg SDA处理的苜蓿青贮饲料的弗里克评分最高,在中国南方湿热条件下有氧暴露期间保持稳定超过9天。

结论

SDA可作为苜蓿青贮饲料的添加剂,添加量为7 g/kg。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fc26/5411843/8bc855576188/ajas-30-6-804f1.jpg

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