An evaluation of the effectiveness of four chemical additives on the fermentation characteristics, in vitro digestibility and aerobic stability of total mixed ration silage based on soy sauce residue

IF 2.2 3区 农林科学 Q1 AGRICULTURE, DAIRY & ANIMAL SCIENCE
Guofeng Xu, Xinbao Li, Junfeng Hu, Zhihao Dong, Yushan Jia, Tao Shao
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Abstract

The study aimed to compare the impact of four chemical additives on fermentation characteristics, aerobic stability and in vitro digestibility of total mixed ration (TMR) silage based on soy sauce residue. The TMR (35% soy sauce residue + 45% Napier grass + 20% concentrate) was placed into silos (10 L). The experiment followed the completely random design, treated with different chemical additives: (1) distilled water (control); (2) 0.1% potassium sorbate (SP); (3) 0.1% sodium benzoate (SS); (4) 0.5% calcium propionate (SC); (5) 0.5% sodium diacetate (SD). Total of 100 silos (5 treatments × 4 aerobic exposure days × 5 replicates) were ensiled for 60 days. After exposure to the air, the samples were analyzed for the dynamic change of fermentation parameters at 4, 9 and 15 days, and the data was analyzed as repeated measures. The content of butyric acid and ammonia nitrogen was maintained at a low level. The highest (p < 0.05) lactic acid (LA) content and the lowest (p < 0.05) pH value were measured in SP. At the first 4 days of aerobic exposure, TMR silages treated with four chemical additives were more stable relative to the control, as indicated by the low pH value and yeast counts. Furthermore, the highest (p < 0.05) LA content and the lowest (p < 0.05) pH value indicated that SP performed superior aerobic stability compared with other chemical additives. The SP shows higher (p < 0.05) 72 h cumulative gas production (GP72) and in vitro neutral detergent fiber digestibility (IVNDFD) relative to the control. In conclusion, the SP performed superior in improving fermentation characteristics, aerobic stability and in vitro digestibility of TMR silages based on soy sauce residue.

评估四种化学添加剂对基于酱油渣的全混合日粮青贮的发酵特性、体外消化率和有氧稳定性的影响。
本研究旨在比较四种化学添加剂对以酱油渣为基础的全混合日粮(TMR)青贮的发酵特性、好氧稳定性和体外消化率的影响。将全混合日粮(35% 酱油渣 + 45% 拿坡里草 + 20% 精料)放入青贮窖(10 升)。实验采用完全随机设计,使用不同的化学添加剂进行处理:(1)蒸馏水(对照);(2)0.1% 山梨酸钾(SP);(3)0.1% 苯甲酸钠(SS);(4)0.5% 丙酸钙(SC);(5)0.5% 双乙酸钠(SD)。总共 100 个筒仓(5 个处理×4 个有氧暴露日×5 个重复)被腌制 60 天。样品暴露于空气中后,分别在 4 天、9 天和 15 天分析发酵参数的动态变化,并对数据进行重复测量分析。丁酸和氨氮的含量保持在较低水平。与对照组相比,中性洗涤纤维消化率(p 72)和体外中性洗涤纤维消化率(IVNDFD)最高。总之,SP 在改善基于酱油渣的 TMR 青贮饲料的发酵特性、好氧稳定性和体外消化率方面表现优异。
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来源期刊
Journal of Animal Physiology and Animal Nutrition
Journal of Animal Physiology and Animal Nutrition 农林科学-奶制品与动物科学
CiteScore
6.30
自引率
0.00%
发文量
124
审稿时长
2 months
期刊介绍: As an international forum for hypothesis-driven scientific research, the Journal of Animal Physiology and Animal Nutrition publishes original papers in the fields of animal physiology, biochemistry and physiology of nutrition, animal nutrition, feed technology and preservation (only when related to animal nutrition). Well-conducted scientific work that meets the technical and ethical standards is considered only on the basis of scientific rigor. Research on farm and companion animals is preferred. Comparative work on exotic species is welcome too. Pharmacological or toxicological experiments with a direct reference to nutrition are also considered. Manuscripts on fish and other aquatic non-mammals with topics on growth or nutrition will not be accepted. Manuscripts may be rejected on the grounds that the subject is too specialized or that the contribution they make to animal physiology and nutrition is insufficient. In addition, reviews on topics of current interest within the scope of the journal are welcome. Authors are advised to send an outline to the Editorial Office for approval prior to submission.
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