Jia Tingting, Yun Ying, Yu Zhu
College of Animal Science and Technology, China Agricultural University, Beijing, China.
Institute of Grassland Research, Chinese Academy of Agricultural Sciences, Hohhot, China.
Front Microbiol. 2021 Nov 8;12:750920. doi: 10.3389/fmicb.2021.750920. eCollection 2021.
Investigating the microbial communities and biogenic amine (BA) formation in silage is of vital for improving the quality and safety of oat silage. The present study evaluated the effects of propionic acid (P) and sodium benzoate (SB) on the quality properties, microbial communities, and BA formation in oat silage. Oat was harvested at boot stage and ensiled using P and SB as additives in mini silos, followed by 14 days of aerobic exposure. The results showed that P and SB improved fermentation quality of oat silage, increased the lactic acid content, and decreased pH value and ammonia nitrogen content. Putrescine, cadaverine, and tyramine were the dominant BAs in oat silage; spermidine and spermine were not detected. The control silage had the highest content of total biogenic amine (TBA, 2506.7 mg kg DM), and decreased by 51.1 and 57.7% after adding P and SB, respectively. Moreover, a lower putrescine, cadaverine, and tyramine content and undesirable microbes, such as , , , and genera, were observed in P and SB silages, which was beneficial for oat silage quality. The fungal community of P silage was dominated by , and the temperature, pH and ammonia nitrogen content increased after exposure to air. , , , , and were found to be positively correlated with BA formation in oat silage. Overall, P and SB effectively inhibit the undesirable microbes and BA formation in oat silage, the P silage exhibited lower aerobic stability than the SB silage.
研究青贮饲料中的微生物群落和生物胺(BA)形成对于提高燕麦青贮饲料的质量和安全性至关重要。本研究评估了丙酸(P)和苯甲酸钠(SB)对燕麦青贮饲料的品质特性、微生物群落和BA形成的影响。燕麦在孕穗期收获,并在小型青贮窖中使用P和SB作为添加剂进行青贮,随后进行14天的有氧暴露。结果表明,P和SB改善了燕麦青贮饲料的发酵品质,增加了乳酸含量,降低了pH值和氨氮含量。腐胺、尸胺和酪胺是燕麦青贮饲料中的主要生物胺;未检测到亚精胺和精胺。对照青贮饲料的总生物胺(TBA,2506.7 mg kg DM)含量最高,添加P和SB后分别降低了51.1%和57.7%。此外,在P和SB青贮饲料中观察到较低的腐胺、尸胺和酪胺含量以及不良微生物,如 、 、 和 属,这有利于燕麦青贮饲料的质量。P青贮饲料的真菌群落以 为主,暴露于空气后温度、pH值和氨氮含量升高。发现 、 、 、 和 与燕麦青贮饲料中的BA形成呈正相关。总体而言,P和SB有效抑制了燕麦青贮饲料中不良微生物和BA的形成,P青贮饲料的有氧稳定性低于SB青贮饲料。