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Effect of sodium bisulfate amendments on bacterial populations in broiler litter

机译:二硫酸钠修正对肉鸡凋落物细菌种群的影响

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摘要

The accumulation of ammonia in poultry houses is of concern to bird and human health. Acidification of the litter by application of acidifying amendments such as sodium bisulfate (SBS) retains ammonia generated by microbial degradation of uric acid as harmless ammonium in the litter. Although some studies on the effects of litter amendments on specific bacteria and groups of bacteria have been carried out previously, wide gaps in knowledge remain. In the present study, 2 types of samples were prepared and either left unamended or amended with 2.5 or 10% SBS. One set of samples consisted of a 1:1 mixture of built-up litter and fresh poultry manure (L/M); the other of fresh wood shavings and fresh poultry manure (S/M). The samples were kept in the laboratory at room temperature for 35 d. The pH of unamended mixtures increased to 7.3 and 6.9 for L/M and S/M, respectively. A pH of 6.7 and 3.9 on day 35 was observed for L/M and SM with 2.5% SBS, respectively. The corresponding values for LM and SM amended with 10% SBS were 3.5 and 2.5, respectively. Plating data indicated that coliforms became less numerous in the unamended samples than the SBS-amended samples. This difference was also seen in data obtained by high-throughput sequencing of 16S rDNA. The sequencing data also indicated that sequences from the genus Oceanisphaera accounted for as much as 80% of the sequences from L/M and about 40% of those from S/M samples early on. Sequences from members of the order Clostridiales were enriched in L/M and S/M amended with 10% SBS as were sequences from the genus Turicibacter. Weisella species sequences were more prevalent in SBS-amended samples than in unamended ones. Sequences from the genus Corynebacterium, Brachybacterium, and Arthrobacter were more common in L/M samples than in S/M samples regardless of the SBS content. The data indicate that litter amendments affect some bacteria populations and not others. Further studies are required to determine if the observed population changes such as increased survival of coliforms warrant actions to improve the microbial quality of litter to be reused.
机译:家禽房中氨的积累是鸟类和人类健康的关注。通过施加酸化修正例如双硫酸钠(SBS)的酸化保留尿酸的微生物降解产生的氨作为垃圾中的无害铵。虽然已经进行了一些关于凋落物修正对特定细菌和细菌群体的影响,但是已经进行了广泛的知识差距。在本研究中,制备了2种样品,并止于未调解或用2.5或10%SBS进行。一组样品由1:1的内置垃圾和新鲜家禽粪便(L / M)组成;另一块新鲜的木屑和新鲜家禽粪便(S / m)。将样品在室温下保持在实验室35℃。 L / M和S / m的未解除混合物的pH值增加至7.3和6.9。为L / M和SM分别观察到第35天的pH值为6.7和3.9,分别为2.5%SBS。用10%SBS修正的LM和SM的相应值分别为3.5和2.5。电镀数据表明,在未经溶解的样品中,大肠菌群比SBS修正的样品变得较小。通过16S rDNA的高通量测序获得的数据也可以看到这种差异。测序数据还表明,海洋病属的序列占L / M的序列的80%,以及早期从S / M样品中的约40%。富含顺序梭菌的序列富含L / m和S / M的序列,均为来自Turicibacter属的序列的10%SBS。韦斯拉物种序列在SBS的修订样品中比在未来未加工的样品中更普遍。来自棒状杆菌属,触发杆菌和花分杆菌的序列在L / M样品中比S / M样品更常见,而不管SBS含量如何。数据表明凋落物修正案会影响一些细菌种群而不是其他人。需要进一步的研究来确定观察到的人口是否有所变化,例如大肠菌群的存活率增加,以改善垃圾的微生物质量被重用。

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