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首页> 外文期刊>Applied Biological Chemistry >Characterisitcs of Saccharomyces boulardii for reducing ammonia emission from livestock manure
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Characterisitcs of Saccharomyces boulardii for reducing ammonia emission from livestock manure

机译:酵母菌酵母菌的特征降低畜牧粪肥氨排放量

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Ammonia from livestock manure acts as a precursor to produce particulate matter (PM) by reacting with atmospheric chemical components volatilized from various sources. Ammonia itself acts as a toxic substance to human health, and thus has direct or indirect adverse effects on human health. This study aimed to verify the effectiveness and mechanism of action of Saccharomyces boulardii (SB) in reducing the ammonia emission from livestock manure. The specific ability of SB was confirmed through comparative verification with S. cerevisiae (SC) belonging to the same genus. SB and SC could use 50% of ammonia–nitrogen as inorganic nitrogen source in minimal medium. In the control group, the pH level of manure was significantly increased compared to the pH level at 0?h, and the DNA concentration of Proteus mirabilis, which increase the manure pH through ammonia production, was found to increase by 2.7-fold. Significant decrease in pH and proliferation of P. mirabilis was found in SB group compared to control (p??0.05). The SB group also reduced the amount of ammonia emitted from manure by 25% for 35?days. These results suggested that SB contributed to reducing ammonia emission from manure by reducing pH and inhibiting HAB as well as removing ammonia–nitrogen. Accordingly, SB as a microbiological agent is expected to contribute not only to reduce ammonia emission but also to improve manure quality as a fertilizer.
机译:来自牲畜粪的氨作为前体,通过与各种来源挥发的大气化学成分反应产生颗粒物质(PM)。氨本身作为人类健康的有毒物质,因此对人类健康有直接或间接的不利影响。本研究旨在验证糖酵母Boulardii(SB)在降低牲畜粪肥氨排放方面的疗效和机制。通过对相同属的酿酒酵母(SC)的比较验证证实了Sb的具体能力。 Sb和Sc可以在最小培养基中使用50%的氨 - 氮作为无机氮源。在对照组中,与0≤H的pH水平相比,粪肥的pH水平显着增加,并且发现通过氨生产增加粪便pH的蛋白质mirabilis的DNA浓度增加2.7倍。与对照相比,在Sb组中发现了在Sb组中显着降低p. mirabilis的p. mirabilis的显着降低(p≤≤0.05)。 Sb组还将从粪便发出的氨量减少25%,35%?天。这些结果表明,Sb通过降低pH和抑制植绒来减少来自粪便的氨排放以及除去氨 - 氮。因此,预期Sb作为微生物学剂,不仅可以减少氨排放,而且还促进为肥料的粪便质量。

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