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Deciphering the microbial community and functional genes response of anammox sludge to sulfide stress

机译:厌氧污泥对硫化物应力的微生物群落和功能基因反应

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Sulfide has attracted increasing attention due to its odor nuisance, toxicity and corrosion. Although variations in the nitrogen removal performance of anammox under sulfide stress have been reported previously, understanding the microorganisms at the molecular level is of greater significance. This study first deciphered the microbial community and functional gene response of anammox sludge to sulfide stress. Results showed that 20 mg L-1 sulfide could reduce specific anammox activity by 61.7%. The protein-like substances within extracellular polymeric substances were quenched at the end of the experiment. Moreover, the relative abundance of Candidatus Kuenenia significantly decreased from 28.7% to 6.4% while Thiobacillus increased from 0 to 7.2% due to sulfide stress. Furthermore, the abundances of functional genes (hzsA, hdh, nirK and nirS) significantly decreased when the sulfide concentration reached 20 mg L-1. These findings provide a further theoretical basis for the anammox process for nitrogen removal from wastewater containing sulfide.
机译:由于其气味滋扰,毒性和腐蚀,硫化物引起了越来越多的关注。虽然先前已经报道了厌氧胁迫下鼻毒性的氮去除性能的变化,但是理解分子水平的微生物具有更大的意义。本研究首先破译了厌氧污泥的微生物群落和功能基因反应与硫化物应力。结果表明,20mg L-1硫化物可将特定的厌氧毒剂活性降低61.7%。在实验结束时猝灭细胞外聚合物中的蛋白质物质。此外,由于硫化物应力,Candidatus Kuenenia的相对丰度从28.7%显着降低至6.4%,而硫酸杆菌增加到7.2%。此外,当硫化物浓度达到20mg L-1时,官能基因(HZSA,HDH,NIRK和NIRS)的丰富显着降低。这些发现提供了厌氧过程的进一步的理论基础,用于从含有硫化物废水中除去的氮气。

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