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Nitrogen removal performance, quantitative detection and potential application of a novel aerobic denitrifying strain, Pseudomonas sp. GZWN4 isolated from aquaculture water

机译:一种新型好氧脱氮菌株的氮去除性能,定量检测和潜在应用,假单胞菌SP。 GZWN4从水产养殖水中分离

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摘要

A novel Pseudomonas sp. GZWN4 with the aerobic nitrogen removal ability was isolated from aquaculture water, whose removal efficiency of NO2--N, NO3--N and NH4+-N was 99.72%, 82.54% and 98.62%, respectively. The key genes involved in nitrogen removal, nxr, napA, narI, nirS, norB and nosZ, were successfully amplified and by combination with the results of nitrogen balance analysis, it was inferred that the denitrification pathway of strain GZWN4 was NO3--N - NO2--N - NO - N2O - N-2. The strain GZWN4 had excellent nitrite removal performance at pH 7.0-8.5, temperature 25-30 celcius, C/N ratio 5-20, salinity 8-32 parts per thousand and dissolved oxygen concentration 2.52-5.73 mg L-1. The receivable linear correlation (R-2 = 0.9809) was obtained with the range of quantification between l0(3) and 10(8) CFU mL(-1) of the strain by enzyme-linked immunosorbent assay. Strain GZWN4 could maintain high abundance in the actual water and wastewater of mariculture and the removal efficiency of TN were 52.57% and 63.64%, respectively. The safety evaluation experiment showed that the strain GZWN4 had no hemolysis and high biosecurity toward shrimp Litopenaeus vannamei. The excellent nitrogen removal ability and adaptability to aquaculture environment made strain GZWN4 a promising candidate for treatment of water and wastewater in aquaculture.
机译:一个小说的pseudomonas sp。具有有氧氮去除能力的GZWN4与水产养殖水分离,其去除效率分别为99.72%,82.54%和98.62%。涉及氮气去除,NXR,NAPA,NARI,NIR,NORB和NOSZ的关键基因被成功扩增,并通过与氮平衡分析的结果组合,推断出菌株GZWN4的脱氮途径NO3 - n - & no2 - n - &不 - & n2o - & n-2。菌株GZWN4在pH 7.0-8.5下具有优异的亚硝酸盐去除性能,温度25-30硒,C / N比5-20,盐度8-32份,溶解氧浓度2.52-5.73mg L-1。通过酶联免疫吸附测定,通过L0(3)和10(8)个CFU mL(-1)的定量范围获得可接收的线性相关(R-2 = 0.9809)。菌株GZWN4可以在实际水中保持高丰度,水上养殖废水,TN的去除效率分别为52.57%和63.64%。安全评估实验表明,菌株GZWN4对虾Litopenaeus Vannamei没有溶血和高生物安全性。优异的氮去除能力和对水产养殖环境的适应性使菌株GZWN4成为水产养殖中水和废水的有希望的候选者。

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  • 来源
    《Bioprocess and Biosystems Engineering》 |2021年第6期|1237-1251|共15页
  • 作者单位

    Ocean Univ China Fisheries Coll Minist Educ Key Lab Mariculture Yushan Rd 5 Qingdao 266003 Shandong Peoples R China;

    Ocean Univ China Fisheries Coll Minist Educ Key Lab Mariculture Yushan Rd 5 Qingdao 266003 Shandong Peoples R China;

    Ocean Univ China Fisheries Coll Minist Educ Key Lab Mariculture Yushan Rd 5 Qingdao 266003 Shandong Peoples R China;

    Ocean Univ China Fisheries Coll Minist Educ Key Lab Mariculture Yushan Rd 5 Qingdao 266003 Shandong Peoples R China;

    Ocean Univ China Fisheries Coll Minist Educ Key Lab Mariculture Yushan Rd 5 Qingdao 266003 Shandong Peoples R China;

    Ocean Univ China Fisheries Coll Minist Educ Key Lab Mariculture Yushan Rd 5 Qingdao 266003 Shandong Peoples R China;

    Ocean Univ China Fisheries Coll Minist Educ Key Lab Mariculture Yushan Rd 5 Qingdao 266003 Shandong Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Aquaculture; Nitrogen removal; Pseudomonas sp; Denitrification pathway; Bacterial quantification;

    机译:水产养殖;氮去除;假单胞菌sp;反硝化途径;细菌量化;

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