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291.
胡浩东  高航  胡振 《中国环境科学》2021,41(4):1697-1703
本文研究了典型抗生素磺胺嘧啶对实验室规模鲤鱼-小白菜共生系统生产性能和氮元素转化的影响.结果表明,磺胺嘧啶使系统鲤鱼体重增量提高17%,但小白菜生产性能大幅下降,使得系统氮素利用率由43.66%降至21.20%,N2O转化率由1.02%上升至1.98%.磺胺嘧啶在投加初期对系统的硝化过程表现出短期抑制效应,经过32d的适应期后,实验组氨氮浓度下降至和对照组相近水平,系统运行后期实验组氨氧化细菌丰度相较对照组提高51.43%.鱼体内残余的磺胺嘧啶为35.23μg/kg,符合国家标准,但水体中磺胺类药物抗性基因sul1、sul2及intI1的拷贝数分别提升至7.23倍、2.74倍和4.12倍.从生产性能及环境友好性考虑,鱼菜共生系统在设计及运行中应减少或避免抗生素的使用,并采取合理的替代措施规避其风险.  相似文献   
292.
考察了城市污水氯和紫外消毒过程中不同物理形态的胞外抗性基因的产生行为与及微生物群落的关联特征.结果表明,氯消毒尽管使胞内抗性基因丰度下降,但使结合型胞外抗性基因丰度明显上升(0.7±0.1)log,而游离型胞外抗性基因丰度下降(0.2±0.1)log.紫外消毒也使胞内抗性基因下降,但使游离型胞外抗性基因显著上升(0.4±0.2)log,而结合型胞外抗性基因丰度下降(0.3±0.1)log.氯消毒后,结合型胞外DNA(a-eDNA)中变形菌门丰度下降而其他菌门的丰度上升,细菌多样性指数由4.2上升到4.7;而游离型胞外DNA(f-eDNA)中变形菌门上升了6.6%,多样性指数则从3.5降低到2.8.紫外消毒后,a-eDNA中变形菌门丰度下降了36.6%,多样性则上升到4.8,而f-eDNA中细菌丰度变化较小.分子生态网络分析揭示了抗性基因与细菌间广泛的寄存关系,tetAtetXsulIsulII分别与17、15、15和5种菌属间存在共现性,表明抗性基因潜在宿主的变化是导致消毒后胞外抗性基因产生的关键原因.本研究表明氯和紫外消毒不能消除抗性基因风险,反而通过导致不同胞外抗性基因的大量产生,使风险的形式发生变化.  相似文献   
293.
研究重稀土元素钇(Y(III))对短程反硝化工艺的短期和长期影响.结果表明,1~50mg/L的Y(III)对亚硝酸盐的积累量无明显影响,60~100mg/L的Y(III)会影响硝酸盐的还原和亚硝酸盐的积累.1~10mg/L的Y(III)对细菌活性呈现促进作用,20~100mg/L的Y(III)对细菌活性呈现抑制作用.胞外吸附的Y(III)是抑制细菌活性的主要因子,线性拟合的相关性系数R2为0.957,半抑制浓度IC50(吸附)为1.079mg/L(以湿重计),对应水中Y(III)浓度为54.35mg/L.SEM显示,添加Y(III)会使细菌产生更多的胞外聚合物(EPS)将细菌包裹以抵抗Y(III)的毒性,EDS显示被包裹的细菌表面碳、氮元素含量大幅度降低,EPS影响了底物的传质.130d的长期实验表明,5mg/L的Y(III)会使反应器的反硝化性能逐渐消失,停止添加稀土后,反应器的亚硝酸盐积累功能也不能恢复.  相似文献   
294.
通过改变砷的初始浓度、砷价态、细菌接种比、铁锰浓度等因素来研究不同条件下Pseudomonas putida strain MnB1原位诱导形成生物铁锰氧化物(Biogenic Fe-Mn oxides,BFMO)对As(Ⅲ)和As(V)的去除效果与机制.结果表明:①当As(Ⅲ)和As(V)初始浓度为0.5~5 mg·L-1时,原位形成的BFMO对As(Ⅲ)和As(V)有良好的去除效率,均在62%以上;②当细菌接种比为0.1%~0.5%时,As(Ⅲ)和As(V)的去除效率与细菌接种比成正比,当细菌接种比大于0.5%时,As(Ⅲ)和As(V)的去除效率基本维持在85%以上,未发生明显变化;③当MnCO3浓度为0.2~0.8 g·L-1或Fe(Ⅱ)浓度为2.5~25 mg·L-1时,原位诱导产生的BFMO对As(Ⅲ)和As(V)的去除率随MnCO3浓度或Fe(Ⅱ)浓度的增加而增大;当MnCO3或Fe(Ⅱ)浓度再升高时,As(Ⅲ)和As(V)的去除效率基本保持不变.微观特征分析结果表明,原位形成的BFMO与As(Ⅲ)和As(V)反应后主要产物为As(V),其去除主要以吸附为主,还存在共沉淀作用.总体而言,原位形成的BFMO适用于砷污染水环境的修复.  相似文献   
295.
Heart rot is a common soil-borne disease in the pineapple industry, but the situation can be alleviated by the application of bio-fertilizers with beneficial microbiomes. Clarifying the controlling mechanism of bio-organic fertilizer on the high incidence of heart rot is critical in monocultural pineapple cropping patterns. In our study, the soil of continuous cropping pineapple orchards was collected. Three types of carriers (rapeseed cake, peat soil, and coconut bran), biocontrol strains (Bacillus subtilis HL2 and Streptomyces strain HL3), and organic fertilizer (YJ) were composted into different bio-fertilizers (KC, KN, KY, LC, LN, and LY), which were used in pot experiments. The controlling effect of the bio-fertilizer was determined based on the response of pineapple heart rot and bacterial communities to different fertilizing methods. Our results revealed that the incidence of heart rot in bio-fertilizer KC was the lowest, which decreased by 20% and 13.3%, respectively, compared to HF (chemical fertilizer, 16-16-16) and YJ (organic fertilizer). The richness and diversity of soil bacterial communities in all biofertilized treatments (KC, KN, KY, LC, LN, and LY) were significantly higher than those in HF. However, the α-diversity indices of the bio-fertilizers (KC, KN, and KY) were higher than those of LC, LN, and LY, and the bacterial community composition was significantly different. The bacteria GP4, GP6, Bacillus, and Azohydromonas were enriched in KC, KN, and KY, while the relative abundance of Streptomyces increased significantly in LC, LN, and LY. Furthermore, Spearman correlation analysis showed that the relative abundance of these bacterial groups was significantly negatively correlated with the incidence of pineapple heart rot. In summary, the application of bio-organic fertilizers can decrease the incidence of pineapple heart rot by altering the soil bacterial community structure and stimulating beneficial soil microorganisms, which is important for reconstructing the ecological balance in continuous pineapple orchards. © 2022 Authors. All rights reserved.  相似文献   
296.
Ammonia oxidation, the first and rate-limiting step of nitrification, is mainly performed by ammonia-oxidizing archaea (AOA) and ammonia-oxidizing bacteria (AOB). However, the activities of AOA and AOB in soil and their relative contribution to ammonia oxidation are unclear, and whether there is a significant correlation between the quantity of AOA and AOB and the ammonia oxidation rate is also controversial. In this study, quantitative PCR combined with acetylene (C2H2) and 1-octyne inhibition methods were used to determine the quantity and activity of AOA and AOB in wheat, highland barley, and oilseed rape soils in Nyingchi, Lhatse, Sangzhuzi, and Sangri counties on the Qinghai-Tibet Plateau. The results showed that the quantity of AOB ((2.34 ± 0.84) ×105 - (2.65 ± 1.07) ×106 copies g-1 dry soil) was significantly higher than that of AOA ((0.20 ± 0.10) ×104 - (4.02 ± 0.39) ×104 copies g-1 dry soil) in all the soil samples. Soil pH was the key factor affecting the quantity of AOB, and the total phosphorus and ammonium nitrogen in soil were the key factors affecting the quantity of AOA. The rates of ammonia oxidation in the farmland soils of Lhatse (2.42 ± 0.73 mg kg-1 d-1) and Sangzhuzi (3.24 ± 1.15 mg kg-1 d-1) were significantly higher than those in the soils of Nyingchi (1.17 ± 0.43 mg kg-1 d-1) and Sangri counties (0.88 ± 0.57 mg kg-1 d-1). The rates of ammonia oxidation in the farmland soils of Lhatse and Sangzhuzi were dominated by AOB, while those in the farmland soils of Nyingchi and Sangri counties were dominated by AOA. For crops, the ammonia oxidation rates of wheat and oilseed rape soils in all four regions were significantly higher than those of highland barley soil, whereas the activity of AOA and AOB was not influenced by crops. The ratio of nitrogen to phosphorus was the key factor influencing AOA activity, whereas soil pH and total carbon were the main factors influencing AOB activity. Additionally, the quantities of AOA and AOB were not significantly correlated with the total ammonia oxidation rates and AOA and AOB activity. Overall, our study suggests that both AOA and AOB play important roles in ammonia oxidation in farmland soils of the Qinghai-Tibet Plateau. Moreover, it is unreliable to predict the activity of AOA and AOB and their relative contribution to ammonia oxidation directly based on their number of amoA genes, and the activity of AOA and AOB should be directly and accurately measured. These results are important for understanding ammonia nitrogen removal processes, slowing nitrate loss, and reducing the emission of the greenhouse gas nitrous oxide in the farmland ecosystem of the Qinghai-Tibet Plateau. © 2022 Science Press. All rights reserved.  相似文献   
297.
对白银矿区土壤重金属进行分析研究,分离、筛选和鉴定了受污染土壤中的可培养细菌,并考察其对土壤中重金属胁迫的耐受性。结果表明:白银矿区王岘镇尾渣堆和东大沟河沟土壤重金属污染Pb>Zn>Cu;从污染最严重的土壤中分离、筛选出砖红色微杆菌(Microbacterium testaceum)、特基拉芽孢杆菌(Bacillus tequilensis)和解单端孢菌素微杆菌(Microbacterium trichothecenolyticum)3种细菌,其中菌株M1(Microbacterium testaceum)对Pb、Zn、Cu、Cd的胁迫具有明显的耐受性。  相似文献   
298.
为了解好氧堆肥发酵过程中微生物群落结构变化规律和腐熟度生物学指标研究,以 自然发酵牛粪为研究材料,利用高通量测序技术分析细菌群落结构在发酵不同阶段、层次上的动态变化与环境因子和腐熟度的相互关系.结果显示:堆体上层温度、碳氮比和种子发芽指数指标优于下层;整个堆肥发酵过程中,细菌丰度和多样性指数呈先升高后降低的趋势;在门水...  相似文献   
299.
溶藻细菌DC-L14的分离、鉴定与溶藻特性   总被引:1,自引:0,他引:1  
从滇池蓝藻水华集聚区分离获得一株溶藻细菌DC-L14,经16S rDNA序列分析鉴定为Lysinibacillus fusiformis;小白鼠毒性试验初步显示该菌株未产生小白鼠中毒毒素;该菌能使铜锈微囊藻905聚集成团,沉于瓶底,最终黄化;该菌作用4 d,使惠氏微囊藻107、绿色微囊藻102、水华束丝藻和水华鱼腥藻的叶绿素a下降率最高为70.1%.最低为65.5%,平均为67.2%;当细菌处于稳定生长期时溶藻效果最强,共培养4 d能使铜锈微囊藻905的叶绿素a含量下降82.1%;离心沉降后检测,发现菌体本身无溶藻效果,而无菌上清液与原菌液溶藻效果相同,高温处理后的菌液溶藻能力增强,推测该细菌是通过分泌溶藻物质溶藻,该物质可能为非蛋白质类,高温可能有利于溶藻物质的释放.图4表1参25  相似文献   
300.
从重庆地区不同环境淤泥、泥水样品中,经富集培养、分离纯化,获得5株紫色非硫细菌.根据菌体的菌落形态、染色特性、生理生化特征及活细胞光吸收峰对菌株进行常规鉴定,结合菌株16S rDNA扩增测序进行分子生物学分析验证,构建了菌株与数据库中近缘菌株的系统发育树.以优化的培养条件(营养、pH、接种量等参数)对供试菌株的生理生化特性和产氢能力做了比较分析.结果显示,5个菌株均为光合产氢细菌,菌株ANI、D1为沼泽红假单胞菌(Rhodopseudomonas palustris),AN2、AS1、BS1等3株为类球红细菌(Rhodobacter sphaeroides);其中类球红细菌菌株AN2在给定的培养条件下光合产氢能力最高,可达9.55μg/mL d-1,是一株有应用前景的光合产氢细菌.图4表2参15  相似文献   
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