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201.
High efficient removal of antibiotics during nutriments recovery for biomass production poses a major technical challenge for photosynthetic microbial biofilm-based wastewater treatment since antibiotics are always co-exist with nutriments in wastewater and resist biodegradation due to their strong biotoxicity and recalcitrance. In this study, we make a first attempt to enhance metronidazole (MNZ) removal from wastewater using electrochemistry-activated binary-species photosynthetic biofilm of Rhodopseudomonas Palustris (R. Palustris) and Chlorella vulgaris (C. vulgaris) by cultivating them under different applied potentials. The results showed that application of external potentials of -0.3, 0 and 0.2 V led to 11, 33 and 26-fold acceleration in MNZ removal, respectively, as compared to that of potential free. The extent of enhancement in MNZ removal was positively correlated to the intensities of photosynthetic current produced under different externally applied potentials. The binary-species photoelectrogenic biofilm exhibited 18 and 6-fold higher MNZ removal rate than that of single-species of C. vulgaris and R. Palustris, respectively, due to the enhanced metabolic interaction between them. Application of an external potential of 0V significantly promoted the accumulation of tryptophan and tyrosine-like compounds as well as humic acid in extracellular polymeric substance, whose concentrations were 7.4, 7.1 and 2.0-fold higher than those produced at potential free, contributing to accelerated adsorption and reductive and photosensitive degradation of MNZ.  相似文献   
202.
土壤微生物决定着土壤生态系统的养分周转状况,其死生物物质在土壤有机碳(SOC)积累中发挥关键作用.然而,目前缺乏对土壤微生物群落丰度及其死生物物质如何响应农业土地集约利用程度调整的了解.为弥补这一知识缺口,基于土地集约化利用程度,设置小麦-玉米周年轮作(CC)、临时草地与小麦种植交替(TG)和多年生草地(PG)这3个处理开展长期定位试验,采用基于数字PCR和微生物标志物氨基糖的检测技术,以探究农业土地集约利用程度调整对土壤细菌和真菌数量,以及细菌、真菌和总微生物死生物物质C积累及其对土壤SOC封存贡献的影响,进一步明确驱动细菌、真菌和总微生物死生物物质C积累的关键因子.结果表明,与土壤细菌群落丰度相比,真菌群落丰度受到农业土地集约利用程度调整的强烈影响,随土地集约利用程度的降低而增加.在3种土地集约利用程度处理下,土壤总微生物死生物物质C均主导SOC积累,对SOC的贡献率分别达到52.78%、 58.36%和68.87%,呈现随土地集约利用程度降低而升高的趋势;真菌死生物物质C占总微生物死生物物质C的比例均大于80%,说明其对总微生物死生物物质C的绝对主导地位,且受土地集约利用程度降低...  相似文献   
203.
利用定向驯化高效石油降解菌系对石油污染土壤进行为期120 d原位修复,考察生物强化修复效果、土壤理化性质和酶活性的变化,结合宏基因组测序及生物信息学分析揭示其强化机制.结果表明,与空白对照组(Ctrl)相比,生物修复组(Exp-BT)总石油烃降解率显著提升,增幅达81.23%; 高效石油降解菌生物强化修复期间土壤pH变化稳定,体系氧化能力提高,电导率处于适宜农业活动范围内; 脂肪酶和脱氢酶在修复期间保持较高活性; 另对初始污染土壤样本(B0)、驯化所得高效石油降解菌系样本(GZ)和生物修复后土壤样本(BT)的分析显示,门水平上变形菌门与放线菌门相对丰度增加17.1%,属水平上NocardioidesAchromobacterGordoniaRhodococcus等丰度明显上升,COG和KEGG物种与功能贡献度分析证明以上菌属对石油烃降解有重要贡献; 修复后土壤中发现高丰度的石油烃相关代谢酶及5个降解基因:alkM、tamA、rubB、ladAalkB,分析表明外源石油烃降解菌群的引入增强了微生物相关酶的代谢活性与相应功能基因的表达.  相似文献   
204.
菌-藻"体系在水生态平衡中发挥重要作用,为探明蓝藻水华时期的菌藻关系,研究了原位营养刺激后藻际微生物对铜绿微囊藻生长的影响.结果表明,LB培养基可抑制铜绿微囊藻生长,抑藻率为86.49%;而乙酸钠、葡萄糖和柠檬酸钠可促进藻细胞生长,增长率均在50%以上.对LB培养基和蛋白胨刺激后的藻际细菌进行溶藻菌的筛选,共分离出6株具有强效抑藻作用的菌株,其中Bacillus sp.A1抑藻率高达97.55%.16S rRNA高通量测序表明,向铜绿微囊藻中投加营养物质均可改变藻际细菌群落结构并增加物种丰富度,添加LB培养基和蛋白胨可促使藻际细菌群落数量剧增.生理生化响应表明,藻细胞受LB培养基和蛋白胨胁迫后,活性氧(ROS)水平和丙二醛(MDA)含量激增,细胞氧化损伤严重;超氧化物歧化酶(SOD)、过氧化氢酶(CAT)活性先急剧上升后下降,抗氧化酶系统受损.扫描电镜显示,LB培养基可使藻细胞逐渐萎缩,最终破碎;而藻际细菌显著增多.因此,在蓝藻水华暴发的水体进行适当的外部营养刺激可在一定程度上实现溶藻菌原位抑藻.  相似文献   
205.
通过土壤培养实验考察了硫酸盐还原菌(SRB)包括希瓦氏菌、梭状芽胞杆菌和两者混合菌对碱性和酸性农田土中有效态重金属(Cd、Pb、Cu和Zn)的钝化效果及其作用机制.结果表明,在相同接菌量下,希瓦氏菌处理组对碱性土中有效态重金属的钝化效果优于梭状芽胞杆菌和两者混合菌的处理组;而不同种类的SRB对酸性土中有效态重金属的钝化效果无显著差异.培养第20 d后土壤中有效态重金属的钝化率不再显著变化.SRB处理对碱性土中有效态重金属的钝化率可达80%以上,而对酸性土中有效态重金属的钝化率低于40%.在碱性土中,SRB能够有效还原SO42-,并且提高土壤pH值,使S2-可与重金属紧密结合,显著提高有效态重金属钝化率.尽管SRB使酸性土壤pH值升高,但土壤仍然呈酸性使SO42-还原受到抑制,不利于有效态重金属的钝化.总体来看,SRB适用于碱性和酸性土壤的重金属污染治理,但与酸性土壤相比,SRB对碱性土壤中有效态重金属的钝化效果更好.  相似文献   
206.
Summary. The scope of this work was to examine whether leaf constitutive secondary metabolites play a role in determining bacterial colonization of the phyllosphere. To this aim, we surveyed nineteen native or cultivated plant species that share a common bacterial pool in a North Mediterranean area, and estimated the size of total and ice nucleation active (INA) bacterial populations on their leaves. Large differences in the colonization of their phyllosphere were found; the population size of epiphytic bacteria ranged from 7.5 × 102 to 1 × 106 CFU/g fresh weight, in eucalypt and celery, respectively. Species native in Mediterranean-type climate areas, particularly those belonging to the group of aromatic plants, are characterized by scarce presence of INA bacteria. The antibacterial activity of essential oils, surface phenolics and leaf tissue extracts was also estimated against the INA strains P. syringae and E. herbicola, isolated from two of these plant species. E. herbicola proved more sensitive than P. syringae. Of the species examined, oregano [Origanum vulgare L. subsp. hirtum (Link.) Ietswaart], an aromatic plant, had the highest antimicrobial activity, whereas six species showed no activity at all. Further experiments were performed with oregano and bean (Phaseolus vulgaris L.) that represent two extremes in their secondary metabolite content. Both plants were inoculated with P. syringae. By the end of incubation, the bacterial population on bean plants was about 100 times higher than that on oregano leaves. Scanning electron micrographs showed that bacterial growth on oregano leaves was confined to sites away from glandular hairs. Results from the bacterial colonization survey together with those from the toxicity tests showed that all species rich in antibacterial secondary metabolites harbored low leaf bacterial populations. These results provide substantial evidence that leaf secondary metabolites function as constitutive defense chemicals against microbial invasions. However, the fact that species with non- or moderately active leaf secondary metabolites are not always highly colonized suggests mediation of other unknown factors, the contribution of which requires further investigation.  相似文献   
207.
The impacts of landfill leachate irrigation on methane oxidation activities and methane-consuming bacteria populations were studied by incubation of landfill cover soils with leachate and (NH4)2SO4 solution at different ammonium concentrations. The community structures and abundances of methane-oxidizing bacteria (MOB) and ammonia-oxidizing bacteria (AOB) were examined by PCRDGGE and real-time PCR. Compared with the pure (NH4)2SO4 solution, leachate addition was found to have a positive effect on methane oxidation activity. In terms of the irrigation amount, ammonium in leachate was responsible for the actual inhibition of leachate. The extent of inhibitory effect mainly depended on its ammonium concentration. The suppression of the predominant methaneconsuming bacteria, type I MOB, was responsible for the decreased methane oxidation activity by ammonium inhibition. Methaneconsuming bacteria responded diversely in abundance to ammonium. The abundance of type I MOB decreased by fivefold; type II MOB showed stimulation response of fivefold magnification upon the first addition but lessened to be lower than the original level after the second addition; the amount of AOB was stimulated to increase for 20-30 times gradually. Accumulated nitrate from nitrification strengthened the ammonium inhibition on type I and type II MOB, as a result, repetitive irrigation was unfavorable for methane oxidation.  相似文献   
208.
聚磷生物膜的快速启动及微生物特性研究   总被引:2,自引:0,他引:2  
章豪  高碧霄  潘杨  冯鑫 《环境科学学报》2019,39(10):3317-3324
在同步去除并富集磷的基础上,探究采用前期不排泥、后期排泥的挂膜方式对聚磷生物膜反应器的运行效能、微生物特征及群落结构的影响.结果表明,经过驯化运行,聚磷生物膜的蓄磷能力明显提升.在挂膜阶段,生物膜厚度及EPS含量出现一定程度的增长;PN/PS上升至3.12,PN/PS比值增加有利于微生物粘附在填料上.在好氧出水达标的情况下,富集液中磷酸盐浓度提升至89.5 mg·L~(-1),达到了鸟粪石回收标准.高通量测序结果表明,经过富集培养,微生物群落多样性呈下降趋势,群落组成变化明显.优势菌门为变形菌门(Proteobacteria),其丰度从33.6%增长至75.3%;反应器中的聚磷菌属丰度明显增加,从11.8%上升至23.2%,红环菌属(Rhodocyclaceae)、UKL 13-1为反应器中的优势聚磷菌.  相似文献   
209.
从巴丹吉林沙漠盐湖沉积物中分离获得1株在高盐环境下高效降解苯酚菌H17.分析了H17生理生化特性、16S rDNA基因序列、苯酚降解特性及动力学,结果表明,H17属于盐单胞菌属(Halomonas sp.),能在0~20%的盐度下有效降解苯酚,每升外加适量的碳源(葡萄糖浓度0.8 g)和复合氮源(KNO_3 1 g、NH_4Cl 5 g、酵母提取物0.2 g和胰蛋白胨0.2 g)能够促进H17的生长及降解苯酚能力.在温度为30℃、pH 7~8、盐度5~10%的条件下,H17均能高效降解苯酚,最高降解率可达到88.5%.该菌株降解苯酚动力学符合Halane模型,经拟合其生长参数为μ_(max)=0.31 h~(-1),K_S=191.63 mg·L~(-1),K_i=683.05 mg·L~(-1).研究显示H17具有在高盐环境下降解和耐受苯酚的能力,同时对环境有较强的适应性,体现出其在高盐含酚废水实际处理中具有良好的应用价值.  相似文献   
210.
为探讨共生细菌对盐生小球藻(Chlorella salina)亚砷酸盐(As(III))富集和形态转化的影响,从C.salina培养液中分离培养出一株共生细菌,并采用抗生素处理C.salina获得无菌藻,设置0,75,150,300,750 μg/LAs(III)溶液处理带菌和无菌的C.salina,7d后测定C.salina对As(III)的吸收、吸附和富集量,以及培养液和藻细胞内As的形态,计算带菌和无菌C.salina对As(III)的氧化率和去除率;使用不同浓度的As(III)处理共生细菌7d,并以300μg/L的As(III)处理共生细菌不同时间,计算两种情况下共生细菌对培养液中As(III)的氧化率和去除率.结果表明:C.salina的共生细菌为根癌农杆菌(Agrobacterium tumefaciens WB-1);与无菌C.salina相比,带菌C.salina生长更快、对As(III)的耐性更强.带菌C.salina对As(III)的富集量为103.10~448.12mg/kg、氧化率为78.93%~96.88%、去除率为18.92%~55.21%,显著高于无菌C.salina的富集量(11.68~91.39mg/kg)、氧化率(14.46%~26.39%)和去除率(12.82%~29.15%),也高于A.tumefaciens WB-1对As(III)的氧化率(4.51%~30.61%)和去除率(1.86%~16.19%).此外,带菌C.salina胞内还检测到少量的As(III)和甲基砷,而在无菌C.salina胞内没有甲基砷存在.共生细菌促进了盐生小球藻对As(III)的富集和形态转化.  相似文献   
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