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1.
河北平原潮土中微生物对氮降解特征   总被引:1,自引:1,他引:0  
了解土壤中微生物对氮素降解规律,对于土壤氮污染修复具有重要现实意义.从河北平原潮土中筛选出8种高效氨化细菌、硝化细菌、异养硝化好氧反硝化细菌,对所筛菌种进行16S r DNA分析,选出最适菌株通过固定化载体将菌种制成菌剂.探讨了用加入所筛菌种及拮抗菌的菌液和地表水分别滴灌小白菜对土壤中的氮降解产生的影响,并测定土样磷脂脂肪酸(PLFA)的值.结果表明:以硅藻土为载体硝化细菌的氨氮降解率达到38%,硝态氮合成率为205%;以硅藻土为载体的氨化细菌氨氮合成率为1 711%,异养硝化好氧反硝化细菌的硝态氮降解率达到367%.加所筛菌液滴灌对土壤总氮和氨氮的降解效果较好,硝化作用也较强,加菌后土壤中微生物量明显增加,且更快到达峰值.对不同土样不同时间磷脂脂肪酸数据分析发现,在白菜生长过程中,土壤中的微生物含量均产生了1次峰值,且加入所筛菌的先到达峰值.对于任丘和阜城土样来说,加入所筛菌后,土壤中微生物种类相应增多,对土壤微生物环境有所改善,微生物也比较活跃.  相似文献   
2.
高氨氮废水与城市生活污水短程硝化系统菌群比较   总被引:18,自引:13,他引:5  
短程硝化是污水脱氮工艺中的重要环节,系统中的菌群结构决定了其处理效果.为探讨短程硝化系统中的微生物对不同污水的适应性,利用细菌16S rDNA克隆文库、磷脂脂肪酸(PLFA)和定量PCR分析方法对高氨氮废水和城市生活污水短程硝化系统中活性污泥的细菌群落结构、总体微生物的多样性以及功能微生物进行了比较.克隆文库结果表明两个系统中细菌群落结构明显不同,城市生活污水中细菌种类更丰富,但两个系统的优势菌群都属于变形菌门(Proteobacteria)和拟杆菌门(Bacteroidete).磷脂脂肪酸分析结果显示高氨氮废水短程硝化系统中微生物多样性指数和均匀度指数明显低于城市生活污水.定量PCR结果表明,高氨氮废水短程硝化系统中氨氧化菌(AOB)与亚硝酸盐氧化菌(NOB)的数量都多于城市生活污水短程硝化系统;高氨氮废水短程硝化系统中AOB比NOB高3个数量级,而城市生活污水短程硝化系统中AOB比NOB高2个数量级.  相似文献   
3.
有机无机缓释复合肥对不同土壤微生物群落结构的影响   总被引:5,自引:4,他引:1  
王菲  袁婷  谷守宽  王正银 《环境科学》2015,36(4):1461-1467
缓控释肥料作为一类新型肥料已成为近年来的研究热点,但对土壤微生物群落多样性影响规律的研究甚少.研究采用磷脂脂肪酸法分析缓释复合肥(SRF)、化肥(CF)和普通复合肥(CCF)分别施入酸性土和微碱性土恒温培养10、30、60和90d后的微生物群落结构多样性.结果表明,缓释复合肥等肥料施入2种土壤恒温培养(10~90 d)后检测到多种细菌(13:0,i14:0,14:0,i15:0,a15:0,i16:0,16:12OH,16:1w5c,16:0,i17:0,a17:0,cy17:0,17:02OH,i18:0,18:0,cy19:0w8c),2种放线菌(10Me17:0和10Me18:0)和1种真菌(18:1w9c).SRF在酸性土壤培养前期(10 d和30 d)较CF显著增加真菌PLFA含量8.3%和6.8%,在培养后期(60 d和90 d)较CCF显著增加真菌PLFA含量22.7%和17.1%;SRF较CF和CCF显著增加微碱性土壤在整个恒温培养期(30 d除外)土壤细菌、真菌和革兰氏阳性菌PLFA含量.酸性土壤培养30 d和90 d时一般饱和脂肪酸/单烯不饱和脂肪酸PLFA值以SRF显著高于不施肥(CK)、CF和CCF,而在微碱性土壤上SRF仅在恒温培养60d时显著高于CK、CF和CCF;SRF较CCF显著降低酸性土壤(30~90 d)和微碱性土壤(10~60 d)异构PLFA/反异构PLFA值.从2种土壤PLFA种类、含量以及相对丰度等可知缓释复合肥较化肥和普通复合肥提高了土壤微生物PLFA种类和含量以及减弱对微生物生存环境的胁迫,缓释复合肥在2种土壤中尤其对酸性土的作用明显.通过研究缓释复合肥对土壤微生物群落结构多样性的影响,以期为农业生产上广泛施用缓释复合肥提供科学依据.  相似文献   
4.
土壤砷污染是我国乃至世界范围内比较严重的环境问题.有关砷污染的生态毒理效应有很多研究,但对砷污染土壤中微生物群落的关注相对较少.本文以我国湖南省石门县雄黄矿地区长期砷污染土壤为例,采用PLFA及BIOLOG微平板技术考察了7个砷(As)污染程度不同的样点以及一个对照样点土壤微生物群落结构及碳源利用特征.结果发现,雄黄矿区存在多种重金属复合污染,除As含量较高以外,镉(Cd)和镍(Ni)的含量也超过了国家土壤环境质量三级标准.雄黄矿区土壤微生物的群落结构受到土壤有机碳(SOC)、有效磷(AP)、p H以及镁(Mg)、Cd、铁(Fe)、铜(Cu)含量的显著影响.各样点土壤微生物群落均以细菌为主,占微生物总量的71.54%~80.66%,真菌次之,放线菌最少.雄黄矿区土壤中的有效砷对微生物造成了较严重的胁迫.严重砷污染降低了微生物对于碳源利用的多样性以及均匀度.各样点微生物对于碳源的利用也表现出明显的差异.31种碳源中微生物利用较多的只有7类,分别属于糖类、胺类、羧酸类与多聚物,并且以糖类为主.  相似文献   
5.
To assess the responses of the soil microbial community to chronic ozone (O3), wheat seedlings (Triticum aestivum Linn.) were planted in the field and exposed to elevated O3 (eO3) concentration. Three treatments were employed: (1) Control treatment (CK), AOT40 = 0; (2) O3-1, AOT40 = 1.59 ppm•h; (3) O3-2, AOT40 = 9.17 ppm•h. Soil samples were collected for the assessment of microbial biomass C, community-level physiological profiles (CLPPs), and phospholipid fatty acids (PLFAs). EO3 concentration significantly reduced soil microbial carbon and changed microbial CLPPs in rhizosphere soil, but not in non-rhizosphere soil. The results of the PLFAs showed that eO3 concentrations had significant effects on soil community structure in both rhizosphere and non-rhizosphere soils. The relative abundances of fungal and actinomycetous indicator PLFAs decreased in both rhizosphere and non-rhizosphere soils, while those of bacterial PLFAs increased. Thus the results proved that eO3 concentration significantly changed the soil microbial community function and composition, which would influence the soil nutrient supply and carbon dynamics under O3 exposure.  相似文献   
6.
Biotransformation studies of atrazine, metolachlor and evolution of their metabolites were carried out in soils and subsoils of Northern Greece. Trace atrazine, its metabolites and metolachlor residues were detected in field soil samples 1 year after their application. The biotransformation rates of atrazine were higher in soils and subsoils of field previously exposed to atrazine (maize field sites) than in respective layers of the field margin. The DT50 values of atrazine ranged from 5 to 18 d in the surface layers of the adapted soils. DT50 values of atrazine increased as the soil depth increased reaching the value of 43 d in the 80-110 cm depth layer of adapted soils. Metolachlor degraded at slower rates than atrazine in surface soils, subsoils of field and field margins with the respective DT50 values ranging from 56 to 72 d in surface soils and from 165 to 186 d in subsoils. Hydroxyatrazine was the most frequently detected metabolite of atrazine. The maximum concentrations of metolachlor-OXA and metolachlor-ESA were detected in the soil layers of 20-40 cm depth after 90 d of incubation. Principal Component Analysis (PCA) of soil Phospholipid Fatty Acids (PLFAs), fungal/bacterial and Gram-negative/Gram-positive ratios of the PLFA profiles revealed that the higher biotransformation rates of atrazine were simultaneously observed with the abundance of Gram-negative bacteria while the respective rates of metolachlor were observed in soil samples with abundance of fungi.  相似文献   
7.
Abstract

Monensin (MON) is a coccidiostat used as a growth promoter that can reach the environment through fertilization with manure from farm animals. To verify whether field-relevant concentrations of this drug negatively influence the structure and activity of tropical soil bacteria, plate counts, CO2 efflux measurements, phospholipid fatty acids (PLFA) and community-level physiological profiling (CLPP) profiles were obtained for soil microcosms exposed to 1 or 10?mg kg?1 of MON across 11?days. Although 53% (1?mg kg?1) to 40% (10?mg kg?1) of the MON concentrations added to the microcosms dissipated within 5?days, a subtle concentration-dependent decrease in the number of culturable bacteria (<1 log CFU g?1), reduced (?20 to ?30%) or exacerbated (+25%) soil CO2 effluxes, a marked shift of non-bacterial fatty acids, and altered respiration of amines (1.22-fold decrease) and polymers (1.70-fold increase) were noted in some of the treatments. These results suggest that MON quickly killed some microorganisms and that the surviving populations were selected and metabolically stimulated. Consequently, MON should be monitored in agronomic and environmental systems as part of One Health efforts.  相似文献   
8.
苏润华  丁丽丽  任洪强 《环境科学》2018,39(7):3286-3296
重点比较了纳米零价铁(NZVI)和微米级铁(ZVI)短期暴露条件下,厌氧产甲烷过程中污泥产甲烷活性、污泥生理生化特征、细胞膜磷脂组成和微生物群落结构的变化.结果表明,NZVI组中累积产甲烷量随着NZVI投加浓度的增加降低.5 000mg·L~(-1)ZVI组累积产甲烷量未受影响.5 d时NZVI(100~5 000 mg·L~(-1))组铁离子浓度是空白组的1.6~7.4倍,5 000mg·L~(-1)ZVI组铁离子浓度略高于空白组.5 000 mg·L~(-1)NZVI组胞外聚合物总量大幅下降为空白组的21.1%,而活菌比仍可保持在空白组的79.7%.辅酶F420和辅酶M含量在5 000 mg·L~(-1)NZVI组中为空白组的40.2%和61.6%,但100 mg·L~(-1)NZVI组和5 000 mg·L~(-1)ZVI组中辅酶F420含量升高为空白组的1.3倍.不同实验组污泥支链脂肪酸和不饱和脂肪酸的总含量为:ZVI-5 000(21.18%)空白组(19.37%)NZVI-1000(16.69%)NZVI-5000(15.94%)NZVI-100(12.08%).NZVI可使环境中铁离子浓度升高和细胞膜流动性下降,降低细胞活性和产甲烷关键辅酶活性,从而对产甲烷过程造成抑制;主成分分析和冗余分析表明,厌氧系统中微生物群落组成可受到NZVI的影响发生较大变化,Nakamurella、Bacillus、Trichococcus和Petrimonas对NZVI耐受性高.  相似文献   
9.
Constructed wetlands have emerged as a viable option for helping to solve a wide range of water quality problems. However, heavy metals adsorbed by substrates would decrease the growth of plants, impair the functions of wetlands and eventually result in a failure of contaminant removal. Typha latifolia L., tolerant to heavy metals, has been widely used for phytoremediation of Pb/Zn mine tailings under waterlogged conditions. This study examined e ects of iron as ferrous sulfate (100 and 500 mg/kg) and lead as lead nitrate (0, 100, 500 and 1000 mg/kg) on phosphorus utilization and microbial community structure in a constructed wetland. Wetland plants (T. latifolia) were grown for 8 weeks in rhizobags filled with a paddy soil under waterlogged conditions. The results showed that both the amount of iron plaque on the roots and phosphorus adsorbed on the plaque decreased with the amount of lead addition. When the ratio of added iron to lead was 1:1, phosphorus utilized by plants was the maximum. Total amount of phospholipids fatty acids (PLFAs) was 23%–59% higher in the rhizosphere soil than in bulk soil. The relative abundance of Gram-negative bacteria, aerobic bacteria, and methane oxidizing bacteria was also higher in the rhizosphere soil than in bulk soil, but opposite was observed for other bacteria and fungi. Based on cluster analysis, microbial communities were mostly controlled by the addition of ferrous sulfate and lead nitrate in rhizosphere and bulk soil, respectively.  相似文献   
10.
曾清苹  何丙辉  毛巧芝  吴耀鹏  黄祺  李源 《环境科学》2015,36(12):4667-4675
土壤微生物群落是土壤生态系统的重要组成部分,对环境变化敏感.本文运用磷脂脂肪酸法(PLFA)研究缙云山马尾松林和柑橘林土壤微生物群落结构沿海拔梯度的变化特征.结果表明,从6个海拔土壤中共检测到48种PLFA,其中i16:0、10Me17:0、10Me18:0 TBSA在6个海拔中含量均最高,且柑橘林土壤PLFA种类和含量明显高于马尾松林.随着海拔升高马尾松林土壤微生物种类和含量逐渐增加,柑橘林则逐渐降低,各海拔间细菌、真菌、放线菌、革兰氏阴性菌(G~-)及革兰氏阳性菌(G~+)含量差异显著.土壤微生物群落多样性研究结果表明,马尾松林低海拔丰富度指数(R),多样性指数(H')、均匀度指数(J)均显著高于高海拔,而柑橘林R在低海拔最高,H'、J则在高海拔最高.不同海拔土壤细菌、放线菌、G~-及G~+与土壤酶和环境因子之间存在相关性,细菌、放线菌、G~-及G~+与脲酶(Ure)、转化酶(Ive)、过氧化氢酶(CAT)、林分类型均呈极显著正相关,真菌与Ure、Ive、CAT呈显著正相关;而细菌、真菌、放线菌、G~-及G~+与海拔呈极显著或显著负相关.Ure、Ive、CAT、林分及海拔是影响土壤微生物PLFA变化的重要因子.  相似文献   
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