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481.
长江常熟江段近岸小型鱼类群落结构及多样性探析   总被引:2,自引:0,他引:2  
2009年3月~2010年2月,利用密目插网对长江常熟江段小型鱼类进行了连续监测,首次对该江段的小型鱼类群落组成、优势种组成及生物多样性进行了剖析。结果表明:该江段共有小型鱼类24种,隶属于5目7科,其中鲤形目最多。根据〖WTBX〗IRI〖WTBZ〗指数分析,贝氏〖FK(W1。1〗〖PS餐鱼1.eps〗〖FK)〗、刀鲚、窄体舌鳎、蛇鮈和光泽黄颡鱼为优势种,共占总数量的83.44%,占总重量的8202%;贝氏〖FK(W1。1〗〖PS餐鱼1.eps〗〖FK)〗和窄体舌鳎在各个季节中均为优势种,刀鲚在春、夏、秋3季为优势种。基于渔获数量的分析结果显示,常熟江段各月多样性特征值范围为:Shannon Wiener指数(H’) 118~176, Margalef指数(R)087 ~207,Pielou指数(J’)048~083,McNaughton指数(Dn) 057~086。Margalef指数和McNaughton指数春季最高,冬季最低;Shannon Wiener指数和Pielou指数冬季最高,夏季最低。最后探讨了影响该江段小型鱼类群落结构的各种因素,提出了合理开发和保护小型渔业资源的建议  相似文献   
482.
为了揭示超声波-缺氧/好氧污泥消化反应器中氨氧化细菌群落结构多样性的演变过程,采用变性梯度凝胶技术(PCR—DGGE)研究不同运行时期氨氧化细菌群落结构的变化。DGGE分析表明,反应器中氨氧化细菌群落比较丰富。在反应器运行的不同时期,氨氧化细菌的群落结构发生了一定的变化,反映了种群的动态演变。UPGMA聚类分析将DGGE图谱分为3大类群并对应于各自的运行时期。测序结果表明,反应器中的优势种群属于变形菌门(Proteobacteria),包括α-proteobacteria,β-proteobacteria,γ-proteobacteria和ε-proteobacteria4个纲,其中β-proteobacteria占45%,γ-proteobacteria占40%。在始终保持明显优势地位的种属中,5株为反硝化细菌,它们对提高反应器脱氮效率具有重要作用。  相似文献   
483.
Effects of repeated applications of the herbicide butachlor (N-(butoxymethyl)-2-chloro -N-2′,6′-dimethyl acetanilide) in soil on its persistence and soil microbial functional diversity were investigated under laboratory conditions. The degradation half-lives of butachlor at the recommended dosage in soil were calculated to be 12.5, 4.5, and 3.2 days for the first, second, and third applications, respectively. Throughout this study, no significant inhibition of the Shannon-Wiener index H′ was observed. However, the Simpson index 1/D and McIntosh index U were significantly reduced (P ≤ 0.05) during the initial 3 days after the first application of butachlor, and thereafter gradually recovered to a similar level to that of the control soil. A similar variation but faster recovery in 1/D and U was observed after the second and third Butachlor applications. Therefore, repeated applications of butachlor led to more rapid degradation of the herbicide, and more rapid recovery of soil microorganisms. It is concluded that repeated butachlor applications in soil had a temporary or short-term inhibitory effect on soil microbial communities.  相似文献   
484.
Abstract

After application, herbicides often reach the soil and affect non-target soil microorganisms, decreasing their population, diversity or affecting metabolic activity. Therefore, laboratory studies were performed to evaluate the effects of diuron, hexazinone and sulfometuron-methyl alone and mixed upon carbon transformation by soil microorganisms in clayey and sandy soils and the effect on bacterial diversity and structure. Control treatment without herbicide application was also performed. Sub-samples from the control and herbicide treatments (10?g – in triplicate) were collected before herbicide application and 7, 14, 28 and 42?days after treatment (DAT), then 1?mL of 14C-glucose solution was applied. The released 14CO2 was trapped in 2?M NaOH solution and the radioactivity was analyzed by liquid scintillation counting (LSC), 12?h after glucose application. The effect of herbicides on bacterial diversity was evaluated by T-RFLP. The experiment was conducted in a complete randomized design. Hexazinone did not affect 14CO2 evolution. Diuron showed a greater 14CO2 evolution in sandy and clayey soil, while sulfometuron-methyl led to an increase in sandy soil, at 42 DAT. A greater evolution of carbon was observed in the treatment with herbicide mixture in sandy soil, compared with the same treatment in clayey soil or control. However, the herbicide mixture application did not affect the soil biological activity measured by the respiration rate induced by substrate. On the other hand, the herbicide mixtures affected the bacterial diversity in both soils, being the strongest effect to diuron and sulfometuron-methyl in clayey soil and hexazinone in sandy soil.  相似文献   
485.
This investigation was undertaken to determine the impact of the insecticides Dursban 480 EC (with organophosphate compound chlorpyrifos as the active ingredient) and Talstar 10 EC (with pyrethroid bifenthrin as the active ingredient) on the respiration activity and microbial diversity in a sandy loam luvisol soil. The insecticides were applied in two doses: the maximum recommended dose for field application (15 mg kg?1 for Dursban 480 EC and 6 mg kg?1 for Talstar 10 EC) and a 100-fold higher dose for extrapolation of their effect. Bacterial and fungal genetic diversity was analysed in soil samples using PCR DGGE and the functional diversity (catabolic potential) was studied using BIOLOG EcoPlates at 1, 3, 7, 14, 28, 56 and 112 days after insecticide application. Five bacterial groups (α, β, γ proteobacteria, firmibacteria and actinomycetes) and five groups of fungi or fungus-like microorganisms (Ascomycota, Basidiomycota, Chytridiomycota, Oomycota and Zygomycota) were analysed using specific primer sets. This approach provides high resolution of the analysis covering majority of microorganisms in the soil. Only the high-dose Dursban 480 EC significantly changed the community of microorganisms. We observed its negative effect on α- and γ-proteobacteria, as the number of OTUs (operational taxonomic units) decreased until the end of incubation. In the β-proteobacteria group, initial increase of OTUs was followed by strong decrease. Diversity in the firmibacteria, actinomycetes and Zygomycota groups was minimally disturbed by the insecticide application. Dursban 480 EC, however, both positively and negatively affected certain species. Among negatively affected species Sphingomonas, Flavobacterium or Penicillium were detected, but Achromobacter, Luteibacter or Aspergillus were supported by applied insecticide. The analysis of BIOLOG plates using AWCD values indicated a significant increase in metabolic potential of microorganisms in the soil after the high-dose Dursban application. Analysis of respiration demonstrated high microbial activity after insecticide treatments; thus, microbial degradation was relatively fast. The half-life of the active insecticide compounds were estimated within the range of 25 to 27 days for Talstar and 6 to 11 days for Dursban and higher doses stimulated degradation. The recommended dose levels of both insecticides can be considered as safe for microbial community in the soil.  相似文献   
486.
In this study, the effect of ciprofloxacin (CIP) on the catabolic diversity of soil microbial communities was evaluated. Soil samples were spiked with ciprofloxacin (0, 1, 5 and 50 mg?kg?1) and were incubated for 1, 3, 9, 22 and 40 days. Untreated controls received only water. The functional diversity of the microbial community studied was characterized using a catabolic response profile (CRP). Six substrate groups were tested: carbohydrates, amino acids, carboxylic acids, aromatic chemicals, alcohols and polymers. After 40 days, the CIP concentrations in the soil samples ranged from 25% to 58% of the initial concentrations. Soil respiratory responses to the individual substrates D-glucose, lactose, D-mannose, L-glutamic, Na-citrate, malic acid and inosine were inhibited at the high CIP concentrations (5 and 50 mg·kg?1) in the soils and were increased at the lowest CIP concentration (1 mg·kg?1). Soil respiration was inhibited at all of the CIP concentrations after the addition of D-galactose and glycerol. The CIP concentration and incubation time explained 45.3% of the variance of the catabolic responses. The CRP analysis clearly discriminated among the different CIP concentrations. The results suggest that CIP strongly affects the catabolic diversities of soil microbial communities and that its effect is more significant than that of incubation time.  相似文献   
487.
通过检测活性污泥的电子传递体系活性以及生物多样性,研究Ni2+对活性污泥微生物活性及群落多样性的影响。结果表明:与对照系统相比,5mg/L的Ni2+对2,3,5-lriphenylteItrazoliumchloride(TTC.ETS)活性未产生显著的影响;但当Ni2+的浓度进一步增大到10、20和40mg/L后,其对序批式反应器内活性污泥TTC—ETS活性的抑制率分别达到(36.794-11.14)%、(55.88±13.90)%和(70.97±6.78)%。低浓度Ni2+.能增强活性污泥微生物对碳源的利用,但高于10mg/L的Ni2+则显著抑制了活性污泥微生物对碳源的利用。各个SBR系统中微生物群落最常见的物种相近,物种丰富度和均一性则均有所不同,其中群落物种丰富度随着Ni2+浓度的增加而逐渐减小。TTC—ETS活性、平均每孔颜色变化率、Shan—liOn指数和Simpson指数,与Ni2+的胁迫浓度之间的显著相关性表明,它们均可有效地表征Ni2+胁迫对活性污泥微生物活性及群落多样性的影响程度。  相似文献   
488.
渤海湾淤泥质海岸带典型地区景观空间格局分析   总被引:1,自引:0,他引:1  
以景观多样性、景观破碎度和景观分离度作为评价指标,分析渤海湾淤泥质海岸带典型地区景观空间格局以及人类活动对景观结构的影响。将研究区域分为耕地、荒地、村镇、盐田、虾池、滩涂、库塘以及河流沟渠8个景观要素。分析表明,景观多样性主要受耕地和荒地的影响和支配;耕地和荒地的破碎度大,分离度小;盐田和河流沟渠的破碎度最小;村镇和滩涂的分布状况导致其分离度大。  相似文献   
489.
贵州三水库冬季浮游生物分布及影响因子分析   总被引:3,自引:1,他引:2  
为揭示喀斯特地区深水水库冬季的浮游生物群落结构及其影响因子,于2010年2月对贵州红枫湖、百花湖和阿哈水库进行采样分析。共鉴定出红枫湖、百花湖和阿哈水库的浮游植物分别为66、70、60种,浮游植物丰度范围分别为0.34×106~2.25×106、3.03×106~12.72×106、5.3×106~13.3×106 cells/L,后生浮游动物分别为22、16、24种,丰度变化范围分别为1.1~36.5、7.3~408、27~135 ind/L。Jaccard相似系数显示红枫湖/百花湖(0.381)>百花湖/阿哈水库(0.371)>红枫湖/阿哈水库(0.274)。典范对应分析(CCA)显示3个水库冬季的浮游植物的分布主要受透明度、温度、喜冷中镖水蚤、右突新镖水蚤、pH、舞跃无柄轮虫的影响,后生浮游动物的分布主要受透明度、温度、DO、沼泽颤藻、单角盘星藻具孔变种、TN和颗粒直连藻极狭变种螺旋变形的影响。  相似文献   
490.
淮河流域河南段水生植物多样性评价及其影响因素分析   总被引:3,自引:0,他引:3  
通过对淮河流域河南段开展野外调查及室内监测,分析河流水生植物类群组成及优势物种,从多样性、丰富度、优势度、均匀度4个方面对水生植物进行健康评价,采用CCA分析法探讨影响水生植物的关键环境因素。结果表明,淮河流域河南段共有水生植物38种,隶属于25科33属,分布广泛的优势种为芦苇、水花生、金鱼藻、轮叶黑藻、水蓼、水鳖、篦齿眼子菜。针对健康评价结果,淮河流域河南段水生植物呈现病态到健康状态。分析表明河流生态系统遭受破坏,生态系统呈现不稳定状况,主要原因为水质污染及人为活动干扰强烈。根据水生植物分布与水环境因子CCA响应关系研究,影响水生植物的主要因子为TP、COD、p H、电导率、氨氮。  相似文献   
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