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251.
An aerobic bacterium, capable of degrading the new chloronicotine pesticide acetamiprid, was isolated from the sludge of pesticide factory after successive enrichment cultures and named strain FH2 which is a Gram-negative, rod-shaped, obligate aerobic org  相似文献   
252.
Soil properties, microbial communities and enzyme activities were studied in soil amended with replicase (RP)-transgenic or non-transgenic papaya under field conditions. Compared with non-transgenic papaya, significant differences (P〈0.05) were observed in total nitrogen in soils grown with transgenic papaya. There were also significant differences (P〈0.05) in the total number of colony forming units (CFUs) of bacteria, actinomycetes and fungi between soils amended with RP-transgenic plants and non-transgenic plants. Compared with non-transgenic papaya, the total CFUs of bacteria, actinomycetes and fungi in soil with transgenic papaya increased by 0.43-1.1, 0.21-0.80 and 0.46-0.73 times respectively. Significantly higher (P〈0.05) CFUs of bacteria, actinomycetes and fungi resistant to kanamycin (Km) were obtained in soils with RP-transgenic papaya than those with non-transgenic papaya in all concentrations of Km. Higher resistance quotients for Km' (kanamycin resistant) bacteria, actinomycetes and fungi were found in soil planted with RP-transgenic papaya, and the resistance quotients for Km' bacteria, actinomycetes and fungi in soils with transgenic papaya increased 1.6-4.46, 0.63-2.5 and 0.75-2.30 times. RP-transgenic papaya and non-transgenic papaya produced significantly different enzyme activities in arylsulfatase (5.4-5.9x), polyphenol oxidase (0.7-1.4x), invertase (0.5-0.79x), cellulase (0.23-0.35x) and phosphodiesterase (0.16-0.2x). The former three soil enzymes appeared to be more sensitive to the transgenic papaya than the others, and could be useful parameters in assessing the effects of transgenic papaya. Transgenic papaya could alter soil chemical properties, enzyme activities and microbial communities.  相似文献   
253.
Ecological effects of crude oil residues on weed rhizospheres are still vague. The quantitative and diversity changes and metabolic responses of soil-bacterial communities in common dandelion (Taraxacum officinale), jerusalem artichoke (Silphiurn perfoliatum L.) and evening primrose (A colypha australis L.) rhizospheric soils were thus examined using the method of carbon source utilization. The results indicated that there were various toxic effects of crude oil residues on the growth and reproduction of soil bacteria, but the weed rhizospheres could mitigate the toxic effects. Total heterotrophic counting colony-forming units (CFUs) in the rhizospheric soils were significantly higher than those in the non-rhizospheric soils. The culturable soil-bacterial CFUs in the jerusalem artichoke (S. perfoliatum) rhizosphere polluted with 0.50 kg/pot of crude oil residues were almost twice as much as those with 0.25 kg/pot and without the addition of crude oil residues. The addition of crude oil residues increased the difference in substrate evenness, substrate richness, and substrate diversity between non-rhizospheric and rhizospheric soils of T. officinale and A. australis, but there was no significant (p〉0.05) difference in the Shannon's diversity index between non-rhizospheric and rhizospheric soils of S. perfoliatum. The rhizospheric response of weed species to crude oil residues suggested that S. perfoliatum may be a potential weed species for the effective plant-microorganism bioremediation of contaminated soils by crude oil residues.  相似文献   
254.
The process of the rice straw degradation in the fermentor with aeration at 290 ml/h was studied. The results of dissolved oxygen (DO) indicated that the optimum DO during cellulose degradation by microbial community MC1 ranged from 0.01 to 0.12 mg/L. The change model ofpH values was as follows: irrespective of the initial pH of the medium, pH values decreased rapidly to approximate 6.0 after being inoculated within 48 h when cellulose was strongly degraded, and then increased slowly to 8.0--9.0 until cellulose was degraded completely. During the degradation process, 15 kinds of organic compounds were checked out by GC-MS. Most of them were organic acids. Quantity analysis was carried out, and the maximum content compound was ethyl acetate which reached 13.56 g/L on the day 4. The cellulose degradation quantity and ratio analyses showed that less quantity (under batch fermentation conditions) and longer interval (under semi-fermentation conditions) of rice straw added to fermentation system were contributed to matching the change model of pH, and increasing the quantity and ratio of rice straw degradation during cellulose degrading process. The highest degradation ratio was observed under the condition office straw added one time every five days (under semi-fermentation conditions).  相似文献   
255.
我国近岸海域微生物源示踪监测技术的研发   总被引:3,自引:1,他引:2  
通过对我国近岸海域陆源性非点源污染污染贡献率及其危害性剧增现状的分析,强调了在我国开展污染源示踪检测技术研发的必要性。在总结了国外治理非点源污染的经验———微生物源示踪技术研究和应用现状的基础上,介绍了我国近岸海域微生物源示踪检测技术研发的设计思想。从而阐明,传统的环境监测指标和方法已不能满足发展的需要,集监测、溯源和示踪为一体,适应于我国国情的近岸海域非点源污染源监测技术的研发势在必行。  相似文献   
256.
利用Science Citation Index(科学引文索引)对2012—2021年间发表在除草剂微生物降解领域的文献进行检索。分别从除草剂微生物降解研究的国家、机构发文量、被引频次、高被引论文及研究方向等进行统计分析,从文献计量学的角度分析近10年来除草剂微生物降解研究的发展状况。结果表明,2012—2021年间共有除草剂微生物降解文献782,074篇,近10年来文献量逐年增多,主要研究方向是生态环境科学、生物化学和分子生物学、生态环境科学、材料科学、工程学等。中国和美国在该领域内影响力最大,中国近几年在该领域的研究动态也比较活跃,处于世界领先水平。由此可见,除草剂微生物降解研究是当前的热点。本文的文献整理加工为我国环境领域科研工作者提供一份比较详实、科学、精确的数据,为该领域工作的开展提供重要参考。  相似文献   
257.
微生物燃料电池(microbial fuel cell,MFC)型生物毒性传感器以其低成本、实时快速、操作简单和能实现污染物在线自动检测等特点在环境监测方面有着广泛的应用前景.总结了近十年应用MFC型生物毒性传感器对重金属离子进行检测与预警的研究情况.从MFC型生物毒性传感器的原理出发,介绍了评价MFC型生物毒性传感器...  相似文献   
258.
磺酰脲类除草剂的微生物降解研究进展   总被引:1,自引:0,他引:1  
王新  倪子钧  李兆兴  宋磊  鲍佳  张惠文 《环境化学》2020,39(5):1356-1367
磺酰脲类除草剂属于高效、低毒、高选择性的新型除草剂,被广泛应用于水稻、玉米、小麦、大豆等田间杂草的防控,其用量也呈逐年增加的趋势,但其微量的除草剂残留易对后茬敏感作物产生药害.利用微生物降解土壤中的除草剂残留有望成为一种修复污染的有效方法.本文综述了近几年国内外筛选出的能够降解磺酰脲类除草剂菌株的来源和所属微生物类群,以及除草剂降解酶的研究进展,此外,对相关微生物对不同除草剂的降解途径也进行了简要介绍,最后提出了目前有待解决的问题并对未来该领域的研究趋势进行了展望,可为后续寻找高效的微生物降解菌种及利用基因工程法修复受污染的土壤、水源提供参考.  相似文献   
259.
为了探究三峡水库沉积土粪便污染情况,以万州段为例,在蓄水期采集了9个采样点的沉积土,分析了理化性质和微生物指标。结果发现,三峡水库万州段沉积土的pH为6.24~7.01,含水率为9.00%~25.70%,有机质质量分数为1.90%~3.70%,细菌总数为1.30×10~6~9.37×10~8 cfu/g,真菌总数为1.12×10~3~1.44×10~5 cfu/g,放线菌总数为8.33×10~4~8.85×10~8 cfu/g,总大肠菌群数为120~3 500MPN/g,耐热大肠菌群数为20~790MPN/g,大肠埃希氏菌数为20~210MPN/g。结果表明,三峡水库万州段沉积土受到了不同程度的粪便污染。总体而言,属于干流回水区或支流且位于江北、城市排污口下游的沉积土粪便污染较属于干流且位于江南、周围无排污口的沉积土严重。沉积土的理化性质与微生物指标基本没有相关性。但微生物指标之间基本可以相互印证,指示沉积土的粪便污染情况。  相似文献   
260.
以模拟城镇生活污水为对象,采用AO和OAO 2种工艺进行处理,通过常规水质检测和高通量测序技术来分析和探究导致2种工艺运行效果不同的微生物层面原因。结果表明:OAO工艺对COD和NH_3-N的平均去除率略高于AO工艺,但OAO工艺对TN和TP的去除效果较为显著,平均去除率分别比AO工艺高6.01%和3.44%;2种工艺的优势菌门均为Proteobacteria和Bacteroidetes,2种工艺的优势菌纲也均为β-Proteobacteria和γ-Proteobacteria;2种工艺间微生物群落差异性较大,OAO工艺的微生物种群丰度和多样性均大于AO工艺;AO工艺优势菌属为Pseudomonas、Thiothrix、Dechloromonas,OAO工艺为Thermomonas、Dechloromonas、Rhodobacter。此外,Nitrosomonas、Nitrospira作为亚硝化和硝化阶段的重要菌属在AO工艺好氧池的相对丰度为0.05%和0.02%,在OAO工艺中则显著提高,为0.47%和0.45%。其原因是OAO工艺的好氧池污泥BOD负荷较AO小,更适合硝化细菌生长。硝化细菌及其他功能菌在OAO工艺中的大量存在是OAO工艺的能够高效脱氮的主要原因。以上结果可为OAO工艺处理城镇生活污水中优势菌种的筛选及培养提供参考。  相似文献   
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