共查询到17条相似文献,搜索用时 81 毫秒
1.
2.
转座子标签法突变呋喃丹降解菌CFDS-1 总被引:2,自引:0,他引:2
通过接合使供体大肠杆菌DH5α中的质粒pSC123上的转座子插入到受体菌CFDS-1基因组DNA中,以引起该菌株的基因插入突变。利用转座子上的卡那霉素抗性基因和呋喃丹降解过程中红色物质的产生与否初步筛选出6株突变株,分别命名为CFDS—M1~CFDS—M6。紫外扫描和气谱检测结果进一步证明这些突变子确实失去了对呋喃丹的降解能力。根据转座子的序列设计引物,以6株突变株的基因组DNA为模板进行PCR扩增,并对PCR产物进行限制性酶切分析,结果表明这些突变子中呋喃丹降解基因的失活就是由于转座子的插入而导致的。 相似文献
3.
4.
5.
6.
7.
8.
9.
通过接合使供体大肠杆菌DH5α中的质粒pSC123上的转座子插入到受体菌CFDS1基因组DNA中,以引起该菌株的基因插入突变。利用转座子上的卡那霉素抗性基因和呋喃丹降解过程中红色物质的产生与否初步筛选出6株突变株,分别命名为CFDSM1~CFDSM6。紫外扫描和气谱检测结果进一步证明这些突变子确实失去了对呋喃丹的降解能力。根据转座子的序列设计引物,以6株突变株的基因组DNA为模板进行PCR扩增,并对PCR产物进行限制性酶切分析,结果表明这些突变子中呋喃丹降解基因的失活就是由于转座子的插入而导致的。 相似文献
10.
11.
取代脲类除草剂主要用来防除一年生禾本科杂草和阔叶杂草,自20世纪中期推入市场以来,在世界范围内被广泛使用,已成为重要的除草剂之一。随着取代脲类除草剂的持续施用,其在环境中的残留严重超标,危害日益凸显。因此,取代脲类除草剂在环境中的吸附、迁移和降解等行为备受关注。研究表明细菌降解N,N-二甲基取代脲类除草剂主要是通过连续脱甲基作用后断脲桥降解,而降解N-甲氧基-N-甲基取代脲类除草剂是通过脲桥的直接断裂。真菌降解取代脲类除草剂的途径则较为复杂,尚需进一步阐明。本文综述了近年来分离筛选的取代脲类除草剂降解菌株及其降解途径的最新研究进展,为取代脲类除草剂污染环境的生物修复研究提供参考。 相似文献
12.
烟草有害物质的微生物降解技术研究进展 总被引:1,自引:0,他引:1
我国目前的烟民约为3.5亿,占全球的三分之一,居世界首位,到2020年与吸烟相关的死亡将增至200万,50年内将有1亿中国人死于烟草相关疾病,运用生物技术来提高烟草质量,减少吸烟者的死亡率具有重大的意义.本文综述了国内外学者利用微生物技术降解烟草中烟碱、亚硝胺和焦油等有害物质近一个世纪的研究成果. 相似文献
13.
环境雌激素的微生物代谢 总被引:1,自引:1,他引:1
环境雌激素作为一类重要的新型环境污染物,可通过干扰生物体的内分泌系统危害生物体健康。微生物降解是去除环境雌激素与进行环境修复的主要手段。本文归纳整理了目前研究较深入的雌激素降解微生物,类比阐述了其预测的降解通路与降解机制,并对后续环境雌激素降解研究的主要内容与方向进行了展望。 相似文献
14.
细菌降解木质素的研究进展 总被引:5,自引:0,他引:5
木质素是自然界最丰富的芳香化合物,其分解与陆地上碳循环密切相关。提取木质纤维素中的葡萄糖使其转化成乙醇,是生产第二代生物能源的关键步骤。但是由于木质素是一种非常稳定的化合物,难以降解是实现生物乙醇转化的主要屏障,因此关于木质素的生物降解研究具有非常重要的意义。真菌降解木质素的研究已经深入的进行了多年,并取得丰富的成果,但是关于细菌降解木质素的研究还处在初级阶段。由于广泛的生长条件和良好的环境适应能力,细菌在木质素降解方面深受研究人员的关注。本文通过总结前人的研究成果,讨论了木质素的降解机制、代谢途径及细菌降解木质素的工业应用前景,同时还展望了分子生物学及生物信息学在木质素降解方面的应用前景。 相似文献
15.
Attenuation of cellular antioxidant defense mechanisms in kidney of rats intoxicated with carbofuran
Bhupindervir Kaur Alka Khera Rajat Sandhir 《Journal of biochemical and molecular toxicology》2012,26(10):393-398
Carbofuran, an anticholinestrase carbamate, is commonly used as an insecticide. Its toxic effect on kidney is less established. The present study was designed to investigate the effect of carbofuran on kidneys and to understand the mechanism involved in its nephrotoxicity. Male Wistar rats were divided into two groups of eight animals each; control animals received sunflower oil (vehicle) and carbofuran exposed animals were treated with carbofuran (1 mg/kg body weight) orally for 28 days. At the end of the treatment, significant increase was observed in urea and creatinine levels in serum along with the inhibition of acetylcholinesterase, suggesting nephrotoxicity. The antioxidant defense system of animals treated with carbofuran was altered in terms of increased lipid peroxidation, reduced glutathione, and total thiols and decreased activity of antioxidant enzymes (superoxide dismutase and catalase). The results indicate that carbofuran is nephrotoxic and increased oxidative stress appears to be involved in its nephrotoxic effects. © 2012 Wiley Periodicals, Inc. J Biochem Mol Toxicol 26:393–398, 2012; View this article online at wileyonlinelibrary.com . DOI 10.1002/jbt.21433 相似文献
16.
17.
Beni Lew Sheldon Tarre Michael Beliavski Michal Green 《Bioresource technology》2009,100(24):6155-6162
The effect of temperatures below 20 °C (20, 15 and 10 °C) on the anaerobic degradation pathway and kinetics of domestic wastewater fractionated at different sizes was studied in a fluidized-bed batch reactor. The overall degradation pathway was characterized by a soluble fraction degrading according to zero-order kinetics and a colloidal fraction (between 0.45 and 4.5 μm) that first disintegrates into a particulate fraction smaller than 0.45 μm before finally degrading. The colloidal degradation processes follow a first-order kinetic. In contrast, suspended solids (bigger than 4.5 μm) degrade to soluble and colloidal fractions according to first-order kinetics. The colloidal fraction originating from suspended solids further degrades into soluble fraction. These soluble fractions have the same degradation kinetics as the original soluble fraction. The suspended solids degradation was highly affected by temperature, whereas the soluble fraction slightly affected and the colloidal fraction was not affected at all. On the other hand, the colloidal non-degradable fraction increased significantly with the decrease in temperature while the suspended solids slowly increased. The soluble non-degradable fraction was little affected by temperatures changes. 相似文献