81 resultados para Mice, Mutant Strains

em Chinese Academy of Sciences Institutional Repositories Grid Portal


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一,缺失nifZ的棕色固氮菌突变种钼铁蛋白的晶体生长的研究进展 在一定的结晶条件下,缺失nifZ的棕色固氮菌突变种钼铁蛋白将从溶液中结晶出深棕色的短斜四棱柱晶体。PEG 8000、MgCl2、NaCl、Tris的浓度及缓冲液的pH对该蛋白的结晶及晶体生长影响的系统研究表明,它们的浓度和pH较低时,不出晶体;当pH高于8.0,随着前三种化合物浓度的逐渐提高,便在一周内出现大量小品体;再提高浓度后,便延长结晶时问但出质好、数少而个大的晶体;然后晶体随浓度的提高而又变小、变多、甚至晶质变差,直至不再出晶体。影响晶体生长的各因子的最适浓度随其它条件的改变而有所不同。当缓冲液的pH为8.2而PEG 8000,MgCl’、NaCI、蛋白质和Tris的浓度分别为1.86%、300 mmol/L、400 mmoUL、4.64g/L、53 mmo/L时,首次发现在一滴悬滴结晶液中只有一颗较大的优质晶体(最大两边线度均为0.16mm)。 二,从分别含Mn和Cr的培养基中生长的固氮菌突变种UW3中纯化的固氮酶的特性和结晶 缺失nifH基因的棕色固氮菌突变种UW3,在有钼环境中不能固氮生长,但能在无钼而含MnS01或Na2Cr01的无氮培养基中固氮生长。分别经超声破碎、加热除去部分杂蛋白、离子交换柱层析和Sephacryl S-200或S-300柱层析的分离纯化,分别得到二种固氮酶组分l蛋白。金属元素测定表明,这两种蛋白除含铁元素外还分别含有锰和铬元素。它们的吸收光谱、CD和AR谱互不完全相同,并都与OP-MoFe蛋白存在较大差异。含Mn固氮酶也能还原C2H2、质子和N2,对它们的还原的比活性都分别约为MoFe蛋白活性的50%。初步结果表明,这一突变种在这两种培养条件下都可能已表达了不同于已发现的三种固氮酶的新固氮酶组分l蛋白-MoFe、VFe和FeFe蛋白,分别为含Mn或Cr的固氮酶组分1蛋白,分别被称为uw3,-MnFe蛋白和UW3-CrFe蛋白。通过对PEG 8000、MgCI2、NaCI和缓冲液的种类和浓度等结晶条件的大量优化组合实验,首次获得uw3-MnFe蛋白和UW3-CrFe蛋白的的晶体。最大晶体为21.4×14.3×2.1μm。

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一.棕色固氮菌突变种UW45、缺失nifH(DJ54)和缺失nifE(DJ35)突变种的钼铁蛋白的纯化、特性鉴定及结晶研究 棕色固氮菌突变种UW45的菌体破碎后,所得粗提物经两次DEAE 52柱层析后得到部分纯的nifB- MoFe蛋白和Fe蛋白。再经Sephacryl S-300和 DEAE柱的进一步纯化,便使nifB- MoFe蛋白基本达到SDS凝胶电泳纯。SDS-PAGE结果表明,nifB- MoFe蛋白具有与野生型棕色固氮菌(OP)MoFe蛋白相同的亚基种类和组成。此粗提物可为用NMF抽提的 OP MoFe蛋白的FeMoco激活,所得Fe蛋白具有与OP Fe蛋白相似的互补活性,可使OP MoFe的比活性达到2192 nmol C2H2/min/mg蛋白。FeMoco可使无互补活性的 nifB- MoFe蛋白与nifB- Fe蛋白组成具有可观放氢活性的固氮酶,使FeMoco显出的比活性接近文献报道的还原乙炔的最高值。对nifB- MoFe蛋白的结晶及晶体生长进行了的研究,初步探讨了结晶溶液各组分的种类和浓度、结晶方法和实验操作等与能否出现晶体及晶体的数目、大小、质量、形状和出晶时间等的相互关系。在结晶实验时,一次就得到了国内外尚未报道的该蛋白的短斜四棱柱的棕色晶体。目前所得的最大的晶体的二维边长都为0.1mm。初步结果表明,这种晶体可能就是nifB- MoFe蛋白的晶体。 从棕色固氮菌突变种DJ54中得到了ΔnifH MoFe蛋白;并参与了棕色固氮菌突变种DJ35的ΔnifE MoFe蛋白的分离纯化,所用方法与nifB- MoFe蛋白的分离纯化相似。对这两种突变种蛋白的特性和结晶进行了初步研究。在结晶实验时,也是一次就得到了国内外尚未报道的ΔnifH MoFe蛋白和ΔnifEMoFe蛋白的晶体。 二.新型固氮酶MnFe蛋白和CrFe蛋白的特性与结晶研究 在已有的工作基础上,分离纯化了几批MnFe蛋白和CrFe蛋白,并用部分纯的nifB- Fe蛋白进行活性互补,分别测定了MnFe蛋白和CrFe蛋白的底物还原活性。不断优化MnFe蛋白和CrFe蛋白晶体生长条件,获得了晶质良好的MnFe蛋白和CrFe蛋白的较大晶体。 在2001年的“神舟2号”飞船搭载实验中,MnFe蛋白的出晶率达到100%,所获得的晶体也比地面对照略厚些。继续进行MnFe蛋白和CrFe蛋白的空间计划的地面匹配实验,以满足对蛋白质样品的要求,以保证宇宙飞船“神舟3号”的蛋白质搭载实验获得更好的结果。

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随着化工行业的发展,大量有毒有害难降解有机物随工业废水的排放进入环境,这些物质能够在环境中长期存在、积累和扩散,通过食物链对动植物的生存及人类的健康造成不良影响。本文以苯酚、对氯硝基苯、氯苯和十六烷为模拟污染物,以前期研制的功能菌剂为对象,经过紫外线线诱变筛选出优于出发菌株的功能菌,对诱变后功能菌的理化性能进行了研究,对菌种进行了鉴定,在此基础上,就其相互之间的微生态关系进行研究,为混合发酵提供理论基础,并就其最佳发酵条件及发酵参数进行了研究,最后对发酵产品的性能进行了检测。目前,国内外有关功能菌剂的研究还存在多方面的不足,主要包括:①由于多菌种混合发酵过程较为复杂,各菌之间存在复杂的相互作用,影响因素较多,关于菌种之间的相互关系研究得很少,环境功能菌剂的发酵方法大多采用单独发酵后混合的方式。单独发酵对原材料、设备和能源的利用率较低,对于多菌种制剂发酵,在设备、能源和原材料的方面造成的浪费更大,将会大幅增加菌剂的生产成本,影响多菌种功能菌剂的发展;②功能菌剂生产过程的质量控制方面研究得较少;③功能菌剂产品的稳定性、抗冲击性能研究得较少,对环境微生物制剂的研究主要集中在菌种选育和培养条件优化方面。 通过本论文研究,得到以下主要结论。 (1)在紫外线诱变处理中,用紫外线对发生一定程度退化的出发菌株进行诱变处理后,六株具有高效降解性能的菌株被筛选出来,诱变筛选出的菌株形态和ERIC-PCR指纹图谱与出发菌株相比发生了明显改变;而且诱变后的菌株对目标难降解底物的降解能力均得到改善,其中,FPN、FCB、F14、FEm对目标底物的降解率提高了20%以上;诱变后菌株经过7次连续传代接种后,对目标难降解底物的降解率无显著变化,具有一定的遗传稳定性。并对诱变后的功能菌进行了初步的鉴定,这6株菌都分别是芽孢杆菌。 (2)对诱变后的功能菌相互之间的微生态关系进行了研究,通过抑菌实验、生长量以及基质消耗量的比较,确定它们之间的生长关系是无害共栖关系,可以进行混合发酵。 (3)对该功能菌剂进行发酵培养条件研究,结果表明发酵培养基的最佳成分(g/L):葡萄糖 31.0g/L、玉米粉10.0g/L、磷酸氢二钾1.0g/L、硫酸铵1.1g/L、硫酸镁0.55g/L。通过研究不同的培养条件对菌体生长和降解性能的影响,确定了最佳培养条件:培养基初始pH7.5;最适温度32℃;培养基装液量125mL(250 mL三角瓶),以及培养时间对降解性能的影响,培养20 h的产物对降解最为有利。通过研究添加不同目标污染物对菌体生长和降解性能的影响,确定了添加目标污染物的最佳量以及最佳时间:苯酚投加量:1.125 g/L,对氯硝基苯投加量:0.1 g/L;最佳投加时间为发酵培养开始后4 h。 (4)以摇瓶分批发酵最优条件为基础,对FPN、F10、FCB、FNa、F14 和 FEm进行了摇瓶分批发酵试验。以摇瓶分批发酵试验数据为依据,对功能菌剂分批发酵动力学进行了研究,建立了菌体生长和基质消耗的动力学模型,拟合模型能较好的反映功能菌剂分批发酵过程。 (5)功能菌剂和活性污泥协同作用,可以提高系统的生物降解能力,功能菌剂投加量为2%,新鲜活性污泥3500 mg/L,降解24 h条件下,功能菌剂和活性污泥的协同作用对COD的去除率和对照组相比,最多的提高了36.8%。功能菌剂和活性污泥协同作用以及活性污泥的单独作用,其生物降解过程均符合一级反应动力学过程,功能菌剂和活性污泥协同作用的生物降解动力学方程为:,相关系数97%。采用SBR运行方式,引入功能菌剂的SBR系统明显能够改善和提高生物降解的效率。与仅有活性污泥的系统相比,系统对COD的平均去除率可以提高27.1%,同时,系统的耐负荷冲击以及耐毒害冲击的性能比仅有活性污泥的SBR系统强,特别是负荷冲击对引入功能菌剂的SBR系统影响很小。仅有活性污泥的SBR系统经过负荷冲击和毒害冲击之后,不能恢复到冲击之前的水平,而且系统有效作用时间的周期比引入功能菌剂的SBR系统相比大大缩短,而引入功能菌剂的SBR系统处理效果较为稳定,恢复能力很强。 Along with the development of industries, many recalcitrant organic chemicals have been discharged into natural environments together with wastewaters and can exist in waters, soil and sediments for a long time without degradation. These haz-ardous substances, their byporducts and metabolizabilities can be highly toxic, mu-tagenic and carcinogenic, thereby threatening animals, plants and human health through food chain. Consequently the removal of these compounds is of significant interest in the area of wastewater treatment. In this dissertation, the phenol, hydro-quinone, chlorobenzene and hexadecane treated as the model pollutants, the func-tional microorganism agent was used as the starting strains, they treated with ultra-violet light, and then the mutant strains with high degradation ability were screened out and identified primarily, the relationship between these stains were studied, the medium composition and fermentation conditions were optimized, the degradation ability of the fermented production was tested. The literature survey indicates that the study of the microorganism agent is far from complete and more information is re-quired on following problems. 1, Because of the complexity of relationship in mixed fermentation and the complicated factors, the study is hardly to process.2, There is a lack of information on the quality control of the producing process .3, And there is a lack of information on the stability about the microorganism agent. In this dissertation, the main results of the present study could be summarized as follows: (1)The degenerate starting strains were treated with the ultraviolet light, and six mutant strains with high biodegradation ability were screened out by using the me-dium with selective pressure of model pollutants. The mutant strains had great changes in colonialmorphology and ERIC-PCR fingerprinting. And the mutant strains got obvious advantages over the starting strains in degradation ability and over 20% improvement of removal rates was achieved for FPN、FCB、F14 and FEm. The de-gradation ability of the mutant strains was stable after seven generations. After that, the mutant strains were primarily identified as bacillus respectively. (2) The relationship between these mutant strains was studied. By the compari-son of antibiosis effect, biomass and consumption of substrate, the relationships were neutralism and they could be mixed fermented. (3) The optimized cultivation conditions were as follows: glucose 31.0 g/L, corn power 10 g/L, K2HPO4 1.0 g/L, (NH4)2SO4 1.1 g/L, MgSO4 0.55 g/L, initial pH7.5, temperature 32℃, working volume 125 mL/250 mL, and cultivation time 20h (con-sidering the time effect on degradation ability), adding pollutants phenol (1.125 g/L) and hydroquinone (0.1 g/L) into the broth at 4 h after cultivation. (4) Based on the above optimum condition, the batch fermentation was per-formed with strains FPN, F10, FCB, FNa, F14 and FEm in shake flask. The batch fermentation kinetics was studied based on the experimental data. Two kinetic models were constructed which could reflect the regularity of growth and substrate consump-tion in the process of batch fermentation. (5) The co-operation of functional microorganism agent and activated sludge could raise biodegradation of system by adding some microorganism agent and 3500 mg/L fresh activated sludge. Bioaugumentation by the addition of high effective deg-radation culture enhanced the treatment effect of SBR system and the COD removal rate was increased by 20%-36.8%. Its biodegradation matched first-order dynamical reaction equation, and the reaction equation was ln0.2327.391ct=−+. The micro-organism agent had the effect of optimization to activated sludge micro-ecosystem. The SBR system adding 2% microorganism agent, the average COD removal rate of that was increased by 27.1% and stronger anti-shock ability to load and toxicant were achieved (compared with SBR system just adding activated sludge). Especially the load-shock has barely effect to the SBR system adding microorganism agent. After the load and toxicant shock, the SBR system just adding activated sludge couldn’t come back to original level and the activated sludge micro-ecosystem was frustrated. The applying of microorganism agent increased biological activity and system’s re-sistance ability to load shock and toxicant shock.

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A transmission electron microscopy (TEM) study has been carried out to uncover how dislocations and twins accommodate large plastic strains and accumulate in very small nanocrystalline Ni grains during low-temperature deformation. We illustrate dislocation patterns that suggest preferential deformation and nonuniform defect storage inside the nanocrystalline grain. Dislocations are present in individual and dipole configurations. Most dislocations are of the 60 degrees type and pile up on (111) slip planes. Various deformation responses, in the forms of dislocations and twinning, may simultaneously occur inside a nanocrystalline grain. Evidence for twin boundary migration has been obtained. The rearrangement and organization of dislocations, sometimes interacting with the twins, lead to the formation of subgrain boundaries, subdividing the nanograin into mosaic domain structures. The observation of strain (deformation)-induced refinement contrasts with the recently reported stress-assisted grain growth in nanocrystalline metals and has implications for understanding the stability and deformation behavior of these highly nonequilibrium materials.

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A perturbation solution is obtained for the local stress-strain fields in an axially cracked cylindrical shell. The tenth-order differential equations are used that take into account the transverse shear deformation. The perturbation of a curvature parameter, λ, is employed, where . The stress intensity factors for finite size cylindrical shells subjected to bending and internal pressure are evaluated. Sufficient accuracy can be obtained without using fine mesh sizes in regions near the crack tip. Also analyzed are the influence of cylinder diameter and shearing stiffness on bulging.