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41.
对重组荧光素酶大肠杆菌菌株M15/pQE30-luc进行了表达条件的优化研究。单因素结果表明:在初始pH值7.0,装液量为20%,2%的接种量,终浓度为0.5mmol/L的IPTG,添加10—30mmol/L的Mg^2+,摇床转速为200r/min,37℃诱导3.5h酶的表达量最高。正交试验结果表明:初始pH值为7.0,添加40mmol/LMg^2=,接种量2%,装液量为20%时表达量最高,比酶活达1.63×10^8RFU/mg蛋白。  相似文献   
42.
用正交试验法优选二化螟人工饲料配方   总被引:1,自引:2,他引:1  
刘慧敏  张国安 《昆虫知识》2007,44(5):754-757
采用15因子2水平正交试验,优选出1种二化螟Chilo suppressalis(Walker)人工饲料配方,筛选出影响二化螟发育的5个关键因子,分别是稻茎粉、麦芽粉、稻糠粉、酵母粉和蔗糖。其中稻茎粉、麦芽粉、酵母粉和稻糠粉影响二化螟的幼虫成活率,蔗糖和麦芽粉影响二化螟的幼虫历期,稻茎粉影响二化螟的蛹重。  相似文献   
43.
孙伟  林刚  罗杰  何光源 《生物技术》2004,14(4):53-56
以陈年小麦离体胚为外植体,MS培养基为基本培养基,附加5种植物生长物质2,4-D、NAA、KT、6-BA、GA3进行单因子和正交试验,研究植物生长物质在陈年小麦离体胚萌发中的作用。单因子试验结果表明:单独使用6-BA 1.0mg/L、GA3 2.5mg/L均能在一定程度上促进陈年小麦离体胚出芽和生根,出芽率分别为70.0%和77.5%,比对照分别提高了21.7%和29.2%;生根率分别为63.3%和72.2%,比对照分别提高了21.3%和30.2%。正交试验结果显示GA3对陈年小麦离体胚的萌发影响显著,最佳植物生长物质组合为2,4-D2.0mg/L NAA 1.1mg/L 6-BA0.5mg/L GA3 4.0mg/L,出芽率为82.5%,生根率为60.0%,比对照分别提高了32.5%和17.5%。  相似文献   
44.
以快生型大豆根瘤菌HH103菌株为供试菌株,采用单因素碳氮源利用试验和正交设计试验,确定最佳培养基及其配方。结果表明:该菌株在YMA中生长良好,最佳碳源为蔗糖,最佳氮源为酵母膏,最佳培养基成分配方(g/L):蔗糖11,酵母膏0.9,K2HPO4 0.5,MnSO4 0.005,CaCl2 0.1,KH2PO4 0.5,MgSO4 0.2,KNO30.77,(NH4)2HPO4 0.33,FeCl3 0.005,pH 7.2。  相似文献   
45.
Alternative proofs of some of KSHIRSAGAR's (1971) results on testing discriminant functions or canonical variables in the vector space of fixed variates are given. These results are derived in terms of the original variates unlike KSHIRSAGAR (1971) who derives the results by using random orthogonal transformations and triangular decompositions of the original matrix variates.  相似文献   
46.
In the present investigation Thalassospira frigidphilosprofundus, a novel species from the deep waters of the Bay of Bengal, was explored for the production of cold-active β-galactosidase by submerged fermentation using marine broth medium as the basal medium. Effects of various medium constituents, namely, carbon, nitrogen source, pH, and temperature, were investigated using a conventional one-factor-at-a-time method. It was found that lactose, yeast extract, and bactopeptones are the most influential components for β-galactosidase production. Under optimal conditions, the production of β-galactosidase was found to be 3,864 U/mL at 20 ± 2°C, pH 6.5 ± 0.2, after 48 hr of incubation. β-Galactosidase production was further optimized by the Taguchi orthogonal array design of experiments and the central composite rotatable design (CCRD) of response surface methodology. Under optimal experimental conditions the cold-active β-galactosidase enzyme production from Thalassospira frigidphilosprofundus was enhanced from 3,864 U/mL to 10,657 U/mL, which is almost three times higher than the cold-active β-galactosidase production from the well-reported psychrophile Pseudoalteromonas haloplanktis.  相似文献   
47.
In a recent study we investigated the complex mechanisms regulating the pollen release via thigmonastic stamen movement found exclusively in Loasaceae subfamily Loasoideae. We demonstrated that stamen movement is modulated by abiotic (light and temperature) as well as biotic stimuli (pollinator availability and visitation frequency). This is explained as a mechanism to adjust the rate of stamen movement and thus pollen dispensation to different environmental conditions in order to optimize pollen transfer. Stamen movement is rapid and thus a near-immediate response to pollinator visits. However, Loasaceae flowers also show a response to biotic stimuli on a longer time scale, by adjusting the duration of both the staminate and the carpellate phase of the anthesis. We here present two additional data sets on species not previously studied, underscoring the shortening of the staminate phase in the presence of pollinator visits vs. their absence and the shortening of the carpellate phase after pollination. Overall, the plant shows not only a rapid but an “intelligent” reaction to its environment in adjusting anthesis and pollen presentation to a range of factors. The physiological and morphological bases of the stamen movement are poorly understood. Our previous study showed that there is no direct spatial relationship between the place of stimulation in the flower and the stamen bundle activated. We here further show the morphological basis for stamen movement from a reflexed into an erect position: Only the basal part of the filament curves around the receptacle, while the upper part of the filament retains its shape. We hypothesize that the stimulus is transmitted over the entire receptacle and the place of reaction is determined by stamen maturity, not the location of the stimulus.  相似文献   
48.
以总生物碱提取率为指标,先用正交试验优化两面针的超声提取工艺,再动态过程精选提取工艺。最佳工艺条件为:复合酶预处理后,以体积分数60%乙醇(盐酸5 g/L)超声(250 W)提取3次,第1次以10倍量溶剂提取15 min,第2次以4倍量溶剂提取12 min,第3次以3倍量溶剂提取9 min,总生物碱提取率87.80%。该工艺高效、节能、省时,为工业生产奠定了实验基础。  相似文献   
49.
本文研究复方四参颗粒剂的提取工艺,采用正交试验法,以丹酚酸B提取率和干膏得率为指标,考察加水量、煎煮时间和煎煮次数对提取效果的影响,确立了复方四参颗粒剂的最佳提取工艺为:加8倍量水,提取2次,第一次时间为2 h,第二次为1 h。在最佳提取工艺条件下,干膏得率为16.58%,丹酚酸B的平均量为22.42mg。与正交试验的结果相符,说明该提取方法合理、稳定、可行。  相似文献   
50.
The aim of this work is to optimize a spectrofluorimetric method for the determination of cefdinir (CFN) using the Taguchi method. The proposed method is based on the oxidative coupling reaction of CFN and cerium(IV) sulfate. The quenching effect of CFN on the fluorescence of the produced cerous ions is measured at an emission wavelength (λem) of 358 nm after excitation (λex) at 301 nm. The Taguchi orthogonal array L9 (34) was designed to determine the optimum reaction conditions. The results were analyzed using the signal‐to‐noise (S/N) ratio and analysis of variance (ANOVA). The optimal experimental conditions obtained from this study were 1 mL of 0.2% MBTH, 0.4 mL of 0.25% Ce(IV), a reaction time of 10 min and methanol as the diluting solvent. The calibration plot displayed a good linear relationship over a range of 0.5–10.0 µg/mL. The proposed method was successfully applied to the determination of CFN in bulk powder and pharmaceutical dosage forms. The results are in good agreement with those obtained using the comparison method. Finally, the Taguchi method provided a systematic and efficient methodology for this optimization, with considerably less effort than would be required for other optimizations techniques. Copyright © 2015 John Wiley & Sons, Ltd.  相似文献   
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