983 resultados para 332.415


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集胞藻(Synechocystis sp.)6803的未知功能基因中有很多是细胞的基本生命活动所需要的,这些基因插入失活往往会导致细胞死亡,因而得不到分离完全的突变株,难以进行遗传学研究。构建突变株以铜离子调控的启动子PpetE来控制此类未知功能基因的表达则可能获得完全分离。构建PpetE-sll0260突变株并对sll0260必要作用进行研究。在完全分离的突变株中,去除铜离子可关闭sll0260的表达。此时,突变株生长受到严重抑制,色素含量大为降低,类囊体膜结构破坏,光合作用消失,呼吸能力下降。这些结果

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利用活体观察、蛋白银染色技术对1种海水腹毛目纤毛虫—红色伪角毛虫Pseudokeronopsis rubra的青岛种群之活体形态和纤毛图式做了研究。其特征如下:虫体呈长带状,尾钝圆,身体柔软,高度可曲;皮层颗粒棕黄色,主要呈玫瑰花形分布,其余散布;表膜下具另1种无色、双面凹形颗粒。口围带小膜数为48~55;左、右缘棘毛各1列,中腹棘毛排成典型的锯齿状并延伸至横棘毛附近;额棘毛无明确分化,呈冠状排布并与中腹棘毛列相连续;口棘毛1根,额前棘毛2根;背触毛4列。大核90~140枚。伸缩泡位于体后左侧1/3处。经

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This paper considers the estimation of statistics of displacement of a vibrating rectangular plate with random wave scatterers. The influence of uncertainty is investigated using point impedance theory. Coherent boundary effects are seen, which decrease when the number of scatterers increases. The boundary effect is investigated using images and the first side and corner reflections are found to be a minimum requirement to estimate the spatial correlation. Statistics for point driven response are investigated under the assumption that the statistics of the natural frequencies follow those of the Gaussian Orthogonal Ensemble (GOE). The estimates are compared with Monte Carlo simulation results, and they show good agreement. © 2012 Elsevier Ltd. All rights reserved.

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研究了不同培养温度下对念珠藻葛仙米的生长和相关生理生化特性的变化。结果表明,低温抑制葛仙米的生长,在2℃~5℃低温下其生长甚至完全停止;在10℃低温胁迫下,其生长延滞期变长,其后仍能保持正常生长。低温胁迫下,葛仙米光合系统II(PSII)的光合效率(Fv/Fm)的变化趋势与生长曲线相似;细胞电解质渗透率在低温胁迫初期尚能保持比较低的水平,但随着时间延长而升高;可溶性糖和还原性糖含量的变化则随胁迫加剧有不同程度升高。可溶性蛋白含量则在低温下保持比较低的水平。这些结果表明,低温对葛仙米的生长和光合作用具有抑制

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中国科学院知识创新工程重要方向项目(KSCX2-SW-332)

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在集胞藻PCC6803中,基因敲除是研究基因功能的最直接有效的方法,但是对于某些生存必需的基因则无法通过这种方法获得突变株。为研究集胞藻PCC6803中此类基因的功能,在其基因组中构建了一个petE基因启动子(PpetE)控制的铜离子诱导表达的平台。将集胞藻PpetE装配在lacZ报告基因的上游,通过同源双交换整合到这种蓝藻的基因组中。通过调节培养基中铜离子的浓度发现,lacZ的表达能够人为控制。特别是当铜离子浓度在6—400nmol/L范围时,LacZ活力随铜离子浓度增加呈S型增长关系。利用这个铜离子诱

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土壤酶是土壤内存在的具有生物活性的蛋白质,土壤是土壤酶的良好介质,为各种酶类提供酶促条件,且土壤成分与酶通过共价键、离子键或氢键等方式的吸附结合作用,能防止酶的钝化失活。目前已发现的土壤酶约60种,主要来自于土壤微生物,土壤酶的主要作用是参与C、N、P、S等重要营养元素的循环,在植物营养物质的转化中起着重要作用,它与土壤微生物一起共同推动土壤生物化学的全过程,土壤酶活性作为土壤质量的生物活性指标已被广泛接受。我国对土壤酶的研究始于20世纪60年代,20世纪80年代后,随着环境科学的发展,土壤酶研究越来越受

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应用CB-HRP溶液注入母鸡输卵管子宫部浆膜下,四甲基联苯胺(TMB)组织化学呈色,以探察母鸡输卵管子宫部初级感觉神经元的定位。结果表明:母鸡输卵管子宫部的初级感觉神经元位于双侧T1-LS13脊神经节、颈静脉神经节和结状神经节。标记细胞数分布不均,在体左侧多于体右侧,在脊神经节多于颈静脉神经节和结状神经节。在脊神经节内标记细胞有T5-LS1和LS8-LS11前后两个相对集中区,峰值分别在T7和LS11。说明尽管母鸡输卵管子宫部是单侧发育成熟脏器,但其感觉沿双侧脊神经和迷走神经传入中枢,以体左侧传入为主;且

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研究测定了发菜(NostocflagelliformeBorn.etFlah.)细胞在不同培养基中的生长速率、光合作用和叶绿素荧光活性。结果显示培养11d后:Detmer培养基中叶绿素a的含量为1.08mg/L,Kratz-Myers培养基中叶绿素a的含量为1.87mg/L,水生104号培养基中叶绿素a的含量为1.21mg/L,BG11培养基中叶绿素a的含量为2.18mg/L,表明在BG11培养基中培养的细胞具有最高生长速率;与另外4种不同浓度的BG11培养基相比,上述BG11培养基培养的发菜具有最大的光

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中国科学院知识创新工程重大项目(KZCX1 SW 12 ) ; 国家重大环境课题“滇池蓝藻水华污染控制技术研究”(K99 0 5 3 5 0 1); 973项目(2 2 0 2CB412 3 0 0 ); 中国科学院方向性创新课题(2 2 0 3 16)资助

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An existing hybrid finite element (FE)/statistical energy analysis (SEA) approach to the analysis of the mid- and high frequency vibrations of a complex built-up system is extended here to a wider class of uncertainty modeling. In the original approach, the constituent parts of the system are considered to be either deterministic, and modeled using FE, or highly random, and modeled using SEA. A non-parametric model of randomness is employed in the SEA components, based on diffuse wave theory and the Gaussian Orthogonal Ensemble (GOE), and this enables the mean and variance of second order quantities such as vibrational energy and response cross-spectra to be predicted. In the present work the assumption that the FE components are deterministic is relaxed by the introduction of a parametric model of uncertainty in these components. The parametric uncertainty may be modeled either probabilistically, or by using a non-probabilistic approach such as interval analysis, and it is shown how these descriptions can be combined with the non-parametric uncertainty in the SEA subsystems to yield an overall assessment of the performance of the system. The method is illustrated by application to an example built-up plate system which has random properties, and benchmark comparisons are made with full Monte Carlo simulations. © 2012 Elsevier Ltd. All rights reserved.

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This paper presents a novel, three-dimensional, single-pile model, formulated in the wavenumber domain and adapted to account for boundary conditions using the superposition of loading cases. The pile is modelled as a column in axial vibration, and a Euler-Bernoulli beam in lateral vibration. The surrounding soil is treated as a viscoelastic continuum. The response of the pile is presented in terms of the stiffness and damping coefficients, and also the magnitude and phase of the pile-head frequency-response function. Comparison with existing models shows that excellent agreement is observed between this model, a boundary-element formulation, and an elastic-continuum-type formulation. This three-dimensional model has an accuracy equivalent to a 3D boundary-element model, and a runtime similar to a 2D plane-strain analytical model. Analysis of the response of the single pile illustrates a difference in axial and lateral vibration behaviour; the displacement along the pile is relatively invariant under axial loads, but in lateral vibration the pile exhibits localised deformations. This implies that a plane-strain assumption is valid for axial loadings and only at higher frequencies for lateral loadings. © 2013 Elsevier Ltd.