首页 | 本学科首页   官方微博 | 高级检索  
文章检索
  按 检索   检索词:      
出版年份:   被引次数:   他引次数: 提示:输入*表示无穷大
  收费全文   473篇
  免费   33篇
  国内免费   26篇
  532篇
  2024年   2篇
  2023年   9篇
  2022年   22篇
  2021年   24篇
  2020年   19篇
  2019年   14篇
  2018年   23篇
  2017年   12篇
  2016年   18篇
  2015年   21篇
  2014年   36篇
  2013年   45篇
  2012年   25篇
  2011年   32篇
  2010年   17篇
  2009年   20篇
  2008年   26篇
  2007年   33篇
  2006年   26篇
  2005年   24篇
  2004年   11篇
  2003年   15篇
  2002年   10篇
  2001年   6篇
  2000年   8篇
  1999年   6篇
  1998年   3篇
  1997年   4篇
  1996年   2篇
  1995年   1篇
  1994年   3篇
  1993年   4篇
  1992年   1篇
  1991年   1篇
  1990年   3篇
  1988年   1篇
  1985年   1篇
  1983年   1篇
  1980年   1篇
  1979年   2篇
排序方式: 共有532条查询结果,搜索用时 0 毫秒
1.
《Developmental cell》2022,57(14):1694-1711.e7
  1. Download : Download high-res image (191KB)
  2. Download : Download full-size image
  相似文献   
2.
3.
Many N2-fixing organisms can turn off nitrogenase activity in the presence of NH4 + and turn it on again when the NH4 + is exhausted. One of the most interesting systems for accomplishing this is by covalent modification of one subunit of dinitrogenase reductase by dinitrogenase reductase ADP-ribosyltransferase (DRAT). The system can be reactivated when NH4 + is exhausted, by dinitrogenase reductase activating glycohydrolase (DRAG) which removes the inactivating group. It is fascinating that some species of the genusAzospirillum possess the DRAT and DRAG systems (A. lipoferum andA. brasilense), whereasA. amazonense in the same genus lacks DRAT and DRAG.A. amazonense responds to NH4 + but does not exhibit modification of dinitrogenase reductase characteristic of the action of DRAT. However, it has been possible to clone DRAT and DRAG and to introduce them intoA. amazonense, whereupon they become functional in this organism. The DRAT and DRAG system does not appear to function inAcetobacter diazotrophicus, an organism isolated from sugar cane, that fixes N2 at a pH as low as 3.0.A. diazotrophicus does show a rather sluggish response to NH4 +. A level of about 10 M NH4 + is required to switch off the system. The response to NH4 + is influenced by the dissolved oxygen concentration (DOC) as has been reported forAzospirillum sp. A DOC in equilibrium with 0.1 to 0.2 kPa O2 seems optimal for the response inA. diazotrophicus.  相似文献   
4.
5.
Summary Somatic polyploidy of species-specific and tissue-specific degrees occurs in almost all plant species studied so far, but nearly nothing is known about the control mechanisms switching the mitotic cycle to an endoreduplication cycle. In order to search for a possible role of the cdc2 kinase, cell suspension cultures of the Runner bean, Phaseolus coccineus (Leguminosae) were treated with K-252a, an inhibitor of protein kinase activity. The treatment resulted in continuous cell cycles without mitosis, and hence induced polyploidy levels up to 2048C. It is, therefore, suggested that phosphorylation of a protein kinase, probably of the cell cycle-important p34cdc2 type, is involved in the control of endoreduplication.  相似文献   
6.
With multiple applications in food, pharmaceutical, and chemical industries as antioxidant or nonmetabolizable sweetener; the bioproduction of d -mannitol is gaining global attention, especially with photosynthetic organisms as hosts. Considering the sustainability prospects, the current work encompasses metabolic engineering of a widely used cyanobacterial strain, Synechococcus elongatus PCC 7942, and two newly isolated fast-growing cyanobacterial strains; S. elongatus PCC 11801 and S. elongatus PCC 11802, for mannitol production. We engineered these strains with a two-step pathway by cloning genes for mannitol-1-phosphate dehydrogenase (mtlD) and mannitol-1-phosphatase (mlp), where the mtlD expression was under the control of different promoters from PCC 7942, namely, Prbc225, PcpcB300, PcpcBm1, PrbcLm17, and PrbcLm15. The strains were tested under the “switch conditions,” where the growth conditions were switched after the first 3 days, thereby resulting in differential promoter activity. Among the engineered strains of PCC 11801 and PCC 11802, the strains possessing Prbc225-mtlD module produced relatively high mannitol titers of 401 ± 18 mg/L and 537 ± 18 mg/L, respectively. The highest mannitol titer of 701 ± 15 mg/L (productivity 60 mg/L.d, yield 895 µM/OD730) was exhibited by the engineered strain of PCC 7942 expressing PcpcB300-mtlD module. It is by far the highest obtained mannitol yield from the engineered cyanobacteria.  相似文献   
7.
Poly(sarcosine) displayed on polymeric micelle is reported to trigger a T cell‐independent type2 reaction with B1a cells in the mice to produce IgM and IgG3 antibodies. In addition to polymeric micelle, three kinds of vesicles displaying poly(sarcosine) on surface were prepared here to evaluate the amounts and avidities of IgM and IgG3, which were produced in mice, to correlate them with physical properties of the molecular assemblies. The largest amount of IgM was produced after twice administrations of a polymeric micelle of 35 nm diameter ( G1 ). On the other hand, the production amount of IgG3 became the largest after twice administrations of G3 (vesicle of 229 nm diameter) or G4 (vesicle of 85 nm diameter). The augmented avidity of IgG3 after the twice administrations compared with that at the single administration was the highest with G3 . These differences in immune responses are discussed in terms of surface density of poly(sarcosine) chains, nanoparticle size, hydrophobic component of poly(L‐lactic acid) or (Leu‐ or Val‐Aib)n, and membrane elasticity of the nanoparticles. Copyright © 2017 European Peptide Society and John Wiley & Sons, Ltd.  相似文献   
8.
Tracking trends in the abundance of wildlife populations is a sensitive method for assessing biodiversity change due to the short time‐lag between human pressures and corresponding shifts in population trends. This study tests for proposed associations between different types of human pressures and wildlife population abundance decline‐curves and introduces a method to distinguish decline trajectories from natural fluctuations in population time‐series. First, we simulated typical mammalian population time‐series under different human pressure types and intensities and identified significant distinctions in population dynamics. Based on the concavity of the smoothed population trend and the algebraic function which was the closest fit to the data, we determined those differences in decline dynamics that were consistently attributable to each pressure type. We examined the robustness of the attribution of pressure type to population decline dynamics under more realistic conditions by simulating populations under different levels of environmental stochasticity and time‐series data quality. Finally, we applied our newly developed method to 124 wildlife population time‐series and investigated how those threat types diagnosed by our method compare to the specific threatening processes reported for those populations. We show how wildlife population decline curves can be used to discern between broad categories of pressure or threat types, but do not work for detailed threat attributions. More usefully, we find that differences in population decline curves can reliably identify populations where pressure is increasing over time, even when data quality is poor, and propose this method as a cost‐effective technique for prioritizing conservation actions between populations.  相似文献   
9.
莽草酸是大肠杆菌合成芳香族氨基酸的中间代谢物,也是抗流感药物"达菲"的重要合成前体。合成莽草酸需要截断莽草酸途径,导致芳香族氨基酸无法合成,因此面临细胞生长受到抑制的问题。使用动态调控策略通过将细胞生长和莽草酸的合成相互分离,可以提高菌株的生产性能。通过使用生长偶联型启动子和降解决定子(Degrons),组建动态分子开关。利用该动态分子开关实现细胞生长与莽草酸合成分离,在5L发酵罐中经过72h发酵得到了14.33g/L的莽草酸。结果表明,这种动态分子开关可以通过调控靶蛋白丰度来改变碳流量平衡,使菌株获得更优秀的生产性能。  相似文献   
10.
张志伟  吴胜 《生物工程学报》2013,29(9):1301-1312
对生物体内已有的或者人工组装的生物合成途径进行优化操作涉及两个重要问题:代谢途径中关键酶的活性及蛋白表达水平。对于酶表达水平的研究,传统的做法是采用强启动子控制下的靶蛋白过量表达策略。靶蛋白的过量表达通常会导致细胞内积累大量的无活性包涵体,从而严重影响细胞的生理状态和相关生物途径的有效运转。针对这一问题,设计一种分子开关来精确调控生物合成过程中关键酶的表达水平,对于研究生物合成途径的代谢节律以及促进生物合成途径高效运转都具有重要的实用价值。基于细菌群落中普遍存在群感效应的基本原理并结合酶促催化的动力学特征,首先在大肠杆菌群落中建立信号分子高丝氨酸内酯(AHL)介导的细胞–细胞交流机制,将靶基因egfp置入到启动子PluxI的控制之下。在细胞生长过程中,产生的AHL累积到一定浓度启动靶基因表达。通过在细胞生长的不同阶段启动AHL降解酶AiiA的表达控制环境中信号分子AHL的浓度水平,从而控制靶基因egfp的转录效率,最终实现对靶蛋白EGFP表达水平的精确控制。通过检测细胞的生长状态、靶基因在mRNA水平、蛋白质水平的表达情况证明人工设计的分子开关可以便捷高效地控制靶基因表达水平,具有时空调节的严谨性。该分子开关有望广泛应用于代谢工程和合成生物学等研究领域中。  相似文献   
设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号