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   108166篇
  免费   8384篇
  国内免费   9026篇
  125576篇
  2024年   240篇
  2023年   1419篇
  2022年   3263篇
  2021年   5518篇
  2020年   3780篇
  2019年   4692篇
  2018年   4438篇
  2017年   3245篇
  2016年   4599篇
  2015年   6687篇
  2014年   7865篇
  2013年   8306篇
  2012年   9990篇
  2011年   8982篇
  2010年   5551篇
  2009年   4984篇
  2008年   5717篇
  2007年   5134篇
  2006年   4462篇
  2005年   3493篇
  2004年   2968篇
  2003年   2721篇
  2002年   2274篇
  2001年   1866篇
  2000年   1698篇
  1999年   1670篇
  1998年   1036篇
  1997年   1001篇
  1996年   941篇
  1995年   821篇
  1994年   787篇
  1993年   617篇
  1992年   818篇
  1991年   617篇
  1990年   466篇
  1989年   443篇
  1988年   354篇
  1987年   344篇
  1986年   266篇
  1985年   286篇
  1984年   156篇
  1983年   161篇
  1982年   99篇
  1981年   85篇
  1980年   60篇
  1979年   77篇
  1977年   59篇
  1975年   56篇
  1974年   52篇
  1973年   56篇
排序方式: 共有10000条查询结果,搜索用时 15 毫秒
991.
992.
Guo P  Su Y  Cheng Q  Pan Q  Li H 《Carbohydrate research》2011,(7):986-990
The 1:1 inclusion complex of β-cyclodextrin and p-aminobenzoic acid was prepared and characterized by TG-DTA. The crystal structure of the complex was solved directly from powder X-ray diffraction data using the direct space approach and refined using Rietveld refinement techniques. The complex crystallizes in monoclinic P21 space group, with unit cell parameters a = 20.7890 ?, b = 10.2084 ?, c = 15.1091 ?, β = 110.825°, V = 2997 ?3. The amino group is located at the wide side of the β-cyclodextrin cavity, forming hydrogen bonds with β-cyclodextrin, and the carboxyl group is located at the narrow side. The crystallographic data obtained from powder diffraction data were compared with the single crystallographic data, and the result shows that solving crystal structure of cyclodextrins inclusion complexes of such complexity is accessible to powder diffractionists to some extent.  相似文献   
993.
Soluble microbial products (SMPs) are considered as the main organic components in wastewater treatment plant effluent from biological wastewater treatment systems. To investigate and explore SMP metabolism pathway for further treatment and control, two innovative mechanistically based activated sludge models were developed by extension of activated sludge model no.3 (ASM3). One was the model by combining SMP formation and degradation (ASM3-SMP model) processes with ASM3, and the other by combining both SMP and simultaneous substrate storage and growth (SSSG) mechanisms with ASM3 (SSSG-ASM3-SMP model). The detailed schematic modification and process supplements were introduced for comprehensively understanding all the mechanisms involved in the activated sludge process. The evaluations of these two models were demonstrated by a laboratory-scale sequencing batch reactor (SBR) operated under aerated/non-aerated conditions. The simulated and measured results indicated that SMP comprised about 83% of total soluble chemical oxygen demand (SCOD) in which biomass-associated products (BAPs) were predominant compared with utilization-associated products (UAPs). It also elucidated that there should be a minimum SMP value as the reactive time increases continuously and this conclusion could be used to optimize effluent SCOD in activated sludge processes. The comparative results among ASM3, ASM3-SMP and SSSG-ASM3-SMP models and the experimental measurements (SCOD, ammonia and nitrate nitrogen) showed clearly the best agreement with SSSG-ASM3-SMP simulation values (R = 0.993), strongly suggesting that both SMP formation and degradation and SSSG mechanisms are necessary in biologically activated sludge modeling for municipal wastewater treatment.  相似文献   
994.
Zhang W  Yue B  Wang X  Zhang X  Xie Z  Liu N  Fu W  Yuan Y  Chen D  Fu D  Zhao B  Yin Y  Yan X  Wang X  Zhang R  Liu J  Li M  Tang Y  Hou R  Zhang Z 《Molecular biology reports》2011,38(7):4257-4264
In order to investigate the mitochondrial genome of Panthera tigris amoyensis, two South China tigers (P25 and P27) were analyzed following 15 cymt-specific primer sets. The entire mtDNA sequence was found to be 16,957 bp and 17,001 bp long for P25 and P27 respectively, and this difference in length between P25 and P27 occurred in the number of tandem repeats in the RS-3 segment of the control region. The structural characteristics of complete P. t. amoyensis mitochondrial genomes were also highly similar to those of P. uncia. Additionally, the rate of point mutation was only 0.3% and a total of 59 variable sites between P25 and P27 were found. Out of the 59 variable sites, 6 were located in 6 different tRNA genes, 6 in the 2 rRNA genes, 7 in non-coding regions (one located between tRNA-Asn and tRNA-Tyr and six in the D-loop), and 40 in 10 protein-coding genes. COI held the largest amount of variable sites (9 sites) and Cytb contained the highest variable rate (0.7%) in the complete sequences. Moreover, out of the 40 variable sites located in 10 protein-coding genes, 12 sites were nonsynonymous.  相似文献   
995.
【目的】为了鉴定植原体tRNA异戊烯基焦磷酸转移酶基因(tRNA-ipt)的表达及蛋白功能,探索植原体致病机理。【方法】对泡桐丛枝、桑萎缩、长春花绿变及苦楝丛枝植原体tRNA-ipt基因完整序列进行PCR扩增和生物信息学分析。对泡桐丛枝植原体tRNA-ipt基因进行原核表达并制备抗体。利用Western blot和FITC间接免疫荧光显微镜检测其在植原体中的表达。使用分光光度计分析该基因对大肠杆菌生长的影响,用ELISA测定转化菌株细胞分裂素含量。【结果】首次发现泡桐丛枝、桑萎缩、长春花绿变及苦楝丛枝植原体中完整tRNA-ipt基因,大小为876 bp,编码291个氨基酸,且N端均含有ATP/GTP结合位点保守序列(GPTASGKT)。4种植原体tRNA-IPT之间的氨基酸序列相似率为99.1%-99.5%,与同组植原体同源性在95.4%-99.3%,与其他组植原体同源性低于70%。SDS-PAGE结果显示tRNA-IPT蛋白在大肠杆菌中得到表达。首次获得泡桐丛枝植原体tRNA-IPT抗体并检测到该蛋白在泡桐发病组织中的特异表达。经过对转化菌株生长曲线及玉米素含量的测定,发现该基因能促进大肠杆菌后期生长和玉米素核苷的积累。【结论】4种植原体tRNA-ipt基因编码相同特性的功能蛋白,泡桐丛枝植原体tRNA-IPT蛋白能够在植原体中表达,根据该基因对异源菌株生长速率和激素合成的影响推断该蛋白可能参与植原体的细胞分裂素合成,在致病过程中起到重要作用。  相似文献   
996.
地上部植食者褐飞虱对不同水稻品种土壤线虫群落的影响   总被引:2,自引:0,他引:2  
地上和地下部生物群落的交互作用对于调控陆地生态过程具有重要作用。在盆栽条件下利用2×2析因设计研究了褐飞虱(Nilaparvata lugens)取食不同水稻品种后对土壤线虫群落的影响。结果表明, 褐飞虱侵害水稻9 d后, 感虫品种(广四和汕优63)的土壤线虫总数、属数及自生线虫(食细菌线虫、食真菌线虫和捕食性线虫)数量增加, 并且一般达到显著水平(P<0.05); 而上述指标在抗虫品种(汕优559和IR36)土壤中则呈现相反的趋势。植食性线虫数量在强感虫品种广四上显著增加(P<0.05), 而在强抗虫品种IR36上显著减少(P<0.05)。褐飞虱和水稻品种对土壤线虫的生态指数(线虫通道指数、Shannon-Wiener指数、成熟度指数、富集指数和结构指数)没有明显影响, 可能与供试土壤线虫群落组成单一及褐飞虱作用时间较短有关。总之, 褐飞虱强烈影响土壤线虫数量、群落组成和营养结构, 并且作用的方向(促进或抑制)和程度依赖于水稻的品种特性, 揭示出地上部植食者的短期侵害将对稻田土壤生态系统的结构和功能产生深远影响。  相似文献   
997.
The driving forces for the regulation of cell morphology are the Rho family GTPases that coordinate the assembly of the actin cytoskeleton. This dynamic feature is a result of tight coupling between the cytoskeleton and signal transduction and is facilitated by actin-binding proteins (ABPs). Mutations in the actin bundling and PDZ domain-containing protein harmonin are the causes of Usher syndrome type 1C (USH1C), a syndrome of congenital deafness and progressive blindness, as well as certain forms of non-syndromic deafness. Here, we have used the yeast two-hybrid assay to isolate molecular partners of harmonin and identified DOCK4, an unconventional guanine exchange factor for the Rho family of guanosine triphosphatases (Rho GEF GTPases), as a protein interacting with harmonin. Detailed molecular analysis revealed that a novel DOCK4 isoform (DOCK4-Ex49) is expressed in the brain, eye and inner ear tissues. We have further provided evidence that the DOCK4-Ex49 binds to nucleotide free Rac as effectively as DOCK2 and DOCK4 and it is a potent Rac activator. By immunostaining using a peptide antibody specific to DOCK4-Ex49, we showed its localization in the inner ear within the hair bundles along the stereocilia (SC). Together, our data indicate a possible Rac-DOCK4-ABP harmonin-activated signaling pathway in regulating actin cytoskeleton organization in stereocilia.  相似文献   
998.
水稻白叶枯病广谱抗性基因Xa21导入两用不育系培矮64S   总被引:17,自引:0,他引:17  
以克隆的Xa21基因为外源基因,成熟胚愈伤组织为转化受体,应用农杆菌介导法对水稻两用型核不育系培矮64S进行转化,获46株转基因植株。PCR和Southern分析结果表明,Xa21已整合到受体基因组。用稻白叶枯病病原菌(Xanthomonasoryzaepv.oryzae)菲律宾小种6号接种鉴定,结果表明大多数转基因植株获得了抗病性。已整合的Xa21基因能够稳定地遗传,在所检测转基因株系的T1代中,Xa21基因显示3:1的分离。  相似文献   
999.
珠江口水体的光学特征及分析   总被引:3,自引:0,他引:3  
通过2003年1月份对珠江口水体中的光谱分布,衰减系数,光反射率以及浮游植物对光吸收的研究结果显示:红光、蓝光衰减较快,绿光衰减较小,越向水体下层,绿光的相对含量越大,这主要是由于浮游植物在蓝光和红光波段处有吸收峰以及非藻颗粒对蓝紫光吸收较多的缘故;从总体来讲,绿光的辐亮度漫反射率(Lu/Ed)较蓝光和红光大:在上层水体中有一个反射强度较大的区域,可能是由于浮游植物在这一层的分布较多。  相似文献   
1000.
Pyrrolysine, the 22nd amino acid, is encoded by amber (TAG = UAG) codons in certain methanogenic archaea and bacteria. PylS, the pyrrolysyl-tRNA synthetase, ligates pyrrolysine to tRNAPyl for amber decoding as pyrrolysine. PylS and tRNAPyl have potential utility in making tailored recombinant proteins. Here, we probed interactions necessary for recognition of substrates by archaeal PylS via synthesis of close pyrrolysine analogs and testing their reactivity in amino acid activation assays. Replacement of the methylpyrroline ring of pyrrolysine with cyclopentane indicated that solely hydrophobic interactions with the ring-binding pocket of PylS are sufficient for substrate recognition. However, a 100-fold increase in the specificity constant of PylS was observed with an analog, 2-amino-6-((R)-tetrahydrofuran-2-carboxamido)hexanoic acid (2Thf-lys), in which tetrahydrofuran replaced the pyrrolysine methylpyrroline ring. Other analogs in which the electronegative atom was moved to different positions suggested PylS preference for a hydrogen-bond-accepting group at the imine nitrogen position in pyrrolysine. 2Thf-lys was a preferred substrate over a commonly employed pyrrolysine analog, but the specificity constant for 2Thf-lys was 10-fold lower than for pyrrolysine itself, largely due to the change in Km. The in vivo activity of the analogs in supporting UAG suppression in Escherichia coli bearing genes for PylS and tRNAPyl was similar to in vitro results, with l-pyrrolysine and 2Thf-lys supporting the highest amounts of UAG translation. Increasing concentrations of either PylS substrate resulted in a linear increase in UAG suppression, providing a facile method to assay bioactive pyrrolysine analogs. These results illustrate the relative importance of the H-bonding and hydrophobic interactions in the recognition of the methylpyrroline ring of pyrrolysine and provide a promising new series of easily synthesized pyrrolysine analogs that can serve as scaffolds for the introduction of novel functional groups into recombinant proteins.  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