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   16767篇
  免费   1472篇
  国内免费   1445篇
  2024年   29篇
  2023年   173篇
  2022年   340篇
  2021年   633篇
  2020年   529篇
  2019年   607篇
  2018年   554篇
  2017年   444篇
  2016年   623篇
  2015年   975篇
  2014年   1120篇
  2013年   1205篇
  2012年   1553篇
  2011年   1400篇
  2010年   866篇
  2009年   797篇
  2008年   973篇
  2007年   887篇
  2006年   836篇
  2005年   734篇
  2004年   645篇
  2003年   580篇
  2002年   507篇
  2001年   235篇
  2000年   207篇
  1999年   207篇
  1998年   191篇
  1997年   152篇
  1996年   120篇
  1995年   123篇
  1994年   136篇
  1993年   89篇
  1992年   99篇
  1991年   93篇
  1990年   77篇
  1989年   76篇
  1988年   56篇
  1987年   58篇
  1986年   46篇
  1985年   61篇
  1984年   59篇
  1983年   55篇
  1982年   59篇
  1981年   55篇
  1980年   57篇
  1979年   41篇
  1978年   48篇
  1977年   38篇
  1976年   44篇
  1975年   41篇
排序方式: 共有10000条查询结果,搜索用时 15 毫秒
1.
Several unit-length minicircles from the kinetoplast DNA of Leishmania tarentolae were cloned into pBR322 and into M13 phage vectors. The complete nucleotide sequences of three different partially homologous minicircles were obtained. The molecules contained a region of approx. 80% sequence homology extending for 160–270 bp and a region unique to each minicircle. A 14-mer was found to be conserved in all kinetoplast minicircle sequences reported to date. The frequency distributions of various minicircle sequence classes in L. tarentolae were obtained by quantitative gel electrophoresis and by examination of the “T ladder” patterns of minicircles randomly cloned into M13 at several sites. By these methods we could assign approx. 50% of the total minicircle DNA into a minimum of five sequence classes. A sequence-dependent polyacrylamide gel migration abnormality was observed with several minicircle fragments both cloned and uncloned. The abnormality was dependent on the presence of a portion of the conserved region of the minicircle.  相似文献   
2.
3.
4.
A tip-focused Ca^2+ gradient is tightly coupled to polarized pollen tube growth, and tip-localized influxes of extracellular Ca^2+ are required for this process. However the molecular identity and regulation of the potential Ca^2+ channels remains elusive. The present study has implicated CNGC18 (cyclic nucleotide-gated channel 18) in polarized pollen tube growth, because its overexpression induced wider and shorter pollen tubes. Moreover, CNGC18 overexpression induced depolarization of pollen tube growth was suppressed by lower extracellular calcium ([Ca^2+]ex). CNGC18-yellow fluorescence protein (YFP) was preferentially localized to the apparent post-Golgi vesicles and the plasma membrane (PM) in the apex of pollen tubes. The PM localization was affected by tip-localized ROP1 signaling. Expression of wild type ROP1 or an active form of ROP1 enhanced CNGC18-YFP localization to the apical region of the PM, whereas expression of RopGAP1 (a ROP1 deactivator) blocked the PM localization. These results support a role for PM-Iocalized CNGC18 in the regulation of polarized pollen tube growth through its potential function in the modulation of calcium influxes.  相似文献   
5.
6.
7.
Bone and tooth, fundamental parts of the craniofacial skeleton, are anatomically and developmentally interconnected structures. Notably, pathological processes in these tissues underwent together and progressed in multilevels. Extracellular vesicles (EVs) are cell-released small organelles and transfer proteins and genetic information into cells and tissues. Although EVs have been identified in bone and tooth, particularly EVs have been identified in the bone formation and resorption, the concrete roles of EVs in bone and tooth development and diseases remain elusive. As such, we review the recent progress of EVs in bone and tooth to highlight the novel findings of EVs in cellular communication, tissue homeostasis, and interventions. This will enhance our comprehension on the skeletal biology and shed new light on the modulation of skeletal disorders and the potential of genetic treatment.  相似文献   
8.
9.
10.
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