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   7429篇
  免费   1051篇
  2023年   39篇
  2022年   18篇
  2021年   171篇
  2020年   108篇
  2019年   141篇
  2018年   158篇
  2017年   120篇
  2016年   231篇
  2015年   374篇
  2014年   427篇
  2013年   464篇
  2012年   664篇
  2011年   650篇
  2010年   435篇
  2009年   356篇
  2008年   456篇
  2007年   506篇
  2006年   511篇
  2005年   525篇
  2004年   468篇
  2003年   378篇
  2002年   411篇
  2001年   52篇
  2000年   37篇
  1999年   68篇
  1998年   75篇
  1997年   47篇
  1996年   41篇
  1995年   42篇
  1994年   40篇
  1993年   41篇
  1992年   47篇
  1991年   22篇
  1990年   24篇
  1989年   27篇
  1988年   21篇
  1987年   29篇
  1986年   24篇
  1985年   19篇
  1984年   18篇
  1983年   12篇
  1982年   20篇
  1981年   17篇
  1980年   21篇
  1979年   16篇
  1978年   13篇
  1977年   13篇
  1976年   13篇
  1974年   10篇
  1973年   10篇
排序方式: 共有8480条查询结果,搜索用时 15 毫秒
11.
12.
This paper defines a collection of Drosophila deletion mutations (deficiencies) that can be systematically screened for embryonic phenotypes, orphan receptor ligands, and genes affecting protein localization. It reports the results of deficiency screens we have conducted that have revealed new axon guidance phenotypes in the central nervous system and neuromuscular system and permitted a quantitative assessment of the number of potential genes involved in regulating guidance of specific motor axon branches. Deficiency “kits” that cover the genome with a minimum number of lines have been established to facilitate gene mapping. These kits cannot be systematically analyzed for phenotypes, however, since embryos homozygous for many deficiencies in these kits fail to develop due to the loss of key gene products encoded within the deficiency. To create new kits that can be screened for phenotype, we have examined the development of the nervous system in embryos homozygous for more than 700 distinct deficiency mutations. A kit of ∼400 deficiency lines for which homozygotes have a recognizable nervous system and intact body walls encompasses >80% of the genome. Here we show examples of screens of this kit for orphan receptor ligands and neuronal antigen expression. It can also be used to find genes involved in expression, patterning, and subcellular localization of any protein that can be visualized by antibody staining. A subset kit of 233 deficiency lines, for which homozygotes develop relatively normally to late stage 16, covers ∼50% of the genome. We have screened it for axon guidance phenotypes, and we present examples of new phenotypes we have identified. The subset kit can be used to screen for phenotypes affecting all embryonic organs. In the future, these deficiency kits will allow Drosophila researchers to rapidly and efficiently execute genome-wide anatomical screens that require examination of individual embryos at high magnification.  相似文献   
13.
14.
15.
16.
6(5)carboxyfluorescein (6(5)CF), a polar fluorescein with an apparent pK of 6.3, was introduced, as a pH 6.3 solution, into the apoplast of lamina or petioles of mature soybean leaves. Freehand sections were prepared at various times and immediately observed with a fluorescence microscope. 6(5)CF-associated fluorescence appeared in all sink organs, from shoot apex to roots. It was strictly confined to the phloem regions, even after 4 days. Its transport into young leaves ceased at approximately the time they underwent sink-to-source transition. It was never transported between two leaflets of the same leaf. Its transport was interrupted by phloem destruction. All these transport characteristics were highly reproducible, and were paralleled by those of 14C transport after application of (14C)sucrose to leaf surfaces. In contrast with 6(5)CF, fluorescein was transported between mature leaves, and between leaflets of the same leaf. It was not restricted to phloem, and often appeared in the xylem region. These results indicate that 6(5)CF can be used to monitor phloem sap translocation in real time, in short- and long-term experiments.  相似文献   
17.
18.
19.
20.
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