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   8659篇
  免费   827篇
  国内免费   1650篇
  2024年   29篇
  2023年   144篇
  2022年   342篇
  2021年   489篇
  2020年   395篇
  2019年   470篇
  2018年   411篇
  2017年   337篇
  2016年   362篇
  2015年   524篇
  2014年   676篇
  2013年   708篇
  2012年   838篇
  2011年   724篇
  2010年   488篇
  2009年   461篇
  2008年   475篇
  2007年   432篇
  2006年   389篇
  2005年   341篇
  2004年   350篇
  2003年   337篇
  2002年   312篇
  2001年   277篇
  2000年   186篇
  1999年   134篇
  1998年   97篇
  1997年   55篇
  1996年   76篇
  1995年   58篇
  1994年   53篇
  1993年   31篇
  1992年   19篇
  1991年   23篇
  1990年   14篇
  1989年   17篇
  1988年   9篇
  1987年   16篇
  1986年   6篇
  1985年   6篇
  1984年   4篇
  1983年   3篇
  1982年   5篇
  1981年   3篇
  1979年   3篇
  1973年   1篇
  1953年   1篇
  1950年   2篇
  1949年   1篇
  1948年   1篇
排序方式: 共有10000条查询结果,搜索用时 31 毫秒
101.
102.
103.
104.
105.
106.
Pathogens secrete a large number of effectors that manipulate host processes to create an environment conducive to pathogen colonization. However, the underlying mechanisms by which Plasmopara viticola effectors manipulate host plant cells remain largely unclear. In this study, we reported that RXLR31154, a P. viticola RXLR effector, was highly expressed during the early stages of P. viticola infection. In our study, stable expression of RXLR31154 in grapevine (Vitis vinifera) and Nicotiana benthamiana promoted leaf colonization by P. viticola and Phytophthora capsici, respectively. By yeast two-hybrid screening, the 23-kDa oxygen-evolving enhancer 2 (VpOEE2 or VpPsbP), encoded by the PsbP gene, in Vitis piasezkii accession Liuba-8 was identified as a host target of RXLR31154. Overexpression of VpPsbP enhanced susceptibility to P. viticola in grapevine and P. capsici in N. benthamiana, and silencing of NbPsbPs, the homologs of PsbP in N. benthamiana, reduced P. capcisi colonization, indicating that PsbP is a susceptibility factor. RXLR31154 and VpPsbP protein were co-localized in the chloroplast. Moreover, VpPsbP reduced H2O2 accumulation and activated the 1O2 signaling pathway in grapevine. RXLR31154 could stabilize PsbP. Together, our data revealed that RXLR31154 reduces H2O2 accumulation and activates the 1O2 signaling pathway through stabilizing PsbP, thereby promoting disease.  相似文献   
107.
108.
109.
Zhu  Lingyun  Huang  Rong  Zhou  Libin  Xi  Yilong  Xiang  Xianling 《Hydrobiologia》2021,848(20):4749-4761
Hydrobiologia - UV-B radiation is an increasing threat to aquatic organisms and also a potential driving force for zooplankton population dynamics. To explore the ecological effects of UVR on...  相似文献   
110.
The development of primordial germ cells (PGCs) undergoes epigenetic modifications. The study of histone methylation in regulating PGCs is beneficial to understand the development and differentiation mechanism of germ stem cells. Notably, it provides a theoretical basis for directed induction and mass acquisition in vitro. However, little is known about the regulation of PGC formation by histone methylation. Here, we found the high enrichment of H3K4me2 in the blastoderm, genital ridges, and testis. Chromatin immunoprecipitation sequencing was performed and the results revealed that genomic H3K4me2 is dynamic in embryonic stem cells, PGCs, and spermatogonial stem cells. This trend was consistent with the H3K4me2 enrichment in the gene promoter region. Additionally, narrow region triggered PGC‐related genes (Bmp4, Wnt5a, and Tcf7l2) and signaling pathways (Wnt and transforming growth factor‐β). After knocking down histone methylase Mll2 in vitro and vivo, the level of H3K4me2 decreased, inhibiting Cvh and Blimp1 expression, then repressing the formation of PGCs. Taken together, our study revealed the whole genome map of H3K4me2 in the formation of PGCs, contributing to improve the epigenetic study in PGC formation and providing materials for bird gene editing and rescue of endangered birds.  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