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   10687篇
  免费   845篇
  国内免费   692篇
  2024年   15篇
  2023年   131篇
  2022年   320篇
  2021年   567篇
  2020年   375篇
  2019年   441篇
  2018年   484篇
  2017年   370篇
  2016年   446篇
  2015年   652篇
  2014年   717篇
  2013年   823篇
  2012年   996篇
  2011年   878篇
  2010年   510篇
  2009年   443篇
  2008年   585篇
  2007年   487篇
  2006年   427篇
  2005年   363篇
  2004年   280篇
  2003年   253篇
  2002年   188篇
  2001年   178篇
  2000年   150篇
  1999年   155篇
  1998年   100篇
  1997年   104篇
  1996年   97篇
  1995年   83篇
  1994年   88篇
  1993年   71篇
  1992年   58篇
  1991年   77篇
  1990年   58篇
  1989年   44篇
  1988年   39篇
  1987年   17篇
  1986年   23篇
  1985年   22篇
  1984年   21篇
  1983年   23篇
  1982年   24篇
  1981年   4篇
  1980年   4篇
  1979年   4篇
  1978年   4篇
  1977年   5篇
  1975年   5篇
  1971年   4篇
排序方式: 共有10000条查询结果,搜索用时 31 毫秒
171.
Guo  Kaiqiang  Cao  Yin  Li  Zan  Zhou  Xiaoxiao  Ding  Rong  Chen  Kejing  Liu  Yan  Qiu  Yingkun  Wu  Zhen  Fang  Meijuan 《Amino acids》2020,52(5):793-809
Amino Acids - Glycine plays a key role in rapidly proliferating cancer cells such as A549 cells. Targeting glycine metabolism is considered as a potential means for cancer treatment. However, the...  相似文献   
172.
173.
Intracellular protein degradation is essential for the survival of all organisms, but its role in interspecies interaction is unknown. Here, we show that the ClpXP protease of Pseudomonas aeruginosa suppresses its antimicrobial activity against Staphylococcus aureus, a common pathogen co-isolated with P. aeruginosa from polymicrobial human infections. Using proteomic, biochemical, and molecular genetic approaches, we found that this effect is due to the inhibitory effects of ClpXP on the quorum sensing (QS) of P. aeruginosa, mainly by degrading proteins (e.g., PhnA, PhnB, PqsR, and RhlI) which are critical for the production of QS signal molecules PQS and C4-HSL. We provide evidence that co-culturing with S. aureus induces a decrease in the activity of ClpXP in P. aeruginosa, an effect which was also achieved by the treatment of P. aeruginosa with N-acetylglucosamine (GlcNAc), a widespread chemical present on the surface of diverse cell types from bacteria to humans. These findings extend the range of biological events governed by proteolytic machinery to microbial community structure, thus also suggesting that a chemical-induced alteration of protein homeostasis is a mechanism for interspecies interactions.  相似文献   
174.
175.
‘Requirements for Human Embryonic Stem Cells’ is the first set of guidelines on human embryonic stem cells in China, jointly drafted and agreed upon by experts from the Chinese Society for Stem Cell Research. This standard specifies the technical requirements, test methods, test regulations, instructions for use, labelling requirements, packaging requirements, storage requirements and transportation requirements for human embryonic stem cells, which is applicable to the quality control for human embryonic stem cells. It was originally released by the China Society for Cell Biology on 26 February 2019 and was further revised on 30 April 2020. We hope that publication of these guidelines will promote institutional establishment, acceptance and execution of proper protocols, and accelerate the international standardization of human embryonic stem cells for applications.  相似文献   
176.
177.
178.
将来源于肠膜明串珠菌Leuconostoc mesenteroides ATCC 12291的蔗糖磷酸化酶(Sucrose phosphorylase,SPase)基因进行密码子优化后将其插入到pET-28a中构建表达载体pET-28a-spase,诱导大肠杆菌Escherichia coli BL21(DE3)/pET-28a-spase表达制得SPase粗酶液,将重组SPase纯化后进行酶学表征。结果表明,重组SPase的比酶活为213.98 U/mg,纯化倍数为1.47倍,酶活回收率达87.80%。该酶最适温度为45℃,最适pH为6.5,该酶对蔗糖的Km为128.8 mmol/L,Vmax为2.167μmol/(mL·min),kcat为39 237.86 min-1,利用重组SPase催化氢醌合成α-熊果苷,最优条件为:氢醌添加量为40 g/L,蔗糖/氢醌的摩尔比为5:1,重组SPase 250 U/mL。在25 mmol/L的吗啉乙磺酸(MES)缓冲液(pH 7.0)中,反应温度30℃,避光反应24 h后终止反应,再用500 U/mL的糖化酶40℃处理2.5 h。α-熊果苷产量达98 g/L,氢醌的转化率接近99%。综上所述,文中克隆并研究了重组SPase,并建立了其在α-熊果苷生产中的应用。  相似文献   
179.
为了解云南省木兰科(Magnoliaceae)野生植物资源的遗传多样性,利用ISSR分子标记技术对48种木兰科野生植物资源进行研究。结果表明,10对引物共扩增出151条带,均为多态性条带,多态性条带百分率为100%。总的观测等位基因数(Na)为2.000 0,有效等位基因数(Ne)为1.564 5,Nei’s基因多样性指数(H)0.337 9,Shannon’s信息指数(I)为0.510 1。总的基因多样性指数(Ht)为0.368 0,属间基因多样性指数(Dst)为0.251 9,占68.4%,基因分化系数(Gst)为0.684 0,基因流(Nm)为0.231 0。UPGMA聚类分析将48种木兰科植物划分为7个类群,各类群并非按照属聚在一起,而是不同属植物相间分布,长喙厚朴(Magnolia rostrata)、素黄含笑(Michelia flaviflora)和球花含笑(M.sphaerantha)可能为云南省木兰科植物中的原始种。48种木兰科野生植物总体具有较高的遗传多样性,但属间遗传变异较高,基因流较小,存在遗传漂变的风险,聚类结果与刘玉壶的分类系统存在分歧,这从分子水平为木兰科植物间的起源、进化与分类提供了重要依据。  相似文献   
180.
A key focus of ecologists is explaining the origin and maintenance of morphological diversity and its association with ecological success. We investigate potential benefits and costs of a common and varied morphological trait, cuticular spines, for foraging behavior, interspecific competition, and predator–prey interactions in naturally co‐occurring spiny ants (Hymenoptera: Formicidae: Polyrhachis) in an experimental setting. We expect that a defensive trait like spines might be associated with more conspicuous foraging, a greater number of workers sent out to forage, and potentially increased competitive ability. Alternatively, consistent with the ecological trade‐off hypothesis, we expect that investment in spines for antipredator defense might be negatively correlated with these other ecological traits. We find little evidence for any costs to ecological traits, instead finding that species with longer spines either outperform or do not differ from species with shorter spines for all tested metrics, including resource discovery rate and foraging effort as well as competitive ability and antipredator defense. Spines appear to confer broad antipredator benefits and serve as a form of defense with undetectable costs to key ecological abilities like resource foraging and competitive ability, providing an explanation for both the ecological success of the study genus and the large number of evolutionary origins of this trait across all ants. This study also provides a rare quantitative empirical test of ecological effects related to a morphological trait in ants.  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