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   11912篇
  免费   724篇
  国内免费   4篇
  2023年   108篇
  2022年   95篇
  2021年   188篇
  2020年   192篇
  2019年   183篇
  2018年   409篇
  2017年   379篇
  2016年   503篇
  2015年   755篇
  2014年   743篇
  2013年   909篇
  2012年   1088篇
  2011年   942篇
  2010年   606篇
  2009年   402篇
  2008年   724篇
  2007年   638篇
  2006年   581篇
  2005年   514篇
  2004年   448篇
  2003年   406篇
  2002年   369篇
  2001年   165篇
  2000年   153篇
  1999年   110篇
  1998年   71篇
  1997年   43篇
  1996年   55篇
  1995年   58篇
  1994年   35篇
  1993年   42篇
  1992年   72篇
  1991年   58篇
  1990年   54篇
  1989年   41篇
  1988年   44篇
  1987年   43篇
  1986年   31篇
  1985年   50篇
  1984年   37篇
  1983年   17篇
  1982年   25篇
  1981年   23篇
  1980年   22篇
  1979年   24篇
  1978年   24篇
  1977年   22篇
  1975年   15篇
  1974年   15篇
  1973年   14篇
排序方式: 共有10000条查询结果,搜索用时 31 毫秒
991.
992.
993.
MT1-MMP (MMP14) is a collagenolytic enzyme located at the cell surface and implicated in extracellular matrix (ECM) remodeling. Mmp14−/− mice present dwarfism, bone abnormalities, and premature death. We demonstrate herein that the loss of MT1-MMP also causes cardiac defects and severe metabolic changes, and alters the cytoskeleton and the nuclear lamina structure. Moreover, the absence of MT1-MMP induces a senescent phenotype characterized by up-regulation of p16INK4a and p21CIP1/WAF1, increased activity of senescence-associated β-galactosidase, generation of a senescence-associated secretory phenotype, and somatotroph axis alterations. Consistent with the role of retinoic acid signaling in nuclear lamina stabilization, treatment of Mmp14−/− mice with all-trans retinoic acid reversed the nuclear lamina alterations, partially rescued the cell senescence phenotypes, ameliorated the pathological defects in bone, skin, and heart, and extended their life span. These results demonstrate that nuclear architecture and cell senescence can be modulated by a membrane protease, in a process involving the ECM as a key regulator of nuclear stiffness under cell stress conditions.  相似文献   
994.
995.
The DNA damage response is vigorously activated by DNA double-strand breaks (DSBs). The chief mobilizer of the DSB response is the ATM protein kinase. We discovered that the COP9 signalosome (CSN) is a crucial player in the DSB response and an ATM target. CSN is a protein complex that regulates the activity of cullin ring ubiquitin ligase (CRL) complexes by removing the ubiquitin-like protein, NEDD8, from their cullin scaffold. We find that the CSN is physically recruited to DSB sites in a neddylation-dependent manner, and is required for timely repair of DSBs, affecting the balance between the two major DSB repair pathways—nonhomologous end-joining and homologous recombination repair (HRR). The CSN is essential for the processivity of deep end-resection—the initial step in HRR. Cullin 4a (CUL4A) is recruited to DSB sites in a CSN- and neddylation-dependent manner, suggesting that CSN partners with CRL4 in this pathway. Furthermore, we found that ATM-mediated phosphorylation of CSN subunit 3 on S410 is critical for proper DSB repair, and that loss of this phosphorylation site alone is sufficient to cause a DDR deficiency phenotype in the mouse. This novel branch of the DSB response thus significantly affects genome stability.  相似文献   
996.
In recent years, production and use of bio-pesticides have increasing and replacing some synthetic chemical pesticides applied to food commodities. In this review, biological control is focused as an alternative, to some synthetic chemical treatments that cause environmental, human health, and food quality risks. In addition, several phytopathogenic microorganisms have developed resistance to some of these synthetic chemicals and become more difficult to control. Worldwide, the bio-pesticides market is growing annually at a rate of 44% in North America, 20% in Europe and Oceania, 10% in Latin and South American countries and 6% in Asia. Use of agro-industrial wastes and solid-state fermentation (SSF) technology offers an alternative to bio-pesticide production with advantages versus conventional submerged fermentations, as reduced cost and energy consumption, low production of residual water and high stability products. In this review, recent data about state of art regarding bio-pesticides production under SSF on agroindustrial wastes will be discussed. SSF can be defined as a microbial process that generally occurs on solid material in the absence of free water. This material has the ability to absorb water with or without soluble nutrients, since the substrate must have water to support the microorganism’s growth and metabolism. Changes in water content are analyzed in order to select the conditions for a future process, where water stress can be combined with the best spore production conditions, obtaining in this way an inexpensive biotechnological option for modern agriculture in developing countries.  相似文献   
997.
Due to the highly predictable patterns of occupancy on land, pinnipeds are one of the main marine resources observed by tourists, which, in turn, could strongly perturb their behavior. We analyzed the behavioral responses of the South American sea lion (Otaria byronia) to the presence of tourists and its variation according to temporal (2012 vs. 2013 austral summer months), spatial (breeding vs. nonbreeding sites of the colony), and age/sex class (adult males vs. subadult males vs. females) factors, and determined the relationship between the degree of responses by sea lions and the distance of the vessel to the colony, visitation time, and tourist behavior. We recorded 1,232 boat visits during 2012 and 2013. Subadult males were the age/sex class most affected in the breeding site, followed by adult females at the nonbreeding site. More disturbing conduct by tourists, longer visitation time, and vessels closer to the colony caused greater responses by sea lions. The established minimum distance from the colony is not enforced, generating an adverse response by sea lions. We recommend the development of management plans with the local coastal communities to decrease the impact of ecotourism on the species and enhance the sustainability of this industry.  相似文献   
998.
The metabolism of microbial organisms and its diversity are partly the result of an adaptation process to the characteristics of the environments that they inhabit. In this work, we analyze the influence of lifestyle on the content of promiscuous enzymes in 761 nonredundant bacterial and archaeal genomes. Promiscuous enzymes were defined as those proteins whose catalytic activities are defined by two or more different Enzyme Commission (E.C.) numbers. The genomes analyzed were categorized into four lifestyles for their exhaustive comparisons: free‐living, extremophiles, pathogens, and intracellular. From these analyses we found that free‐living organisms have larger genomes and an enrichment of promiscuous enzymes. In contrast, intracellular organisms showed smaller genomes and the lesser proportion of promiscuous enzymes. On the basis of our data, we show that the proportion of promiscuous enzymes in an organism is mainly influenced by the lifestyle, where fluctuating environments promote its emergence. Finally, we evidenced that duplication processes occur preferentially in metabolism of free‐living and extremophiles species. Proteins 2015; 83:1625–1631. © 2015 Wiley Periodicals, Inc.  相似文献   
999.
1000.
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