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   1935篇
  免费   102篇
  国内免费   5篇
  2022年   7篇
  2021年   22篇
  2019年   13篇
  2018年   14篇
  2017年   16篇
  2016年   33篇
  2015年   42篇
  2014年   54篇
  2013年   179篇
  2012年   111篇
  2011年   127篇
  2010年   71篇
  2009年   75篇
  2008年   123篇
  2007年   113篇
  2006年   116篇
  2005年   126篇
  2004年   115篇
  2003年   101篇
  2002年   96篇
  2001年   23篇
  2000年   15篇
  1999年   22篇
  1998年   18篇
  1997年   27篇
  1996年   19篇
  1995年   25篇
  1994年   25篇
  1993年   15篇
  1992年   24篇
  1991年   21篇
  1990年   18篇
  1989年   14篇
  1988年   14篇
  1987年   11篇
  1986年   16篇
  1985年   14篇
  1984年   14篇
  1983年   12篇
  1982年   21篇
  1981年   16篇
  1980年   13篇
  1979年   7篇
  1978年   14篇
  1977年   6篇
  1976年   10篇
  1975年   12篇
  1974年   9篇
  1973年   8篇
  1972年   9篇
排序方式: 共有2042条查询结果,搜索用时 15 毫秒
81.
In studies on the mechanism of cell separation during abscission, little attention has been paid to the apoplastic environment. We found that the apoplastic pH surrounding abscission zone cells in detached roots of the water fern Azolla plays a major role in cell separation. Abscission zone cells of detached Azolla roots were separated rapidly in a buffer at neutral pH and slowly in a buffer at pH below 4.0. However, cell separation rarely occurred at pH 5.0–5.5. Light and electron microscopy revealed that cell separation was caused by a degradation of the middle lamella between abscission zone cells at both pH values, neutral and below 4.0. Low temperature and papain treatment inhibited cell separation. Enzyme(s) in the cell wall of the abscission zone cells might be involved in the degradation of the pectin of the middle lamella and the resultant, pH-dependent cell separation. By contrast, in Phaseolus leaf petioles, unlike Azolla roots, cell separation was slow and increased only at acidic pH. The rapid cell separation, as observed in Azolla roots at neutral pH, did not occur. Indirect immunofluorescence microscopy, using anti-pectin monoclonal antibodies, revealed that the cell wall pectins of the abscission zone cells of Azolla roots and Phaseolus leaf petioles looked similar and changed similarly during cell separation. Thus, the pH-related differences in cell separation mechanisms of Azolla and Phaseolus might not be due to differences in cell wall pectin, but to differences in cell wall-located enzymatic activities responsible for the degradation of pectic substances. A possible enzyme system is discussed.  相似文献   
82.
83.
In order to determine the specificity of Aspergillus Saitoi protease, the hydrolyzate of B-chain of insulin oxidized by this enzyme was investigated on paperchromatography according to the 2,4-dinitrofluorobenzene technique. Specificity was compared with pepsin and other proteolytic enzymes.  相似文献   
84.
From root extracts of Phryma leptostachya L. was isolated a new lignan. Its structure has been determined to be 1-acetoxy-2-(3,4-methylenedioxy)phenoxy-6-(2-methoxy-4,5-methylenedioxy)phenyl-3,7-dioxabicyclo[3.3.0]octane on the basis of the chemical properties and spectra of its degradation products.  相似文献   
85.
The specificity of highly purified carboxyl proteinase from Pycnoporus coccineus (formerly designated Trametes sanguined) was investigated with oligopeptides at pH 2.7. Hydrolysis of oxidized insulin peptide Bl ~ B16 was observed at two peptide bonds (His10-Leu11 and Ala14-Leu15) during 3-hr incubation. The enzyme did not hydrolyze oxidized insulin peptide B15 ~ B24. Hydrolysis of angiotensin (formerly designated angiotensin II) was observed at the Tyr4-Ile5 bond. Hydrolysis of proangiotensin (formerly designated angiotensin I) was also at the Tyr4-Ile5 bond. In conclusion, peptide bonds which have a hydrophobic amino acid in the P1 position (as defined by Schechter and Berger, Biochem. Biophys. Res. Commun., 27, 157 (1967)) are preferentially cleaved by the trypsinogen activating carboxyl proteinase of Pycnoporus coccineus.  相似文献   
86.
87.
N-Benzoylgiycine amidohydrolase (hippurate hydrolase EC 3.5.1.32), which catalyzes the hydrolysis of hippuric acid to benzoic acid and glycine, was found in a cell-free extract of Pseudomonas putida C692-3 grown on a medium containing hippuric acid. The enzyme was purified from the extract by ammonium sulfate fractionation and column chromatographies on DEAE-cellulose, DEAE-Sephadex A-50, hydroxyapatite, and Sepharose CL-6B. The enzyme was finally crystallized. The crystalline enzyme was almost homogeneous on electrophoresis. The enzyme had a molecular weight of about 170,000 and consisted of four subunits identical in molecular weight (approximately 42,000). The enzyme hydrolyzed N-benzoylglycine most rapidly, and N-benzoyl-l-alanine and N-benzoyl-l-aminobutyric acid. The Km value for these substrates were 0.72 mm, 0.87 mm, and 0.87mm, respectively. The optimum pH of the enzyme reaction was 7.0 to 8.0 and the enzyme was stable from pH 6.0 to 8.0.  相似文献   
88.
The specificity of crystalline Asp. Saitoi proteinase on oxidized lysozyme has been investigated by application of the Sanger DNP-method.

It was found that this proteinase has a much broader specificity as compared with pepsin and Bac. subtilis proteinase.  相似文献   
89.
90.
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