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   39276篇
  免费   2394篇
  国内免费   2943篇
林业   3549篇
农学   4410篇
基础科学   2242篇
  6222篇
综合类   9503篇
农作物   1904篇
水产渔业   1965篇
畜牧兽医   10966篇
园艺   1035篇
植物保护   2817篇
  2024年   84篇
  2023年   352篇
  2022年   791篇
  2021年   1068篇
  2020年   982篇
  2019年   1039篇
  2018年   1010篇
  2017年   1174篇
  2016年   1202篇
  2015年   1467篇
  2014年   1421篇
  2013年   1843篇
  2012年   1955篇
  2011年   2301篇
  2010年   1998篇
  2009年   1920篇
  2008年   1974篇
  2007年   2080篇
  2006年   1779篇
  2005年   1731篇
  2004年   1022篇
  2003年   1039篇
  2002年   961篇
  2001年   1359篇
  2000年   1367篇
  1999年   1290篇
  1998年   737篇
  1997年   708篇
  1996年   594篇
  1995年   627篇
  1994年   587篇
  1993年   477篇
  1992年   621篇
  1991年   638篇
  1990年   518篇
  1989年   440篇
  1988年   467篇
  1987年   410篇
  1986年   305篇
  1985年   225篇
  1984年   198篇
  1983年   177篇
  1982年   123篇
  1981年   102篇
  1980年   92篇
  1979年   153篇
  1978年   98篇
  1977年   74篇
  1975年   79篇
  1974年   79篇
排序方式: 共有10000条查询结果,搜索用时 15 毫秒
1.
土壤团聚体有机碳研究进展   总被引:1,自引:0,他引:1  
土壤有机碳是衡量土壤肥力的重要指标,对于促进土壤养分循环、增加养分有效性有重要作用。土壤团聚体是土壤的重要组成部分,是组成土壤结构的最小单元,受到自然因素和人为因素的影响,其形成转化过程与土壤固碳过程息息相关,因而研究团聚体和有机碳的关系及团聚体有机碳影响因素对于土壤结构的改善和土壤质量的提升具有重要意义。本文通过对文献的总结,明晰了土壤团聚体和有机碳的关系,阐述了土壤类型、施肥方式、土地利用和矿区复垦对土壤团聚体有机碳的影响,并从生物质炭的长期定位研究和复垦矿区的土壤修复两方面对土壤团聚体有机碳的研究进行展望,研究结果可为合理的农业生产提供科学依据。  相似文献   
2.
3.
吕珽  陈虹吟  汤承  岳华 《畜牧兽医学报》2021,52(8):2361-2368
旨在调查川西北牦牛哺乳动物正呼肠孤病毒(MRV)的感染情况并分离病毒。采用RT-PCR方法,对采自川西北15个牧场的72份牦牛腹泻粪便样本和其中5个牧场的15份腹泻牦牛血清样本进行MRV检测,阳性样本进一步用分型PCR确定其血清型。结果显示,粪便样本中MRV检出率为20.83%(15/72),血清2型的比例为60%(9/15);血清样本中MRV检出率为40%(6/15),血清2型的比例为83.33%(5/6);未检测到其他血清型。成功地从腹泻粪便中分离到1株MRV血清2型毒株(TCID50为4×10-8.56·mL-1),并获得长度为23 587 bp的分离株全基因组,该分离株与中国猪源毒株的遗传关系最近;与GenBank中所有的MRV S1基因相比,该分离株有4个独特的氨基酸突变。本研究从牦牛中检测到MRV,并分离到1株牛源MRV血清2型毒株,为进一步研究MRV血清2型生物学特性奠定了基础。  相似文献   
4.
据农业农村部网站消息,2020年12月18日—21日,部农机化司组织开展2020年第4次理论学习中心组(扩大)学习。司领导班子及各处处长在深入学习领会党的十九届五中全会精神、认真研读《中共中央关于制定国民经济和社会发展第十四个五年规划和二〇三五年远景目标的建议》以及习近平总书记关于《建议》的说明基础上,紧紧围绕部党组关于粮食生产、农产品保供和推进农业现代化以及乡村建设等工作要求,梳理总结了2020年农机化工作情况,谋划提出了2021年重点任务。  相似文献   
5.
近年来象耳豆根结线虫的危害日益严重.为筛选抗象耳豆根结线虫的辣椒种质,本试验利用种属特异性引物对根结线虫病原物开展分子鉴定,确定为象耳豆根结线虫.接着采用室内人工接种法,对10份一年生辣椒种质和10份中国辣椒种质进行象耳豆根结线虫抗性鉴定,计算根结指数和卵粒指数,并通过比较隶属函数,发现其中3份辣椒种质对象耳豆根结线虫表现为高抗,抗病性最强的是L518M和L525-1M,L42M次之;10份表现为中抗;7份表现为感病,抗病能力最弱的是L69-1M;未发现免疫品种.本研究发现中国辣椒种质的抗病性整体高于一年生辣椒,是重要的抗病种质来源,可用于象耳豆根结线虫抗病育种和后续抗病机理的研究.  相似文献   
6.
为了解湖南省湘西自治州动物疫病预防控制机构发展现状,采用实地走访及问卷调查方式收集数据,对兽医实验室相关人员、主要动物疫病监测经费投入、实验室检测量等情况进行分析,发现湘西州动物疫病预防控制机构存在业务工作衔接不顺畅、专业技术人员缺乏、经费不足、生物安全体系有待完善等问题。针对存在的问题,结合当地实际对湘西州动物疫病预防控制机构的建设、管理等提出了建议,以期为动物疫病预防控制机构的改革发展提供参考。  相似文献   
7.
The allelopathic water extracts (AWEs) may help improve the tolerance of crop plants against abiotic stresses owing to the presence of the secondary metabolites (i.e., allelochemicals). We conducted four independent experiments to evaluate the influence of exogenous application of AWEs (applied through seed priming or foliage spray) in improving the terminal heat and drought tolerance in bread wheat. In all the experiments, two wheat cultivars, viz. Mairaj‐2008 (drought and heat tolerant) and Faisalabad‐2008 (drought and heat sensitive), were raised in pots. Both wheat cultivars were raised under ambient conditions in the wire house till leaf boot stage (booting) by maintaining the pots at 75% water‐holding capacity (WHC). Then, managed drought and heat stresses were imposed by maintaining the pots at 35% WHC, or shifting the pots inside the glass canopies (at 75% WHC), at booting, anthesis and the grain filling stages. Drought stress reduced the grain yield of wheat by 39%–49%. Foliar application of AWEs improved the grain yield of wheat by 26%–31%, while seed priming with AWEs improved the grain yield by 18%–26%, respectively, than drought stress. Terminal heat stress reduced the grain yield of wheat by 38%. Seed priming with AWEs improved the grain yield by 21%–27%; while foliar application of AWEs improved the grain yield by 25%–29% than the heat stress treatment. In conclusion, the exogenous application of AWEs improved the stay green, accumulation of proline, soluble phenolics and glycine betaine, which helped to stabilize the biological membranes and improved the tolerance against terminal drought and heat stresses.  相似文献   
8.
Carbon storage in the soils on the Qinghai–Tibetan Plateau plays a very important role in the global carbon budget. In the 1990s, a policy of contracting collective grasslands to smaller units was implemented, resulting in a change from the traditional collective grassland management to two new management patterns: a multi‐household management pattern (MMP: grassland shared by several households without enclosures) and a single‐household management pattern (SMP: grassland enclosed and used by only one household). In 2016, 50 MMP and 54 SMP winter pastures on the Qinghai–Tibetan Plateau were sampled to assess the differences in soil organic carbon (SOC) between the two management patterns. Results showed that average SOC was significantly greater under MMP than under SMP, with an estimated 0.41 Mg C/ha/yr lost due to SMP following the new grassland contract. Based on the government's grassland policy, four grassland utilization scenarios were developed for both summer and winter pastures. We found that if the grassland were managed under SMP, likely C losses ranged between 0.31 × 107 and 6.15 × 107 Mg C/yr across the Qinghai–Tibetan Plateau relative to MMP, which more closely resembles pre‐1990s grassland management. Previous estimates of C losses have only considered land use change (with cover change) and ignored the impacts driven by land management pattern changes (without cover change). The new data suggest that C losses from the Qinghai–Tibetan Plateau are greater than previously estimated, and therefore that the grassland contract policy should be reviewed and SMP households should be encouraged to reunite into the MMP. These findings have potential implications for land management strategies not only on the Qinghai–Tibetan Plateau but also other grazing regions globally where such practices may exist.  相似文献   
9.
Anthocyanins are responsible for the colour of many fruits, vegetables, flowers, and coloured-leaved trees. Ornamental kale (Brassica oleracea L. var. acephala DC) is widely cultivated for its colourful inner leaves. To investigate the relationship between the degree of colouration and anthocyanin distribution, content, and composition in ornamental kale, the authors studied the pigment characteristics of five cultivars with different coloured leaves (white, pink, red, purple, and purple-black). Microscopy observation, spectrophotometer, and high-performance liquid chromatography-mass spectrometry (HPLC-MS) analysis of fresh inner leaves revealed that pink, red, and purple colourations were associated with high levels of anthocyanin, while purple-black was the result of the combination of anthocyanins and chlorophyll. In the coloured cultivars, anthocyanins were abundant mainly in the first and second cell layers below the epidermis in both the hypocotyls and inner leaves. No anthocyanin was found in the white-leaved phenotype cultivar. Anthocyanin content increased as leaf colour deepened from pink, red, to purple cultivars, which had little chlorophyll and carotenoid. The authors identified eight anthocyanins in the four coloured cultivars, including one non-acylated, four monoacylated, and three diacylated cyanidin glycosides. Cyanidin-3-(sinapoyl)(feruloyl)-diglucoside-5-glucoside was the most abundant anthocyanin in the four coloured cultivars followed by cyanidin-3-(sinapoyl)-diglucoside-5-glucoside. The analysis of anthocyanin accumulation characterisation provides important information on evaluating colouration patterns in coloured plants, and will be helpful for breeding desired leaf colours in ornamental kale.  相似文献   
10.
通过对白屈菜低温应答过程的转录组分析发现膜脂不饱和化相关基因的表达在一定过程中发生变化,脂肪酸去饱和酶基因FAD2在随温度的变化趋势为正"V"型,且表达量变化显著。利用NCBI等在线软件对序列进行相关生物学信息分析,并对白屈菜FAD家族成员FAD2基因的完整开放阅读框(ORF)进行克隆,并命名为CmFAD2。选用克隆载体pMD-19-T,转化大肠杆菌DH5α,测序验证序列正确性及完整性。将目的基因与植物表达载体pRI-201-AN连接构建重组DNA pRI-201-AN-Cm FAD2,电击法转化农杆菌LBA4404,利用菌液PCR法验证成功。该基因可作为药用植物抗寒品种创制的候选基因。  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