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   15629篇
  免费   803篇
  国内免费   1204篇
林业   950篇
农学   743篇
基础科学   483篇
  8548篇
综合类   5044篇
农作物   723篇
水产渔业   11篇
畜牧兽医   653篇
园艺   361篇
植物保护   120篇
  2024年   102篇
  2023年   244篇
  2022年   332篇
  2021年   373篇
  2020年   339篇
  2019年   396篇
  2018年   302篇
  2017年   544篇
  2016年   718篇
  2015年   700篇
  2014年   828篇
  2013年   822篇
  2012年   1002篇
  2011年   1342篇
  2010年   1009篇
  2009年   1140篇
  2008年   1097篇
  2007年   1140篇
  2006年   983篇
  2005年   801篇
  2004年   544篇
  2003年   464篇
  2002年   275篇
  2001年   228篇
  2000年   226篇
  1999年   220篇
  1998年   198篇
  1997年   181篇
  1996年   190篇
  1995年   159篇
  1994年   137篇
  1993年   138篇
  1992年   112篇
  1991年   75篇
  1990年   114篇
  1989年   55篇
  1988年   44篇
  1987年   41篇
  1986年   13篇
  1985年   7篇
  1963年   1篇
排序方式: 共有10000条查询结果,搜索用时 500 毫秒
141.
Studies of biological responses in the terrestrial environment to rapid changes in climate have mostly been concerned with aboveground biota, whereas less is known of belowground organisms. The present study focuses on mites and springtails of heathland ecosystems and how the microarthropod community has responded to simulated climate change in a long-term field experiment. Increased temperature and repeated drought was applied for 13 years to field plots located in Wales, The Netherlands and Denmark representing sites of contrasting climatic conditions with respect to precipitation and temperature. This approach provided an opportunity to study biological responses on a local (within sites) and regional scale. Warming treatments increasing night time temperature (0.3–1 °C higher than ambient at 5 cm soil depth) had no detectable effects on the microarthropod communities. Increased intensity and frequency of drought had only weak persistent effects on springtail species composition, but practically no effect on major mite groups (Oribatida, Prostigmata or Mesostigmata) suggesting that ecosystem functions of microarthropods may only be transiently impacted by repeated spring or summer drought.  相似文献   
142.
Abstract

Excessive use of nitrogen (N) fertilizers in wheat fields has led to elevated NO3-N concentrations in groundwater and reduced N use efficiency. Three-year field and 15N tracing experiments were conducted to investigate the effects of N application rates on N uptake from basal and topdressing 15N, N use efficiency, and grain yield in winter wheat plants; and determine the dynamics of N derived from both basal and topdressing 15N in soil in high-yielding fields. The results showed that 69.5–84.5% of N accumulated in wheat plants derived from soil, while 6.0–12.5%and 9.2–18.1% derived from basal 15N and top 15N fertilizer, respectively. The basal N fertilizer recovery averaged 33.9% in plants, residual averaged 59.2% in 0–200 cm depth soil; the topdressing N fertilizer recovery averaged 50.5% in plants, residual averaged 48.2% in 0–200 cm soil. More top 15N was accumulated in plants and more remained in 0–100 cm soil rather than in 100–200 cm soil at maturity, compared with the basal 15N. However, during the period from pre-sowing to pre-wintering, the soil nitrate moved down to deeper layers, and most accumulated in the layers below 140 cm. With an increase of N fertilizer rate, the proportion of the N derived from soil in plants decreased, but that derived from basal and topdressing fertilizer increased; the proportion of basal and top 15N recovery in plants decreased, and that of residual in soil increased. A moderate application rate of 96–168 kg N ha?1 led to increases in nitrate content in 0–60 cm soil layer, N uptake amount, grain yield and apparent recovery fraction of applied fertilizer N in wheat. Applying above 240 kg N ha?1 promoted the downward movement of basal and top 15N and soil nitrate, but had no significant effect on N uptake amount; the excessive N application also obviously decreased the grain yield, N uptake efficiency, apparent recovery fraction of applied fertilizer N, physiological efficiency and internal N use efficiency. It is suggested that the appropriate application rate of nitrogen on a high-yielding wheat field was 96–168 kg N ha?1.  相似文献   
143.
整地方式对杂种落叶松生长的影响   总被引:1,自引:0,他引:1  
以4种整地方式下杂种落叶松试验林为研究对象,建立固定观测样地48块,连续观测地径、苗高和胸径生长,采用方差分析等研究方法,研究整地方式对杂种落叶松生长的影响,结果表明:杂种落叶松幼龄期间的地径及苗高生长,高台和穴状两种整地方式较好,另外两种整地方式差些;揭草皮方式在杂种落叶松幼龄时对其苗高生长及地径的作用不明显,但随着幼树的生长,效果越来越显著;在杂种落叶松11龄时,穴状与揭草皮两种整地方式下的平均胸径较大;杂种落叶松4种整地方式对生长的作用效果穴状揭草皮高台现整现造。  相似文献   
144.
为了明确土壤细菌群落对小麦产量的影响,以河南省济源市冬小麦种植户田块为研究对象,通过采集扬花期麦田土壤样品,利用Illumina高通量测序技术测定细菌16S rRNA V3+V4区序列,分析冬小麦不同产量水平土壤的细菌群落差异。结果表明,高产组土壤铵态氮含量显著高于低产组(P<0.05),土壤有机质含量、速效钾含量、有效磷含量、硝态氮含量、pH值在组间均无显著差异,土壤酸性磷酸酶、碱性磷酸酶、脲酶和过氧化氢酶活性在组间也均无显著差异。酸杆菌门(Acidobacteria)和变形菌门(Proteobacteria)是土壤细菌群落的主导菌门。门水平上,小麦产量与芽单胞菌门(Gemmatimonadetes)、装甲菌门(Armatimonadetes)、纤维杆菌门(Fibrobacteres)、Latescibacteria、Dadabacteria相对丰度显著相关。属水平上,Bryobacter、黄杆菌属(Flavisolibacter)、芽单胞菌属(Gemmatimonas)、丰佑菌属(Opitutus)、黏液杆菌属(Mucilaginibacter)、Dongia、Chryseo...  相似文献   
145.
The effects of soil water availability on suberin lamellae formation in the endodermis and exodermis and the occurrence of cell wall thickening in the cortex in red bayberry (Myrica rubra Sieb. et Zucc.) tree roots were examined during tissue aging. For several months, red bayberry trees were grown in small baskets under dry, normal, and waterlogged soil water conditions. Transverse sections of roots from 5 mm from the tip to the basal portion were stained with several staining solutions and the cell structure was observed. Root anatomical development was significantly changed by soil water conditions. The suberin lamellae in the endodermis formed later in plants grown under dry conditions than in those grown under waterlogged conditions. Cell wall thickening in the cortex near the endodermis was promoted by drought, but apparently not by waterlogged conditions.  相似文献   
146.
Although crop residue management is known to affect near‐surface soil physical quality, little is known about the temporal variability of these indicators over short time intervals. This study evaluates the temporal changes of nine indicators of soil physical quality. These are organic carbon content, structural stability index, bulk density, macroporosity, air capacity, relative field capacity, plant available water capacity, Dexter's S‐index and saturated hydraulic conductivity. A second set of soil physical indicators, based on the distribution of soil pore volume, was also evaluated. The indicators were determined in three different times during the growing cycle of winter durum wheat cultivated within a long‐term field research carrying out in Southern Italy and comparing two types of crop residue management, that is, burning (B) and soil incorporation (I). Only the bulk density changed over time for both treatments, although the air capacity also changed for the incorporation of wheat residues. Residual effects of the autumnal soil tillage and soil compaction were a common source of variability, irrespective of which treatment was used. Based on the existing guidelines for evaluating the physical quality of these agricultural soils, optimal or near‐optimal values were detected in about half of the cases under consideration. This suggests that both B and I create sufficiently good conditions for crop growth during the crop cycle. The comparison between observed and optimal soil pore distribution function was always poor. The pore volume distributions showed lower densities of small pores and relatively higher densities of large pores than the proposed optimal distribution. This study also suggests that the considered optimal or references curves probably cannot be applied successfully to a wide range of agricultural soils.  相似文献   
147.
根土空间对花生生长发育和产量的影响   总被引:1,自引:0,他引:1  
为明确花生生长过程中是否存在生长冗余,探讨花生高产的适宜生长度,以高产花生品种青花7号为试材,设长×宽×深分别为40 cm×20 cm×20 cm、40 cm×20 cm×40 cm、40 cm×20 cm×60 cm、40 cm×20 cm×80 cm4种规格不等的根土空间,采用网袋法,研究了根系生长空间对花生生长发育和产量的影响。结果表明,随着根土空间增大,株高逐渐增高,分枝数逐渐增多,根系干质量和茎叶干质量逐渐增大,其生育进程的推进差异越来越大。根土空间过小显著影响各时间段花生开花数、下针和结果;根土空间过大则中前期开花数、下针和结果少,中后期开花数、下针和结果多;适当的根土空间(如限根深度60 cm)则中前期开花数、下针和结果多,中后期开花数、下针少。说明根土空间过小影响产量提高的主要原因是生长量不足,而根土空间过大影响产量提高的主要原因是冗余生长。适当空间则既能保证足够的生长量,产生的冗余生长又少,从而提高荚果产量和籽仁产量,为花生高产新品种的选育和栽培提供理论依据。  相似文献   
148.
以江苏省靖江市牧城公园和东湖公园两种种植年限分别为5 a和9 a的中山杉(Taxodium hybrid'Zhongshanshan')人工林土壤和无林地为研究对象,对0~15 cm、15~30 cm和30~45 cm深度土层土壤理化性质、养分含量和微生物生物量进行了分析。典型相关分析表明,土壤微生物生物量的变化是一个复杂的过程,是土壤各因子共同作用的结果,3种土壤U、V值均表现出层次性,随着土壤深度的增加逐渐降低;不同取样点相同深度土层U、V值为9 a林5 a林对照;单相关分析表明,土壤微生物生物量与速效磷、速效钾、有机质和全氮呈极显著正相关(P0.01),因此土壤微生物可以作为评价中山杉人工林在促进林地土壤质量改善过程中的重要生物指标;主成分分析表明,综合得分最高的9 a林为2.993,其次是5 a林为0.748,作为对照的无林地则为-3.742,说明9 a林地土壤质量最高。可见,中山杉对林下土壤质量有显著提高作用。  相似文献   
149.
The application of geotextile mats constructed from the palm leaves of Borassus aethiopum (Borassus) and Mauritia flexuosa (Buriti) was investigated in field experiments. The use of geotextiles caused improved soil moisture storage during dry summer periods on a steep (21–25°) roadside slope in Lithuania. The enhanced soil moisture under the Borassus and Buriti mats encouraged better root development of perennial grasses, increased the number and weight of earthworms and increased the dry biomass of perennial grasses by 50.5 and 18.2%, respectively, compared with a grassland control. The mean rate of water erosion from bare soil during the study period from 17/04/2007 to 11/12/2008 was 33.21 Mg/ha. The cover of palm‐mat geotextiles decreased soil losses from bare fallow soil by 94.8–91.1%. An erosion rate of 0.85 Mg/ha over this 21‐month period was measured on the slope under perennial grasses without geotextile cover. Application of geotextile cover on perennial grasses completely prevented soil erosion by water. Therefore, use of geotextiles has clear soil and water conservation benefits on industrial slopes susceptible to erosion. The use of geotextiles has multiple benefits including soil conservation, the improvement of plant growth conditions and the encouragement of earthworm populations.  相似文献   
150.
为明确猕猴桃果园的生产潜力,在普查的基础上对两个管理水平较高的徐香猕猴桃果园的树体结构及土壤养分状况进行分析。结果表明,高产型徐香猕猴桃树体的合理结构为成龄树冬季修剪后单株保留17个左右结果母枝,每枝保留15~21个有效芽,折合每667 m留长枝量为1 496个,留芽量为22 440~23 760个,7月份叶果比为3.33∶1。土壤速效氮为16.5 mg/kg,速效磷64.8 mg/kg,速效钾209.6 mg/kg,速效镁和速效铁分别156.6 mg/kg和3.58 mg/kg,有机质含量1.13%。可见,充足的肥料投入、枝芽数量及合理的叶果比是高产稳产的基本保证。  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