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921.
东北西部沙地近20年地下水变化动态及其成因分析   总被引:6,自引:4,他引:6  
本文以奈曼旗为例,分析研究了我国东北西部沙地1979-1997年地下水位时空变化规律及其与降水量和沙漠化的关系。结果表明:(1)沙地多年平均地下水位为2.19m,其中农区为2.85m,牧区1.16m;(2)地下水位是1981-1983年最低为2.49-2.56m,1991-1992年最高为1.90-1.92m,1997年为2.22m,高于1979年的2.41m;(3)该区季节最高水位主要发生于春季(3-5月),发生频率占50.1% ,最低水位主要发生于冬季(12-2月),发生频率为41.2%,平均4月最高为2.07m,10月最低为2.23m;(4)地下水位的年际变化动态和降水量密切相关,但有滞后1-2年的现象;(5)地下水位空间分布上的差异与土地沙漠化及土地利用方式密切相关,沙漠化土地主要用于放牧,由于人为利用少和蒸散少,有利于地下水抬升;(6)由于耕地面积占总土地面积比例低,水浇地和粮食产量的增加尚未对地下水位造成严重影响。  相似文献   
922.
该文通过分析巴旦杏在甘肃河西地区引种培育过程中出现的问题,总结出用容器育苗和大田开沟点播相结合来培育接穗,以山桃为砧木嫁接巴旦杏的引种驯化技术.结果表明,容器培育接穗比直接大田点播出苗率、成活率分别提高了10%和15%;巴旦杏与山桃嫁接表现出极好的亲和性,嫁接成活率为90%.  相似文献   
923.
苹果紧凑型品种和矮化砧木内源激素的变化   总被引:15,自引:0,他引:15  
 以不同矮化程度的苹果品种、砧木和嫁接植株为试材, 研究了春梢旺长期茎尖和春梢停长期叶片的内源激素变化。结果表明, 与普通型品种相比, 紧凑型品种茎尖和叶片中的赤霉素(GA1+3) 含量显著降低而细胞分裂素(CTKs) 含量显著升高, 紧凑型品种的CTKs/ GA1+3约是普通型品种的4. 78~6. 24 倍。不同矮化程度的砧木间相比, 春梢停长期叶片中, M9 的IAA 含量比平邑甜茶降低了53. 7 %。以M26作中间砧, 显著降低了接穗叶片和基砧新根中的IAA 含量; 但以新红星作中间砧则影响较小。将M26中间砧与紧凑型品种组合, 与乔砧普通型植株相比, 春梢停长期叶片和新根中IAA 含量分别下降了46. 1 %和33. 3 %,CTKs/ GA1+3是其2. 8~3. 6 倍, 其变化幅度大于单一应用矮化砧、紧凑型品种的植株。因此, 紧凑型、矮化砧具有不同的激素调节机制, GA、CTK在紧凑型品种矮化中起重要作用, 而矮砧的矮化可能与IAA 密切相关。  相似文献   
924.
花椰菜类蔬菜自交系基因组间亲缘关系的AFLP分析   总被引:13,自引:0,他引:13  
 利用AFLP 技术对花椰菜、青花菜、紫花菜、黄花菜自交系的遗传亲缘关系进行了研究。使用8 对选择性引物组合, 扩增出4901 条电泳带, 并对其进行聚类分析, 根据UPGMA 方法构建聚类树状图。结果表明: 花椰菜、青花菜、紫花菜、黄花菜明显分为四大类群; 青花菜与紫花菜亲缘关系较近, 花椰菜与其它花菜亲缘关系较远, 黄花菜居中。  相似文献   
925.
入世后我国甜樱桃面临的机遇与挑战及发展对策   总被引:5,自引:0,他引:5  
甜樱桃作为一种早熟、优质、保健果品,而且种植效益较高,在国内国际都正处于发展时期。根据世界甜樱桃生产和贸易情况,指出了我国在甜樱桃科学技术与生产上与世界先进甜樱桃生产国的差距,分析了我国加入WTO之后,我国甜樱桃面临的机遇和挑战,并且机遇大于挑战。如果有适当的科技投入,我国甜樱桃产业将可克服现在科技滞后的状态,发挥我国劳动力低廉和国土辽阔的优势,迅速扩大其生产总量,提高品质,扩大出口,增加农民的收入,2015年可望形成32.4~43.2亿元的社会总产值。  相似文献   
926.
In this paper we show how the spatialconfiguration of habitat quality affects the spatial spread of apopulation in a heterogeneous environment. Our main result is thatfor species with limited dispersal ability and a landscape withisolated habitats, stepping stone patches of habitat greatlyincrease the ability of species to disperse. Our results showthat increasing reproductive rate first enables and thenaccelerates spatial spread, whereas increasing the connectivity has aremarkable effect only in case of low reproductive rates. Theimportance of landscape structure varied according to thedemographic characteristics of the population. To show this wepresent a spatially explicit habitat model taking into accountpopulation dynamics and habitat connectivity. The population dynamicsare based on a matrix projection model and are calculated on eachcell of a regular lattice. The parameters of the Leslie matrix dependon habitat suitability as well as density. Dispersal between adjacentcells takes place either unrestricted or with higher probability inthe direction of a higher habitat quality (restricted dispersal).Connectivity is maintained by corridors and stepping stones ofoptimal habitat quality in our fragmented model landscape containinga mosaic of different habitat suitabilities. The cellular automatonmodel serves as a basis for investigating different combinations ofparameter values and spatial arrangements of cells with high and lowquality.This revised version was published online in May 2005 with corrections to the Cover Date.  相似文献   
927.
We used geo-spatial statistical techniques to examine the spatial variation and relationship of soil organic carbon (SOC) and soil moisture (SM) in the Luquillo Experimental Forest (LEF), Puerto Rico, in order to test the hypothesis that mountainous terrain introduces spatial autocorrelation and crosscorrelation in ecosystem and soil properties. Soil samples (n = 100) were collected from the LEF in the summer of 1998 and analyzed for SOC, SM, and bulk density (BD). A global positioning system was used to georeference the location of each sampling site. At each site, elevation, slope and aspect were recorded. We calculated the isotropic and anisotropic semivariograms of soil and topographic properties, as well as the cross-variograms between SOC and SM, and between SOC and elevation. Then we used four models (random, linear, spherical and wave/hole) to test the semi-variances of SOC, SM, BD, elevation, slope and aspect for spatial dependence. Our results indicate that all the studied properties except slope angle exhibit spatial dependence within the scale of sampling (200 – 1000 m sampling interval). The spatially structured variance (the variance due to the location of sampling sites) accounted for a large proportion of the sample variance for elevation (99%), BD (90%), SOC (68%), aspect (56%) and SM (44%). The ranges of spatial dependence (the distances within which parameters are spatially dependent) for aspect, SOC, elevation, SM, and BD were 9810 m, 3070 m, 1120 m, 930 m and 430 m, respectively. Cross correlograms indicate that SOC varies closely with elevation and SM depending on the distances between samples. The correlation can shift from positive to negative as the separation distance increases. Larger ranges of spatial dependence of SOC, aspect and elevation indicate that the distribution of SOC in the LEF is determined by a combination of biotic (e.g., litterfall) and abiotic factors (e.g., microclimate and topographic features) related to elevation and aspect. This demonstrates the importance of both elevation and topographic gradients in controlling climate, vegetation distribution and soil properties as well as the associated biogeochemical processes in the LEF.This revised version was published online in May 2005 with corrections to the Cover Date.  相似文献   
928.
早熟优质长豇豆新品种‘鄂豇豆2 号’   总被引:1,自引:0,他引:1  
 ‘鄂豇豆2号’是经有性杂交选育而成的早熟蔓生豇豆新品种。该品种荚浅绿色, 长60 cm,单荚质量18~ 24 g。早熟, 荚商品性状优良, 产量高, 对光周期反应不敏感, 田间疫病、煤霉病、病毒病发病率低, 适宜于春、夏、秋各季栽培, 已在全国大部分省份推广种植成功。  相似文献   
929.
Summary The performance of Parthenium hysterophorus , native to the tropical Americas and invasive to several countries, was evaluated for response to soil quality. Phenological (six stages) and quantitative growth variables [relative growth rates in height (Rh) and diameter (Rd)] were measured every fortnight. Based on harvest data, the variables, root:shoot (R:S) ratio, specific leaf area (SLA), relative growth rate in biomass (Rw), net assimilation rate (NAR) and dry matter allocation to plant components, were determined. High clay content in soils prolonged the rosette stage, enhanced Rh and Rd and hampered root growth, but promoted biomass allocation to shoots. The extreme degree of plant mortality was observed, with only 33.3% individuals surviving to reproduce in the soils with highest clay contents. This appears to be one of the most important findings that certainly has a major bearing on the range of adaptation of the weed. Seed mass declined whereas seed production increased in relatively coarser soils with the exception of nearly pure sand. In soils rich in clay, plants produced a smaller number of larger seeds. These data suggest that variation in fundamental functional traits would enable P. hysterophorus to adjust to a variety of habitat conditions.  相似文献   
930.
Glyphosate is a key component of weed control strategies in Australia and worldwide. Despite widespread and frequent use, evolved resistance to glyphosate is rare. A herbicide resistance model, parameterized for Lolium rigidum has been used to perform a number of simulations to compare predicted rates of evolution of glyphosate resistance under past, present and projected future use strategies. In a 30‐year wheat, lupin, wheat, oilseed rape crop rotation with minimum tillage (100% shallow depth soil disturbance at sowing) and annual use of glyphosate pre‐sowing, L. rigidum control was sustainable with no predicted glyphosate resistance. When the crop establishment system was changed to annual no‐tillage (15% soil disturbance at sowing), glyphosate resistance was predicted in 90% of populations, with resistance becoming apparent after between 10 and 18 years when sowing was delayed. Resistance was predicted in 20% of populations after 25–30 years with early sowing. Risks of glyphosate resistance could be reduced by rotating between no‐tillage and minimum‐tillage establishment systems, or by rotating between glyphosate and paraquat for pre‐sowing weed control. The double knockdown strategy (sequential full rate applications of glyphosate and paraquat) reduced risks of glyphosate and paraquat resistance to <2%. Introduction of glyphosate‐resistant oilseed rape significantly increased predicted risks of glyphosate resistance in no‐tillage systems even when the double knockdown was practised. These increased risks could be offset by high crop sowing rates and weed seed collection at harvest. When no selective herbicides were available in wheat crops, the introduction of glyphosate‐resistant oilseed rape necessitated a return to a minimum‐tillage crop establishment system.  相似文献   
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