983 resultados para 806


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本发明涉及杀虫剂领域,具体地说是一种海藻内生真菌次生代谢产物二萜生物碱类化合物的应用。所述海藻内生真菌次生代谢产物二萜生物碱类化合物具有杀虫作用,海藻内生真菌次生代谢产物二萜生物碱类化合物如式(I)所示;本发明通过分离于海洋红藻异管藻的真菌米曲霉(Aspergillus oryzae)cf-2发酵经提取、分离获得的二萜生物碱类天然化合物,经杀虫活性实验得出此二萜生物碱类化合物在100微克/毫升时对卤虫的致死率为74.2%。

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Pituitary adenylate cyclase-activating polypeptide (PACAP) is a neuropeptide abundantly expressed in the central nervous system and involved in regulating neurogenesis and neuronal signal transduction. The amino acid sequence of PACAP is extremely conserved across vertebrate species, indicating a strong functional constraint during the course of evolution. However, through comparative sequence analysis, we demonstrated that the PACAP precursor gene underwent an accelerated evolution in the human lineage since the divergence from chimpanzees, and the amino acid substitution rate in humans is at least seven times faster than that in other mammal species resulting from strong Darwinian positive selection. Eleven human-specific amino acid changes were identified in the PACAP precursors, which are conserved from murine to African apes. Protein structural analysis suggested that a putative novel Deuropeptide might have originated during human evolution and functioned in the human brain. Our data suggested that the PACAP precursor gene underwent adaptive changes during human origin and may have contributed to the formation of human cognition.

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The experiment was carried out to study the impacts of fish sanctuaries on the production and diversity of plankton in beels of haor region at Mithamain Upazila of Kishoreganj district in Bangladesh during July 2004 to June 2005. A total of 75 (60 phyto and 15 zooplankton) and 74 (59 phyto and 15 zooplankton) genera of plankton were recorded in T-1 and T-2 (with sanctuary) respectively while only 50 (39 phyto and 11 zooplankton) genera were obtained in T-3 (control). Chlorophyceae and Copepoda were the most dominant group of phytoplankton and zooplankton respectively in all the treatments. The total phytoplankton numbers were found to range from 5472 to 35,833 cells/l and 5250 to 40,472 cells/l and total zooplankton from 667 to 1722 cells/l and 611 to 1667 cells/l in T-1 and T-2 respectively in sanctuary sites whereas the ranges of phytoplankton and zooplankton in the control site were 1778 to 29,333 cells/l and 56 to 1056 cells/l respectively. The maximum phytoplankton and zooplankton were recorded during winter season in all the treatments. The ranges of total plankton were 6194 to 37,500 cells/l, 6028 to 41,806 cells/l and 1889 to 29,444 cells/l in T-1, T-2 and T-3 respectively. The phytoplankton, zooplankton and total plankton recorded in treatments with sanctuary were significantly higher (p<0.5) than the treatment without sanctuary (control) indicating positive impacts of sanctuaries on the production of plankton. Between two treatments of fish sanctuaries the total plankton populations were comparatively higher in T-2 than T-1.

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An investigation on growth, production and fishery of three Indian major carps: rohu, Labeo rohita, catla, Catla catla and mrigal, Cirrhinus mrigala and three exotic carps: silver carp, Hypophthalmichthys molitrix, grass carp, Ctenopharyngodon idella, and common carp, Cyprinus carpio was carried out in Nasti baor during February to April months. In catch per unit effort (CPUE) study the highest catch/day/person (3.13 kg) and catch/day/gear (40.65 kg) was recorded in the month of March for kochal fishing. In komar fishing catch/day/person (15.08 kg) and catch/day/gear (1206 kg) was also found higher in March. Komar fishing was done only in March and April and its CPUE was greater in both the months than that of kochal. The average recovery rate (combination of all six species) was 37.80 considering the stocking from July month of the previous year. The recovery rate of common carp (54.1) was the highest and lowest (13.90) in case of silver carp. When the recovery was calculated on the basis of one year data and stocking, it was 55.6%. Analysis of production model revealed that the present production (54,806 kg/year) is less than both theoretical production (model I- 85,285 kg/year and model II -75,952 kg/year) estimated. Therefore, it may be concluded that the fish production from Nasti baor could still be increased from the present level of production.

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滇池北部福保湾主要承接上游昆明市的生活污水及周边工业污水,其污染程度极为严重.本研究在福保湖湾内设置4个采样点,分别采集了不同区域的沉积物,首次模拟研究了微囊藻(Microcystis)在不同沉积物环境中复苏能力差异,结果表明微囊藻在模拟实验中的复苏能力表现出对不同底质的不同适应性,入口湖区的沉积物对微囊藻的复苏有极强的抑制作用.藻类复苏后达到的最大生物量(以叶绿素a计)分别为东岸对照区的4.7%,西岸对照区的6.6%及吹填区的11.9%,其中微囊藻生物量也远低于其它各样点,占东岸对照、吹填区及西岸对照的

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2003-2004年对天鹅洲和老江河两个长江故道的调查表明,该类水体的底栖动物在类群组成上与阻隔湖泊类似,以螺类和水生昆虫为主,但是有较多的流水性和冷水性种类.纵向比较表明两个故道底栖动物生物量比20世纪90年代下降了48.3%-78.6%,软体动物尤为突出.底栖动物资源衰退的原因主要有两个,一是过度渔业,二是江湖阻隔.与长江流域其他类型水体的比较表明在中等程度水文连通的水体中底栖动物种类最多,软体动物尤其是双壳类的现存量明显较高.为发挥长江故道群对泛滥平原生物多样性维持的重要作用,文末提出了关于合理放养

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由于水体富营养化等原因,在全球范围内,水华频繁爆发.近来,发现武汉东湖出现了一种拟多甲藻(Peridiniopsis sp.)水华,该藻是广温性种,水华持续时间较长,最高细胞密度达2541.44×10~4cells/L.研究了武汉东湖拟多甲藻水华种群动态及其与环境因子之间的关系.相关分析表明,拟多甲藻密度和表层总磷、1.2m处的总氮以及表层硝酸盐浓度成显著正相关,但是总磷、溶解性磷酸盐、总氮、磷酸盐以及氨氮浓度在形成明显水华前大幅度升高,水华消亡时,处于低谷.适合的光照条件,也是拟多甲藻水华形成的刺激因子

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使用Videomex-V影像运动监视系统全天监测丰鲤(Cyprinus carpiovar.Xingguo♀×Cyprinus carpiovar.mirror splittered♂)、散鳞镜鲤(Cyprinus carpiovar.mirror splittered♂)和兴国红鲤(Cyprinus carpiovar.Xingguo♀)的活动(每种鱼12条,饥饿和饱食各6条)。结果显示,3种鱼饥饿时的活动水平都显著低于饱食时,但3种鱼白昼或夜间的相对活动水平都不受摄食与否的显著影响;饥饿或饱食时,丰鲤

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己内酰胺是一种重要的有机化工原料。采用环己酮肟的气相Beckmann重排的方法制己内酰胺可以解决传统的液相工艺中存在的副产硫酸胺、腐蚀设备和污染环境等问题。本研究的目的是开发出适合环己酮肟的气相Beckmann重排的固体酸催化新工艺。 首先,本工作用同位素标记的方法研究了Beckmann重排在固体酸B2O3/γ-Al2O3和TS-1上的反应机理。同位素标记后的产品采用质谱测量。通过与H218O交换氧,发现环己酮肟与H218O的交换在B2O3/γ-Al2O3和TS-1只能进行到一定程度,这暗示固体酸上腈中间体的解离不如经典的机理完全。提出了解离度(α)的概念,其定义为解离了中间体腈与总中间体腈之比。通过拟合实验数据和同位素标记的产品的计算公式,获得了B2O3/γ-Al2O3和TS-1上α 值分别为0.199和0.806的结果。 其次,采用对氧化铝表面合适氟化的方法,对氟化的氧化铝的性能进行研究。发现氧化铝表面氟化可以改善Beckmann重排的性能。氧化铝表面氟化可以消除其表面碱性位,说明了催化剂表面碱性位不利于Beckmann重排。而完全氟化的氧化铝的选择性不如某些固体酸如负载B2O3和Silicalite-1,暗示着表面酸强度也影响催化剂的选择性。同时,我们对适合气相Beckmann重排的催化剂进行了简单的筛选。发现一种稀土焦磷酸盐有可能是适合此反应的催化剂。 再次,研究了稀土焦磷酸盐催化剂上气相Beckmann重排。通过对一些稀土磷酸进行XRD,FT-IR,NH3-TPD和水接触角等表征,发现这类催化剂上表面的弱酸位以及合适的表面疏水是它们具有较好性能的原因。 再次,对焦磷酸铈催化剂的合成以及反应氛围进行了优化。发现优化的反应氛围为催化剂在pH在3~4时沉淀,在500~550度焙烧,在~350度反应,载气~80ml/min,空速在0.43h-1时反应,能保持转化率在98%以上,选择性在70%以上,8小时不失活。 最后,采用P123作为模板剂合成了一种新型的中孔稀土磷酸盐,这种稀土磷酸盐具有无序的虫洞形结构。应用这种新型的中孔稀土磷酸盐于酚类甲醇氧烷基化获得了较好的结果。与不加表面活性剂的材料相比,这种中孔稀土磷酸盐在低温下具有更大的活性并且其选择性不受损失。认为这种中孔的形态对催化性能具有好的影响。

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对部分耗尽CMOS/SOI工艺进行了研究,成功地开发出成套部分耗尽CMOS/SOI抗辐照工艺。其关键工艺技术包括

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本文以土壤一植物系统为中心,通过铜在三个类型区黑土中的作物效应,作物残毒,环境效应,封对铜的自净能力,综合确定了黑土中铜的临界含量,根据野外调查和室内模拟的各项物质平衡参数,代入数学模型,计算出不同年限黑土中铜的环境容量。作物盆栽(春小麦、大豆)试验表明,作物受铜害的起始浓度在200-400ppm以上。以作物减产10%为依据,经相关方程计算,黑土中铜作物效应的临界值为348.46ppm(全铜),和217.93ppm(有效铜,0.1N Hcl)。在本实验土壤铜浓度范围内(0-1000ppm),作物籽实,茎(叶、荚)中铜含量很少超过20ug/g毒性标准。土壤对铜的吸附一解吸试验表明,代表土壤对铜自净能力的指标一固态吸附量在本实验条件下为806.77-1456.16ug/g土。铜对环境影响试验表明,土壤投加铜1204.09ppm和土壤投加铜200ppm不导致地下水和地表水超标。综合以上各个单一体系的临界指标,选择限制性因子,确定黑土中铜的临界值为348.46ppm(全铜)。根据野外调查和模拟的各项物质平衡参数,经数学模型计算出了黑土中不同年限的变动容量(Q)和总容量(Q总)。如,t = 50年,Q = 1700.58g/亩·年,Q总 = 85029 g/亩。