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81.
【目的】建兰花叶病毒(Cymbidium mosaic virus,CymMV)是最主要的兰花病毒病原之一,其广泛传播对兰花产业发展造成严重威胁。探究CymMV遗传信息和进化,为广东省兰花病毒病的监测预警和兰花抗病毒病基因工程提供重要科学依据。【方法】对采自广州地区的墨兰疑似病毒病叶片进行CymMV的RT-PCR及DA-SELISA检测鉴定,利用相关分子生物学软件对CymMV分离物进行基因组序列组装、注释、系统进化及选择压力分析。【结果】首次在广东省发现2个CymMV分离物GZV013和ZC-29,基因组全长均为6227 nt,编码5个功能蛋白;GZV013与台湾分离物M2的核苷酸序列一致性为97.03%;ZC29与南京分离物NJ-1的核苷酸序列一致性为97.11%;CymMV各分离物的全基因组序列一致性为86.85%~98.31%,且多样性种群的分化与寄主种类和地理隔离关系密切;CymMV基因组每个区域均受到负选择的影响,并符合中性进化模型;编码RdRp、TGB1和TGB2的基因在基因组中变异率最高。【结论】GZV013与台湾分离物M2的亲缘关系最近,ZC29与南京分离物NJ-1的亲...  相似文献   
82.
静水压休克法诱导三倍体鲶鱼(silurus asotus L)的研究   总被引:1,自引:0,他引:1  
采用静水压休克法诱导三倍体鲶鱼。通过对受精时间、静水压力及持续施压处理时间三方面进行筛选试验的结果表明,鲶鱼卵受精4-5min,用600-649kg/cm^2的静水压力处理3min,可以获得100%的三倍体鲶鱼,而且胚胎存活率也较高,孵化率达对照组的90%以上,是静水压休克法诱导三倍体鲶鱼的最佳条件。三倍体鲶鱼的倍性用细胞遗传学方法验证。  相似文献   
83.
作者观察了鲤、团头鲂精子在0(去离子水)-300毫渗渗透压的D-半乳糖,D-葡萄糖和D-果糖溶液中的活动情况。结果表明,在这三种单糖溶液里,鲤、团头鲂精子活动的变化规律是一致的。精子快速运动和寿命的时间是以在D-半乳糖溶液中为最长。这两种鱼精子对这三种单糖的吸收、利用存在差别。  相似文献   
84.
潟湖是岛礁生物多样性演变的重要环境场,在岛礁水生态系统的物质循环和能量流动中发挥重要作用,而微型浮游动物的生态功能研究是解析南沙群岛岛礁水域潟湖生态系统初级生产力组成、流向、能量流动效率的重要研究内容之一。实验通过对南沙群岛重点岛礁渚碧礁、美济礁与永暑礁潟湖表层水域中微型浮游动物与生态环境调查,研究了其群落结构及其与环境因子的关系,并通过稀释培养实验研究了微型浮游动物的摄食压力。结果显示,调查水域共发现微型浮游动物20种,总丰度的范围为320~1 460个/L,以无壳纤毛虫丰度最高。无壳纤毛虫在渚碧礁潟湖西部水域(ZB-1)丰度最高,砂壳纤毛虫峰值则出现在永暑礁潟湖中部水域(YS-3),桡足类幼体丰度最大值出现在美济礁潟湖北部水域(MJ-2)。聚类分析结果显示,3个岛礁潟湖中部区域的微型浮游动物群落相似度较高,溶解氧是影响群落结构的最重要因素,特别是对MJ-3站位影响最为突出。摄食实验结果显示,3个岛礁潟湖水域浮游植物生长率为0.22~1.36 d-1;微型浮游动物摄食率范围为0.22~0.60 d-1,微型浮游动物每天约摄食浮游植物现存量的...  相似文献   
85.
Free-drainage or “open” substrate system used for vegetable production in greenhouses is associated with appreciable NO3 leaching losses and drainage volumes. Simulation models of crop N uptake, N leaching, water use and drainage of crops in these systems will be useful for crop and water resource management, and environmental assessment. This work (i) modified the TOMGRO model to simulate N uptake for tomato grown in greenhouses in SE Spain, (ii) modified the PrHo model to simulate transpiration of tomato grown in substrate and (iii) developed an aggregated model combining TOMGRO and PrHo to calculate N uptake concentrations and drainage NO3 concentration. The component models simulate NO3-N leached by subtracting simulated N uptake from measured applied N, and drainage by subtracting simulated transpiration from measured irrigation. Three tomato crops grown sequentially in free-draining rock wool in a plastic greenhouse were used for calibration and validation. Measured daily transpiration was determined by the water balance method from daily measurements of irrigation and drainage. Measured N uptake was determined by N balance, using data of volumes and of concentrations of NO3 and NH4+ in applied nutrient solution and drainage. Accuracy of the two modified component models and aggregated model was assessed by comparing simulated to measured values using linear regression analysis, comparison of slope and intercept values of regression equations, and root mean squared error (RMSE) values. For the three crops, the modified TOMGRO provided accurate simulations of cumulative crop N uptake, (RMSE = 6.4, 1.9 and 2.6% of total N uptake) and NO3-N leached (RMSE = 11.0, 10.3, and 6.1% of total NO3-N leached). The modified PrHo provided accurate simulation of cumulative transpiration (RMSE = 4.3, 1.7 and 2.4% of total transpiration) and cumulative drainage (RMSE = 13.8, 6.9, 7.4% of total drainage). For the four cumulative parameters, slopes and intercepts of the linear regressions were mostly not statistically significant (P < 0.05) from one and zero, respectively, and coefficient of determination (r2) values were 0.96-0.98. Simulated values of total drainage volumes for the three crops were +21, +1 and −13% of measured total drainage volumes. The aggregated TOMGRO-PrHo model generally provided accurate simulation of crop N uptake concentration after 30-40 days of transplanting, with an average RMSE of approximately 2 mmol L−1. Simulated values of average NO3 concentration in drainage, obtained with the aggregated model, were −7, +18 and +31% of measured values.  相似文献   
86.
Wheat (Triticum durum L.) yields in the semi-arid regions are limited by inadequate water supply late in the cropping season. Planning suitable irrigation strategy and nitrogen fertilization with the appropriate crop phenology will produce optimum grain yields. A 3-year experiment was conducted on deep, fairly drained clay soil, at Tal Amara Research Station in the central Bekaa Valley of Lebanon to investigate the response of durum wheat to supplemental irrigation (IRR) and nitrogen rate (NR). Three water supply levels (rainfed and two treatments irrigated at half and full soil water deficit) were coupled with three N fertilization rates (100, 150 and 200 kg N ha−1) and two cultivars (Waha and Haurani) under the same cropping practices (sowing date, seeding rate, row space and seeding depth). Averaged across N treatments and years, rainfed treatment yielded 3.49 Mg ha−1 and it was 25% and 28% less than half and full irrigation treatments, respectively, for Waha, while for Haurani the rainfed treatment yielded 3.21 Mg ha−1, and it was 18% and 22% less than half and full irrigation, respectively. On the other hand, N fertilization of 150 and 200 kg N ha−1 increased grain yield in Waha by 12% and 16%, respectively, in comparison with N fertilization of 100 kg N ha−1, while for cultivar Haurani the increases were 24% and 38%, respectively. Regardless of cultivar, results showed that supplemental irrigation significantly increased grain number per square meter and grain weight with respect to the rainfed treatment, while nitrogen fertilization was observed to have significant effects only on grain number per square meter. Moreover, results showed that grain yield for cultivar Haurani was less affected by supplemental irrigation and more affected by nitrogen fertilization than cultivar Waha in all years. However, cultivar effects were of lower magnitude compared with those of irrigation and nitrogen. We conclude that optimum yield was produced for both cultivars at 50% of soil water deficit as supplemental irrigation and N rate of 150 kg N ha−1. However, Harvest index (HI) and water use efficiency (WUE) in both cultivars were not significantly affected neither by supplemental irrigation nor by nitrogen rate. Evapotranspiration (ET) of rainfed wheat ranged from 300 to 400 mm, while irrigated wheat had seasonal ET ranging from 450 to 650 mm. On the other hand, irrigation treatments significantly affected ET after normalizing for vapor pressure deficit (ET/VPD) during the growing season. Supplemental irrigation at 50% and 100% of soil water deficit had approximately 26 and 52 mm mbar−1 more ET/VPD, respectively, than those grown under rainfed conditions.  相似文献   
87.
高精度气动比例压力阀设计与特性分析   总被引:3,自引:1,他引:2  
设计了一种两级阀芯活塞式结构的以比例电磁铁为控制元件,采用电反馈闭环控制的高精度气动比例压力阀。该阀输出压力在0.6MPa内连续可调,且稳态精度可达0.25 kPa。建立了比例阀完整的非线性动态模型,分析了主要物理和几何参数对系统动态特性和控制性能的影响;构建了输出因子调整的模糊自适应比例加积分控制器,并利用ATmega16单片机实现了压力在设定范围内的快速高精度控制。实验结果表明,该阀在设计压力范围内具有良好的压力和流量特性;和传统PI算法相比,输出因子调整的模糊自适应算法在改善系统响应和控制稳定性的同时,显著提高了稳态控制精度,具有较高的效率和鲁棒性。  相似文献   
88.
半室外环境两相流低压雾化降温数值分析   总被引:1,自引:0,他引:1  
为了改善夏季半室外空间的环境舒适度,研究了一种节能环保的两相流低压雾化降温技术.利用CFD软件FLUENT对其降温进行了分析,结合半室外环境的气象条件,获得了20μm和40μm两种粒径液滴对降温效果的影响规律.根据半室外环境中的人群活动特征,对其降温效果进行了初步分析.结果表明:在半室外环境中,采用两相流低压雾化降温可以达到较好的降温效果,在1.7 m及1.2 m等两种人体感知区域范围内,采用20μm和40μm两种粒径的细水雾最高温度降幅可达3.5℃,有明显的降温感觉;采用两相流低压雾化降温,不会引起局部环境中相对湿度的明显增加,人体不会感觉到闷热潮湿.两种粒径的细水雾均能完全蒸发,降温增湿的幅度和范围基本相同,没有明显区别.  相似文献   
89.
大型竖井式贯流泵装置的数值模拟与性能预测   总被引:2,自引:0,他引:2  
郑源  肖玉平  刘文明  黄昱 《排灌机械》2009,27(6):393-397
基于三维不可压流体的雷诺时均方程和Spalart-Allmaras方程湍流模型,采用SIMPLEC算法,对大型竖井贯流式泵站的全流道进行数值模拟,分析流道的流态和叶轮的静压分布规律,揭示竖井式贯流泵流道流体的流动机理;对泵装置的流量和效率进行预测,并与模型试验结果比较分析.结果表明:出水流道内的流动为轴向流动与环向旋转的螺旋形合运动;叶片的静压分布呈现较为明显的规律,升力面的静压整体上较吸力面要高,且叶片吸力面的静压等值线分布较升力面密.性能预测结果和模型试验结果吻合较好.  相似文献   
90.
在大气模拟试验台架上对运行在不同大气压下的直喷式柴油机的经济性、动力性、烟度及噪声特性进行对比试验研究与分析。试验结果表明:随着大气压力的减少,柴油机有效燃油消耗率、小时燃油消耗量、排气温度、烟度及噪声声功率增加,动力性下降。  相似文献   
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