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951.
在低温和弱光下对5个不同来源的黄瓜品种苗期^14C-同化物运输分配进行了研究。结果表明,两种低温20℃/10℃(昼/夜)和15℃持续低温均明显地抑制了喂叶同化物的运输率,与对照均呈极显著差异,显著的抑制部位是向其它叶的运输,而生长点,茎和根系部分均未受一抑制,与对照无明显差异,低温下不同品种间的不同部位的同化物的运输分配未出现显著差异。  相似文献   
952.
经过 3a的调查研究 ,摸清了喀什地区棉田主要障碍因素 ,并针对性地进行了对策研究 ,使低产田改良成效显著 ,为棉花高产优质高效栽培技术提供了理论依据。  相似文献   
953.
According to the German Soil Taxonomy, the formation of cemented horizons in Podzols is restricted to the precipitation of iron oxides. However, in iron‐poor sandy substrates, also illuviation of only organic compounds can form cemented horizons with penetration resistances of up to 14 kg cm−2. We present a reproducible field test for classifying pedogenic cementation in Podzols and suggest considering cemented horizons (Bmh and Bhm) in the upcoming edition of the Guidelines for Soil Mapping.  相似文献   
954.
泾惠渠灌区畦长对夏玉米耗水特性和产量影响   总被引:1,自引:0,他引:1  
泾惠渠灌区中畦田规格参差不齐,灌区由于畦田过长而造成的灌溉水量浪费屡见不鲜,不仅没有形成高产而且极大的造成了水资源的浪费。通过大田与小区试验相结合,以当地农民习惯的灌溉方式为对照,设置3个灌溉畦长处理(80、120、240 m),每个处理设置3次重复,改水为80%。研究了灌溉畦长对夏玉米在生育期内的耗水特性和产量的影响,土壤水分分布与产量及其构成因素的关系等问题,选择出兼顾节水高产可行的最优畦长。研究结果表明:在生育期灌水后,80和120 m处理畦长内畦首、畦中和畦尾的土壤相对含水率较为均匀无显著差异,240 m处理畦长畦首、畦中和畦尾的土壤相对含水率产生显著性差异;80和120 m处理夏玉米在畦首、畦中和畦尾灌水均匀度较为平均且无显著差异,240 m畦长处理差异较为显著,且80 m畦长处理产量分布最为平均、平均水分利用效率最高产量为1.021 839万kg/hm2,水分利用效率为25.12 kg/(hm2·mm)。综合夏玉米产量及其分布、水分利用效率等因素,在泾惠渠灌区80 m的灌溉畦长是兼顾节水高产的最适宜畦长,该结论以期为泾惠渠灌区大田作物高产节水提供一定理论依据。  相似文献   
955.
北部生态系统生产力模拟(BEPS,Boreal Ecosystem Productivity Simulator)模型能够模拟不同生态系统碳水循环过程,并通过气孔导度将二者有机地结合,在土壤水分模拟上具有更大的优势。为了使BEPS模型适用于较小空间尺度的雨养冬小麦农田生态系统的土壤水分模拟,根据冬小麦的降水截留过程、冠层的辐射传输过程、根系分布规律和区域土壤水文参数的获取方法对BEPS模型的水平衡模块进行参数方案调整。在此基础上,基于实现BEPS模型与遥感反演的农田土壤水分数据同化的目的,利用经上述调整方案后的BEPS模型,对郑州农业气象试验站2011—2015年冬小麦生长季的农田土壤水分进行动态模拟,并用观测数据进行验证。结果表明,调整后的BEPS模型能够较好地模拟雨养冬小麦农田土壤水分及动态变化,决定系数R2可达0.70以上,平均相对误差MRE总体低于25.0%,但对底层模拟能力较差;在以旬为步长条件下,拔节前模拟效果优于拔节后;土壤水文参数是影响模型模拟土壤水分垂直交换和分布的主要因素,可通过优化进一步提高土壤水分模拟能力。  相似文献   
956.
《Plant Production Science》2013,16(1):105-111
Abstract

In Order To Develop A Cultivation Technique For The Practical Use of Phytoremediation of Diesel-Contaminated Soil, We Evaluated The Rhizodegradation of Diesel-Contaminated Soil Using Italian Ryegrass. Experiments Were Conducted Under Two Different Soil Conditions That Were Expected To Reduce The influence of Diesel On The Plant. Under The First Condition, The initial Diesel Concentration Which Is Expressed in The Total Petroleum Hydrocarbon (Tph) Concentration Was Set To 0.80%. The Concentration Was Almost Half The Upper Limit For The Growth of Italian Ryegrass. Under The Second Condition, Zeolite Was Added To The Experimental Soil To Improve The Cation Exchange Capacity (Cec). in 152 Days Experiments, We Evaluated The Plant Growth Variables, Tph Concentration, Soil Dehydrogenase Activity (Dha) That Is Reflective of The Rhizosphere Microbial Activity, And The Aerobic Bacterial Count. The Results Suggest That The Tph Concentration in First Condition (0.80%) Could Not Bring About A Significant Recovery of Plant Growth. The Plant Growth Observed in First Condition Was Equal To ThatObserved in The Case of The Upper Limit Tph Concentration Used in Our Previous Study. However, Under The Second Condition,It Is Suggested That The Addition of Zeolite Could increase Plant Growth, Which Can in Turn Improve The Rhizodegradation Effect.  相似文献   
957.
《Plant Production Science》2013,16(2):185-192
Abstract

Rice productivity is related to the ability of plants to adapt to heat stress. The heat-tolerant cultivars ‘Nikomaru’ and ‘Chikushi 64’ and heat-sensitive cultivar ‘Hinohikari’ were grown at 30ºC and 25ºC for 49 days after flowering. At 30ºC, only a few white immature kernels were produced in ‘Nikomaru’ and ‘Chikushi 64’, but about 22% of grains had immature kernels in ‘Hinohikari’. The high temperature(30ºC) caused no significant changes in grain dry weight, water content, and the NMR T1 value during the early ripening stage in ‘Nikomaru’ and ‘Chikushi 64’. It also did not affect grain development, especially with respect to the nucellar epidermis, in ‘Nikomaru’ and ‘Chikushi 64’, but caused clear cessation of development of the nucellar epidermis at 14 days after flowering in ‘Hinohikari’. In addition, high temperature decreased the amylose content and increased hardnessvs. adhesion ratio of cooked rice in both ‘Nikomaru’ and ‘Chikushi 64’ resulting a softer, less sticky texture, but not in ‘Hinohikari’. The maximum viscosity and breakdown values were increased, and final viscosity decreased at 30ºC in all three cultivars. These results suggested that starch in the endosperm of grains changed from a fluid state to a doughy state more slowly in ‘Nikomaru’ and ‘Chikushi 64’ than in ‘Hinohikari’, in which the water content and NMR relaxation time decreased, and transported assimilates accumulated slowly during grain development.  相似文献   
958.
基于EnKF-3DVar模型的海淀区地表温度模拟   总被引:1,自引:0,他引:1  
以城市化程度较深的北京市海淀区为研究区,基于2005年、2010年和2015年的遥感影像数据,利用基于影像(IB)的算法反演城市地表温度空间分布。将数据同化算法EnKF-3DVar与CA/Markov模型集成,将海淀区的多年平均臭氧浓度空间分布数据同化进行城市地表温度的模拟预测。结果表明海淀区的城市地表温度10年间呈现先下降后上升的趋势,但总体呈现下降趋势,其中2015年的平均温度为31.139 3℃。引入EnKF-3DVar的预测模型能够显著提升模型的模拟精度,所预测的2015年的数据结果 Kappa系数达到0.821 6。在有城市公园绿地的模式下,地表温度高值区呈现缓解趋势,在无城市绿地公园的模式下,城市地表温度高值区呈现出明显的扩张趋势,最高温度达到了56.142 3℃,城市生态绿地对于城市地表温度的空间分布影响巨大,合理布局城市绿地公园意义重大。  相似文献   
959.
石启龙  王瑞颖  赵亚  刘彦爱 《农业机械学报》2017,48(9):337-343,311
桑葚富含多酚类物质,具有一定的营养与保健功能。多酚类物质在加工及贮藏过程中非常不稳定,喷雾干燥法微胶囊包埋是保护生物活性成分常采用的方法。但是,果汁喷雾干燥过程中极易出现黏壁现象,导致粉末回收率较低。基于此,研究不同比例乳清分离蛋白(WPI)与麦芽糊精(MD)对喷雾干燥桑葚粉理化特性的影响。结果表明,进料液中以少量WPI取代MD能显著提高桑葚粉的回收率,WPI较高的表面活性与良好的成膜性是使桑葚粉回收率提高的主要原因。随着进料溶液中WPI质量分数的增加,桑葚粉含水率增加;水分活度、堆积密度、粒径、水溶性指数和玻璃化转变温度呈降低趋势,而吸湿性则无明显变化。随着进料溶液中WPI质量分数的增加,桑葚粉L值、b值增加,a值降低,色差ΔE增加。桑葚粉的总酚含量与清除自由基能力随进料溶液中WPI质量分数的增加呈降低趋势。当进料溶液中桑葚汁/MD/WPI质量比为65∶(34.5~30.0)∶(0.5~5.0)时,既能有效解决黏壁问题,又能较好地抑制桑葚汁中多酚类成分降解,使桑葚粉具有较高的抗氧化能力。  相似文献   
960.
Glucose is widely used to study the dynamics of easily available organics in soil. Pure culture studies have revealed that many microorganisms can sense and respond to glucose through chemosensory mechanisms that are not directly reliant on energy catabolism. However, the rapid mineralization of glucose by microorganisms makes it difficult to disentangle its energy effects from such non‐catabolic interactions. “Non‐metabolizable” glucose analogues have proven useful in mechanistic studies of glucose in pure culture, but have never been applied to complex microbial communities in soil. We sought to determine how their mineralization in soil differs from that of glucose, and whether they have potential as a new approach for investigating chemosensory mechanisms in soil microbiology. We incubated soil from an agricultural Haplic Luvisol under controlled conditions for 24 d and monitored CO2 efflux after addition of (1) glucose, and three “non‐metabolizable” glucose analogues: (2) 2‐deoxyglucose (DG), (3) α‐methylglucoside (αMG), and (4) 3‐O‐methyl‐glucose (OMG), at three concentration levels, along with a control. All three analogues did in fact produce a large increase in soil CO2 efflux, but the dynamics of their mineralization differed from the rapid degradation seen for glucose. At medium and high concentrations, CO2 efflux peaked between 2.5 and 4 d after amendment with DG and αMG, and was delayed by about one week for OMG. The markedly different patterns of mineralization between glucose and OMG offer a new tool for investigating the behavior of glucose in soil. By using OMG as a glucose model, chemosensory mechanisms could be studied with limited interference from energy catabolism.  相似文献   
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