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171.
介绍了云南陇川县水田新植和宿根甘蔗的高产高糖种植技术。  相似文献   
172.
流式细胞术在水生生物DNA含量和倍性分析中的应用   总被引:3,自引:0,他引:3  
利用流式细胞仪对鲤鱼、银鲫、黄颡、牙鲆等淡水和海水鱼类进行了DNA含量测定或倍性分析。通过几百个样品的测定和分析,认为流式细胞仪在DNA相对含量测定和倍性分析上结果比较稳定一致,可以用于大量样品的测定分析。同时对待测样品的保存、处理及上样量等进行了一系列比较研究,找出最好的保存方法、最简便的样品处理方法和最少的上样量。流式细胞仪在水生生物的遗传育种、种群分化等方面有很重要的应用价值。  相似文献   
173.
Florida is the largest producer of fresh-market tomatoes in the United States. Production areas are typically intensively managed with high inputs of fertilizer and irrigation. The objectives of this 3-year field study were to evaluate the interaction between N-fertilizer rates and irrigation scheduling on yield, irrigation water use efficiency (iWUE) and root distribution of tomato cultivated in a plastic mulched/drip irrigated production systems. Experimental treatments included three irrigation scheduling regimes and three N-rates (176, 220 and 230 kg ha−1). Irrigation treatments included were: (1) SUR (surface drip irrigation) both irrigation and fertigation line placed right underneath the plastic mulch; (2) SDI (subsurface drip irrigation) where the irrigation line was placed 0.15 m below the fertigation line which was located on top of the bed; and (3) TIME (conventional control) with irrigation and fertigation lines placed as in SUR and irrigation being applied once a day. Except for the “TIME” treatment all irrigation treatments were controlled by soil moisture sensor (SMS)-based irrigation set at 10% volumetric water content which was allotted five irrigation windows daily and bypassed events if the soil water content exceeded the established threshold. Average marketable fruit yields were 28, 56 and 79 Mg ha−1 for years 1-3, respectively. The SUR treatment required 15-51% less irrigation water when compared to TIME treatments, while the reductions in irrigation water use for SDI were 7-29%. Tomato yield was 11-80% higher for the SUR and SDI treatments than TIME where as N-rate did not affect yield. Root concentration was greatest in the vicinity of the irrigation and fertigation drip lines for all irrigation treatments. At the beginning of reproductive phase about 70-75% of the total root length density (RLD) was concentrated in the 0-15 cm soil layer while 15-20% of the roots were found in the 15-30 cm layer. Corresponding RLD distribution values during the reproductive phase were 68% and 22%, respectively. Root distribution in the soil profile thus appears to be mainly driven by development stage, soil moisture and nutrient availability. It is concluded that use of SDI and SMS-based systems consistently increased tomato yields while greatly improving irrigation water use efficiency and thereby reduced both irrigation water use and potential N leaching.  相似文献   
174.
The reuse of saline treated industrial wastewater generated by textile firms mixed with municipal domestic effluent for irrigation was used to asses its effect on the mineral content of three olive (Olea europaea L.) cultivars under greenhouse and field conditions during two complete vegetative cycles. Chemical analysis of the treated wastewater indicated that the element concentrations fall within the permissible range of irrigation water used for plants. However, little impermissible accumulation of Na and Mg higher than the recommended maximum concentration was observed. Irrigation water with six electrical conductivities (EC = 0.78, 1.0, 2.0, 3.0, 4.0 and 5.0 dS m−1 in treatments T0, T1, T2, T3, T4, T5, respectively) were compared in the greenhouse experiment. The olive trees in the field experiment were trickle irrigated with potable water and treated wastewater (average EC = 4.2 dS m−1). The results of the greenhouse experiment showed that leaf N, Cu, Mn, Fe, Pb, and Na contents increased with increasing salinity of the treated wastewater. This increase was accompanied with a decrease in K and Mg contents. Leaf Ca and Cl concentrations were not considerably affected. Ion analysis in roots indicated that the contents of P, Na, Cl, Mn, and Pb increased while K decreased as treated wastewater salinity increased. Consequently, in most cases T4 and T5 gave a highly significant increase or decrease in accumulation of the previously mentioned minerals. A considerable variation in the studied cultivars was noticed. ‘Nabali’ was considered the most tolerant cultivar for the high salinity levels of the treated wastewater; its transporting selectivity of Na from root to leaf was higher and more Na was retained in the roots. Tissue analysis of leaves indicated that the element concentrations were within the adequate levels except those of Fe in ‘Nabali’ and ‘Manzanillo’, Na in ‘Improved Nabali’ and Cu in ‘Nabali’ and ‘Manzanillo’. In view of these findings, the negligible accumulation of minerals in leaves and roots indicated that this kind of textile effluent can be used as a valid alternative for irrigation of olive orchards with continuous monitoring of mineral levels.  相似文献   
175.
Quantification of the interactive effects of nitrogen (N) and water on nitrate (NO3) loss provides an important insight for more effective N and water management. The goal of this study was to evaluate the effect of different irrigation and nitrogen fertilizer levels on nitrate-nitrogen (NO3-N) leaching in a silage maize field. The experiment included four irrigation levels (0.7, 0.85, 1.0, and 1.13 of soil moisture depletion, SMD) and three N fertilization levels (0, 142, and 189 kg N ha−1), with three replications. Ceramic suction cups were used to extract soil solution at 30 and 60 cm soil depths for all 36 experimental plots. Soil NO3-N content of 0-30 and 30-60-cm layers were evaluated at planting and harvest maturity. Total N uptake (NU) by the crop was also determined. Maximum NO3-N leaching out of the 60-cm soil layer was 8.43 kg N ha−1, for the 142 kg N ha−1 and over irrigation (1.13 SMD) treatment. The minimum and maximum seasonal average NO3 concentration at the 60 cm depth was 46 and 138 mg l−1, respectively. Based on our findings, it is possible to control NO3 leaching out of the root zone during the growing season with a proper combination of irrigation and fertilizer management.  相似文献   
176.
紫花苜蓿低温干燥特性试验研究   总被引:1,自引:0,他引:1  
研究了干燥温度在40~80℃范围内的紫花苜蓿干燥过程,并分析不同干燥因素:热风温度、流速、苜蓿初始密度及苜蓿初始含水率对其干燥速率的影响。结果表明,干燥温度及热空气流量是影响苜蓿干燥速率的重要因素,高温高流量干燥效果最好。但低温情况下,气流的影响在干燥后期效果不明显。苜蓿初始含水率和堆放密度对干燥速率的大小、恒速干燥阶段的持续时间及干燥速率变化率有影响:密度大,相应干燥速率下降。  相似文献   
177.
温度对小球藻生长量和溶氧量影响研究   总被引:7,自引:0,他引:7  
采用梯度法研究温度对小球藻生长量和溶氧量的影响.结果表明:小球藻对温度的适应范围较广,5~30℃期间小球藻均可正常生长,25℃为小球藻生长的最适温度,此时小球藻的生长速度与溶氧量增长速度达到最大,结果可为小球藻生长量和溶氧量的研究提供参考依据.  相似文献   
178.
旱灾是制约辽西地区农业发展的重要因素。针对辽西干旱地区农业生产实际,介绍深松和坐水播种技术及其作用,并通过应用试验以验证其对土壤的保墒增墒效果。试验结果表明,在干旱条件下采用这两种技术可有效改善土壤情况,为种子发芽出苗创造适宜的环境条件。  相似文献   
179.
依据Griffing方法配制种植不同类型的复合双列杂交组合,分别设水、旱二种水分条件。在不同生育时期测定株高、株穗数、株粒重、穗粒数、黄叶片数、SOD、POD、MDA等农艺、生理生化性状,研究不同组合类型对杂交后代的遗传力影响及其与抗旱性的关系及遗传规律。结果表明,可采用抗旱指数(DRI)作为评价小麦品种抗旱性强弱的指标。旱地株粒重、旱地穗下节长、旱地黄叶片、籽粒饱满度、落黄、旱地成穗数、旱地株高等7个质量性状和数量性状与抗旱性关系密切且遗传力较强,可作为高产种质杂种后代的早期抗旱性鉴定指标。SOD活性和MDA含量由于广义遗传力和狭义遗传力均较高,可以在杂种后代早期世代进行选择,OA能力和POD活性广义遗传力较高但狭义遗传力低,适宜在杂种后代的晚期世代进行选择。  相似文献   
180.
研究了长白山区沟谷沼泽乌拉苔草不同构件元素含量及叶片不同季节积累变化及元素间的相互关系。结果表明,乌拉苔草属于抗金属污染植物,不同构件在元素积累和季节变化中有较大差异:Mn、N,P、Mg、Fe、Cu、Zn主要集中在根部,K主要集中在叶鞘。不同季节积累中,N、K主要在营养成长期和生殖生长并存期5月份最多,P在成熟期的8月份最多,金属元素在衰老期的9月份最多,尤其是Fe元素富集量最多,完全可以作为铁污染区的抗性植物和净化植物,而非金属元素在衰老期的9月份最少。金属元素之间相生相互协调关系强,非金属元素之间关系相互协调,而金属元素除Mn和P、N是极显著相关外,P和Ca呈显著相关,与其他关系不显著。说明乌拉苔草各构件中的元素之间没有相互拮抗的关系。  相似文献   
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