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1.
为探索抗旱灌木光合作用效率对土壤水分的响应特征与阈值效应,以沂蒙山区优势灌木金银花为材料布设盆栽模拟试验,通过人工灌水与植物自然耗水的方法进行控水处理,在不同水分梯度下测定分析了金银花的光合作用参数,并对土壤水分有效性进行了分级。结果表明:1)金银花叶片净光合速率(Pn)和水分利用效率(WUE)对土壤相对含水量(RSWC)具有明显的阈值响应规律,当RSWC分别为79.59%和47.43%时,金银花Pn、WUE达到最大值。当RSWC=29.71%时,制约光合效率的主要因子由气孔限制转为非气孔限制。2)确定了金银花光合作用的5个特征水分阈值:Pn水分补偿点、Pn水分均值点、Pn水分饱和点、WUE水分均值点和WUE水分高效点。同时,将金银花的土壤水分有效性划分了5个等级:高产高效水、高产中效水、中产高效水、低产低效水和无产无效水。3)田间水分管理时,为维持金银花较高的光合作用水平,应维持的土壤水分范围为:42.38%≤RSWC≤96.05%,避免土壤水分低于29.71%。研究结果可为沂蒙山区干旱逆境下金银花的风险诊断和田间水分管理提供科学依据。  相似文献   
2.
森林生物量、碳储量是评价森林生长状况的重要指标。通过野外样地调查及室内烘干称重等方法,研究了苏木山林场不同林龄华北落叶松人工林乔木层、灌木层、草本层生物量以及乔木层净生产力、碳储量积累特点和变化趋势。结果表明:幼龄林、中龄林、近熟林平均木的生物量分别为26.41 kg、32.70 kg、107.81 kg;林分生物量分别为43.66 t·hm^-2、79.88 t·hm^-2、125.83 t·hm^-2;灌木层和草本层生物量之和分别为1.44 t·hm^-2、1.19 t·hm^-2、0.95 t·hm^-2;乔木层净第一生产力分别为2.56 t·hm^-2·a^-1、3.07 t·hm^-2·a^-1、3.40 t·hm^-2·a^-1,碳储量分别为22.20 t·hm^-2、40.55 t·hm^-2、63.80 t·hm^-2。苏木山华北落叶松人工林生物量、碳储量随林龄增加而增大,各器官碳储量从大到小依次为干>根>枝>皮>叶。  相似文献   
3.
为保障深远海金属网箱养殖系统的结构安全,进行网箱结构的水动力学研究是一项重要的工作。构成金属网箱主要组成部分的金属网衣是一种小直径多孔的网状结构,在波浪和水流作用下的水动力学特性与一般的海洋工程结构物有显著不同。本文基于有限元基本原理,采用梁单元模拟金属网线结构,采用连接单元模拟网线接触部位的相互作用,并运用ABAQUS软件进行数值计算,在试验验证的基础上,分析了在水流作用下一种金属菱形链网衣在不同网目尺寸、不同网线直径情况下的水阻力变化情况。数值模拟结果表明在各种工况下,当网目尺寸由25 mm增加到35 mm、45 mm时,网衣受力增加幅度的平均值分别为14.71%和38.07%;当网线直径由2.5 mm增加到3.2 mm、4.0 mm时,各工况下网衣受力增加幅度的平均值分别为25.05%和45.06%。研究结果可以为进一步开展深海养殖金属网箱水动力特性研究提供积极的基础。  相似文献   
4.
中国稻田生态系统服务净价值评估   总被引:3,自引:1,他引:2  
使用当量因子法和数量模型核算了2007—2016年中国稻田生态系统服务净价值。结果显示:1)2016年中国稻田生态系统提供服务价值为1.344×10~(12)元,服务成本为0.144×10~(12)元,服务净价值为1.2×10~(12)元,平均生态服务净价值为3 977元/hm~2;2)2007—2016年,中国稻田生态系统服务净价值总体呈上升趋势,中东部地区稻田生态系统服务净价值较高,西北地区较低;3)稻田受化肥和农药污染较严重的省份为安徽。研究结论为制定精准的生态补偿机制提供了可靠的参考数据。各省应响应"农业节肥节药"政策,参照稻田生态成本比例有针对性地进行农村污染治理和生态环境保护工作。  相似文献   
5.
为建立并优化草鱼鳃蛋白质组双向电泳的技术体系,实验将草鱼鳃经裂解处理后,通过固相p H梯度胶条进行一向等电聚焦和SDS聚丙烯酰胺凝胶垂直电泳进行蛋白分离,对不同的裂解液配方、蛋白纯化方法、IPG胶条的分离范围、上样量和染色方法等进行了探索和优化,并应用lmage Master 2D Platinum 7.0软件对电泳图谱进行了分析。结果表明:采用裂解液中添加DTT来取代Tris和TBP、选择分离范围为pH4-7的IPG胶条和150μg的主动水化上样,电泳结束后对凝胶进行硝酸银染色,获得了覆盖范围广、低背景、高分辨率、适合差异蛋白分析的双向电泳参考图谱。  相似文献   
6.
为明确春大豆鼓粒期冠层翻叶原因及翻叶对粒重的影响。在大田条件下,以28份大豆品种为材料,采用随机区组试验设计,研究了鼓粒初期植株顶部4片叶的单叶面积、比叶重、叶型指数、叶片含水量与翻叶率的关系;比较了翻叶与对照叶片的净光合速率、百粒重及粒重的差异。结果表明,不同大豆品种间翻叶率在0~26.5%之间,且差异显著,其中以‘中黄313’、‘中黄42’和‘中黄13’最高;单叶面积在46~151 cm2之间,其中以‘中黄39’、‘中黄42’和‘中黄13’最大;比叶重在0.536~1.64 mg/cm2之间,其中以‘中黄322’、‘中黄313’和‘中黄13’最低;叶型指数在1.35~3.51之间,其中以‘中黄70’、‘中黄80’和‘中黄42’最低。供试大豆品种分为3个类群,第I类群品种单叶面积小,比叶重高,叶型指数大,翻叶率为1.03%;第III类群品种单叶面积大,比叶重小,翻叶率高达19.7%;第II类群共4个品种,单叶面积、比叶重、叶型指数、翻叶率介于第I类和第III类群之间。翻叶后显著降低叶片净光合速率,平均降幅31.7%,粒数较多的‘新大豆27号’百粒重降低10.38%~22.4%,而粒数少的‘吉育60’粒重没有降低。大豆上层叶片单叶面积大、比叶重小及叶型指数低的叶片翻叶率高,翻叶降低叶片净光合速率,进而降低同节位百粒重及单节粒重,不利于大豆高产。  相似文献   
7.
Soil surface mulching and planting density regulation are widely used for effective utilization of limited rainwater resources and improvement of crop productivity in dryland farming.However,the combined effects of mulching type and planting density on maize growth and yield have been seldom studied,especially in different hydrological years.A field experiment was conducted to evaluate the effects of mulching type and planting density on the soil temperature,growth,grain yield(GY),water use efficiency(WUE)and economic benefit of rainfed maize in the drylands of northern China during 2015-2017.Precipitation fluctuated over the three years.There were four mulching types(NM,flat cultivation with non-mulching;SM,flat cultivation with straw mulching;RP,plastic-mulched ridge plus bare furrow;RPFS,plastic-mulched ridge plus straw-mulched furrow)and three planting densities(LD,low planting density,45.0×10^3 plants/hm^2;MD,medium planting density,67.5×10^3 plants/hm^2;HD,high planting density,90.0×10^3 plants/hm^2).Results showed that soil temperature was higher with RP and lower with SM compared with NM,but no significant difference was found between RPFS and NM.More soil water was retained by soil mulching at the early growth stage,but it significantly varied at the middle and late growth stages.Maize growth was significantly improved by soil mulching.With increasing planting density,stem diameter,net photosynthetic rate and chlorophyll content tended to decline,whereas a single-peak trend in biomass yield was observed.Mulching type and planting density did not have significant effect on evapotranspiration(ET),but GY and WUE were significantly affected.There were significant interacting effects of mulching type and planting density on biomass yield,GY,ET and WUE.Compared with NM,RPFS,RP and SM increased GY by 57.5%,50.8%and 18.9%,and increased WUE by 66.6%,54.3%and 18.1%,respectively.At MD,GY increased by 41.4%and 25.2%,and WUE increased by 38.6%and 22.4%compared with those of at LD and HD.The highest maize GY(7023.2 kg/hm^2)was observed under MD+RPFS,but the value(6699.1 kg/hm^2)was insignificant under MD+RP.Similar trends were observed for WUE under MD+RP and MD+RPFS,but no significant difference was observed between these two combinations.In terms of economic benefit,net income under MD+RP was the highest with a 9.8%increase compared with that of under MD+RPFS.Therefore,we concluded that RP cultivation pattern with a suitable planting density(67.5×10^3 plants/hm^2)is promising for rainwater resources utilization and maize production in the drylands of northern China.  相似文献   
8.
许申平  张燕  袁秀云  崔波 《园艺学报》2020,47(7):1359-1368
以蝴蝶兰‘大辣椒’为试验材料,对花芽分化进程及期间光合特性和碳水化合物、可溶性蛋白及激素含量的变化进行研究。结果表明:花芽长度为0、2、4、8、16和24 cm时,分别处于花芽分化初始期、花序原基分化期、花原基分化期、萼片原基分化期和花瓣原基分化期(16和24 cm)。蝴蝶兰叶片的净CO2吸收速率在花芽发育前期(0 ~ 4 cm)没有显著变化,花芽8 cm时显著降低。花芽中的碳水化合物和可溶性蛋白的含量显著高于叶片,碳水化合物在花芽长度为4 cm时达到稳定水平,可溶性蛋白含量在花芽8 cm时达到叶片与花芽的平衡;赤霉素(GA)的含量在花芽2 cm时达到最大值,生长素(IAA)含量在花芽4 cm时显著升高,玉米素(ZT)含量在花芽8 cm时显著降低,而ABA含量在花芽发育的过程中并没有显著变化。由此可知,当蝴蝶兰花芽开始分化萼片原基(8 cm)时,光合生理及生化物质基本达到一个相对稳定的水平,此阶段的蝴蝶兰花芽已彻底完成成花分化。  相似文献   
9.
Freshwater mussels of the order Unionida encyst into the fish mucosa to metamorphose and complete their life cycle, causing a parasitic disease known as glochidiosis. This parasitic stage represents a bottleneck for the survival of naiads, particularly for critically endangered species as Margaritifera margaritifera; however, little is known about the events occurring during this critical stage. Therefore, this study aimed to histologically characterize the development of M. margaritifera glochidiosis in Atlantic salmon to get insight into the pathogenesis of this interaction. Fish exposed to glochidia were sampled during the first 44 days post-exposure, and organs were observed by stereomicroscopy and light microscopy. Glochidia attached to the gills by pinching the lamellar epithelium, whereupon an acute proliferative branchitis engulfed most of the larvae. However, during the first 14 days, a severe detachment of unviable glochidia occurred, associated with the presence of pleomorphic inflammatory infiltrate and epithelial degeneration. In the cases where larvae remained attached, a chronification of the lesions with none to scarce inflammation was observed. These results provide key information to better understand the complex host–parasite interaction during the early stages of glochidiosis and provide valuable information to optimize artificial rearing of naiads in conservation of threatened freshwater mussel populations.  相似文献   
10.
This paper presents the development of a simple and generally applicable hydrodynamic method for the estimation of production carrying capacity (PCC) of coastal finfish cage aquaculture. Dimensional analysis was used to find significant and general interdependencies between the hydrodynamics at fish farm locations and particulate wastes deposited on the seafloor by fish farms. Modeled ratios of deposition to emission of particulate wastes underneath fish farms were found to be primarily a function of the flow Reynolds numbers at the farming locations and the non-dimensional settling velocity of emitted wastes. In the non-dimensional model, farming conditions include daily feed rate, proportion of unconsumed feed, and carbon content in feed and fish feces. The relationship can be used to estimate the PCC of floating net cages imposing a threshold value for deposition. Results of in-situ assessments of the benthic impacts of several fish farms in an aquaculture site in the northwest of Bali, Indonesia were used to validate and demonstrate the effectiveness of the method. Predicted results were able to clearly identify fish farms operating beyond ecologically sustainable carrying capacity. The proposed method has broad applicability and could help make decisions regarding the estimation of production potential of individual farms in pristine areas, for providing first estimates in sites that have scarce data, and for assessment, expansion, and optimization of the currently operating aquaculture sites in Southeast Asia, China and potentially other data-poor island nations. As the method relies on dynamic models, it enables straightforward assessments over the entire aquaculture region.  相似文献   
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