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51.
为了解低剂量60Co-γ射线辐照花粉对贵长猕猴桃果实的影响,以市售猕猴桃商品花粉为材料,采用不同低剂量60Co-γ射线对花粉进行辐照处理,研究辐照花粉对猕猴桃果实生长发育、果实品质及耐贮性的影响。试验结果表明,与对照组(CK)相比:处理组果实乙烯生成速率、呼吸速率增加(CK<G6<G9),果皮硬度减小(CK>G6>G9);G9辐照处理使果实畸果率升高,座果率、单果重、单果种子数下降,果实干物质、可溶性固形物、可滴定酸及Vc含量显著减少;G6辐照处理后果实生长发育及果实品质均与对照组无显著差异。本研究为低剂量60Co-γ射线辐照去除丁香假单胞菌猕猴桃花粉的应用提供了理论依据。  相似文献   
52.
为提高仓内原料储料量测量自动化和智能化水平,设计了一种基于二维激光雷达扫描的储料量测量装置与系统。本系统采用RPLIDAR S1型二维激光雷达扫描获取不同储料量物料的原始点云数据,通过坐标变换、重叠点提取、滤波、分割等方法对原始点云进行预处理,采用贪婪投影三角化算法将预处理后的点云进行三维重建,获得仓内原料的三维模型,结合物料三维模型和物料的容重获得仓内原料的储料量,从而实现储料量的自动测量。以玉米为试验对象,测量小型储料塔内玉米储料量并对玉米不同储料量进行扫描测量,验证模型的准确性,结果显示:测量结果的平均绝对误差为8.05 kg,平均相对误差为1.52%。研究结果表明,基于二维激光雷达扫描的储料量测量方法是可行的,具有较好的稳定性和测量精度,能够满足实际生产需求。  相似文献   
53.
The influence of topsoil and fertilizer application on denuded road construction sites was evaluated to assess its contribution to improvement of vegetation re-establishment. the study sites were within a mixed hardwood and conifer forest on crushed, unweathered subsurface material with low fertility and low biological activity. Topsoils were removed from the site, stockpiled and reapplied to the site after construction. the effect of topsoil amendment on plant growth, soil fertility, mycorrhizal infection and an index of microbial biomass were measured in field and greenhouse experiments. Plant growth on the topsoil amended field plots were greatly increased relative to treatments with fertilizer but no topsoil. Three years after establishment, dry weight production on the plots without topsoil treatment was about 40 per cent of the plots treated with topsoil. Greenhouse experiments were designed to compare fresh, dried and stockpiled topsoil. These experiments indicated that storage of the harvested topsoil for five months in a stockpile had minor effects on plant growth, soil fertility, mycorrhizal infection and microbial biomass. Topsoil volumes had to exceed 20 per cent of the total soil volume to achieve statistically significant benefits and higher ratios showed greater benefit. the percentage of mycorrhizal infection was greatest in topsoil treatments without fertilizer. the addition of fertilizer increased growth but reduced the percentage of roots forming mycorrhizae. When the total weight of infected roots was calculated, however, infection was found to be greatest with a moderate level of fertilizer (equivalent to approximately 27 kg N ha−1 and 39 kg P ha−1), and was less in both higher fertilizer treatments and in unfertilized treatments. Topsoil amendment increased microbial biomass nitrogen but fertilizer treatment did not.  相似文献   
54.
芒果是热带、亚热带重要经济作物之一,因其独特的口感和丰富的营养价值深受消费者喜爱。由于芒果采收期正值高温多雨季节、果实采后生理代谢旺盛、采收难度大,采后运输、贮藏过程中易遭受真菌的侵染,成为限制芒果产业发展的重要因素。为防治芒果采后真菌性病害,国内外学者对芒果采后防治技术进行了研究与开发。对炭疽病、蒂腐病和曲霉病3种芒果采后主要真菌性病害的症状、危害、病原菌和发生条件进行了综述,总结了芒果采后真菌性病害的防治方法,并对芒果采后病害防治方法进行了展望,为芒果采后真菌性病害防治技术的发展提供理论基础。  相似文献   
55.
张家口地区拥有发展无公害错季蔬菜适宜的气候条件和社会经济条件.主要关于该地区发展错季蔬菜在人才的培养、山野菜的开发与利用、市场信息的建立、品种创新、恒温库的建设以及加工能力的提升等方面提出了一些合理化意见和建议.  相似文献   
56.
菜豆采后贮藏期间的生理变化   总被引:10,自引:0,他引:10  
菜豆采后在贮藏期间失水严重,硬度迅速下降;呼吸速率缓慢上升,跃变高峰出现在第8d;果肉细胞膜透性在采后初期变化缓慢,后期急剧上升;果实叶绿素、蛋白质、维生素C和有机酸的含量一直呈下降趋势,而果实总糖的含量先升后降,室温贮藏8d后菜豆的商业品质迅速下降.  相似文献   
57.
以生理成熟期‘新泰红’桃果实为试材,分别用0、2.5、5.0、7.5 g/L槲树叶提取液浸泡果实,以蒸馏水为对照,并于0℃冷藏,测定冷藏期间果实可溶性蛋白等品质指标以及酶活力与活性氧等物质,探讨槲树叶提取液对采后桃果实贮藏品质的影响。结果表明:槲树叶提取液处理能够有效延缓冷藏期间桃果实冷害指数升高以及硬度下降,使整个冷藏期间果实可溶性蛋白、可溶性糖、维生素C含量维持相对较高水平,并且能够有效延缓膜脂过氧化产物(丙二醛)以及活性氧物质(超氧阴离子自由基、过氧化氢和羟基自由基)积累;同时,槲树叶提取液处理还能够显著抑制果实多酚氧化酶(PPO)、苯丙氨酸解氨酶(PAL)活性,从而延缓冷藏期间桃果实褐变程度。综上所述,槲树叶提取液处理能够缓解冷藏期间桃果实冷害症状,以5.0 g/L槲树叶提取液处理效果最为明显。  相似文献   
58.
为了实现食用菌质量安全溯源,在食用菌质量安全溯源系统现状的基础上,利用区块链技术的去中心化分布式存储结构,保证了食用菌溯源数据的安全可靠。基于区块链技术设计了食用菌质量安全溯源系统,给出了追溯体系的总体架构和主要业务流程,有针对性地解决了食用菌溯源系统中存在问题。实现了食用菌全周期全流程的信息溯源,为消费者提供了真实、可靠的溯源信息。  相似文献   
59.
Overgrazing is regarded as one of the key factors of vegetation and soil degradation in the arid and semi-arid regions of Northwest China.Grazing exclusion(GE)is one of the most common pathways used to restore degraded grasslands and to improve their ecosystem services.Nevertheless,there are still significant controversies concerning GE’s effects on grassland diversity as well as carbon(C)and nitrogen(N)storage.It remains poorly understood in the arid desert regions,whilst being essential for the sustainable use of grassland resources.To assess the effects of GE on community characteristics and C and N storage of desert plant community in the arid desert regions,we investigated the community structure and plant biomass,as well as C and N storage of plants and soil(0-100 cm depth)in short-term GE(three years)plots and adjacent long-term freely grazing(FG)plots in the areas of sagebrush desert in Northwest China,which are important both for spring-autumn seasonal pasture and for ecological conservation.Our findings indicated that GE was beneficial to the average height,coverage and aboveground biomass(including stems,leaves and inflorescences,and litter)of desert plant community,to the species richness and importance values of subshrubs and perennial herbs,and to the biomass C and N storage of aboveground parts(P<0.05).However,GE was not beneficial to the importance values of annual herbs,root/shoot ratio and total N concentration in the 0-5 and 5-10 cm soil layers(P<0.05).Additionally,the plant density,belowground biomass,and soil organic C concentration and C storage in the 0-100 cm soil layer could not be significantly changed by short-term GE(three years).The results suggest that,although GE was not beneficial for C sequestration in the sagebrush desert ecosystem,it is an effective strategy for improving productivity,diversity,and C and N storage of plants.As a result,GE can be used to rehabilitate degraded grasslands in the arid desert regions of Northwest China.  相似文献   
60.
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   
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