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1.
目的:探讨生物化学检验技术实验教学(Experimental biochemistry inspection teaching,EBIT)与开放式综合实验设计(Open comprehensive experiment design,OCED)的初步效果,为EBIT教学提供新型选择方案。方法:选择2012届我们所带教医学检验专业的2个班级111例学生作为研究对象,分别归入观察组和对照组,其中观察组56例,对照组55例。对照组EBIT中予以传统的模式,观察组则采用OCED模式。对比两组实验成绩、教学效果的满意度。结果:观察组的合格率显著高于对照组,差异有统计学意义(P<0.05)。观察组对教学效果的满意度显著高于对照组,差异有统计学意义(P<0.05)。结论:OCED方式应用于EBIT过程中,可获得较好的教学效果,值得推荐。 相似文献
2.
通过单因素和正交试验,对类球红细菌3757产类胡萝卜素的提取条件进行了研究。先采用超声波法、酸溶法、研磨法、冻融法、酸溶辅助超声波法和冻融辅助超声波法优化了从类球红细菌3757菌株中提取类胡萝卜素的方法,然后开展了酸溶辅助超声波法的单因素和正交实验,最后进行了重复性实验。结果表明,酸溶辅助超声波法是较优的提取方法,丙酮是较好的提取溶剂。最佳提取条件为料液比110、超声波处理总时间20 min、酸浓度3 mol/L、酸溶时间25 min、超声波振幅40%、超声工作/间隔时间2 min/1 min、酸溶温度27℃,实验重现较好。优化后类胡萝卜素的提取率较优化前提高了74.8%,为其产业化创造了条件。 相似文献
3.
How to induce defense responses in wild plant populations? Using bilberry (Vaccinium myrtillus) as example 下载免费PDF全文
Tarald Seldal Stein Joar Hegland Knut Rydgren Cesar Rodriguez‐Saona Joachim Paul Töpper 《Ecology and evolution》2017,7(6):1762-1769
Inducible plant defense is a beneficial strategy for plants, which imply that plants should allocate resources from growth and reproduction to defense when herbivores attack. Plant ecologist has often studied defense responses in wild populations by biomass clipping experiments, whereas laboratory and greenhouse experiments in addition apply chemical elicitors to induce defense responses. To investigate whether field ecologists could benefit from methods used in laboratory and greenhouse studies, we established a randomized block‐design in a pine‐bilberry forest in Western Norway. We tested whether we could activate defense responses in bilberry (Vaccinium myrtillus) by nine different treatments using clipping (leaf tissue or branch removal) with or without chemical treatment by methyljasmonate (MeJA). We subsequently measured consequences of induced defenses through vegetative growth and insect herbivory during one growing season. Our results showed that only MeJA‐treated plants showed consistent defense responses through suppressed vegetative growth and reduced herbivory by leaf‐chewing insects, suggesting an allocation of resources from growth to defense. Leaf tissue removal reduced insect herbivory equal to the effect of the MeJa treatments, but had no negative impact on growth. Branch removal did not reduce insect herbivory or vegetative growth. MeJa treatment and clipping combined did not give an additional defense response. In this study, we investigated how to induce defense responses in wild plant populations under natural field conditions. Our results show that using the chemical elicitor MeJA, with or without biomass clipping, may be a better method to induce defense response in field experiments than clipping of leaves or branches that often has been used in ecological field studies. 相似文献
4.
Bálint Preiszner István Czeglédi Gergely Boros András Liker Bernadett Kern Tibor Erős 《Journal of fish biology》2020,97(4):1113-1119
This study examined the size-dependent scavenging behaviour of black bullheads Ameiurus melas under laboratory conditions, using common bleak Alburnus alburnus and pumpkinseed Lepomis gibbosus carcasses. Video camera observations showed that the activity of A. melas was higher at night, but substantial daytime activity was also recorded. Larger A. melas were more active than their smaller conspecifics, especially at night. All size classes exhibited a well-defined sequence of consuming different parts of the carcasses independent of size, but larger individuals tended to consume carcasses more efficiently. Carcasses of the softer-bodied A. alburnus were consumed more readily than those of the bonier L. gibbosus, independent of size. This scavenging behaviour of A. melas might facilitate the invasion success of the species. 相似文献
5.
Athanasios Paschalis Simone Fatichi Jakob Zscheischler Philippe Ciais Michael Bahn Lena Boysen Jinfeng Chang Martin De Kauwe Marc Estiarte Daniel Goll Paul J. Hanson Anna B. Harper Enqing Hou Jaime Kigel Alan K. Knapp Klaus S. Larsen Wei Li Sebastian Lienert Yiqi Luo Patrick Meir Julia E. M. S. Nabel Rom Ogaya Anthony J. Parolari Changhui Peng Josep Peuelas Julia Pongratz Serge Rambal Inger K. Schmidt Hao Shi Marcelo Sternberg Hanqin Tian Elisabeth Tschumi Anna Ukkola Sara Vicca Nicolas Viovy Ying‐Ping Wang Zhuonan Wang Karina Williams Donghai Wu Qiuan Zhu 《Global Change Biology》2020,26(6):3336-3355
Changes in rainfall amounts and patterns have been observed and are expected to continue in the near future with potentially significant ecological and societal consequences. Modelling vegetation responses to changes in rainfall is thus crucial to project water and carbon cycles in the future. In this study, we present the results of a new model‐data intercomparison project, where we tested the ability of 10 terrestrial biosphere models to reproduce the observed sensitivity of ecosystem productivity to rainfall changes at 10 sites across the globe, in nine of which, rainfall exclusion and/or irrigation experiments had been performed. The key results are as follows: (a) Inter‐model variation is generally large and model agreement varies with timescales. In severely water‐limited sites, models only agree on the interannual variability of evapotranspiration and to a smaller extent on gross primary productivity. In more mesic sites, model agreement for both water and carbon fluxes is typically higher on fine (daily–monthly) timescales and reduces on longer (seasonal–annual) scales. (b) Models on average overestimate the relationship between ecosystem productivity and mean rainfall amounts across sites (in space) and have a low capacity in reproducing the temporal (interannual) sensitivity of vegetation productivity to annual rainfall at a given site, even though observation uncertainty is comparable to inter‐model variability. (c) Most models reproduced the sign of the observed patterns in productivity changes in rainfall manipulation experiments but had a low capacity in reproducing the observed magnitude of productivity changes. Models better reproduced the observed productivity responses due to rainfall exclusion than addition. (d) All models attribute ecosystem productivity changes to the intensity of vegetation stress and peak leaf area, whereas the impact of the change in growing season length is negligible. The relative contribution of the peak leaf area and vegetation stress intensity was highly variable among models. 相似文献
6.
David C. Bartholomew Paulo R. L. Bittencourt Antonio C. L. da Costa Lindsay F. Banin Patrícia de Britto Costa Sarah I. Coughlin Tomas F. Domingues Leandro V. Ferreira André Giles Maurizio Mencuccini Lina Mercado Raquel C. Miatto Alex Oliveira Rafael Oliveira Patrick Meir Lucy Rowland 《Plant, cell & environment》2020,43(10):2380-2393
The response of small understory trees to long-term drought is vital in determining the future composition, carbon stocks and dynamics of tropical forests. Long-term drought is, however, also likely to expose understory trees to increased light availability driven by drought-induced mortality. Relatively little is known about the potential for understory trees to adjust their physiology to both decreasing water and increasing light availability. We analysed data on maximum photosynthetic capacity (Jmax, Vcmax), leaf respiration (Rleaf), leaf mass per area (LMA), leaf thickness and leaf nitrogen and phosphorus concentrations from 66 small trees across 12 common genera at the world's longest running tropical rainfall exclusion experiment and compared responses to those from 61 surviving canopy trees. Small trees increased Jmax, Vcmax, Rleaf and LMA (71, 29, 32, 15% respectively) in response to the drought treatment, but leaf thickness and leaf nutrient concentrations did not change. Small trees were significantly more responsive than large canopy trees to the drought treatment, suggesting greater phenotypic plasticity and resilience to prolonged drought, although differences among taxa were observed. Our results highlight that small tropical trees have greater capacity to respond to ecosystem level changes and have the potential to regenerate resilient forests following future droughts. 相似文献
7.
项目式“微生物学实验”教学模式的构建与实践 总被引:1,自引:1,他引:0
微生物学实验是生物类各专业的一门重要的专业基础课程,微生物学实验技术是学生认识微生物、改造微生物和利用微生物的重要方法。课程组结合优质教学资源,以及先进仪器设备和网络技术的助力加持,构建了项目式"微生物学实验"教学模式。通过项目实验的科学设计、实施和评价,对实验教学进行了一系列的改革实践与探索,提高了实验教学效果和效率,使学生对微生物学研究有了更系统的认识,对培养学生的综合实践能力和科学研究思维起到了积极有效的促进作用。 相似文献
8.
选取3处苏州园林的曲桥路径,现场邀请游人取景拍照,获取其游园过程中关注景物、视线方向等信息,结合路径与景物关系,通过实验方法分析曲桥路径中游人赏景的视觉行为特征。通过定量分析发现,苏州文人园林中曲桥转折间带来的空间位置变化影响着人们的视觉行为,其中景物视距与方向对人们的观景兴致存在显著影响,视距在3~33 m时,游人观景兴致最佳;同时路径方向与观景方向的垂直关系、路径对景物的指向关系可增强游人对相应景观的观赏兴致,曲桥中对垂直与指向关系的运用存在一定的规律。 相似文献
9.
典型黑土区不同生态系统土壤团聚体有机碳分布特征 总被引:7,自引:2,他引:5
基于团聚体分组和闭蓄态微团聚体分离技术,利用典型黑土区27年长期定位试验,研究草地生态系统、农田生态系统和裸地生态系统下土壤团聚体及团聚体内部组分中有机碳的分布,以解析不同生态系统下土壤团聚体和有机碳固持间的关系,揭示黑土有机碳的物理稳定性机制。结果显示:与农田相比,草地土壤有机碳含量显著提高7.6%;裸地土壤有机碳含量显著下降14.1%。草地促进了大团聚体(250μm),尤其2000μm团聚体的形成,提高了土壤团聚体的稳定性;裸地则降低了土壤的团聚化程度及稳定性,大团聚体和微团聚体含量下降,粉粘粒含量相应增加。草地大团聚体中有机碳含量显著高于农田,且内部各组分有机碳含量均有显著提高,其中粗颗粒有机质、闭蓄态微团聚体和粉黏粒有机碳含量增幅分别为600%、54%和65%;裸地增加了粉粘粒结合有机碳含量,降低了大团聚体和微团聚体中有机碳含量,且大团聚体和微团聚体内部各组分有机碳含量均有所下降。3种生态系统类型土壤均以总粉粘粒结合有机碳为主,占土壤总有机碳52%—79%,其作为惰性碳库是黑土有机碳的重要组成部分。黑土有机碳的累积或损失主要表现为活性较强的有机碳库-团聚体中颗粒有机质的增加或减少,与农田相比,草地土壤有机碳的累积主要归因于大团聚体中粗颗粒有机质的增加,为总有机碳增量的3倍;裸地土壤有机碳的损失主要归因于微团聚体中总细颗粒有机质的减少,对总有机碳损失的贡献率为60%。 相似文献
10.