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51.
Vladimir A. Shuvalov 《BBA》2007,1767(6):422-433
It has been shown [V.A. Shuvalov, Quantum dynamics of electrons in many-electron atoms of biologically important compounds, Biochemistry (Mosc.) 68 (2003) 1333-1354; V.A. Shuvalov, Quantum dynamics of electrons in atoms of biologically important molecules, Uspekhi biologicheskoi khimii, (Pushchino) 44 (2004) 79-108] that the orbit angular momentum L of each electron in many-electron atoms is L = mVr = n? and similar to L for one-electron atom suggested by N. Bohr. It has been found that for an atom with N electrons the total electron energy equation E = −(Zeff)2e4m/(2n2?2N) is more appropriate for energy calculation than standard quantum mechanical expressions. It means that the value of L of each electron is independent of the presence of other electrons in an atom and correlates well to the properties of virtual photons emitted by the nucleus and creating a trap for electrons. The energies for elements of the 1st up to the 5th rows and their ions (total amount 240) of Mendeleev' Periodical table were calculated consistent with the experimental data (deviations in average were 5 × 10− 3). The obtained equations can be used for electron dynamics calculations in molecules. For H2 and H2+ the interference of electron-photon orbits between the atoms determines the distances between the nuclei which are in agreement with the experimental values. The formation of resonance electron-photon orbit in molecules with the conjugated bonds, including chlorophyll-like molecules, appears to form a resonance trap for an electron with E values close to experimental data. Two mechanisms were suggested for non-barrier primary charge separation in reaction centers (RCs) of photosynthetic bacteria and green plants by using the idea of electron-photon orbit interference between the two molecules. Both mechanisms are connected to formation of the exciplexes of chlorophyll-like molecules. The first one includes some nuclear motion before exciplex formation, the second one is related to the optical transition to a charge transfer state. 相似文献
52.
Holocene vegetation history of the Sahel: pollen, sedimentological and geochemical data from Jikariya Lake, north-eastern Nigeria 总被引:1,自引:0,他引:1
Aim This study aims to separate regional and local controls on Holocene vegetation development and examine how well pollen records reflect climate change in a semi‐arid region. The relative importance of climate and human activity as agents of vegetation change in the Sahel during the late Holocene is also considered. Location Jikariya Lake, an inter‐dune depression in the Manga Grasslands of north‐eastern Nigeria. Methods Pollen and charcoal were used to provide a record of Holocene vegetation history. Palaeoclimate and hydrological changes were reconstructed from sedimentary and geochemical data. Regional and local influences were separated by comparing the evidence obtained from Jikariya Lake with previously published data from the Manga Grasslands. Results The Manga Grasslands experienced a prolonged wet period during the early and mid‐Holocene, during which swamp forest vegetation with Guinean affinities (Alchornea, Syzygium, Uapaca) occupied the inter‐dune depressions. However, variation in the pollen records between sites suggests that their establishment was dependent on conditions being locally favourable, rather than being directly coupled to regional climate. The pollen records from the Manga Grasslands are more consistent in suggesting the colonization of the dunefields by trees associated with Sudanian savanna (Combretaceae, Detarium) c. 8700 cal. yr bp . The Jikariya Lake pollen data are in accordance with the sedimentological and geochemical data from the region in indicating that the onset of arid conditions occurred progressively during the late Holocene (from c. 4700 cal. yr bp ). Abrupt changes in pollen stratigraphy, recorded at other Manga Grasslands sites 3500 cal. yr bp , appear to be the product of the local passing of ecological thresholds. The dunefield vegetation (Sahelian savanna) appears to have been resilient to (or at least palynologically silent regarding) to the climatic variability of the late Holocene. Main conclusions While climate appears to have been the primary control on vegetation development in the Manga Grasslands during the Holocene, local conditions (particularly depression size and sand influx) had a strong influence on the timing of pollen stratigraphic changes. Anthropogenic influences are difficult to detect, even during the late Holocene. 相似文献
53.
负压状态下压力变化导致鲫鱼身体组织的损伤 总被引:1,自引:0,他引:1
通过试验研究负压状态下压力变化过程对鲫(Carassius auratus auratus)的损伤,试验采用真空泵和空气压缩机在试验容器内形成不同的压力变化过程,统计不同体长的鲫经历压力变化过程后的损伤情况,并对部分受损伤的鲫进行解剖和组织观察。研究发现负压状态下压力时变导数较大的变化过程会对鲫的生存构成直接威胁,主要损伤是鱼鳔部分或全部受损,在肝胰脏、肾脏等处有明显出血点。综合分析不同试验条件对鲫损伤的情况,得到了对鲫尽可能安全的压力时变导数极限值,从而为新型环保水力设施的设计提供参考依据,起到保护渔业资源的作用。 相似文献
54.
鲫鱼尾部神经分泌系统显微和亚显微结构的季节性变化 总被引:5,自引:0,他引:5
鲫鱼尾部神经分泌系统的神经分泌细胞和它的轴突中可观察到各种不同电子密度的颗粒。在性腺各个不同的发育阶段,该系统的分泌物具有累积、充满、释放和恢复这样一种周期性变化,由此说明鲫鱼的尾部神经分泌系统和它的生殖有关。 相似文献
55.
Meta-analysis: the past, present and future 总被引:1,自引:0,他引:1
56.
安宁河流域稻米生化品质与气候条件的关系 总被引:2,自引:0,他引:2
通过“合系39”在四川安宁河流域无控制的地理分期播种大田试验及稻米生化品质室内分析,定量研究了从穗前40d到成熟期各阶段气象条件对稻米生化品质的影响及关键时期,建立了稻米生化品质各组分与关键期平均温度、温度日较差和日照时数的综合关系模型.结果表明,气候生态条件对稻米生化品质各组分有重要影响,且不同组分的影响形式和关键时期不同.其组分与气候生态因子最显著相关的时段或在齐穗前,或在齐穗后,或从齐穗前持续到齐穗后.该模型于2002~2003年应用在安宁河流域优质稻生产决策中.累计推广优质稻7.3×10^4hm^2,较2001年增加3.0×10^4hm^2,农民增收2亿元,促进了优质稻的迅速发展. 相似文献
57.
基于协整理论的经济增长与生态环境变化关系分析——以重庆市渝东南地区为例 总被引:1,自引:0,他引:1
许多研究文献忽略了经济增长和生态环境质量的双向作用机制,从而导致了变量之间的内生性偏差。与以往研究相比,主要在以下几方面进行分析:1)采用脉冲响应函数来分别考察生态环境与经济增长这两类变量之间的动态冲击反应。2)运用预测方差分解技术来考察经济增长与生态环境变化在解释因素变动时的相对重要性。结论:经济增长与生态环境之间存在长期的均衡关系,非平稳序列的经济增长指标、生态环境因子经过一阶差分后变得平稳,均为一阶单整,存在协整统计关系。从长期来看,人均GDP与废气排放量、固废排放量呈现负相关,而与矿产开采总量、化肥使用强度呈现正相关。其高度正相关性实证了该地区主要靠资源开发拉动经济增长。脉冲响应分析表明,快速经济增长是影响生态环境质量的重要原因,生态环境质量变化对经济增长存在着反作用力。就响应效果而言,生态环境对经济增长的负向响应表明生态环境退化将导致人们对生态环境质量需求偏好的改变,从而对经济增长进程的变化产生外在压力,但生态环境对经济增长的反馈效应具有滞后性。 相似文献
58.
内蒙古主要植被类型与气候因子关系的研究 总被引:31,自引:8,他引:31
利用地理信息系统工具,以最新的植被类型图为依据,在统计、建模和空间模拟区域气候因子的基础上,对内蒙古主要植被类型与气候的关系进行了分析,并获得适宜的气候范围。结果表明,内蒙古植被空间分布表现出明显的规律性。一方面,随着距离海洋的远近变化,无论是地带性植被,还是山地垂直带、沙地及低湿地植被,从东向西均反映出地带分异,水分对于这种东西向更替更为重要。另一方面,热量的差异导致纬向上的变化。此外,热量成为 相似文献
59.
60.
Climate change is driving adaptive shifts within species, but research on plants has been focused on phenology. Leaf morphology has demonstrated links with climate and varies within species along climate gradients. We predicted that, given within-species variation along a climate gradient, a morphological shift should have occurred over time due to climate change. We tested this prediction, taking advantage of latitudinal and altitudinal variations within the Adelaide Geosyncline region, South Australia, historical herbarium specimens (n = 255) and field sampling (n = 274). Leaf width in the study taxon, Dodonaea viscosa subsp. angustissima, was negatively correlated with latitude regionally, and leaf area was negatively correlated with altitude locally. Analysis of herbarium specimens revealed a 2 mm decrease in leaf width (total range 1-9 mm) over 127 years across the region. The results are consistent with a morphological response to contemporary climate change. We conclude that leaf width is linked to maximum temperature regionally (latitude gradient) and leaf area to minimum temperature locally (altitude gradient). These data indicate a morphological shift consistent with a direct response to climate change and could inform provenance selection for restoration with further investigation of the genetic basis and adaptive significance of observed variation. 相似文献