63 resultados para Gross, Phil
em Chinese Academy of Sciences Institutional Repositories Grid Portal
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Chinese Academy of Sciences ; National Science Foundation of China [41071059]; National Key Technology R&D Program of China [2008BAK50B06-02]; National Basic Research Program of China [2010CB950900, 2010CB950704]; Natural Sciences and Engineering Research Council of Canada
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The eddy covariance technique provides measurements of net ecosystem exchange (NEE) Of CO2 between the atmosphere and terrestrial ecosystems, which is widely used to estimate ecosystem respiration and gross primary production (GPP) at a number Of CO2 eddy flux tower sites. In this paper, canopy-level maximum light use efficiency, a key parameter in the satellite-based Vegetation Photosynthesis Model (VPM), was estimated by using the observed CO2 flux data and photosynthetically active radiation (PAR) data from eddy flux tower sites in an alpine swamp ecosystem, an alpine shrub ecosystem and an alpine meadow ecosystem in Qinghai-Tibetan Plateau, China. The VPM model uses two improved vegetation indices (Enhanced Vegetation Index (EVI), Land Surface Water Index (LSWI)) derived from the Moderate Resolution Imaging Spectral radiometer (MODIS) data and climate data at the flux tower sites, and estimated the seasonal dynamics of GPP of the three alpine grassland ecosystems in Qinghai-Tibetan Plateau. The seasonal dynamics of GPP predicted by the VPM model agreed well with estimated GPP from eddy flux towers. These results demonstrated the potential of the satellite-driven VPM model for scaling-up GPP of alpine grassland ecosystems, a key component for the study of the carbon cycle at regional and global scales. (c) 2006 Elsevier Inc. All rights reserved.
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Background and Aims Rheum, a highly diversified genus with about 60 species, is mainly confined to the mountainous and desert regions of the Qinghai-Tibetan plateau and adjacent areas. This genus represents a good example of the extensive diversification of the temperate genera in the Qinghai-Tibetan plateau, in which the forces to drive diversification remain unknown. To date, the infrageneric classification of Rheum has been mainly based on morphological characters. However, it may have been subject to convergent evolution under habitat pressure, and the systematic position of some sections are unclear, especially Sect. Globulosa, which has globular inflorescences, and Sect. Nobilia, which has semi-translucent bracts. Recent palynological research has found substantial contradictions between exine patterns and the current classification of Rheum. Two specific objectives of this research were (1) to evaluate possible relationships of some ambiguous sections with a unique morphology, and (2) to examine possible occurrence of the radiative speciation with low genetic divergence across the total genus and the correlation between the extensive diversification time of Rheum and past geographical events, especially the recent large-scale uplifts of the Qinghai-Tibetan Plateau.Methods The chloroplast DNA trnL-F region of 29 individuals representing 26 species of Rheum, belonging to seven out of eight sections, was sequenced and compared. The phylogenetic relationships were further constructed based on the sequences obtained.Key Results Despite the highly diversified morphology, the genetic variation in this DNA fragment is relatively low. The molecular phylogeny is highly inconsistent with gross morphology, pollen exine patterns and traditional classifications, except for identifying all samples of Sect. Palmata, three species of Sect. Spiciformia and a few species of Sect. Rheum as corresponding monophyletic groups. The monotypic Sect. Globulosa showed a tentative position within the clade comprising five species of Sect. Rheum. All of the analyses revealed the paraphyly of R. nobile and R. alexandrae, the only two species of Sect. Nobilia circumscribed by the possession of large bracts. The crude calibration of lineages based on trnL-F sequence differentiation implied an extensive diversification of Rheum within approx. 7 million years.Conclusions Based on these results, it is suggested that the rich geological and ecological diversity caused by the recent large-scale uplifts of the Qinghai-Tibetan Plateau since the late Tertiary, coupled with the oscillating climate of the Quaternary stage, might have promoted rapid speciation in small and isolated populations, as well as allowing the fixation of unique or rare morphological characters in Rheum. Such a rapid radiation, combined with introgressive hybridization and reticulate evolution, may have caused the transfer of cpDNA haplotypes between morphologically dissimilar species, and might account for the inconsistency between morphological classification and molecular phylogeny reported here.
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We measured the net ecosystem CO2 exchange (NEE) in an alpine meadow ecosystem (latitude 37degrees29'-45'N, longitude 101degrees12'-23'E, 3250 m above sea level) on the Qinghai-Tibetan Plateau throughout 2002 by the eddy covariance method to examine the carbon dynamics and budget on this unique plateau. Diurnal changes in gross primary production (GPP) and ecosystem respiration (R-e) showed that an afternoon increase of NEE was highly associated with an increase of R-e. Seasonal changes in GPP corresponded well to changes in the leaf area index and daily photosynthetic photon flux density. The ratio of GPP/R-e was high and reached about 2.0 during the peak growing season, which indicates that mainly autotrophic respiration controlled the carbon dynamics of the ecosystem. Seasonal changes in mean GPP and R-e showed compensatory behavior as reported for temperate and Mediterranean ecosystems, but those of GPP(max) and R-emax were poorly synchronized. The alpine ecosystem exhibited lower GPP (575 g C m(-2) y(-1)) than, but net ecosystem production (78.5 g C m(-2) y(-1)) similar to, that of subalpine forest ecosystems. The results suggest that the alpine meadow behaved as a CO2 sink during the 1-year measurement period but apparently sequestered a rather small amount of C in comparison with similar alpine ecosystems.
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<正> 由于同位素分离日益增长的需要,提高单极分离系数和产量成为十分重要的问题.机械离心机可以使两种不同气体或液体高速旋转,达到使其分离的目的.但因结构强度限制和存在机械振动,继续提高分离系数有一定困难.能否使用电磁场力来推动两种同位素气体产生更高的转速,达到分离的目的呢?六十年代开始探索其可能性.Gross等人利
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The strain energy density criterion due to Sih is used to predict fracture loads of two thin plates subjected to large elastic-plastic deformation. The prediction is achieved with a finite element analysis which is based on Hill's variational principle for incremental deformations capable of solving gross yielding problems involving arbitrary amounts of deformation. The computed results are in excellent agreement with those obtained in Sih's earlier analysis and with an experimental observation.
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A theoretical model for gain saturation in gas flow and chemical lasers is presented. The theory is applicable to all possible numerical values of τ/τc, where τ is the characteristie flow time for the flowing gas to move across the laser action region and τc is the characteristic collision relaxation time. The saturation effects of the convection and the "source flow" of the inverted population are revealed. A general relation of gain coefficient and some new gain saturation laws are obtained. For the special case of τ/τc1, the present theoretical results agree with the experimental results on the "anomalous" saturation phenomena in the supersonic diffusion HF chemical laser determined recently by Gross and Coffer[8]. The theory also agrees with the measured results of saturation intensity varying with τ/τc in gas flow CO2 lasers[7]. For the special case of τ/τc1, the present theory is consistent with both the standard theory[1] for gas lasers where the gas has no macroscopic motion and the known gain saturation theory[2-5] for gas flow and chemical lasers.
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Through a systematical analysis of the elastic moduli for 137 metallic glasses (MGs) and 56 polycrystalline metals, we use a simple model developed by Knuyt et al. [J. Phys. F: Met. Phys. 16 (1986) p.1989; Phil. Mag. B 64 (1991) p.299] based on a Gaussian distribution for the first-neighbor distance to reveal the short-range-order (SRO) structural conditions for plasticity of MGs. It is found that the SRO structure with dense atomic packing, large packing dispersion and a significant anharmonicity of atomic interaction within an MG is favorable for its global plasticity. Although these conditions seem paradoxical, their perfect matching is believed to be a key for designing large plastic bulk MGs not only in compression but also in tension.
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本文在形态学、解剖学、孢粉学、细胞学和分子系统学研究的基础上,对金粟兰属进行了世界性的专著性研究。主要内容包括: 1. 形态学 在标本室研究和野外考察的基础上,对金粟兰属植物形态性状的变异式样及其分类学意义进行了分析,发现习性、雄蕊的颜色和形状、花柱的有无等性状在种内稳定,是比较可靠的分类学性状。通过查阅模式,发现湖北金粟兰和多穗金粟兰是宽叶金粟兰生长发育的后期阶段,单穗金粟兰和安徽金粟兰是及己生长发育的后期阶段;认为菲律宾金粟兰、轮叶金粟兰和台湾及己与台湾金粟兰是同种植物,全缘金粟兰、石棉金粟兰和毛脉金粟兰与网脉金粟兰是同种植物:推测天目山金粟兰是依据及己的畸形植株发表的。最后,认为金粟兰属在全世界仅有10种植物,即鱼子兰、金粟兰、及己、宽叶金粟兰、华南金粟兰、台湾金粟兰、狭叶金粟兰、丝穗金粟兰、网脉金粟兰和银线草。 2. 解剖学 通过对金粟兰科4属16种植物的叶表皮特征的观察,发现叶表皮性状,尤其是气孔器的类型对于理解该科的属间和种间关系有重要意义。环列型气孔器可能是联系Ascarina与草珊瑚属和金粟兰属的关键性状;根据气孔器的类型,金粟兰属的10种植物可以分为两类:第一类包括鱼子兰、金粟兰、及己、宽叶金粟兰、华南金粟兰和台湾金粟兰,其叶片下表皮的气孔器以平列型为主;第二类包括狭叶金粟兰、丝穗金粟兰、网脉金粟兰和银线草,其叶片中的气孔器以侧列型为主。显然,叶表皮性状不支持前人依据习性对该属所作的划分,但与基于雄蕊形态的划分基本吻合。 3. 孢粉学 在扫描电镜下对金粟兰属植物的花粉进行了观察,发现花粉性状在属内比较一致,对于探讨属内种间关系意义不大。 4. 细胞学 对金粟兰科11种植物进行了细胞学研究,首次报道了5种植物的染色体数目和核型,并首次在金粟兰属发现了六倍体。核型分析的结果表明,草珊瑚属与金粟兰属在间期核形态、前期染色体形态和中期染色体形态上均存在明显差异,因而将它们分开的处理是完全正确的:在金粟兰属,根据前4对(四倍体种丝穗金粟兰的前8对)染色体的形态,已有核型资料的八个种可以分为两类:在狭叶金粟兰、丝穗金粟兰、网脉金粟兰和银线草中,这些染色体全部为具中部着丝粒染色体;而在鱼子兰、金粟兰、及己和华南金粟兰中,这些染色体为各种类型。 5. 分子系统学 首次对金粟兰属植物ITS区和trnL-F区序列进行了测定。在ITS、trnL-F分开处理以及将二者结合起来构建的系统树中,金粟兰属的10种植物均被分为两支:一支由狭叶金粟兰、丝穗金粟兰、网脉金粟兰和银线草组成,另一支由鱼子兰、金粟兰、及己、宽叶金粟兰、华南金粟兰和台湾金粟兰组成。 6. 金粟兰属的属下分类系统 从上研究结果可以看出,叶表皮、细胞学和分子资料均不支持前人依据习性对金粟兰属的划分,但支持前人依据雄蕊形态的划分。因此,本文把金粟兰属分为两个亚属,即金粟兰亚属和银线草亚属;金粟兰亚属又分为两个组,其中金粟兰亚组包括鱼子兰和金粟兰,及己组包括华南金粟兰和台湾金粟兰;银线草亚属包括狭叶金粟兰、丝穗金粟兰、网脉金粟兰和银线草。 7. 属的系统位置 综合已有的各方面的资料,对金粟兰科的属间关系进行了评价,认为草珊瑚属与金粟兰属关系最近,Ascarina是二者的姊妹群,雪香兰属是上述三属的姊妹群。
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毛冠菊属是菊科21个“有问题”属中的一个,主要分布于青藏高原地区。按照林镕、陈艺林的概念,它包含了Nannoglottis、.Stereosanthus、Vierhapperia、Senecio和Doronicum5个属的成员。它曾先后被放入旋覆花族、千里光族和紫菀族,在上述三族中的亚族位置也不确定。它的许多重要性状,如舌片颜色、染色体数目等等,人们所知甚少。由于缺乏野外工作以及看不到大多数名字的模式,林镕、陈艺林对该属的修订有待深入的研究。本文研究了该属的外部形态学、微形态学、解剖学、孢粉学、细胞学、生态学以及ITS序列,确定了毛冠菊属的分类位置,并建立了一个新的属下分类系统。 1.外部形态 在检查大量标本(包括大多数模式)和野外居群考察的基础上,分析了主要外部形态学性状的变异式样及其对划定物种范围的价值。共确认以下9个种:青海毛冠菊、厚毛毛冠菊、狭舌毛冠菊、虎克毛冠菊、宽苞毛冠菊、大果毛冠菊、毛冠菊、玉龙毛冠菊和云南毛冠菊。川西毛冠菊被处理成狭舌毛冠菊的异名。 2.微形态学 在光镜下检查了毛冠菊属9种和紫菀族2个代表属的花柱的形状、花药顶端不育附属物、花药基部、花药基部、花盘、花丝领、药室内壁细胞等微形态性状。除了花柱基外,其他的微形态学在属内一致。管状花的花柱形态支持将毛冠菊属放在紫菀族,但其药室内壁细胞两极加厚式样表明它和广义的旋覆花有某些联系。 3.叶表皮研究 在光镜和电镜下检查了毛冠菊属8个种的叶表皮特征。.所有种的气孔器都为不规则型。青海毛冠菊表皮细胞的为多边形,而其他种都为不规则型。青海毛冠菊表皮角质层的加厚方式也与其他种明显不同。 4.扫描电镜下的舌片和花柱分枝特征 在扫描电镜下观察毛冠菊属8种和紫菀族7个代表种的舌片近轴面表皮细胞。发现毛冠菊属的舌片近轴面表皮细胞都为板状,并且沿细胞中央特征性加厚,这与紫菀族类型的表皮细胞一致,但毛冠菊属表皮细胞的角质层主要是纵向条纹或皱纹,而紫菀族总是横向的条纹或皱纹,明显不同。 在扫描电镜下又检查了毛冠菊属8种和紫菀族8个代表种的管状花花柱分枝近轴面的结构,结果在毛冠菊属管状花花柱分枝的近轴面都发现了柱头毛状的突起,而在紫菀族8种中没有发现。从突起的形状和位置判断,它可能是残存的、未充分发育的柱头毛。这表明雌性不育管状花可能刚刚从两性管状花演化而来。 也在扫描电镜下观察了毛冠菊属6种和紫菀族8个代表种的舌状花和丝状花的花柱分枝的远轴面,结果在毛冠菊属4种中发现了类似扫集毛状的突起。从这种突起的位置和形状判断,它可能是残余的扫集毛。这种突起在除雏菊以外的其他紫菀族代表种中缺失。 5.细胞学 检查了毛冠菊属8种的细胞学性状。结果发现毛冠菊属所有种的染色体基数都为x -9。染色体长度大约4um-lOum。核型公式:毛冠菊、厚毛毛冠菊、狭舌毛冠菊、宽苞毛冠菊和云南毛冠菊都为2n=14m+2sm+2st;玉龙毛冠菊、大果毛冠菊和青海毛冠菊都为2n=12m+4sm+2st。A1、A2值在属内没有明显差异。所有种的核型都是2A型。这表明在物种形成的过程中没有多倍化参与,毛冠菊属宜放在紫菀族而不是千里光族。细胞学证据支持毛冠菊属为一单系类群。 6.分子生物学 测定了毛冠菊属7种的ITS序列,并从基因库里下载了46个ITS序列,涵盖紫菀族14个亚属和旋覆花族、春黄菊族、金盏菊族。以旋覆花族、春黄菊族、金盏菊族为外类群。简约性分析显示,毛冠菊属在紫菀族中,并有较高的bootstrap值,在紫菀族中处于基部位置。Olearia和Chiliotrichum两个Hinterhuberinae亚族的代表属与毛冠菊属密切相关。在属下系统发育分析中,Olearia和Chiliotrichum被选做外类群。652个性状中,共有7】个信息位点(31个在ITSI,33个在ITS2,7个在5.8S)。简约性分析时只获得一棵最简约树。树上有两个明显的进化支,一支仅有青海毛冠菊一种,另一支包含其他种类。这种分支方式也得到形态学和生态学证据的支持。 7.毛冠菊属的系统学 从上述结果可以看出,毛冠菊属宜放入紫菀族中,在紫菀族中处于基部位置,与Hinterhuberinae亚族关系密切。综合上述研究结果,提出一个新的属下 分类系统: 毛冠菊属的新系统 组I单头组Sect. Monocephala T.G.Gao et YL.Chen Sect nov. 青海毛冠菊Nannoglottis ravida (C.Winkl.)Y.L.Chen 组II毛冠菊组Sect. Nannoglottis 系1.长舌系Ser. Delavayanae Ling et YL.Chen 厚毛毛冠菊Nannoglottis delavayi(Franch.)Ling et Y.L.Chen 狭舌毛冠菊Nannoglottis gynura(C.Winkl.) Ling et YL.Chen 虎克毛冠菊Nannoglottis hookeri (C.B.Clarke ex Hook.f.)Kitam. 宽苞毛冠菊Nannoglottis latisquama Ling et Y.L.Chen 大果毛冠菊Nannoglottis macrocarpa Ling et YL.Chen 系2.短舌系Ser. Nannoglottis 毛冠菊Nannoglottis carpesioides Maxim. 玉龙毛冠菊Nannoglottis hieraciphylla (Hand.-Mzt.)Ling et YL.Chen 云南毛冠菊Nannoglottis yuennanensis (Hand.-Mzt.) Hand.-Mzt.