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91.
基于戴云山固定样地黄山松群落物种组成与结构研究 总被引:1,自引:0,他引:1
黄山松是亚热带中部山区主要建群种,研究其物种组成及群落结构对探讨中亚热带植被演替规律具有重要意义。戴云山自然保护区分布有大面积黄山松群落,该研究采用网格布点法,建立86块(25.82 m×25.82 m)共5.7 hm~2固定样地,对样地内黄山松群落的物种组成特征、分布区类型、胸径和树高结构、空间分布格局4个方面特征进行了探讨。结果表明:(1)样地内共出现木本植物32 603株219种,隶属于59科108属。乔灌木优势种有黄山松、马尾松、木荷、肿节少穗竹、岩柃、窄基红褐柃等,其中稀有种和偶见种分别占总物种数的33.79%、25.75%和45.21%、24.66%。(2)在区系分布类型上,热带分布类型的科属多于温带分布类型的科属,热带分布类型中又以泛热带分布类型,温带分布类型以北温带占据最大比例。(3)样地内优势种的胸径分布呈倒"J"型,表明更新状态良好。垂直结构上,各优势种树高为倒"J"型或近似倒"J"型。黄山松和其他优势乔木大部分树高为4~10 m,灌木除短尾越桔0~1 m个体数最多外,其他优势灌木1~2 m个体数最多。(4)经计算,样地内乔灌木各优势种均呈聚集分布,聚集程度有所差异,乔木层黄山松最低,灌木层短尾越桔最低。该研究结果表明戴云山保护区黄山松群落物种组成丰富、更新良好,反映了亚热带高山针叶林的典型特征,其空间分布格局可能与取样方式等因素有关。 相似文献
92.
A new partial skeleton of the Cretaceous “symmetrodontan” mammal Zhangheotherium quinquecuspedens from the Yixian Formation of Liaoning, China has shed light on the dental and skeletal features of this taxon. The new fossil
is a juvenile individual of late growth stage, preserved with interesting features of the premolar replacement. This fossil
also provides new information on the vertebral column, the pelvis, the hindlimb and pes. Zhangheotherium has a typical diphyodont replacement of its premolars that is characterized by an alternating pattern (p1 → p3 → p2). This
alternating replacement of premolars is a derived condition shared by Dryolestes, Slaughteria, and some basal eutherians, and differs from the plesiomorphic sequential replacement of anterior postcanines in eutricondontans,
in most multituberculates and in stem mammaliaforms. The calcaneus and astragalus in the ankle joint of Zhangheotherium lack superposition. This shows that the trechnotherian clade, of which Zhangheotherium is a basal taxon, has retained the primitive condition of mammaliaforms in which the astragalus is in juxtaposition with
the calcaneus. Coupled with recent evidence from the earliest metatherians and eutherians, this suggests that the superposition
of astragalus and calcaneus evolved in parallel in metatherians and eutherians. 相似文献
93.
Many classes of non-coding RNAs (ncRNAs; including Y RNAs, vault RNAs, RNase P RNAs, and MRP RNAs, as well as a novel class recently discovered in Dictyostelium discoideum) can be characterized by a pattern of short but well-conserved sequence elements that are separated by poorly conserved regions of sometimes highly variable lengths. Local alignment algorithms such as BLAST are therefore ill-suited for the discovery of new homologs of such ncRNAs in genomic sequences. The Fragrep tool instead implements an efficient algorithm for detecting the pattern fragments that occur in a given order. For each pattern fragment, the mismatch tolerance and bounds on the length of the intervening sequences can be specified separately. Furthermore, matches can be ranked by a statistically well-motivated scoring scheme. 相似文献
94.
95.
林木分布格局多样性测度方法: 以阔叶红松林为例 总被引:2,自引:0,他引:2
林木分布格局是森林结构的重要组成部分, 直接影响森林生态系统的健康与稳定, 维持森林结构多样性被认为是保护生物多样性的最佳途径。本研究探讨了林木分布格局多样性的测度方法, 以期为揭示森林结构多样性提供理论依据。格局多样性研究的关键在于选择合适的生物多样性测度方法和具有分布属性的格局指数。本研究通过统计角尺度分布频率和Voronoi多边形边数分布频率, 运用Simpson指数分别计算角尺度多样性和Voronoi多边形边数分布多样性, 作为表达林木分布格局多样性指数的方法, 并以我国东北吉林蛟河的3个100 m × 100 m的阔叶红松(Pinus koreansis)林长期定位监测标准地为例, 分析了林木分布格局的多样性。结果表明: 无论是角尺度分布还是Voronoi多边形的边数分布都接近正态分布, 角尺度分布中随机分布林木的频数最多, 占55%以上; Voronoi多边形的类型多达10个以上, 50%以上的林木有5-6株最近相邻木。利用Simpson指数衡量林木格局多样性, 角尺度分布与Voronoi多边形的边数分布都显示出聚集分布的林分比随机分布林分的格局多样性高。研究还发现, 两种格局判定方法得出的Simpson指数值有所不同, 角尺度分布的多样性数值明显低于Voronoi多边形的边数分布的多样性数值, 主要原因是二者的等级数量不同。可见, 林木分布格局多样性研究应选择具有分布属性的格局指数, 但由于各指数反映的角度不同, 所以在分析比较不同林分格局多样性时应采用相同的分析方法。 相似文献
96.
Source-sink landscape theory and its ecological significance 总被引:2,自引:0,他引:2
Exploring the relatiouships between landscape pattern and ecological processes is the key topic of landscape ecology,for which,a large number of indices as well as landscape pattern analysis model were developed.However,one problem faced by landscape ecologists is that it is hard to link the landscape indices with a specific ecological process.Linking landscape pattern and ecological processes has become a challenge for landscape ecologists."Source" and "sink" are common concepts used in air pollution research,by which the movement direction and pattern of different pollutants in air can be clearly identified.In fact,for any ecological process,the research can be considered as a balance between the source and the sink in space.Thus,the concepts of "source" and "sink" could be implemented to the research of landscape pattern and ecological processes.In this paper,a theory of sourcesink landscape was proposed,which include:(1) In the research of landscape pattern and ecological process,all landscape types can be divided into two groups,"source"landscape and "sink" landscape."Source" landscape contributes positively to the ecological process,while "sink" landscape is unhelpful to the ecological process.(2) Both landscapes are recognized with regard to the specific ecological process."Source" landscape in a target ecological process may change into a "sink"landscape as in another ecological process.Therefore,the ecological process should be determined before "source"or "sink" landscape were defined.(3) The key point to distinguish "source" landscape from "sink" landscape is to quantify the effect of landscape on ecological process.The positive effect is made by "source" landscape,and the negative effect by "sink" landscape.(4) For the same ecological process,the contribution of "source" landscapes may vary,and it is the same to the "sink"landscapes.It is required to determine the weight of each landscape type on ecological processes.(5) The sourcesink principle can be applied to non-point source pollution control,biologic diversity protection,urban heat island effect mitigation,etc.However,the landscape evaluation models need to be calibrated respectively,because different ecological processes correspond with different source-sink landscapes and evaluation models for the different study areas.This theory is helpful to further study landscape pattern and ecological process,and offers a basis for new landscape index design. 相似文献
97.
98.
为评估浙江省陆域生态保护红线科学性,本研究从生态安全格局视角出发,基于生态系统全过程的理念评价其生态效应。在明确生态保护红线三重内涵的基础上,构建评价指标体系,应用InVEST模型、净初级生产力定量分析等方法识别生态源地,评估红线斑块重要性;应用最小阻力值模型、重力模型等方法构建生态廊道体系,评估红线连通性;此外,通过景观格局指数、叠置分析等方法评估红线破碎化与协调性。结果表明: 从生态保护重要性看,浙江省生态保护红线保护规模较大,但13.5%的红线区保护重要性不高,省级生态源地中约40%的斑块未被纳入生态保护红线保护区。从空间结构整体性看,生态保护红线连通性不足,核心生态廊道占有率低于15%,部分县市红线斑块较为破碎。从系统间协调性看,生态保护红线跨行政区衔接性较好,但仍需注意平原地区因供需矛盾而导致的划定不实与破碎化现象。借鉴生态安全格局提出红线优化调整的相关策略,可为生态空间管理提供科学参考。 相似文献
99.
100.
Axial patterning of the aboral end of the hydra body column was examined using expression data from two genes. One, shin guard, is a novel receptor protein-tyrosine kinase gene expressed in the ectoderm of the peduncle, the end of the body column adjacent to the basal disk. The other gene, manacle, is a paired-like homeobox gene expressed in differentiating basal disk ectoderm. During regeneration of the aboral end, expression of manacle precedes that of shin guard. This result is consistent with a requirement for induction of peduncle tissue by basal disk tissue. Our data contrast with data on regeneration of the oral end. During oral end regeneration, markers for tissue of the tentacles, which lie below the extreme oral end (the hypostome), are detected first. Later, markers for the hypostome itself appear at the regenerating tip, with tentacle markers displaced to the region below. Additional evidence that tissue can form basal disk without passing through a stage as peduncle tissue comes from LiCl-induced formation of patches of ectopic basal disk tissue. While manacle is ectopically expressed during formation of basal disk patches, shin guard is not. The genes examined also provide new information on development of the aboral end in buds. Although adult hydra are radially symmetrical, expression of both genes in the bud's aboral end is initially asymmetrical, appearing first on the side of the bud closest to the parent's basal disk. The asymmetry can be explained by differences in positional information in the body column tissue that evaginates to form a bud. As predicted by this hypothesis, grafts reversing the orientation of evaginating body column tissue also reverse the orientation of asymmetrical gene expression. 相似文献