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Canopy height variation and environmental heterogeneity in the tropical dry forests of coastal Oaxaca,Mexico 下载免费PDF全文
Despite its importance for carbon storage and other ecosystem functions, the variation in vegetation canopy height is not yet well understood. We examined the relationship between this community attribute and environmental heterogeneity in a tropical dry forest of southern Mexico. We sampled vegetation in 15 sites along a 100‐km coastal stretch of Oaxaca State, and measured the heights of all woody plants (excluding lianas). The majority of the ca. 4000 individuals recorded concentrated in the 4–8 m height range. We defined three plant sets to describe overall community canopy height at each site: a set including all plants, a set made up by the tallest plants representing 10 percent of all individuals, and a set comprising the 10 tallest plants. For each site we computed maximum height and the mean and median heights of the three sets. Significant collinearity was observed between the seven resulting height variables, but null distributions constructed through bootstrap revealed their different behaviors as functions of species richness and density of individuals. Through linear modeling and a model selection procedure, we identified 21 models that best described the variation in canopy height variables. These models pointed out to soil (measured as PC1 of a principal component analysis performed on 10 soil variables), water stress, and elevation as the main drivers of canopy height variation in the region. In the event of increasing water stress resulting from global climate change, the studied tropical dry forests could become shorter and thus decrease their carbon storage potential. 相似文献
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Alkaliphilic Bacillus sp. AH-101 was characterized in terms of physiological and biochemical characteristics, and 16S rDNA sequence homology and
DNA–DNA hybridization analyses were performed. Phylogenetic analysis of strain AH-101 based on comparison of 16S rDNA sequences
revealed that this strain is closely related to Bacillus halodurans. DNA–DNA hybridization of AH-101 and related Bacillus reference strains showed that the highest level of DNA–DNA relatedness (88%) was found between strain AH-101 and the B. halodurans type strain (DSM497). Our findings demonstrate that strain AH-101 is a member of the species B. halodurans.
Received: June 10, 1999 / Accepted: August 6, 1999 相似文献
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An attempt to use phylogenetic invariants for tree reconstruction was made at the end of the 80s and the beginning of the 90s by several researchers (the initial idea due to Lake [1987] and Cavender and Felsenstein [1987]). However, the efficiency of methods based on invariants is still in doubt (Huelsenbeck 1995; Jin and Nei 1990). Probably because these methods only used few generators of the set of phylogenetic invariants. The method studied in this paper was first introduced in Casanellas et al. (2005) and it is the first method based on invariants that uses the "whole" set of generators for DNA data. The simulation studies performed in this paper prove that it is a very competitive and highly efficient phylogenetic reconstruction method, especially for nonhomogeneous models on phylogenetic trees. 相似文献
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养殖牡蛎体内检出坎氏弧菌的鉴定 总被引:11,自引:0,他引:11
2 0 0 3年 9月从福建近海养殖太平洋牡蛎 (Crassostreagigas)体内分离出 4株细菌 ,对它们形态、生理生化特征、盐度、温度和pH生长条件以及 16SrRNA基因序列进行了研究。结果表明 ,4株细菌均为革兰氏阴性杆菌 ,具极生单鞭毛 ,发酵葡萄糖产酸不产气 ,氧化酶阳性 ,生长需NaCl,无色素 ,不发光 ,在TCBS平板上形成中等大小圆形绿色菌落 ,对弧菌抑制剂O 12 9敏感 ,具有弧菌属的典型特征。结合 16SrRNA基因序列分析结果 ,该菌 (编号SXS1)与坎氏弧菌的亲缘关系最为接近 ,其同源性达 99 .0 % ,因此将该菌鉴定为坎氏弧菌。对该菌在环境中的分布与水产养殖动物疾病的关系进行了讨论。 相似文献
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在浙江省临安市选择典型天然次生灌丛,分别进行封禁和目标树抚育,探讨灌丛恢复为乔木林的可能性.结果表明: 4年后,与未管护(对照)相比,封禁和目标树抚育后群落平均胸径分别提高1.3和2.6倍,平均高度分别提高0.5和1.1倍;目标树抚育林木出现了对照林分没有的4.5~8.5 cm径阶和4.5~8.5 m树高阶,形成了4 m高的新林层;灌木层物种丰富度和多样性指数没有因抚育而下降;封禁管理维持了群落的树种组成,遵循原有的演替方向;目标树抚育显著改变了群落的树种组成,提高了目的树种的重要值,近期有可能恢复成为针阔混交林群落.与封禁相比,目标树抚育在优势林木胸径和高度生长、树种组成改善等方面更能达到预想的目标.在有条件经营的情况下,可以选择目标树抚育模式对天然次生灌丛进行管理,从而达到加快群落恢复演替形成乔木林的目的. 相似文献
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Tree island ecosystems are important and distinct features of Florida Everglades wetlands. We described the inter-relationships
among abiotic factors describing seasonally flooded tree islands and characterized plant–soil relationships in tree islands
occurring in a relatively unimpacted area of the Everglades. We used Principal Components Analysis (PCA) to reduce our multi-factor
dataset, quantified forest structure and vegetation nutrient dynamics, and related these vegetation parameters to PCA summary
variables using linear regression analyses. We found that, of the 21 abiotic parameters used to characterize the ecosystem
structure of seasonally flooded tree islands, 13 parameters were significantly correlated with four principal components,
and they described 78% of the variance among the study islands. Most variation was described by factors related to soil oxidation
and hydrology, exemplifying the sensitivity of tree island structure to hydrologic conditions. PCA summary variables describing
tree island structure were related to variability in Chrysobalanus icaco (L.) canopy cover, Ilex cassine (L.) and Salix caroliniana (Michx.) canopy cover, Myrica cerifera (L.) plot frequency, litter turnover, % phosphorus resorption of co-dominant species, and nitrogen nutrient-use efficiency.
This study supported findings that vegetation characteristics can be sensitive indicators of variability in tree island ecosystem
structure. This study produced valuable, information which was used to recommend ecological targets (i.e. restoration performance
measures) for seasonally flooded tree islands in more impacted regions of the Everglades landscape. 相似文献