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101.
The genetic diversity of populations, which contributes greatly to their adaptive potential, is negatively affected by anthropogenic habitat fragmentation and destruction. However, continental‐scale losses of genetic diversity also resulted from the population expansions that followed the end of the last glaciation, an element that is rarely considered in a conservation context. We addressed this issue in a meta‐analysis in which we compared the spatial patterns of vulnerability of 18 widespread European amphibians in light of phylogeographic histories (glacial refugia and postglacial routes) and anthropogenic disturbances. Conservation statuses significantly worsened with distances from refugia, particularly in the context of industrial agriculture; human population density also had a negative effect. These findings suggest that features associated with the loss of genetic diversity in post‐glacial amphibian populations (such as enhanced fixation load or depressed adaptive potential) may increase their susceptibility to current threats (e.g., habitat fragmentation and pesticide use). We propose that the phylogeographic status of populations (i.e., refugial vs. post‐glacial) should be considered in conservation assessments for regional and national red lists.  相似文献   
102.
Fungi are undoubtedly important for ecosystem functioning; however, they have been omitted or given scant attention in most biodiversity policy documents, management plans, and formal conservation schedules throughout the world. This oversight may be due to a general lack of awareness in the scientific community and compounded by a scarcity of mycology‐associated curricula at the tertiary level and a lack of mycologists in research institutions. Although molecular techniques advance the systematic cataloging of fungi and facilitate insights into fungal communities, the scarcity of professional mycologists in the environmental sciences hampers conservation efforts. Conversely, citizen science initiatives are making significant contributions to the mycology discipline by increasing awareness and extending the scope of fungal surveys. Future research by professional and amateur mycologists into the distribution of fungi and their function in ecosystems will help identify wider and more effective conservation goals.  相似文献   
103.
西双版纳补蚌地区望天树林近20 a来物种多样性变化研究   总被引:1,自引:0,他引:1  
通过对1988年和2006年西双版纳补蚌地区望天树林样方资料的比较研究,探讨了望天树林群落近20a来在物种多样性方面的变化.研究结果表明,在2006年的样方中,望天树仍然具有最大的优势度,该群落仍然是以望天树为优势种的单优群落.在群落自身演替以及外界环境干扰的影响下,幼树、灌木和藤本植物种类和数量明显增加,而草本植物和附生植物减少.分析乔木层的物种多样性变化发现,尽管2006年样方在植物种类和数量上都要高于1988年样方,但辛普森指数和均匀度指数并未增加,很可能是样方中形成了林窗的结果.另外,乔木层中物种优势度变化非常明显,少数优势种衰退了,少数变得更优势.1988年的两个样方中分别有50%和40%的物种被后来的物种所取代,物种替换现象特别显著,外界环境的干扰可能是导致物种成分替换的主要原因.图2表1参23  相似文献   
104.
网围养殖对滆湖底栖动物群落组成及物种多样性的影响   总被引:4,自引:0,他引:4  
2002年4月、7月、11月和2003年1月对滆湖底栖动物群落组成、分布及多样性现状进行了研究.结果表明,滆湖现有底栖动物31种,其中软体动物14种,淡水寡毛类6种,水生昆虫7种和水蛭4种.主要优势种为梨形环棱螺和羽摇蚊.相似性分析表明,滆湖网围养鱼区和网围养蟹区底栖动物群落组成相似程度较高,而都与非养殖区差异较大,说明网围养殖对底栖动物组成存在影响;而且网围养鱼对底栖动物的影响更甚于网围养蟹的影响.多样性分析表明,滆湖底栖动物多样性呈现自北向南递增以及夏秋低、冬春高的时空变化格局.图3表2参17  相似文献   
105.
重庆缙云山常绿阔叶林群落物种多样性与土壤因子的关系   总被引:10,自引:0,他引:10  
探讨了缙云山常绿阔叶林物种多样性的变化特征,并运用去势典范对应分析(DCCA)方法,分析了不同样方中土壤因子与群落多样性指数之间的关系.结果表明:(1)17个样方中物种丰富度指数是草本层最高,均匀度指数是乔木层最高.(2)土壤含水量和水解氮与乔木层物种丰富度和均匀度相关性明显,有效磷和乔木层均匀度有明显相关;全氮含量和有机质含量与草本层物种的均匀度有明显相关.(3)多酚氧化酶活性和乔木层物种的均匀度有明显相关,转化酶活性与乔木层物种丰富度和均匀度均有一定相关,多酚氧化酶活性和酸性磷酸酶活性与草本层的物种均匀度和丰富度有明显相关.图2表3参20  相似文献   
106.
Abstract:  Important questions in conservation biology and ecology include whether species diversities of different groups of organisms are correlated and, in particular, whether plant diversity influences animal diversity. I used correlation and partial regression analyses to examine the relationships between species richness of vascular plants and four major groups of terrestrial vertebrates (mammals, amphibians, reptiles, and birds) in 28 provinces in China. Species richness data were obtained from the literature. Environmental variables included normalized difference vegetation index, mean January temperature, mean annual temperature, annual precipitation, May through August precipitation, actual evapotranspiration, potential evapotranspiration, and elevation range. Species richness was strongly and positively correlated among the five groups of organisms. Plant richness was correlated with animal richness more strongly than the richness of different animal groups correlated with each other except for reptile richness, which had a slightly higher correlation with amphibian richness than with plant richness. Plant richness uniquely explained 41 times more variance in the species richness of the four vertebrate groups combined than environmental variables uniquely did, suggesting that plant richness influences terrestrial vertebrate richness at the regional scale examined. Because of strong correlations between the diversity of vascular plants and vertebrates, the diversity of vascular plants may be used as a surrogate for the diversity of terrestrial animals in China. My results have implications for selection of areas to be protected at both regional and local scales.  相似文献   
107.
测定了从豆科树种刺槐、黄檀、合欢根瘤中分离获得的51个菌株与18株参比菌株的唯一碳源、氮源利用,抗生素抗性,耐逆性和酶活性等132个表型性状,并用MINTS软件进行聚类分析,结果表明,全部供试菌株在59%的相似性水平上分为两大群:一个各为慢生菌群,另一群为快生和中慢生菌群,在85.1%的相似性水平上分为5个亚群,其中亚群4不与任何已知参比菌株聚在一起,可能为新种。同时,表型性状测定结果发现某些菌株对抗生素(300μg/mL)、温度(40℃)有较强抗性,大多数菌株能在较宽的pH值范围内生长(pH5-12),这些具有抗逆特性的菌株为我国西部大中种植豆科植物接种适宜的根瘤菌提供了宝贵的种质资源,在数值分类的基础上,又对47株菌进行了16S rD-NA-PCR RFLP分析,经SPSS软件聚类后,划分为7个亚群,在较大类群的划分上,与数值分类的结果有较好的一致性,16S rDNA-PCR RFLP遗传图谱共有30种类型。表型及遗传型分析结果表明,豆科树种根瘤菌具有极大的多样性,图2表2参14。  相似文献   
108.
A grazing experiment was started in 1984 and 1989 respectively, in two parts of a dune grassland in the nature reserve ‘Zwanenwater’, North Holland; a third part with similar geology and topography was used as a control area and not grazed. An evaluation of the effects of grazing on vegetation patterns, species composition, vegetation structure and humus form was made with the help of vegetation maps from 1986 and 1992 as well as field surveys. Dense tall-grass communities dominated byAmmophila arenaria increased over the period 1986–1992 in the grazed areas, and especially in the non-grazed area (increase in area to 20%, 22% and 50%, respectively). Open communities decreased in the grazed areas, but are still prevalent, while in the ungrazed area they virtually disappeared, with the result that the present percentage areas are 53%, 38% and 17%. Field survey data were classified by TWINSPAN producing four vegetation types. These occur more or less equally in grazed and ungrazed areas, albeit with different percentage areas: (1) open vegetation dominated byCorynephorus canescens; (2) open vegetation characteized, byKoeleria macrantha; (3) heathland dominated byEmpetrum nigrum; and (4) tall-grass communities dominated byAmmophila arenaria. Within a vegetation type, species composition was only marginally affected by grazing regime. Within the open communities the number of species, vegetation height, vegetation cover and soil organic horizons were not affected by grazing. In the tall-grass communities the number of species was significantly larger and the height of the vegetation significantly lower in the area grazed since 1984. In the heathland community the number of species and cover of the moss layer were significantly higher in the 1984 area and ectorganic and endorganic horizons significantly thicker in the ungrazed area. It is suggested that these effects are the result of an increased availability of light, but possibly also of a decreased stock of organic matter and nutrients, due to a decreased input of litter and accelerated rates of decomposition.  相似文献   
109.
110.
Many methods that study the diversity within hierarchically structured populations have been developed in genetics. Among them, the analysis of molecular variance (AMOVA) (Excoffier et al., 1992) has the advantage of including evolutionary distances between individuals. AMOVA is a special case of a far more general statistical scheme produced by Rao (1982a; 1986) and called the apportionment of quadratic entropy (APQE). It links diversity and dissimilarity and allows the decomposition of diversity according to a given hierarchy. We apply this framework to ecological data showing that APQE may be very useful for studying diversity at various spatial scales. Moreover, the quadratic entropy has a critical advantage over usual diversity indices because it takes into account differences between species. Finally, the differences that can be incorporated in APQE may be either taxonomic or functional (biological traits), which may be of critical interest for ecologists.  相似文献   
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