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1.
以县级行政区域为单元,调查了山东省高等动植物濒危物种的种类、濒危等级及其县域分布状况,建立了各县域濒危物种名录,计算了各县域濒危物种丰度指数,分析了濒危物种空间分布格局,提出了濒危物种保护对策。结果表明:山东省濒危野生高等动物物种有80种,其极危、濒危、易危和近危物种种类分别为3、11、34和32种。濒危野生维管束植物物种有24种,其极危、易危和近危物种种类分别为1、6和17种。濒危野生高等动物在全省120个县域均有分布,物种种类在21.50之间变化;濒危野生维管柬植物仅分布在74个县域,物种种类变化范围在1-18之间。山东省濒危物种丰度指数较小,各县域濒危物种丰度指数变化范围在3.75%-6.76%之间。濒危物种多样性空间分布规律反映了山东省实际情况。  相似文献   

2.
人类活动对上海市生物多样性空间格局的影响   总被引:1,自引:0,他引:1  
为了揭示人类活动对城市化地区生物多样性空间格局的影响及其景观生态学机制,文章将上海市作为研究对象,选择3个人类活动指标、3个主要类型生态系统的4个景观特征指标与8个生物多样性指标,探讨人类活动强度、野生动植物生境景观特征及生物多样性三者之间的相互关系。结果显示,人口增长和城市扩张对上海市生物多样性的空间格局产生了显著影响。在上海地区,人口密度较高、交通较为发达的区域,湿地和农田的景观连续性较低,生物多样性也较低,外来入侵物种丰度较高。这表明在快速城市化过程中,人类活动通过改变野生动植物栖息地景观质量来对区域生物多样性产生影响。本研究还显示,经济发展并非一定对生物多样性具有负面影响。因此,在保持经济发展的同时,通过优化产业结构与加强生物多样性管理,可实现对生物多样性有效保护。  相似文献   

3.
以国家重点生态功能区县域——武夷山市为案例区,选取54个珍稀濒危物种为指示物种,在物种栖息地评价基础上采用系统保护规划工具MARXAN模型评估生物多样性保护的优先区域。结果表明,武夷山市生物多样性保护优先区总面积为734.7 km~2,占武夷山市国土面积的26.1%,并集中分布于东北部、西北部及东南部地区;在保护优先区内,8个一级保护物种栖息地的保护比例均超过各自栖息地总面积的50%。空缺分析发现,生物多样性保护优先区与现有自然保护地存在空间不匹配的现象,建议优先在生物多样性保护一级优先区范围内补充扩建和新建自然保护地,包括向东补充扩建武夷山国家公园、向南补充扩建武夷山黄龙岩省级自然保护区,在吴屯乡吴屯溪、东溪水库及其周边新建森林、湿地及水生野生动植物自然保护区,在上梅乡和五夫镇建设森林保护类自然公园。  相似文献   

4.
生物多样性是区域可持续发展的基础,准确掌握区域尺度生物多样性维护功能空间格局,对于反映区域生态系统状态、变化和面临的威胁,以及选择保护策略均具有重要意义。利用区域生物量、地形地貌、气候和土地覆被因子,构建生物多样性维护功能综合评估模型,并以京津冀地区为研究区,对评估模型进行应用与验证。结果表明:(1)构建的评估模型能够反映研究区生物多样性维护功能空间格局。经模型评价,京津冀地区生物多样性维护功能高值区主要集中在燕山山区和太行山山区,低值区主要集中在坝上高原和平原地区,评估结果符合研究区实际。(2)研究区县域生物多样性和自然保护区物种多样性与模型评估结果间均存在显著相关关系。县域生物多样性指标中,物种特有性与模型评估结果之间相关性最高(r=0.699,P0.001),其次为生态系统类型多样性(r=0.680,P0.001)、稀有濒危物种丰富度(r=0.571,P0.001)、野生维管植物丰富度(r=0.544,P0.001)、外来物种入侵度(r=-0.437,P0.001)和野生高等动物丰富度(r=0.404,P0.001);自然保护区物种多样性与模型评估结果间呈显著对数相关(r=0.540,P0.001),约70%的自然保护区分布在生物多样性维护功能极重要和高度重要区。构建的评估方法能够从区域尺度和栅格水平反映生物多样性维护功能,从而为区域自然保护区建设和生态修复工作提供科学依据。  相似文献   

5.
生物多样性保护依赖于健全的国际立法和国家立法。中国已颁布一系列有关生物多样性保护的法律和条例。这些法规的实施,使生物多样性保护工作取得重大进展,但还存在许多不足和空白。本文概述了中国在生物多样性保护方面的立法现状,在此基础上,针对存在问题,并根据《生物多样性公约》要求,从生态系统、物种和遗传多样性保护3个层次上阐明需要完善和加强法规建设的若干方面和需求。  相似文献   

6.
本文综述了生态系统多样性在生物多样性保护中的意义及5个中心研究问题,即生物群落或生态系统关键种、生物多样性关键地区、生态系统多样性的持续性、受害生态系统的恢复生态学、生态系统多样性保护对策及保护途径。文章还分析和讨论当前国际上有关生态系统多样性保护的对策和实践。  相似文献   

7.
中国生物多样性保护立法现状与需求   总被引:3,自引:0,他引:3  
生物多样性保护依赖于健全的国际立法和国家立法。中国已颁布一系列有关生物多样性保护的法律和条例。这些法规的实施,使生物多样性保护工作取得重大进展,但还存在许多不足和空白。本文概述了中国在生物多样性保护方面的立法现状,在此基础上,针对存在问题,并根据《生物多样性公约》要求,从生态系统、物种和遗传多样性保护3个层次上阐明需要完善和加强法规建设的若干方面和要求。  相似文献   

8.
气候变化对生物多样性的影响:脆弱性和适应   总被引:6,自引:0,他引:6  
气候变化对生物多样性影响及其适应直接关系着未来生物多样性的保护.气候变化对生物多样性影响、生物多样性在气候变化影响下的脆弱性、生物多样性适应气候变化方面进行了总结分析,对存在的问题进行了讨论,对今后研究提出了一些建议.过去的气候变化已使物种物候、分布和丰富度等改变,使一些物种灭绝、部分有害生物危害强度和频率增加,使一些生物入侵范围扩大、生态系统结构与功能改变等.未来的气候变化仍将使物种物候和行为、分布和丰富度等改变,使一些物种灭绝、使有害生物爆发频率和强度增加,并将可能使生态系统结构与功能发生改变等.生物多样性适应气候变化包括了自然适应和人为适应两个方面,自然适应体现在物种适应性进化、迁移、生态系统稳定性和弹性等,人为适应体现在种质基因保存、物种异地保护、自然保护区规划设计、生态系统适应性管理、生态恢复和气候灾害防御等.目前,生物多样性对气候变化影响的脆弱性、生物多样性自然适应和人为适应气候变化方面的研究都还不系统深入,需要加强生物多样性自然适应和人为适应气候变化方面的研究.  相似文献   

9.
湿地鸟类多样性及其环境影响因子的研究进展   总被引:7,自引:0,他引:7  
湿地鸟类在能量转换和维护生态系统的稳定性方面起着举足轻重的作用,同时也是监测、评价湿地生态环境极其敏感的指标.本文从物种多样性、遗传多样性和生态系统多样性三个方面分析了湿地鸟类多样性.总结了环境因子对湿地鸟类多样性的影响,最后对湿地鸟类多样性的研究提出展望,为更好地保护湿地鸟类资源及生态环境提供科学依据.  相似文献   

10.
Bt作物杀虫蛋白在农田土壤中残留动态的研究进展   总被引:1,自引:0,他引:1  
综述了转Bt作物释放的杀虫蛋白在农田土壤中的残留动态.重点阐述了:①土壤中Bt毒素蛋白的检测方法;②Bt毒素在土壤中残留、富集与降解动态;③Bt毒素蛋白与土壤中具有表面活性颗粒的吸附结合规律;④土壤中Bt毒素的杀虫活性.国内外研究结果表明,转基因植物释放到土壤中的Bt毒素蛋白迅速与土壤中具有表面活性的颗粒吸附并紧密结合,降低生物降解,但结合后的Bt毒素结构没有改变,致使毒素蛋白在土壤中长期滞留并保持其杀虫活性,可能会对土壤中非靶标生物造成不良影响.因此深入、系统地研究和评价转Bt作物释放的Bt毒素对土壤生态系统的风险迫在眉睫.参50  相似文献   

11.
Large, intact areas of tropical peatland are highly threatened at a global scale by the expansion of commercial agriculture and other forms of economic development. Conserving peatlands on a landscape scale, with their hydrology intact, is of international conservation importance to preserve their distinctive biodiversity and ecosystem services and maintain their resilience to future environmental change. We explored threats to and opportunities for conserving remaining intact tropical peatlands; thus, we excluded peatlands of Indonesia and Malaysia, where extensive deforestation, drainage, and conversion to plantations means conservation in this region can protect only small fragments of the original ecosystem. We focused on a case study, the Pastaza‐Marañón Foreland Basin (PMFB) in Peru, which is among the largest known intact tropical peatland landscapes in the world and is representative of peatland vulnerability. Maintenance of the hydrological conditions critical for carbon storage and ecosystem function of peatlands is, in the PMFB, primarily threatened by expansion of commercial agriculture linked to new transport infrastructure that is facilitating access to remote areas. There remain opportunities in the PMFB and elsewhere to develop alternative, more sustainable land‐use practices. Although some of the peatlands in the PMFB fall within existing legally protected areas, this protection does not include the most carbon‐dense (domed pole forest) areas. New carbon‐based conservation instruments (e.g., REDD+, Green Climate Fund), developing markets for sustainable peatland products, transferring land title to local communities, and expanding protected areas offer pathways to increased protection for intact tropical peatlands in Amazonia and elsewhere, such as those in New Guinea and Central Africa which remain, for the moment, broadly beyond the frontier of commercial development.  相似文献   

12.
13.
Biogeographic theory predicts that rare species occur more often in larger, less‐isolated habitat patches and suggests that patch size and connectivity are positive predictors of patch quality for conservation. However, in areas substantially modified by humans, rare species may be relegated to the most isolated patches. We used data from plant surveys of 81 meadow patches in the Georgia Basin of Canada and the United States to show that presence of threatened and endangered plants was positively predicted for patches that were isolated on small islands surrounded by ocean and for patches that were isolated by surrounding forest. Neither patch size nor connectivity were positive predictors of rare species occurrence. Thus, in our study area, human influence, presumably due to disturbance or introduction of competitive non‐native species, appears to have overwhelmed classical predictors of rare species distribution, such that greater patch isolation appeared to favor presence of rare species. We suggest conservation planners consider the potential advantages of protecting geographically isolated patches in human‐modified landscapes because such patches may represent the only habitats in which rare species are likely to persist. Influencia Humana y Predictores Biogeográficos Clásicos de la Ocurrencia de Especies Raras  相似文献   

14.
The macro-algae communities observed in the south lake of Tunis are characterized by the predominance of nitrophilous algae which are in the order of biomass importance:Ulva, Cladophora andEnteromorpha. We have noted seasonal changes of alga distribution. The wind appears to be one of the most important factors influencing this distribution. The total biomass reaches a maximum in the spring. Rapid decomposition of the biomass leads to a severe ecological imbalance, resulting in crises of anoxia and fish death. A restoration project has already started. It aims at removal of contaminated muds and the introduction of a new circulation system. The main objectives of this work were to collect information on the distribution and biomass of the phytobenthic communities as a first step in the constitution of a database for further comparison.  相似文献   

15.
International Union for Conservation of Nature (IUCN) Red List assessments rely on published data and expert inputs, and biases can be introduced where underlying definitions and concepts are ambiguous. Consideration of climate change threat is no exception, and recently numerous approaches to assessing the threat of climate change to species have been developed. We explored IUCN Red List assessments of amphibians and birds to determine whether species listed as threatened by climate change display distinct patterns in terms of habitat occupied and additional nonclimatic threats faced. We compared IUCN Red List data with a published data set of species’ biological and ecological traits believed to infer high vulnerability to climate change and determined whether distributions of climate change‐threatened species on the IUCN Red List concur with those of climate change‐threatened species identified with the trait‐based approach and whether species possessing these traits are more likely to have climate change listed as a threat on the IUCN Red List. Species in some ecosystems (e.g., grassland, shrubland) and subject to particular threats (e.g., invasive species) were more likely to have climate change as a listed threat. Geographical patterns of climate change‐threatened amphibians and birds on the IUCN Red List were incongruent with patterns of global species richness and patterns identified using trait‐based approaches. Certain traits were linked to increases or decreases in the likelihood of a species being threatened by climate change. Broad temperature tolerance of a species was consistently related to an increased likelihood of climate change threat, indicating counterintuitive relationships in IUCN assessments. To improve the robustness of species assessments of the vulnerability or extinction risk associated with climate change, we suggest IUCN adopt a more cohesive approach whereby specific traits highlighted by our results are considered in Red List assessments. To achieve this and to strengthen the climate change‐vulnerability assessments approach, it is necessary to identify and implement logical avenues for further research into traits that make species vulnerable to climate change (including population‐level threats).  相似文献   

16.
Abstract: Captive rearing and translocation are often used concurrently for species conservation, yet the effects of these practices can interact and lead to unintended outcomes that may undermine species’ recovery efforts. Controls in translocation or artificial‐propagation programs are uncommon; thus, there have been few studies on the interacting effects of these actions and environmental conditions on survival. The Columbia River basin, which drains 668,000 km2 of the western United States and Canada, has an extensive network of hydroelectric and other dams, which impede and slow migration of anadromous Pacific salmon (Oncorhynchus spp.) and can increase mortality rates. To mitigate for hydrosystem‐induced mortality during juvenile downriver migration, tens of millions of hatchery fish are released each year and a subset of wild‐ and hatchery‐origin juveniles are translocated downstream beyond the hydropower system. We considered how the results of these practices interact with marine environmental conditions to affect the marine survival of Chinook salmon (O. tshawytscha). We analyzed data from more than 1 million individually tagged fish from 1998 through 2006 to evaluate the probability of an individual fish returning as an adult relative to its rearing (hatchery vs. wild) and translocation histories (translocated vs. in‐river migrating fish that traveled downriver through the hydropower system) and a suite of environmental variables. Except during select periods of very low river flow, marine survival of wild translocated fish was approximately two‐thirds less than survival of wild in‐river migrating fish. For hatchery fish, however, survival was roughly two times higher for translocated fish than for in‐river migrants. Competition and predator aggregation negatively affected marine survival, and the magnitude of survival depended on rearing and translocation histories and biological and physical conditions encountered during their first few weeks of residence in the ocean. Our results highlight the importance of considering the interacting effects of translocation, artificial propagation, and environmental variables on the long‐term viability of species.  相似文献   

17.
Summary Frogs(Rana pipiens) fed on blister beetles (Meloidae) or cantharidin, retain cantharidin systemically. After cessation of feeding, they void the compound relatively quickly. Systemic cantharidin does not protect frogs against ectoparasitic feeding by leeches(Hirudo medicinalis) or predation by snakes(Nerodia sipedon). As suggested by our data, and from reports in the early literature, ingestion of cantharidin-containing frogs can pose a health threat to humans.Paper no. 95 of the seriesDefense Mechanisms of Arthropods; no. 94 is LaMunyon & Eisner, Psyche (in press)  相似文献   

18.
Summary We tested the role of a grasshopper defensive secretion in deterring lizard predation. Adults, but not young larvae, of the chemically defended lubber grasshopperRomalea guttata (=microptera) froth a volatile secretion when attacked by predators. The lizardAnolis carolinensis failed to strike juvenile lubbers (which lack secretion) in laboratory trials. Survivorship of palatable crickets loaded with secretion offered toA. carolinensis was not significantly different from survivorship of control crickets. In experiments designed to investigate if lizards learn an aversion to the secretion, striking times forSceloporus undulatus fed wax worms coated with secretion were not significantly different over three days of trials. Three primary conclusions are drawn from these data. First, the secretion may not be necessary for lubber protection from lizards. Second, lubber secretion does not appear to deter lizards from attacking or eating prey items. Third, lizards do not appear to develop an aversion to the secretion.  相似文献   

19.
Bayesian network analyses can be used to interactively change the strength of effect of variables in a model to explore complex relationships in new ways. In doing so, they allow one to identify influential nodes that are not well studied empirically so that future research can be prioritized. We identified relationships in host and pathogen biology to examine disease‐driven declines of amphibians associated with amphibian chytrid fungus (Batrachochytrium dendrobatidis). We constructed a Bayesian network consisting of behavioral, genetic, physiological, and environmental variables that influence disease and used them to predict host population trends. We varied the impacts of specific variables in the model to reveal factors with the most influence on host population trend. The behavior of the nodes (the way in which the variables probabilistically responded to changes in states of the parents, which are the nodes or variables that directly influenced them in the graphical model) was consistent with published results. The frog population had a 49% probability of decline when all states were set at their original values, and this probability increased when body temperatures were cold, the immune system was not suppressing infection, and the ambient environment was conducive to growth of B. dendrobatidis. These findings suggest the construction of our model reflected the complex relationships characteristic of host–pathogen interactions. Changes to climatic variables alone did not strongly influence the probability of population decline, which suggests that climate interacts with other factors such as the capacity of the frog immune system to suppress disease. Changes to the adaptive immune system and disease reservoirs had a large effect on the population trend, but there was little empirical information available for model construction. Our model inputs can be used as a base to examine other systems, and our results show that such analyses are useful tools for reviewing existing literature, identifying links poorly supported by evidence, and understanding complexities in emerging infectious‐disease systems.  相似文献   

20.
The phenomenon of Batesian mimicry, where a palatable animal gains protection against predation by resembling an unpalatable model, has been a core interest of evolutionary biologists for 150 years. An extensive range of studies has focused on revealing mechanistic aspects of mimicry (shared education and generalization of predators) and the evolutionary dynamics of mimicry systems (co‐operation vs. conflict) and revealed that protective mimicry is widespread and is important for individual fitness. However, according to our knowledge, there are no case studies where mimicry theories have been applied to conservation of mimetic species. Theoretically, mimicry affects, for example, frequency dependency of predator avoidance learning and human induced mortality. We examined the case of the protected, endangered, nonvenomous smooth snake (Coronella austriaca) that mimics the nonprotected venomous adder (Vipera berus), both of which occur in the Åland archipelago, Finland. To quantify the added predation risk on smooth snakes caused by the rarity of vipers, we calculated risk estimates from experimental data. Resemblance of vipers enhances survival of smooth snakes against bird predation because many predators avoid touching venomous vipers. Mimetic resemblance is however disadvantageous against human predators, who kill venomous vipers and accidentally kill endangered, protected smooth snakes. We found that the effective population size of the adders in Åland is very low relative to its smooth snake mimic (28.93 and 41.35, respectively).Because Batesian mimicry is advantageous for the mimic only if model species exist in sufficiently high numbers, it is likely that the conservation program for smooth snakes will fail if adders continue to be destroyed. Understanding the population consequences of mimetic species may be crucial to the success of endangered species conservation. We suggest that when a Batesian mimic requires protection, conservation planners should not ignore the model species (or co‐mimic in Mullerian mimicry rings) even if it is not itself endangered. Implications of mimicry for Conservation of the endangered smooth snake  相似文献   

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