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411.
Limited knowledge of dispersal for most organisms hampers effective connectivity conservation in fragmented landscapes. In forest ecosystems, deadwood‐dependent organisms (i.e., saproxylics) are negatively affected by forest management and degradation globally. We reviewed empirically established dispersal ecology of saproxylic insects and fungi. We focused on direct studies (e.g., mark‐recapture, radiotelemetry), field experiments, and population genetic analyses. We found 2 somewhat opposite results. Based on direct methods and experiments, dispersal is limited to within a few kilometers, whereas genetic studies showed little genetic structure over tens of kilometers, which indicates long‐distance dispersal. The extent of direct dispersal studies and field experiments was small and thus these studies could not have detected long‐distance dispersal. Particularly for fungi, more studies at management‐relevant scales (1–10 km) are needed. Genetic researchers used outdated markers, investigated few loci, and faced the inherent difficulties of inferring dispersal from genetic population structure. Although there were systematic and species‐specific differences in dispersal ability (fungi are better dispersers than insects), it seems that for both groups colonization and establishment, not dispersal per se, are limiting their occurrence at management‐relevant scales. Because most studies were on forest landscapes in Europe, particularly the boreal region, more data are needed from nonforested landscapes in which fragmentation effects are likely to be more pronounced. Given the potential for long‐distance dispersal and the logical necessity of habitat area being a more fundamental landscape attribute than the spatial arrangement of habitat patches (i.e., connectivity sensu strict), retaining high‐quality deadwood habitat is more important for saproxylic insects and fungi than explicit connectivity conservation in many cases.  相似文献   
412.
水淹和水窜是油田在水驱开发时常见的安全问题,储层非均质性是引起水淹和水窜的主要原因之一。为研究储层非均质性对于水淹水窜的作用,通过层次聚类分析法建立储层非均质综合指数关系式,并将其转化为水淹水窜风险概率,把水淹水窜风险概率进行分级,以此判断非均质性对于水淹水窜的作用。以BD油田阜二段第三砂层组为例进行水淹水窜风险评估,结果表明:研究区非均质性严重,水淹水窜风险概率均大于80%,储层非均性极容易导致油田在注水开发时发生水淹水窜。该区在注水开发时需要重视工艺设计与防护措施,以降低水淹水窜风险。  相似文献   
413.
Indigenous Peoples’ lands cover over one-quarter of Earth's surface, a significant proportion of which is still free from industrial-level human impacts. As a result, Indigenous Peoples and their lands are crucial for the long-term persistence of Earth's biodiversity and ecosystem services. Yet, information on species composition on these lands globally remains largely unknown. We conducted the first comprehensive analysis of terrestrial mammal composition across mapped Indigenous lands based on data on area of habitat (AOH) for 4460 mammal species assessed by the International Union for Conservation of Nature. We overlaid each species’ AOH on a current map of Indigenous lands and found that 2695 species (60% of assessed mammals) had ≥10% of their ranges on Indigenous Peoples’ lands and 1009 species (23%) had >50% of their ranges on these lands. For threatened species, 473 (47%) occurred on Indigenous lands with 26% having >50% of their habitat on these lands. We also found that 935 mammal species (131 categorized as threatened) had ≥ 10% of their range on Indigenous Peoples’ lands that had low human pressure. Our results show how important Indigenous Peoples’ lands are to the successful implementation of conservation and sustainable development agendas worldwide.  相似文献   
414.
For species at risk of decline or extinction in source–sink systems, sources are an obvious target for habitat protection actions. However, the way in which source habitats are identified and prioritized can reduce the effectiveness of conservation actions. Although sources and sinks are conceptually defined using both demographic and movement criteria, simplifications are often required in systems with limited data. To assess the conservation outcomes of alternative source metrics and resulting prioritizations, we simulated population dynamics and extinction risk for 3 endangered species. Using empirically based habitat population models, we linked habitat maps with measured site‐ or habitat‐specific demographic conditions, movement abilities, and behaviors. We calculated source–sink metrics over a range of periods of data collection and prioritized consistently high‐output sources for conservation. We then tested whether prioritized patches identified the habitats that most affected persistence by removing them and measuring the population response. Conservation decisions based on different source–sink metrics and durations of data collection affected species persistence. Shorter time series obscured the ability of metrics to identify influential habitats, particularly in temporally variable and slowly declining populations. Data‐rich source–sink metrics that included both demography and movement information did not always identify the habitats with the greatest influence on extinction risk. In some declining populations, patch abundance better predicted influential habitats for short‐term regional persistence. Because source–sink metrics (i.e., births minus deaths; births and immigrations minus deaths and emigration) describe net population conditions and cancel out gross population counts, they may not adequately identify influential habitats in declining populations. For many nonequilibrium populations, new metrics that maintain the counts of individual births, deaths, and movement may provide additional insight into habitats that most influence persistence.  相似文献   
415.
The Allegheny River in Pennsylvania supports a large and diverse freshwater-mussel community, including two federally listed endangered species, Pleurobema clava (Clubshell) and Epioblasma torulosa rangiana (Northern Riffleshell). It is recognized that river hydraulics and morphology play important roles in mussel distribution. To assess the hydraulic influences of bridge replacement on mussel habitat, metrics such as depth, velocity, and their derivatives (shear stress, Froude number) were collected or computed.The objectives of the project were to evaluate mussel and hydraulic data at a reference site and to compare those findings to a bridge-replacement site. The findings were used to support a statistical analysis, which establishes correlations between mussel count and hydraulics, and a numerical model to forecast habitat based on the statistics.ArcGIS was selected to manage the data and generate a grid to compute area statistics for 3319, 4.9-m × 4.9-m cells (cell) for total mussel count, depth, velocity, shear stress, and Froude number. The Wilcoxon Rank Sum test indicated no statistical significance between the total mussel count and the hydraulic variables; however, trellis graphs were used to account for the spatial variability in the data set. For the flow conditions measured, the total mussel count per cell is greatest at sections where (1) velocities range from 0.061 to 0.21 m/s, (2) shear stresses range from 0.48 to 3.8 dyne/cm2, and (3) Froude numbers range from 0.006 to 0.04.Based on the statistical targets established, the hydraulic model results suggest that an additional 2428 m2 or a 30-percent increase in suitable mussel habitat could be generated at the replacement-bridge site when compared to the baseline condition associated with the existing bridge at that same location. The study did not address the influences of substrate, acid mine drainage, sediment loads from tributaries, and surface-water/ground-water exchange on mussel habitat. Future studies could include methods for quantifying (1) channel-substrate composition and distribution using tools such as hydroacoustic echosounders specifically designed and calibrated to identify bed composition and mussel populations, (2) surface-water and ground-water interactions, and (3) a high-streamflow event.  相似文献   
416.
干旱半干旱地区土壤水盐的空间分布对土地利用和生态恢复具有重要作用。运用传统统计学和地统计学对库布齐沙漠5种自然植被和5种人工植被0~10和10~20cm深度土壤水分和盐分的空间异质性进行了小尺度比较分析。结果表明:9种群落的土壤水盐平均值下层大于表层,且盐分的空间相关性较水分更高;人工植被土壤水分(CV=5.3%~22.7%)和盐分(CV=15.7%~51.2%)具有空间分布均匀、层间差异不明显等特征,而自然植被水分(CV=9.9%~32.6%)和盐分的(CV=26.9%~180.0%)却与之相反;小尺度上,人工植被土壤不同层间的水分关系、盐分关系以及水盐关系可能随建植时间的增加会越来越不明显,格局强度将不断减弱,这也极有可能改变大尺度上的水盐运移状况,进而影响研究区生态系统的稳定性和安全性。  相似文献   
417.
基于空间数据的太子河河流生境分类   总被引:4,自引:1,他引:3  
在文献调研的基础上,结合河流特征和专家经验确定分类使用的指标,利用DEM、河流水系等空间数据,在ArcGIS软件下提取子流域,并计算子流域内河流系统的坡降、蜿蜒度、河网密度和河流等级4个分类指标值,应用聚类分析方法对太子河河流生境进行分类,将太子河河流生境分为源头陡峭河流生境、源头弯曲河流生境、源头河流生境、支流中下游河流生境、平原支流密集河网生境、支流弯曲河流生境、干流下游生境和干流蜿蜒河流生境等8种类型,各类型河流长度在223.8~773.1km之间,其中支流弯曲河流生境最长,而干流下游生境最短. 根据各生境类型的特征,提出了我国东北地区河流生境分类的指标参考值;根据不同生境类型的河道侵蚀、水量以及多样性潜力等特征,提出了不同河流生境类型的环境管理对策.   相似文献   
418.
为了解宁夏六盘山地区主要树种的叶片水分利用效率(WUE)的种间和水分生境差异及季节变化,2010年6-9月份在宁夏六盘山具有半湿润气候和较多树种的香水河小流域和具有半干旱气候及较少树种的叠叠沟小流域,选择8个主要树种测定其叶片的 WUE。结果表明,(1)在香水河小流域,树种叶片 WUE 大小排序为油松 Pinus tablaeformis>山桃 Prunus davidiana>沙棘Hippophae rhamnoides>辽东栎Quercus liaotungensis>华北落叶松Larix principris-rupprechtii>华山松Pinus armandii>少脉椴Tilia paucicostata>白桦Betula platyphylla;在不同生活型之间,叶片WUE的大小排序基本上呈现出灌木>小乔木>常绿针叶树>落叶针叶树>落叶阔叶树的变化规律;所有8个测试树种的叶片WUE的季节变化均为生长季初期较高,在中后期持续降低,但季节变幅随树种而异。(2)对2个小流域共有的测试树种(华北落叶松、山桃和沙棘)的叶片WUE进行了比较,结果表明存在着明显的水分生境差异,即在半干旱区极显著(p<0.01)大于半湿润区,前者为后者的2.03倍以上。(3)对于沙棘、山桃、油松和华北落叶松,它们在较干旱气候类型立地和较干旱季节条件下都具有较高的叶片WUE,属抗旱能力较强的生态型节水树种,可选为干旱缺水区主要造林树种。此外,树种叶片WUE同时具有保守性和变异性,说明可采取适度抗旱锻炼来在一定范围内提高造林树种的WUE。  相似文献   
419.
构建植被恢复指数(IVR),对鲁中山区公路花岗岩边坡的植被自然恢复成效进行样方评价,识别影响植被自然恢复能力的关键生境因子,并建立基于岩缝与岩台面积指数和恢复年限的植被恢复成效预测模型.结果表明,不同生境条件下公路岩石边坡植被的自然恢复效果差异较大,样方IVR的最高值和最低值分别为1.89和0.29,恢复较差样方(A)组平均盖度为35.7%,平均地上生物量为147.7 g·m-2,分别不及恢复较好样方(C)组1/2和1/3;岩缝与岩台面积、恢复年限、岩台面积、平均土层厚度、岩缝面积、坡位和岩台土层厚度这7个生境因子与IVR密切相关,其参数值在A组和C组间差异显著(P<0.05),表明岩石边坡植被自然恢复成效和恢复能力与生境形态结构特征有很大关联性,而岩缝与岩台发育程度和数量多寡对其影响最大.岩缝与岩台面积指数是指示边坡裸岩植被自然恢复能力和预测植被自然恢复成效的重要参数.  相似文献   
420.
Despite extensive research on the effects of habitat fragmentation, the ecological mechanisms underlying colonization and extinction processes are poorly known, but knowledge of these mechanisms is essential to understanding the distribution and persistence of populations in fragmented habitats. We examined these mechanisms through multiseason occupancy models that elucidated patch-occupancy dynamics of Middle Spotted Woodpeckers (Dendrocopos medius) in northwestern Spain. The number of occupied patches was relatively stable from 2000 to 2010 (15-24% of 101 patches occupied every year) because extinction was balanced by recolonization. Larger and higher quality patches (i.e., higher density of oaks >37 cm dbh [diameter at breast height]) were more likely to be occupied. Habitat quality (i.e., density of large oaks) explained more variation in patch colonization and extinction than did patch size and connectivity, which were both weakly associated with probabilities of turnover. Patches of higher quality were more likely to be colonized than patches of lower quality. Populations in high-quality patches were less likely to become extinct. In addition, extinction in a patch was strongly associated with local population size but not with patch size, which means the latter may not be a good surrogate of population size in assessments of extinction probability. Our results suggest that habitat quality may be a primary driver of patch-occupancy dynamics and may increase the accuracy of models of population survival. We encourage comparisons of competing models that assess occupancy, colonization, and extinction probabilities in a single analytical framework (e.g., dynamic occupancy models) so as to shed light on the association of habitat quality and patch geometry with colonization and extinction processes in different settings and species.  相似文献   
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