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91.
吴涛  耿云芬  柴勇  郝佳波  袁春明 《生态环境》2014,(10):1586-1592
藤本植物生活环境的时空变化较为剧烈,为适应异质性生境常表现出较大的可塑性,其形态解剖结构及光合生理特征被认为能很好地体现对异质生境的适应。为了明确藤本植物叶片结构和光合作用对不同生境光强的响应策略,以木质藤本三叶爬山虎(Parthenocissus himalayana)为对象,采用光合仪测定和解剖显微观察的方法研究了哀牢山亚热带湿性常绿阔叶林的林外(全光照)、林缘(遮荫)和林内(荫生)3种自然生境中三叶爬山虎的叶片解剖结构和光合生理特征的变化,以期阐述三叶爬山虎对不同光环境的生态适应能力及策略,为森林生态系统的管理和物种多样性的保护及群落优化配置提供理论依据。结果表明:从林内到林外随着生境光强增加,叶片厚度(157.77~299.17μm)、上表皮厚度(21.30~28.40μm)、栅栏组织厚度(30.83~124.65μm)、栅栏组织细胞面积(430.95~652.97μm2)显著增大(P〈0.01),栅栏组织细胞长度(29.23~49.54μm)和周长(86.58~155.17μm)、下表皮厚度(16.14~19.01μm)、气孔长度(24.13~27.10μm)和气孔密度(86.20~129.41个·mm-2)呈显著上升趋势(P〈0.05)。栅栏组织细胞宽度(19.67~22.81μm)在3种生境中无显著差异。叶片解剖结构性状的平均可塑性值为0.37,其中最大值是栅栏组织细胞长度(0.67),最小值是气孔长度(0.11)。光饱和点(201.27~1299.17μmol·m-2·s-1)、光补偿点(3.86~29.88μmol·m-2·s-1)、饱和光强最大光合速率(2.20~12.03μmol·m-2·s-1)、暗呼吸速率(0.17~2.19μmol·m-2·s-1)、CO2补偿点(83.01~237.26μmol·m-2·s-1)、饱和CO2最大净光合速率(2.07~25.49μmol·m-2·s-1)、光呼吸速率(0.36~7.57μmol·m-2·s-1)、初始羧化效率(0.006~0.035μmol·μmol-1)随着生境光强的增高呈上升趋势,而表观量子效率(0.067~0.031μmol·?  相似文献   
92.
Permeability of Roads to Movement of Scrubland Lizards and Small Mammals   总被引:2,自引:0,他引:2  
A primary objective of road ecology is to understand and predict how roads affect connectivity of wildlife populations. Road avoidance behavior can fragment populations, whereas lack of road avoidance can result in high mortality due to wildlife‐vehicle collisions. Many small animal species focus their activities to particular microhabitats within their larger habitat. We sought to assess how different types of roads affect the movement of small vertebrates and to explore whether responses to roads may be predictable on the basis of animal life history or microhabitat preferences preferences. We tracked the movements of fluorescently marked animals at 24 sites distributed among 3 road types: low‐use dirt, low‐use secondary paved, and rural 2‐lane highway. Most data we collected were on the San Diego pocket mouse (Chaetodipus fallax), cactus mouse (Peromyscus eremicus), western fence lizard (Sceloporus occidentalis), orange‐throated whiptail (Aspidoscelis hyperythra), Dulzura kangaroo rat (Dipodomys simulans) (dirt, secondary paved), and deer mouse (Peromyscus maniculatus) (highway only). San Diego pocket mice and cactus mice moved onto dirt roads but not onto a low‐use paved road of similar width or onto the highway, indicating they avoid paved road substrate. Both lizard species moved onto the dirt and secondary paved roads but avoided the rural 2‐lane rural highway, indicating they may avoid noise, vibration, or visual disturbance from a steady flow of traffic. Kangaroo rats did not avoid the dirt or secondary paved roads. Overall, dirt and secondary roads were more permeable to species that prefer to forage or bask in open areas of their habitat, rather than under the cover of rocks or shrubs. However, all study species avoided the rural 2‐lane highway. Our results suggest that microhabitat use preferences and road substrate help predict species responses to low‐use roads, but roads with heavy traffic may deter movement of a much wider range of small animal species.  相似文献   
93.
Species' conservation relies on understanding their seasonal habitats and migration routes. North Atlantic right whales (Eubalaena glacialis), listed as endangered under the U.S. Endangered Species Act, migrate from the southeastern U.S. coast to Cape Cod Bay, Massachusetts, a federally designated critical habitat, from February through May to feed. The whales then continue north across the Gulf of Maine to northern waters (e.g., Bay of Fundy). To enter Cape Cod Bay, right whales must traverse an area of dense shipping and fishing activity in Massachusetts Bay, where there are no mandatory regulations for the protection of right whales or management of their habitat. We used passive acoustic recordings of right whales collected in Massachusetts Bay from May 2007 through October 2010 to determine the annual spatial and temporal distribution of the whales and their calling activity. We detected right whales in the bay throughout the year, in contrast to results from visual surveys. Right whales were detected on at least 24% of days in each month, with the exception of June 2007, in which there were no detections. Averaged over all years, right whale calls were most abundant from February through May. During this period, calls were most frequent between 17:00 and 20:00 local time; no diel pattern was apparent in other months. The spatial distribution of the approximate locations of calling whales suggests they may use Massachusetts Bay as a conduit to Cape Cod Bay in the spring and as they move between the Gulf of Maine and waters to the south in September through December. Although it is unclear how dependent right whales are on the bay, the discovery of their widespread presence in Massachusetts Bay throughout the year suggests this region may need to be managed to reduce the probability of collisions with ships and entanglement in fishing gear.  相似文献   
94.
香溪河流域水生态系统健康评价   总被引:2,自引:1,他引:1       下载免费PDF全文
随着人们环境保护意识的增强,河湖生态保护与修复成为社会关注的热点问题,科学的生态健康诊断则是有效进行河湖治理的前提.香溪河作为三峡水库典型支流,探究其水生态系统健康对于长江生态保护具有十分重要的意义.通过收集整理香溪河干支流的生物与生境数据,构建了涵盖水环境、水生生物、物理栖息地三方面共16项指标的水生态系统健康评价指标体系,综合运用专家判断法和熵权法确定评价因子权重,采用河流健康指数(RHI)表征香溪河流域水生态系统健康状况.结果表明:①2017年三峡水库蓄水期香溪河流域水生态系统整体健康水平为良好,优和良等级占比分别为12.5%和79.2%.②健康状况呈现出支流优于干流、非回水区优于回水区的空间分布特点,具体表现为支流南阳河>支流古夫河>支流高岚河>香溪河干流.干流水环境问题相对突出,而支流的河流连通性相对较差.③库湾健康状况的年内变化特征为冬季最好,春秋季次之,夏季最差.研究显示,该评价体系能准确地评估香溪河流域水生态健康状况,同时需重视三峡水库支流库湾的水环境治理.   相似文献   
95.
Abstract:  Most amphibian species have biphasic life histories and undergo an ontogenetic shift from aquatic to terrestrial habitats. In deforested landscapes, streams and forest fragments are frequently disjunct, jeopardizing the life cycle of forest-associated amphibians with aquatic larvae. We tested the impact of habitat split—defined as human-induced disconnection between habitats used by different life-history stages of a species—on four forest-associated amphibian species in a severely fragmented landscape of the Brazilian Atlantic Forest. We surveyed amphibians in forest fragments with and without streams (referred to as wet and dry fragments, respectively), including the adjacent grass-field matrix. Our comparison of capture rates in dry fragments and nearby streams in the matrix allowed us to evaluate the number of individuals that engaged in high-risk migrations through nonforested habitats. Adult amphibians moved from dry fragments to matrix streams at the beginning of the rainy season, reproduced, and returned at the end of the breeding period. Juveniles of the year moved to dry fragments along with adults. These risky reproductive migrations through nonforested habitats that expose individuals to dehydration, predation, and other hazards may cause population declines in dry fragments. Indeed, capture rates were significantly lower in dry fragments compared with wet fragments. Declining amphibians would strongly benefit from investments in the conservation and restoration of riparian vegetation and corridors linking breeding and nonbreeding areas.  相似文献   
96.
城市绿地结构与鸟类栖息生境的营造   总被引:3,自引:0,他引:3  
城市化对城市鸟类多样性产生了诸多不利影响。城市绿地结构是鸟类栖息生境选择的重要因素之一。在分析公园面积、连通性、岛屿化等影响城市鸟类多样性的城市绿地结构特征基础上,提出通过优化绿地结构营造鸟类栖息生境的原则,探讨了保护城市自然保留地、建设环城绿化带、构建河岸带与道路绿色廊道、复层植物群落配置、特殊空间绿化等途径作为鸟类生境营造的方法。  相似文献   
97.
以山地长寿沙田柚成年果树为对象,研究不同生境和季节对丛枝菌根(Arbuscular mycorrhiza,AM)真菌侵染以及根围土壤中AM真菌孢子密度的影响.试验结果表明,不同生境下,菌根侵染率和AM真菌孢子密度都是以梯田最高,坡地次之,洼地最低;在坡地和洼地生境下,生草区均高于清耕区.两块试验地AM真菌的菌丝侵染率均为夏季最高(16.8%±1.9%和16.0%±1.8%),秋季次之,冬季最低;丛枝和泡囊的形成也是夏/秋季较高,春/冬季较低;而根围土壤中AM真菌孢子密度则是秋季最高[(159±19)个/100 g和(167±17)个/100 g],夏季次之,冬季最低.总之,对于长寿沙田柚成年果树,AM真菌的菌根侵染率在夏季梯田最高,根围土壤中的AM真菌孢子密度在秋季梯田最高;在坡地和洼地生境中,生草处理均可显著提高菌根侵染率和AM真菌孢子密度.图4参27  相似文献   
98.
刘会玉  林振山  齐相贞  沈竟 《生态环境》2011,20(11):1638-1646
栖息地毁坏和生物入侵被认为是全球物种多样性的两大威胁,也是当前研究的热点。同时,两者的共同作用将比单独作用所带来的物种多样性丧失更大。本文基于竞争-扩散均衡机制,考虑了外来种的不同竞争力,结合景观中性模型和元胞自动机模型,模拟了外来种入侵对栖息地毁坏(栖息地破碎和面积丧失)的响应。研究结果表明:1)外来种入侵成功将首先威胁竞争力与其相邻的弱物种;2)栖息地毁坏与种间竞争共同决定着外来种入侵的成功与否。当栖息地破碎促进了与外来种竞争力相邻的本地强物种时,将会抑制入侵;当其抑制了与外来种竞争力相邻的本地强物种时,则会促进入侵。当栖息地丧失促进了外来种相邻的本地强物种时,将会抑制入侵;当栖息地丧失抑制了外来种相邻的本地强物种,将一定程度地促进入侵,但随着丧失面积的增加,则转为抑制。因此,为了抑制不同竞争力的外来种入侵,应采取不同的栖息地保护策略,并保护和促进其竞争力相邻的本地强物种。  相似文献   
99.
京津冀地区生境质量与景观格局演变及关联性   总被引:1,自引:0,他引:1  
以京津冀地区为研究区,基于InVEST生态评估模型、Fragstats景观格局指数测算平台,运用网格分析法,评估了2000~2018年京津冀地区生境质量与景观格局演变;利用空间自相关理论,分析了二者空间关联性及其时序演变特征.结果表明:京津冀地区生境质量整体呈现出“东南低、西北高”的空间分布特征;2000~2018年京津冀北部以及沿海地区生境质量大面积提升;北京-天津都市圈及其南部存在大面积生境质量衰退.京津冀山区景观格局较稳定,东南部城市群景观格局指数值变化显著,景观趋于破碎化.生境质量与景观格局特征二者具备空间关联性,但相关关系逐渐减弱,以东南部生境质量低值区集聚效应减弱最为明显.研究结果有助于揭示生境质量与景观格局的空间关联性规律,可为我国乃至世界其他类似地区生态保护与景观规划提供科学支持.  相似文献   
100.
Area of habitat (AOH) is defined as the “habitat available to a species, that is, habitat within its range” and is calculated by subtracting areas of unsuitable land cover and elevation from the range. The International Union for the Conservation of Nature (IUCN) Habitats Classification Scheme provides information on species habitat associations, and typically unvalidated expert opinion is used to match habitat to land-cover classes, which generates a source of uncertainty in AOH maps. We developed a data-driven method to translate IUCN habitat classes to land cover based on point locality data for 6986 species of terrestrial mammals, birds, amphibians, and reptiles. We extracted the land-cover class at each point locality and matched it to the IUCN habitat class or classes assigned to each species occurring there. Then, we modeled each land-cover class as a function of IUCN habitat with (SSG, using) logistic regression models. The resulting odds ratios were used to assess the strength of the association between each habitat and land-cover class. We then compared the performance of our data-driven model with those from a published translation table based on expert knowledge. We calculated the association between habitat classes and land-cover classes as a continuous variable, but to map AOH as binary presence or absence, it was necessary to apply a threshold of association. This threshold can be chosen by the user according to the required balance between omission and commission errors. Some habitats (e.g., forest and desert) were assigned to land-cover classes with more confidence than others (e.g., wetlands and artificial). The data-driven translation model and expert knowledge performed equally well, but the model provided greater standardization, objectivity, and repeatability. Furthermore, our approach allowed greater flexibility in the use of the results and uncertainty to be quantified. Our model can be modified for regional examinations and different taxonomic groups.  相似文献   
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