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51.
Faidherbia albida and Acacia erioloba (Mimosoideae) are important fodder trees for livestock and wildlife along the westward flowing ephemeral rivers of the Namib Desert. Together with other, mainly woody vegetation, F. albida and A. erioloba line these rivers and present a linear oasis in a resource poor environment. For centuries nomadic to semi-nomadic inhabitants seasonally utilised the resources of these ephemeral rivers to survive in the otherwise harsh desert environment. In the past decades, more permanent settlements were established along these rivers, with small stock subsistence farmers making a living from the available resources. Livestock (mainly goats) usually moves freely around, feeding on the available vegetation.This study investigated the influence of free moving animals on the regeneration and recruitment of F. albida and A. erioloba along the Kuiseb ephemeral river. It was found that a large numbers of recently emerged seedlings were removed soon after germination. In addition, tree densities of adult versus juvenile individuals differed in areas with large numbers of livestock. The overall height increase and health of juvenile plants were influenced negatively by browsing livestock. In general, browsing pressure differed spatially and was higher close to the main water channel.  相似文献   
52.
Nitrogen (N) content in the soil and in the herbaceous biomass were monitored during spring of 2004-2006 to determine how the herbaceous layer development influences soil N availability in the montado ecosystem of southern Portugal. Highest (246.6 ± 52.7 g m−2) and lowest (123.2 ± 89.5 g m−2) peak biomass occurred in 2006 and 2005 respectively. Total soil N within the top 20 cm soil profile ranged between 0.2 ± 0.1% in February and 0.41 ± 0.2% in May, while available soil N was lowest (5 ± 2 μg g−1soil) in February but increased three-to-five fold in March and was >17.5 μg g−1soil at senescence in May. Significant (p < 0.001) increase in total N in the aboveground pool occurred between February and May. There was however, no decay in soil N content. Instead, the herbaceous vegetation enhanced soil N input and N retention in the ecosystem. Most of the herbaceous plants were annuals with large reserves of organic N at senescence, which returned to the soil as detritus. The herbaceous vegetation is a critical component of the montado that contributes to N recharge and cycling within the ecosystem.  相似文献   
53.
A field experiment was performed to improve understanding of the functional diversity of western Patagonian shrubs. Anarthrophyllum rigidum, Adesmia volckmanni, Berberis heterophylla, Mulinum spinosum, Schinus poligamus and Senecio filaginoides were compared in their capacity to absorb water from a 10-mm pulse enriched in deuterium and applied at the beginning of the dry summer. Xylem-water enrichment 14 days after watering was rather subtle, but the upper-soil signal was clear enough to distinguish shallow from deeper absorption. According to a linear mixing model, the proportion of surface-pulse water relative to total water uptake was maximum for Senecio (29-38%) and Mulinum (22-32%), both relatively shallow-rooted species, intermediate for Berberis (16-17%) and Schinus (6-9%), and negligible for the two N-fixing Fabaceae: Adesmia (<1%) and Anarthrophyllum (<3%), despite this last one having a dimorphic (tap + shallow) root system. It is hypothesized that shallow-water pulses may be more profitable in terms of nitrogen than of water, and thus constitute a higher-quality resource for those species only able to use N from soil sources.  相似文献   
54.
Semi-arid ecosystems are privileged sites to address the effects of plant interactions on community structure and dynamics because environmental conditions are demanding and may change quickly, altering in significant ways the balance between positive and negative effects among neighboring plants. Plant interaction processes have been well documented in the semi-arid region of Southeast Spain over the last 15 years. In this article we review the growing body of research on plant–plant interactions available from this area, highlighting its importance in increasing our knowledge on this field of study. This review has been organized in five sections, i) facilitation mechanisms; ii) the nurse effect; iii) the balance of interactions and environmental, ontogenic, temporal, and spatial gradients; iv) the effects of facilitation on biodiversity; and, v) facilitation and ecosystem functioning. Mechanisms of facilitation in these systems are relatively well known, but not completely explored. In these environments competition, mainly for water, is intense between neighbors and switches in intensity from belowground to aboveground as productivity increases. By contrast, facilitation may decrease quickly with increasing productivity, although the balance between facilitation and competition is not fully understood, and is further complicated because shifts can also be driven by factors such as life history or physiology of interacting species. Positive interactions are critical for maintaining biodiversity in some ecosystems in SE Spain, but their role as a driver of ecosystem functioning is less clear. Research on plant–plant interactions in this region has been highly influential and has contributed to our overall understanding of plant community dynamics. Despite the important progress achieved during the last 15 years, there is still substantial scope for exploring the effects of plant interactions at the ecosystem level, and their role as modulators of disturbances such as the current global environmental change.  相似文献   
55.
Plant macrofossils with epidermal features from the Lower Albian (Lower Cretaceous) Plattenkalk 2 as exposed in “Le Cavere” quarry within Pietraroja Fossil-Lagerstätte, southern Italy, include sterile foliage-bearing shoots and reproductive structures of gymnosperms and possible angiosperm leaves occurring in a controversial marine depositional environment. The following taxa are recorded: Brachyphyllum sp., Frenelopsis sp., Cheirolepidiaceae gen. et sp. indet. and Nageiopsis?. Bituminous strata of the lower Plattenkalk 2 are full of plant debris composed mainly of isolated leaves and sterile axes. Taphonomic considerations suggest parautochtonous deposition for Frenelopsis while the other plant remains are allochthonous. Among the plants studied, the cheirolepidiaceous conifers have ecological significance owing to their (debated) xeromorphic foliar features. These adaptations suggest a warm and dry, or possibly coastal palaeoenvironment. Studied plant fossils together with sedimentological and palaeozoological considerations do not exclude a lagoonal hypothesis for Pietraroja sedimentary basin. This research expands the phytotaxonomic knowledge of the emergent lands within the Early Cretaceous Apenninic Carbonate Platform (ACP).  相似文献   
56.
为掌握霞浦核电基地海洋生物的放射性本底水平,在其周边50 km范围内采集5类9种海洋生物样品,测量其中的天然放射性核素238U、232Th、226Ra、40K,以及人工放射性核素137Cs、134Cs、90Sr、58Co、60Co、54Mn、110mAg、65Zn的活度浓度并进行辐射剂量评价。结果显示,所有样品中134Cs、58Co、60Co、54Mn、110mAg、65Zn的活度浓度均低于最小可探测活度浓度,238U、232Th、226Ra、40K、137Cs和90...  相似文献   
57.
为研究内陆盐沼植物群落的分布对土壤盐分的响应特征,选取鄂尔多斯盐湖盐沼区作为研究区,筛选了肉质耐盐植物群落、苔草植物群落和禾草植物群落3类典型植物群落,开展了土壤含水量、pH、电导率以及Na+、K+、Mg2+、Ca2+、Cl-、SO42-、CO32-和HCO3-测定,分析了区内典型植物群落对土壤水盐因子的响应规律。探讨了3类植物群落之间土壤因子含量的差异性;采用相关性分析和CCA分析,评价了3类植物群落多样性及物种分布随土壤因子的变化规律。结果表明,区内3类植物群落中,土壤盐分含量表现为肉质耐盐植物群落最高,苔草植物群落最低,禾草植物群落居中;植物多样性与土壤中含量最高的Na+和SO42-的相关性最显著;植物分布同时受到土壤盐分、水分和pH的显著影响。研究结果可为鄂尔多斯盐湖区土壤盐...  相似文献   
58.
生物多样性遥感研究进展   总被引:3,自引:0,他引:3  
随着遥感技术和新型传感器的发展,遥感已成为目前区域或全球生物多样性研究的重要方法。综述了目前国内外生物多样性遥感研究的最新进展;分析了遥感生物多样性研究的主要理论基础,包括光谱变异假说、生产力假说和种—面积关系理论等;总结了利用高空间和高光谱分辨率遥感数据直接监测生物物种及其多样性的进展与局限性;基于遥感反演的不同环境变量进行生物多样性模拟和预测是目前最常用的方法,对其进行了较详细的分析,并介绍了相关模型的发展。最后,总结了该方法在我国的应用局限,指出增进学科合作、将遥感方法与生态学理论和模型相结合、重视地面验证数据的使用将是生物多样性遥感研究的发展趋势。  相似文献   
59.
新疆尼勒克县巴斯尔干地区有一套棕黄、褐红色砂砾岩,过去仅采获硅化木化石,根据岩性对比将其归属早白垩世.根据最近采获的植物化石资料,论证了该区巴斯尔干组地质年代为二叠纪乐平世.岩石地层单位称巴斯尔干组。  相似文献   
60.
黑河中下游荒漠区植物多样性分布对土壤水分变化的响应   总被引:9,自引:0,他引:9  
基于对黑河流域中下游荒漠区植被和土壤生境的调查分析,以土壤水分在各调查样地中的差异来反映研究区的生态水文特征,采用种的丰富度和多度来代表荒漠植物多样性研究了荒漠植物,包括隐花植物多样性分布对土壤水分变化的响应。土壤水分变化不仅直接影响着荒漠植物的多样性,而通过影响其它生境因子又间接地影响着多样性的维持。因此,如何维持中下游相对稳定的土壤水分来源是该区荒漠植物多样性保育今后所要面临的挑战。  相似文献   
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