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121.
滨海台地典型森林类型土壤可溶性有机碳季节变化   总被引:1,自引:0,他引:1  
针对海南文昌滨海台地3种森林类型(人促更新次生林、次生林、椰子林)土壤可溶性有机碳含量进行测定。结果表明:次生林、人促更新次生林和椰子林土壤可溶性有机碳含量在0~100 cm剖面随土层加深而下降,且季节动态变化一致,表现为旱季高于雨季。旱季可溶性有机碳分配比例波动在1.2%~3.6%,随着土层深度增加比值不断增大,至40~100 cm土层变为2.6%~3.6%,表现为深层土壤高于表层土壤。土壤可溶性有机碳氮比值在不同森林类型间存在显著差异,且越往土层深处,差异越显著。说明滨海台地土壤可溶性有机碳、氮含量受雨水淋溶强度大,不同森林类型之间土壤可溶性有机碳含量对降雨强度的敏感性存在较大差异。  相似文献   
122.
The effects of maternal salinity and light incubation on the salinity tolerance of the facultative halophyte Anabasis setifera during their germination stages were assessed. Seeds were collected from non-saline habitats in Egypt and saline habitats in the United Arab Emirates(UAE). The seeds of the two populations were germinated in 0, 100, 200, 400, 600 and 800 m M Na Cl, and incubated at 25°C/15°C in both 12-h light and 12-h darkness regimes and continuous darkness. Significantly more seeds germinated in the Egyptian population than in the UAE population. Salinity tolerance was significantly greater with the Egyptian population than with the UAE population, especially under the conditions of higher salinities. The difference in salinity tolerance between the seeds of two populations was attributed to their seed mass. In addition, germination was significantly faster for the Egyptian population than for the UAE population. Most of the saline treated seeds were able to recover their germination when transferred to distilled water, but this depended on their maternal salinity and light incubation. Recovery from higher salinities was significantly better for the seeds under darkness than for those under light in the UAE population, but the reverse was true for the seeds in the Egyptian population. The higher salinity tolerance for the A. setifera seeds from the non-saline Egyptian population and the lower salinity tolerance for the seeds from the saline UAE population cannot explain their natural distribution. Further studies about other possible roles, such as levels of different promoting and inhibiting phytohormones, are needed to understand the importance of salinity as an environmentally induced maternal effect.  相似文献   
123.
Mycorrhizal symbiosis is the one of the most important relationship between microbiota and plants to sustain plant nutrition in relatively unfavourable conditions. Somehow this relation is threatened by time, therefore, definition of the factors effecting mycorrhizal symbiosis has become essential. The aim of this study was to determine the differences in specific mycorrhizal parameters such as sporulation and soil–plant environment conditions in three different regions of Turkey. During 1996?2002, 53 soil series were selected from natural and agricultural plant communities in three different agro-ecological zones of Turkey: Central Anatolia (CA), the Southeastern Anatolian (SA) project area and the Coast of Mediterranean (CM). The arbuscular mycorrhizal fungus (AMF), spore numbers and mycorrhizal root colonization were related to the annual average precipitation, soil characteristics and host plant identity.

In the CM zone (average annual precipitation of 650?mm), soils found under natural vegetation contained a maximum value of 108?spores?g?1, with bare soils containing a minimum number of 0.1?spores?g?1. In the CA zone (330?mm annual average precipitation), the maximum number of spores in the soil samples was 46.5?spores?g?1 with a minimum of 6.8?spores?g?1 and in the SA soil samples (380?mm annual average precipitation), a maximum of 48.4?spores?g?1 and a minimum of 14.2?spores?g?1 were recorded. The overall mean number of mycorrhizal spores g?1 soil was 15.5?±?14.4, 22.2?±?8.6 and 27.9?±?25.4 for the CA, SA and CM zones, respectively. Mean spore numbers differed in only two of the three zones, with the third zone being intermediate. Precipitation was the most affecting factor on the sporulation of AMF. Also host plant species and certain soil parameters, such as positive correlations with CaCO3 and N-min and a negative correlation with organic matter, have an influence on sporulation.

The key finding is that the cropping system has a large impact on spore numbers/abundance. Seventeen standing crops as well as bare soil, fallow and natural areas were compared. There are a large number of factors which can affect mycorrhizal development; in the present work, it seems that soil and crop management, and environmental factors (such as precipitation) affect sporulation and root colonization. Covering land surface with mycorrhiza-dependent cover crop, irrigation and less soil till may increase indigenous mycorrhizal spores.  相似文献   
124.
以贵州北盘江大峡谷国家湿地公园为研究对象,基于实地调查和ArcGIS探讨了湿地公园规划建设前后土地利用变化对生态系统服务价值的影响,并对影响生态系统服务价值的关键因素进行敏感性分析。结果表明:湿地公园规划建设前后,研究区林地面积大量增加,耕地和其他土地面积减少,导致生态系统总服务价值由15520.71万元增加到16857.40万元,增幅达8.61%;敏感性分析结果均小于1,表明生态系统服务价值具有稳健性。  相似文献   
125.
采用典型抽样法,选取海南岛滨海台地3种典型热带森林类型(椰子林、人促更新次生林、次生林),对林下物种多样性及其土壤理化性质进行调查研究,并探讨物种多样性与土壤因子的相关性。 结果表明:灌木层中东风桔(Atalantia buxifolia)、 琼崖海棠(Calophyllum inophyllum)是3种森林类型的共有物种,其中在椰子林和人促更新次生林林型下占有较大优势;草本层中牛膝(Achyranthes bidentata)和地桃花(Urena lobata)是3种森林类型共有草本植物,但并非是优势种。次生林和人促更新次生林林下灌木层的多样性指数与均匀度指数都较高,林下物种组成相对复杂,共有树种有11种,相似系数高达45%。次生林林下植物多样性与土壤全氮、全磷、有效磷、速效钾及铵态氮之间达极显著正相关关系;人促更新次生林植物多样性与土壤全钾、全氮、速效钾、无机氮及铵态氮之间达极显著正相关;椰子林林下植物多样性与土壤各养分含量之间的相关性不明显。经多元逐步回归分析证实:滨海台地热带林土壤pH、全磷、全钾、速效钾、有效磷、铵态氮及无机氮共7个土壤因子对林下植物多样性具有显著影响。  相似文献   
126.
在室内条件下研究了外加可溶性碳、氮对不同热量带经长期施肥的3种农田土壤:黑土、潮褐土和红壤N2O排放的影响。结果表明,在单施氮肥和可溶性碳配施氮条件下,不同热量带土壤N2O排放量从高到低分别为潮褐土(0.868、3.07μg·g^-1),红壤(0.511、0.731μg·g^-1),黑土(0.221、0.294μg·g^-1),且添加可溶性碳显著促进了土壤N2O排放量。在黑土、潮褐土和红壤长期不同施肥土壤中,单施氮肥和可溶性碳配施氮后N2O排放量均表现为化肥+有机肥土壤〉化肥土壤〉无肥土壤,且与无肥土壤相比,红壤的化肥土壤N2O排放量增加254%,潮褐土化肥土壤增加49.5%,黑土化肥土壤增加1.74%,说明在有效积温越高的土壤上长期施肥对土壤N2O损失的贡献越大。研究结果还表明,外加可溶性碳、氮后,潮褐土铵态氮含量的减少幅度和硝态氮含量的增加幅度均显著高于黑土和红壤,说明潮褐土中氮素损失潜能大。  相似文献   
127.
黄河三角洲滨海盐碱退化地恢复与再利用评价   总被引:9,自引:3,他引:6  
滨海盐碱退化地是重要的待开发利用土地资源。该文以黄河三角洲为研究区,进行了以农用为目标的滨海盐碱退化地恢复与再利用评价研究。采用土壤图与土地利用现状图相叠加的方式确定评价单元,系统聚类与Delphi法筛选参评因素,层次分析法确定其权重,模糊评判法确定盐碱退化地恢复与再利用等级。结果显示,黄河三角洲盐碱退化地恢复与再利用潜力较大,一、二等地占总面积的33.73%,三、四等地占总面积的42.54%,五、六等地占总面积的23.73%。盐碱退化地可恢复与再利用程度与土壤含盐量、地下水矿化度和埋深以及土地利用程度有较强的相关性,与距离黄河和渤海的远近有密切关系,空间上呈现从沿海向内陆逐渐提高,离黄河愈近愈高的分异规律。该研究探索了滨海盐碱退化地恢复与再利用评价的技术方法,对滨海盐碱退化地的可持续利用有积极意义。  相似文献   
128.
Dune systems are characterized by strong gradients of physical stress, with blowing sand and salt spray decreasing with distance from the ocean, and soil nutrients increasing. In this study we ask how soil microbial community composition and biomass change along transects away from the ocean, and whether these changes are regulated by abiotic stress or by resource availability. We collected bulk soil from under three plant species representative of the dune front, back, and flat: Ammophila breviligulata, Rosa rugosa, and Myrica pensylvanica. The biomass and composition of microbial communities were examined using phospholipid fatty acid (PLFA) analysis under patches of dominant vegetation, and in paired bare plots. We found that microbial biomass was strongly correlated with soil C, and thus the presence of vegetation. Community composition, on the other hand, varied with abiotic stresses, especially soil salinity. These variables in turn depended on distance from the shore, and were ameliorated in some cases by vegetation. These findings demonstrate that biomass and community composition are influenced by different environmental variables. Thus, relationships between biomass and composition are unlikely to be readily predicted on the basis of a single resource.  相似文献   
129.
国家主体功能区划与黄土高原生态恢复   总被引:1,自引:0,他引:1  
解决黄土高原生态恢复和农民生计问题的根本出路在于人口外迁和减轻土地的人口压力.目前尚在执行的退耕还林政策取得了显著恢复生态成效,但在解决农民生计方面存在着缺陷.即将实施的国家主体功能区划方案明确了黄土高原的空间功能格局,并从引导过载人口外迁、提高农民生活水平和生态得到持久恢复等方面为黄土高原提供了的政策保障.黄土高原各省区应抓住国家推进主体功能区形成的机遇,宜及早组织和开展一批相关项目的研究工作.  相似文献   
130.
Coastal erosion is a widespread phenomenon on sandy coasts throughout the Mediterranean region; along the Thyrrenian coast of Tuscany (Italy), stone pine (Pinus pinea L.) stands originally planted for the protection of agricultural crops further inland are often damaged. In the present study, a pairwise comparison of stands at different distance from the sea at eroded and control sites highlighted the effects of coastal erosion alone on pine growth and function. Dendroecological analyses made it possible to determine the temporal dynamics of the phenomenon since 1930 and the interactions with climate, whilst additional structural (LAI, sapwood area) and functional (carbon isotope discrimination) measurements were used to discriminate between stress mechanisms. Salty winds, exacerbated by the removal of dunal vegetation, were found to be the most likely cause of the observed growth decline. The presence and, in more recent times, the reduction of surfactants in sea water played an important synergistic effect. The intrusion of salty water in the water table, on the contrary, played a marginal role at the site. Finally, stressed trees were more sensitive to the inter-annual variability in precipitation; at all sites, growth was stimulated by June, November and December precipitation in the current and two preceding years.  相似文献   
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