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1.
The Plio-Pleistocene history of C4 plant biomass in northwestern China has been documented from the loess-soil sequences of the Loess Plateau region. However, how C4 plants evolved in the warmer and low-elevation eastern China monsoon zone is still poorly known mainly because of the unavailability of well-dated geological records. In this study, a 203.6-m core of floodplain deposits was recovered from the North China Plain near Tianjin and dated magnetostratigraphically. The results define a chronosequence for the last 3.3 Ma. The late Quaternary portion of the core consists of fluvio-marine sediments while the rest of the section (3.3-0.6 Ma) contains abundant paleosols formed on the floodplain, as confirmed by soil micromorphological evidence. The stable carbon and oxygen isotopic composition of pedogenic carbonates was measured to document vegetation and climate changes. The results reveal mixed C3 and C4 vegetation with an estimated C4 abundance of ~ 40-60% from ~ 3.1 to ~ 2.2 Ma, and a subsequent gradual decline to ~ 25% until ~ 0.6 Ma. This trend is consistent with the data from the loess-soil sequences further west on the Loess Plateau, suggesting they are regionally significant changes. The lowering of growing-season temperature and/or drier conditions induced by global cooling would explain this overall decline.  相似文献   

2.
范泽孟 《生态学报》2021,41(20):8178-8191
如何模拟和揭示青藏高原植被生态系统垂直分布在全球气候变化驱动下的时空变化情景,对定量解析青藏高原陆地生态系统对气候变化响应效应具有重要意义。该论文基于Holdridge life zone (HLZ)模型,结合数字高程模型(DEM)数据,改变模型输入参数模式,发展了改进型HLZ生态系统模型。结合1981-2010(T0)时段的气候观测数据和IPCC CMIP5 RCP2.6、RCP4.5、RCP8.5三种情景2011-2040(T1)、2041-2070(T2)、2071-2100(T3)三个时段气候情景数据,实现了青藏高原植被生态系统垂直分布的时空变化情景模拟。引入生态系统平均中心时空偏移趋势模型和生态多样性指数模型,定量揭示了青藏高原植被生态系统在不同垂直带上的时空变化情景。结果显示:青藏高原共有16种植被生态系统类型;冰雪/冰原、高山潮湿苔原和亚高山湿润森林为青藏高原主要的植被生态系统类型,其面积之和占到了青藏高原总面积的56.26%;高山干苔原、亚高山潮湿森林、山地灌丛、山地湿润森林和荒漠等对气候变化的敏感性总体上高于其它类型;在T0-T3期间,青藏高原的高山湿润苔原、高山干苔原、荒漠呈持续减少趋势,平均每10年将分别减少1.96×104km2、0.15×104km2和1.58×104km2;亚高山潮湿森林、山地湿润森林和山地灌丛呈持续增加趋势,平均每10年将分别增加3.42×104km2、2.98×104km2和1.19×104km2;RCP8.5情景下青藏高原的植被生态系统平均中心的偏移幅度最大,RCP4.5情景下的偏移幅度次之,而RCP2.6情景下的偏移幅度最小。另外,在三种气候变化情景驱动下,青藏高原植被生态系统的生态多样性呈减少趋势。总之,未来不同情景的气候变化将直接影响青藏高原植被生态系统的时空分布格局及其生态多样性,气候变化强度越高,影响就越大,而且气候变化对青藏高原植被生态系统的影响呈现出从低海拔到高海拔递增的影响效应。  相似文献   

3.
To reconstruct the palaeovegetation cover of the Chinese Loess Plateau over different time intervals of the last glacial–interglacial cycle, the spore-pollen representation of loess-soil samples in six loess sections along a north–south transect is analyzed and previously published pollen data reviewed. Results show that the temporal changes in the vegetation cover of the Plateau are controlled essentially by the history of the East-Asian summer monsoon; there is a general pattern that the pollen components indicating relatively humid climatic conditions are better represented during interglacial and interstadial periods than during glacial and stadial periods. The herbaceous pollen concentrations show a general increase from south to north with the decrease of monsoonal precipitation over the Loess Plateau. Through the last 130 ka or so, the main body of the Loess Plateau has been covered by an Artemisia-dominated grassland vegetation, suggesting that future rehabilitation of the landscape that aims for soil–water preservation on the Loess Plateau should focus on the planting of herbs.  相似文献   

4.
通过对黄土高原南北样带大面积(北纬34°05'—40°75'、东经107°14'—111°09')土壤含水量(0—500 cm剖面)测定和相应植被类型调查,研究了黄土高原农田、草地、灌木林地和乔木林地4种土地利用类型土壤含水量的空间变化及它们之间的差异性。结果表明:黄土高原4种土地利用类型的土壤含水量皆呈现南北向地带性变化,自南向北土壤含水量有明显递减趋势,与多年平均降雨量、潜在蒸散量、土壤质地等的分布具有一致性;同一地点不同土地利用类型下土壤水分含量具有显著差异(农地草地灌木和乔木林地),不同植被类型根系分布、蒸散耗水量的不同是造成含水量差异性的原因。植被建设应遵循土壤水分分布规律,研究结果对黄土高原植被恢复建设具有一定参考价值。  相似文献   

5.
上新世-更新世过渡期是新生代全球气候变化的重要拐点之一,此期气候经历了由"暖室"向"冰室"的转变。研究该气候转型期的特征可为科学界和国家层面应对现在和未来的全球气候变暖提供理论基础和实践指导。通过深入研究中国华北山西榆社盆地张村组上新世-更新世过渡期地层中保存的植物大化石、孢粉以及硅藻组合,为重建该时段陆地生态系统中植被演替和气候变化提供坚实的生物学证据。在综合回顾张村组化石植物研究历史的基础上,侧重介绍最近5年在古植被、古气候、古环境以及古大气CO2浓度重建等方面的最新进展。这些新成果定性及定量地刻画了第三纪-第四纪之交中国北方黄土高原东南缘气候变干、变凉的转型过程及其陆地生态系统中大气CO2浓度先升后降的变化趋势。  相似文献   

6.
This study provides a preliminary reconstruction of paleoecological and paleoclimatic history over the central Chinese Loess Plateau (CLP) during the last 8.1 Ma based on biomarker records from the earliest of the Chaona stratigraphic section. Throughout the section, we found variations in n-alkane and n-alkan-2-one distributions and dramatic changes in six other biomarker proxies: 1) n-alkanes (C27 + C29)/(C31 + C33) ratios, 2) n-alkanes C27/C31 ratios, 3) CPI (carbon preference index) values for CPI(H)ALK, 4) values for CPI(H)KET, 5) n-alkane mean chain lengths ACL-ALK, and 6) n-alkan-2-ones C29/C31 ratios. The C29 n-alkanes dominate the red clay sediments with little variability, indicating that trees dominated the CLP and that the climate was relatively stable and less variable during the 8.1–2.6 Ma period. In contrast, the C31 n-alkanes dominate the loess–paleosol sediments, and biomarkers vary with relatively greater amplitude and higher frequency, indicating that grasses dominated the CLP and the climate was more arid and variable. These biomarker records chronicle a drying and cooling trend on the CLP since 4 Ma. These records can be further divided into four stages with boundaries around 5.6, 3.8 and 2.6 Ma, indicating that the CLP vegetation and climate experienced four evolutionary phases, broadly consistent with those inferred from other available proxy data.  相似文献   

7.
Clarifying spatial variations in aboveground net primary productivity (ANPP) and precipitation-use efficiency (PUE) of grasslands is critical for effective prediction of the response of terrestrial ecosystem carbon and water cycle to future climate change. Though the combination use of remote sensing products and in situ ANPP measurements, we quantified the effects of climatic [mean annual precipitation (MAP) and precipitation seasonal distribution (PSD)], biotic [leaf area index (LAI)] and abiotic [slope gradient, aspect, soil water storage (SWS) and other soil physical properties] factors on the spatial variations in ANPP and PUE across different grassland types (i.e., meadow steppe, typical steppe and desert steppe) in the Loess Plateau. Based on the study, ANPP increased exponentially with MAP for the entire temperate grassland; suggesting that PUE increased with increasing MAP. Also PSD had a significant effect on ANPP and PUE; where more even PSD favored higher ANPP and PUE. Then MAP, more than PSD, explained spatial variations in typical steppe and desert steppe. However, PSD was the dominant driving factor of spatial variations in ANPP of meadow steppe. This suggested that in terms of spatial variations in ANPP of meadow steppe, change in PSD due to climate change was more important than that in total annual precipitation. LAI explained 78% of spatial PUE in the entire Loess Plateau temperate grassland. As such, LAI was the primary driving factor of spatial variations in PUE. Although the effect of SWS on ANPP and PUE was significant, it was nonetheless less than that of precipitation and vegetation. We therefore concluded that changes in vegetation structure and consequently in LAI and/or altered pattern of seasonal distribution of rainfall due to global climate change could significantly influence ecosystem carbon and water cycle in temperate grasslands.  相似文献   

8.
To assess pedogenic modification to grain size distributions of loess, palaeosol and Red Clay deposits on the Chinese Loess Plateau and to understand long-term evolution of the East Asian palaeomonsoon since the late Miocene, we investigate a continuous loess-palaeosol-Red Clay sequence at Lingtai (south Chinese Loess Plateau) and another parallel Red Clay sequence at Zhaojiachuan (central Chinese Loess Plateau). By analyzing the grain size distributions of bulk samples and chemically isolated quartz samples, the relative intensity of pedogenic alteration of the loess, palaeosol and Red Clay deposits can be quantified. Comparisons of the grain size distributions and contents of different grain size fractions between the bulk and the quartz samples suggest that pedogenic alteration is apparently stronger in the Red Clay sequence than in the overlying loess-palaeosol deposits. Furthermore, grain size parameters derived from the bulk and the quartz samples, such as mean grain size, coarse fraction content and U-ratio, exhibit similar variations in the loess-palaeosol sequence (Quaternary, 0-2.6 Ma), whereas these grain size parameters of quartz samples show different variability from those of bulk samples in the Red Clay sequence (late Miocene to Pliocene, 2.6-7 Ma). Grain size of quartz from the loess-palaeosol and Red Clay deposits exhibits distinct and persistent oscillations from the late Miocene to the Pleistocene, implying that significant fluctuations of the palaeomonsoon climate in East Asia might have occurred at least since late Miocene time.  相似文献   

9.
The Late Cenozoic uplift history of a sedimentary basin located in the axial part of the Ou Backbone Range, Northeast Japan, was studied using detailed mapping, fission-track dating and basin analysis. The subsidence analysis of the basin clarified the more complex stepwise uplift of the Ou Backbone Range. Three stages of uplift have been recognized and are interpreted to be the result of compressional stress, possibly accompanied by basin inversion. The three stages are identified as (1) a phase of surface uplift and regional unconformity (12-9 Ma), (2) a stage of differential uplift and compression (6.5-3 Ma) and (3) an intense compression stage (∼ 3 Ma). In the first stage, the eastern sector of the Backbone Range uplifted and a notable unconformity was formed at ∼ 10 Ma. The western sector remained submerged, suggesting that the eastern sector uplifted earlier than the western sector. Although the first uplift stage has been regarded as a tectonically quiet period in Northeast Japan, this tectonic event at ∼ 10 Ma is supposed to have a regional origin because coeval tectonic events took place across all Northeast Japan, as well as on the eastern margin of Asia. This study thus provides new insights into the Neogene tectonic evolution in the eastern margin of Asia.  相似文献   

10.
We show responses of coral reefs to increased amplitude of sea-level changes at the Mid-Pleistocene Climate Transition (MPT) based on lithostratigraphic, sedimentologic and calcareous nannofossil biostratigraphic investigations on Pleistocene reef-complex deposits (Ryukyu Group) on the Motobu Peninsula, Okinawa-jima, Central Ryukyus. Our data show that reef growth started in earliest Quaternary time (1.45-1.65 Ma) and that extensive reef formation dates back to ∼ 0.8 Ma. The mode of Quaternary sedimentation changed at ∼ 0.8 Ma in the study area. Before this time, thick siliciclastics and mixed carbonate-siliciclastics accumulated, which were followed by the deposition of bioclastic sediments (detrital limestone). No indications have been found of episodic subaerial exposures in these deposits and no calcareous nannofossil biozones are lacking. Since the detrital limestone includes biogenic components characterizing fore-reef to shelf environments, the coastal areas of the northern Motobu Peninsula mostly lay in fore-reef to shelf environments for > 0.6 million years (between ∼ 0.8 Ma and 1.45-1.65 Ma), when the sediments had not been subaerially exposed due to sea-level changes characterized by relatively small amplitudes. Coral limestone that formed in the latest Early to Middle Pleistocene between 0.4 Ma and 0.8 Ma extends over the study area, ranging in elevation from 0 to 70 m. This coral limestone grades upward into fore-reef to shelf carbonates (rhodolith, Cycloclypeus-Operculina, and detrital limestones) which is in turn overlain by coral limestone. This succession, combined with configuration of the lithofacies and paleobathymetry inferred from lithology and biogenic components, implies that the reef-complex deposits formed responding to sea-level changes with amplitude of > 60 m. Consequently, we suggest that the change in the mode of sedimentation results from increased amplitude of sea-level fluctuations at ∼ 0.8 Ma. This timing corresponds roughly to the timing of the Mid-Pleistocene Climate Transition (MPT).  相似文献   

11.
气候和土地利用变化影响下生态屏障带水土流失趋势研究   总被引:2,自引:0,他引:2  
郎燕  刘宁  刘世荣 《生态学报》2021,41(13):5106-5117
受气候和地形等诸多因素影响,我国"两屏三带"国家生态屏障带中的川滇-黄土高原区域和南方丘陵带水土流失十分严重,自然灾害频发。但是,针对川滇-黄土高原区域和南方丘陵带水土流失时空格局变化,特别是未来气候变化和土地利用变化影响下水土流失变化趋势的研究很少。因此,本研究以川滇-黄土高原区域和南方丘陵带为研究对象,利用修正土壤流失方程(RUSLE)定量分析了该区在2000-2015年水土流失的时空变化规律及其影响因素,并预测了在RCP2.6和RCP4.5的未来气候情景下及土地利用变化条件下水土流失的变化趋势。研究结果表明:(1)黄土高原地区在植被恢复的积极作用下,水土流失显著缓解;(2)川滇地区的西南部因植被盖度的增长和降雨的减少水土流失显著缓解,但四川省境内人口密集区农田面积增加以及降水增加造成水土流失大幅度加剧;(3)南方丘陵带受降水增加影响导致了部分区域的水土流失恶化;(4)在未来气候变化情景下,由于大部分地区降雨将减少使土壤侵蚀趋于缓解,但四川、黄土高原和南方丘陵带大部分地区仍然面临未来农田面积增加带来的水土侵蚀压力。考虑到未来气候变化情景下降雨减少的趋势,建议在黄土高原地区提高草地在土地利用类型中的占比,在减少耗水量的同时维持地表盖度,缓解水土侵蚀;此外,各区域仍需控制农田面积,而且需通过加强坡耕地上保水保土耕作措施降低农田区域的土壤侵蚀压力。  相似文献   

12.
小叶、中间和柠条三种锦鸡儿的分布式样及其生态适应   总被引:8,自引:0,他引:8  
赵一之 《生态学报》2005,25(12):3411-3414
确定了小叶锦鸡儿、中间锦鸡儿和柠条锦鸡儿3种植物的分布式样:小叶锦鸡儿为蒙古高原东部-F松辽平原西部-华北山地分布种,中间锦鸡儿为东戈壁-鄂尔多斯高原-黄土高原北部分布种,柠条锦鸡儿为南阿拉善-西鄂尔多斯分布种。小叶锦鸡儿适应分布于蒙古高原典型草原带和森林草原带以及华北山地落叶阔叶林带,在草原带高平原上可形成灌丛化草原的景观,在草原带的沙地上可形成以小叶锦鸡儿为建群种的沙地灌丛植被;中间锦鸡儿适应分布于蒙古高原的荒漠化草原及草原化荒漠带、鄂尔多斯高原的典型草原和荒漠化草原带的沙地及梁地上、黄土高原北部的黄土丘坡上,常形成以中间锦鸡儿为建群种的沙地灌丛植被;柠条锦鸡儿则适应分布于草原化荒漠和典型荒漠带的固定和半固定沙地上。近缘的3种锦鸡儿的地带性分布从东至西或从北向南形成明显的有规律的地理替代分布格局。  相似文献   

13.
黄土高原草地植被碳密度的空间分布特征   总被引:6,自引:0,他引:6  
草地是世界上分布最广的植被类型之一,作为陆地生态系统的重要组成部分,参与了全球碳源/汇及碳循环过程,在全球气候变化中扮演着重要角色,并对其产生重大影响。以黄土高原草地植被为研究对象,结合国家退耕还林草与封山禁牧工程的实施,对封禁前后的天然草地和退化草地,采用样带多点调查与多年定位测定相结合的方法,分析了黄土高原不同类型草地植物活体、凋落物和根系碳密度分布格局与地带性规律,系统研究了黄土高原不同草地类型退化草地和封禁草地生物量与碳密度沿海拔及降水梯度的时空变异特征,阐述了影响草地碳密度分布的主要驱动因子及其作用机理。结果表明:4种草地类型3种处理的草地生物量和碳密度自西北向东南均与降雨量呈指数增长趋势,并随海拔降低而显著降低,且二者呈显著的线性回归关系;各草地类型地上/地下生物量与碳密度分布规律均为荒漠草原<丘陵典型草原<梁塬典型草原<草甸草原;封禁11a草地活体植物、凋落物和根系碳密度总量:荒漠草原为7.066 t/hm2,丘陵典型草原为8.080 t/hm2,梁塬典型草原为15.319 t/hm2,草甸草原为20.982 t/hm2,分别是退化草地的14.8、8.33、6.5倍和15.88倍。充分表明,封禁不仅能使草地植被恢复和生物量提高,而且也是草地生产力和碳密度增加的一条重要途径。由此可见,气候干旱和草地退化是影响草地生物量和碳密度的关键因素,系统研究黄土高原封禁草地生物量增长与碳密度变化过程,将会对未来全球气候变化分析作出重要贡献。  相似文献   

14.
Relationships between vegetation and climate on the Loess Plateau in China   总被引:3,自引:0,他引:3  
The Loess Plateau is one of the most environmentally sensitive regions in China. This study addresses the relationships between vegetation and climate of this area quantitatively at a large-scale, in order to determine the factors that control vegetation distribution. The Loess Plateau, located at 101°01′–155°10′ E and 34°02′–40°40′ N, covers an area of 52 million hectares. Vegetation data were collected from the vegetation map (1:500,000) and the Landsat Thematic Mapper scenes of the Loess Plateau. The Loess Plateau was divided into small districts of 30′ latitude by 30′ longitude on the vegetation map. In each district, areas with different vegetation were measured and used as vegetation data. The climatic data were average values of county meteorological records in each district in the past 25 years. GIS, TWINSPAN and canonical correspondence analysis (CCA) were employed for analysis. 257 small districts were clustered into 7 groups using TWINSPAN, representing 7 vegetation regions or subregions. The first three CCA axes had significant correlations with climate. The first CCA axis represented the variation of vegetation and climate along the latitude gradient, while the second CCA axis the variation along the longitude gradient. The distribution pattern of 171 vegetation formations on the CCA plot is identical to that of vegetation regions (districts). The spatial distribution of vegetation is closely related to climate variables on the Loess Plateau. Water variables and temperature are important in both latitude and longitude gradients, while the sunshine hours, accumulated temperature and wind speed are more important than water variables and temperature in longitude gradients.  相似文献   

15.
黄土高原植被物候变化及其对季节性气候变化的响应   总被引:3,自引:0,他引:3  
受气候变化影响,全球范围内植被物候发生了显著变化,而目前针对不同植被分区类型下(荒漠草原区、典型草原区、森林草原区、落叶栎林区、落叶栎林亚区)植被物候变化及其对季节性气候变化响应的研究尚少。因此基于MODIS遥感归一化差值植被指数(MODIS NDVI:MOD13Q1)数据、中国植被区划数据及135个气象站点插值数据,利用Sen''s斜率估计、Hurst指数和高阶偏相关分析等方法,研究黄土高原2001-2018年植被物侯变化及其对季节性气候变化的响应。结果表明:(1)黄土高原植被生长季始期(SOS,Start of Growing Season)主要集中在第96-144天,子植被分区由西北向东南方向,逐渐呈现提前趋势,71.0%的像元植被SOS整体提前0-2 d/10a (α=0.05),且在未来一段时间66%的像元植被SOS继续呈现提前趋势;植被生长季末期(EOS,End of Growing Season)主要集中在第288-304天,各子植被分区植被EOS变化基本保持一致,87.6%的像元植被EOS整体延迟0-3 d/10a (α=0.05),且在未来一段时间有80%的像元植被EOS继续呈现推迟趋势。(2)黄土高原植被SOS主要受各季节温度的影响;当年春季降水导致植被SOS提前,主要分布在黄土高原中部;上年夏季和上年秋季降水增加会导致植被SOS推迟;当年春季、上年秋季和年初冬季的温度升高均会导致植被SOS提前;各子植被分区植被SOS对不同季节降水的响应存在差异,而对不同季节温度的响应具有一致性。(3)黄土高原植被EOS主要受各季节降水和秋季温度的影响;不同季节降水增加均会导致大部分植被EOS推迟;当年秋季温度导致整体区域植被EOS推迟,且各子植被区植被EOS对当年秋季温度响应具有一致性。该研究可为大尺度植被物候影响因素提供新的认识,也为植被适应未来气候变化提供借鉴。  相似文献   

16.
The projected recession of forests in the forest–steppe ecotone under projected climate drying would restrict the carbon sink function of terrestrial ecosystems. Previous studies have shown that the forest–steppe ecotone in the southeastern Inner Mongolia Plateau originally resulted from climate drying and vegetation shifts during the mid- to late-Holocene, but the interrelated processes of changing soil carbon storage and vegetation and soil shifts remain unclear. A total of 44 forest soil profiles and 40 steppe soil profiles were excavated to determine soil carbon storage in deciduous broadleaf forests (DBF), coniferous forests (CF) and steppe (ST) in this area. Carbon density was estimated to be 106.51 t/hm2 (DBF), 73.20 t/hm2 (CF), and 28.14 t/hm2 (ST) for these ecosystems. Soil organic carbon (SOC) content was negatively correlated with sand content (R = −0.879, P < 0.01, n = 42), and positively correlated with silt (R = 0.881, P < 0.01, n = 42) and clay (R = 0.858, P < 0.01, n = 42) content. Consistent trends between fractions of coarse sand and a proxy index of relative aridity in sediment sequences from two palaeo-lakes further imply that climate drying reduced SOC through coarsening of the soil texture in the forest–steppe ecotone. Changes in carbon storage caused by climate drying can be divided into two stages: (1) carbon storage of the ecosystem was reduced to 68.7%, mostly by soil coarsening when DBF were replaced by CF at ~5,900 14C years before present (BP); and (2) carbon storage was reduced to 26.4%, mostly by vegetation shifts when CF were replaced by ST at ~2,900 14C years BP.  相似文献   

17.
程杰  呼天明  程积民 《生态学报》2010,30(10):2630-2638
植被是区域气候与环境的综合反映,研究特定地区草地植被与气候变化的关系,寻找影响植被变化的关键因子,是植被重建和生态环境恢复的前提。利用1957-2008年的气候数据和1982-2008年的植被定位监测资料,分析了黄土高原半干旱区的宁夏云雾山植被动态变化规律及其与温度和降水的关系。结果表明:51a来,该区年平均温度明显升高,而年平均降水量总体呈减少趋势,显示黄土高原地区气候暖干化趋势明显。统计分析表明,研究区年平均温度对植被的重要值年际变化有极显著影响(P0.01),而年降水量与植被的重要值呈极显著正相关(P0.01),表明气候持续干旱化对该区植被的生长有较大影响,该区降水的多寡是直接影响植被生长优劣的决定性因子,改善区域水分状况和封禁是推进植被恢复与重建的主要措施。  相似文献   

18.
黄土高原近10年植被覆盖的动态变化及驱动力   总被引:8,自引:0,他引:8  
肖强  陶建平  肖洋 《生态学报》2016,36(23):7594-7602
基于Timesat的非对称高斯函数(AG)拟合法重建MODIS-NDVI数据,利用像元二分模型估算了黄土高原近10年的植被覆盖度(VC),并分析了年植被覆盖度的变化趋势和其与降水温度的相关性。研究结果表明:黄土高原植被覆盖度总体上呈现东南高西北低、由东南向西北递减的特征。其中森林生态系统平均覆盖度最高,灌木、草地生态系统次之,荒漠生态系统最低,空间差异明显。2010年森林生态系统植被覆盖度达到81.6%,主要包括太行山、吕梁山和秦岭地区。暖温带森林区植被组成以落叶阔叶林为主,覆盖度常年较高,为80%以上。西北部温带草原区,植被覆盖度达到38.8%。温带草地主要依水分梯度,由东南到西北分布有以旱生性多年生草本植物为主的典型草原,植被覆盖度呈现相应的递减趋势。黄土高原总面积78.6%的地区年植被覆盖度呈增加趋势;而占总面积19.4%的地区年植被覆盖度呈下降趋势。在空间分布上,植被覆盖度显著增加的区域主要分布在榆林至延安周边地区和秦岭一带;植被覆盖度显著减少区域沿兰州至银川呈条带状分布。  相似文献   

19.
黄土高原白羊草草原的基本特征及其地理学意义   总被引:12,自引:0,他引:12  
黄土高原的白羊草草原具有水平地带性特征,是第三纪亚洲内陆热带性质的草原随着干旱的发展和气候的变冷逐渐向外推移的结果。因而该草原是次生的,残遗的,本区现在的分布区正是欧亚内陆外围残遗的分布区的组成部分。该草原分布通常与森林相结合或形成群落复合体,构成森林草原的自然景观。该草原西部和北部边缘应是中亚与东亚植物区系的自然界限,即恒山-雁门关-管涔山-白于山-六盘山-天水-武山。该草原的建群种和优势种主要  相似文献   

20.
Pollen analysis of Miocene and Pliocene sediments from the Iberian Peninsula shows a progressive reduction in plant diversity through time caused by the disappearance of thermophilous and high-water requirement plants. In addition, an increase in warm-temperate (mesothermic), seasonal-adapted “Mediterranean” taxa, high-elevation conifers and herbs (mainly Artemisia) occurred during the Middle and Late Miocene and Pliocene. This has mainly been interpreted as a response of the vegetation to global and regional processes, including climate cooling related to the development of the East Antarctic Ice Sheet and then the onset of the Arctic Ice Sheet, uplift of regional mountains related to the Alpine uplift and the progressive movement of Eurasia towards northern latitudes as a result of the northwards subduction of Africa. The development of steppe-like vegetation in southern Iberia is ancient and probably started during the Oligocene. The onset of a contrasted seasonality in temperature during the Mid-Pliocene superimposed on the pre-existing seasonality in precipitation, the annual length of which increased southward. The Mediterranean climatic rhythm (summer drought) began about 3.4 Ma and caused the individualization of modern Mediterranean ecosystems. Quaternary-type Mediterranean climatic fluctuations started at 2.6 Ma (Gelasian) resulting in repeated steppe vs. forest alternations. A latitudinal climatic gradient between the southern and the northern parts of the Iberian Peninsula existed since the Middle Miocene.  相似文献   

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