474 resultados para Northwestern Yunnan

em Chinese Academy of Sciences Institutional Repositories Grid Portal


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In Asia, especially in China, our knowledge of the distribution of testate amoebae is still limited. In this paper, the geographical distribution of testate amoebae in Tibetan Plateau and northwestern Yunnan Plateau, southwest China and their relationships with the climatic factors have been studied. We found testate amoebae shifted in the most dominant species and increased in species (or genus) richness from northwest to southeast. Further, the linear regression analyses revealed that both species richness and genus richness have higher positive correlations with the mean temperature of the warmest month and annual mean precipitation as contrasted with the mean altitude, which showed weak negative correlation. This indicates that the temperature and precipitation are more significant influences on the richness than the altitude. The cluster analysis based on the community structure, defined by Sorenson's coefficient matrix, suggested four groups from the 10 physiographical regions. This geographical distribution pattern was also closely related with the climatic regionalization. The present climatic regionalization pattern of the study area originated from the uplift of Tibetan Plateau and mainly occurred in or after the late Pleistocene. Therefore, the geographical distribution of testate amoebae in our study area may have experienced complicated and drastic changes corresponding to the variation of the climate caused by the geological events.

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随着全球环境的变化,人们迫切的希望了解整个地球环境的变化过程、规律和未来发展的趋势。对地质历史时期发生过的环境事件的了解,能为我们研究现在的和预测未来的环境变化提供有价值的资料。 孢粉分析作为一种古环境的代用指标,在恢复古植被与古气候方面起着不可替代的作用。而精确的孢粉分析建立在对现代花粉与当地植被的关系正确的认识基础上,由此才可以更准确地提取地层中的花粉所蕴含的植被和环境信息。 云南省地理位置较特殊,地貌复杂,气候类型多样,与之对应的植物种类多样性丰富,植被类型多样。本项研究选择云南省南部和西部地区作为研究地点,采集表土、地表苔藓、蜘蛛网、树皮和树上地衣苔藓五种天然孢粉捕捉器来研究现代花粉与当地植被的关系,为认识现代花粉雨提供新的研究思路。同时,我们在滇西北选择拉市海、文海、哈里谷和属都湖这四个高原湖泊来研究晚更新世以来滇西北地区植被演替和气候变化,为云南历史时期气候变化提供新的研究资料,同时也为全面认识晚更新世以来的气候变化提供新的证据。研究结果如下: 1. 现代花粉雨与当地植被关系的研究 对云南省西北部、中部和南部采集的19个蜘蛛网样品分析得出:云南省西北部样品中共鉴定20个孢粉类型,分属于16个科;云南省中部样品中共鉴定28个类型,分属于23个科;在云南省南部勐腊县采集的样品中共鉴定28个类型,分属于25个科;在望天树北京植物园中采集的样品共鉴定38个类型,分属于34个科;在西双版纳北京植物园中采集的样品中共有11个类型,分属于10个科。结果表明:蜘蛛网样品中分析出的孢粉类型反映了云南省从南到北不同的植被类型,说明蜘蛛网可以作为一种天然孢粉捕捉器来进行现代花粉雨的研究。 同时,在云南西北部文笔水库采集的五种天然孢粉捕捉器(表土、地表苔藓、树皮、蜘蛛网、树上地衣和苔藓)进行了对比研究。结果表明:表土所得的孢粉中木本植物花粉的百分含量为90.5-96%,远大于地表苔藓(53.1-81.7%)、蜘蛛网(61.7%)、树皮(53.8%)和树上地衣、苔藓(50-53.6%)所获得的木本植物花粉的百分含量。与当地植被进行对比结果表明:这五种天然孢粉捕捉器中,表土、地表苔藓和蜘蛛网比树皮和树上地衣、苔藓能更好的反映当地的植被。 2. 滇西北地区晚更新世以来植被演替与气候变化 在过去2, 5000年左右的地质历史时期,滇西北地区植被和气候变化大致经历了以下三个发展阶段。 (1) 2, 5381 B.P—1, 9335 B.P.:属都湖地区(海拔:3620m)主要是以蓼科植物为主的草甸植被,气候寒冷湿润。 (2) 1, 9335 B.P.—1, 2426 B.P.:属都湖地区是以藜科或蒿属为主的草甸植被,气候从湿润过渡到干旱;而在海拔稍低的文海地区(海拔3080m),主要是阔叶栎林或针阔混交林,气候温凉略湿到寒冷干旱。 (3) 1, 2426 B.P.—至今:属都湖地区是以蓼科为主的草甸植被,气候仍寒冷湿润;海拔稍低的哈里谷(海拔3277m)是以松和冷杉为主的针叶林,气候冷干;文海地区的植被逐渐演替为以松和冷杉为主的针阔叶混交林,但栎属花粉的含量远高于哈里谷地区,说明当时文海的气温虽然低,却比哈里谷稍高;而海拔更低的拉市海(海拔2440m)则是以松为主的针叶林,气候比其他几个地区温暖。 在全新世气候最适宜期(约8000 B.P.以来),哈里谷是以栎和松为主的针阔混交林;文海是以松为主的针阔混交林;而拉市海是以松和蕨类植物为主。说明随着海拔的升高(从拉市海到属都湖),温度逐渐下降,植被类型也由暖性针叶林过渡到针阔混交林再到草甸。 从6000 B.P.至今,文海和哈里谷植被在这一阶段都是以松和冷杉为主的暗针叶林,少量混生一些阔叶类植物,气候变得冷湿;属都湖则仍是以蓼科为主的草甸,气候变得更加寒冷。 研究证明:滇西北地区总的气候变化趋势与全球变化规律基本一致,在1,1805—9990 B.P.期间发生新仙女木事件,在8000B.P.以来,气候变得温暖湿润,为全新世气候最适宜期。此后,气候逐渐变得接近现代。

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The greatest concentration of Chinese Galliformes occurs in the Trans-Himalayas. We selected 4 northwestern Yunnan counties (Lijiang, Shangri-la, Deqin, and Weixi) in the Trans-Himalayas to assess the conservation status of 9 gallinaceous forest birds. We

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Geographic variation of Chevrier's field mouse (Apodemus chevrieri) (Milne-Edwards, 1868) (Muridae: Murinae) from southwestern China based on cranial morphometric variables. Zoological Studies 47(4): 393-401. A sample of 134 specimens of Apodemus chevrieri was investigated in the present study. Individuals were divided into male and female groups, and these were respectively subjected to multivariate analysis. Results indicated that 3 geographic populations of A. chevrieri inhabit southwestern China: a Sichuan population in western Sichuan Province; a northwestern Yunnan population ranging from northwestern Yunnan Province eastward to southern Sichuan Province; and a central Yunnan population in central Yunnan Province. In addition, a coefficient of difference analysis was performed among these 3 geographic populations. The results suggested that these 3 geographical populations of A. chevrieri belonged to 2 subspecies. Furthermore, we discuss the relationships of the subspecific differentiation of A. chevneri with changes in latitude in southwestern China.

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To investigate the genetic diversity between the populations of woolly flying squirrels (Eupetaurus) from the eastern and western extremes of the Himalayas, partial mitochondrial cytochrome b gene sequences (390-810bp) that were determined from the museum specimens were analyzed using maximum parsimony (MP) and maximum likelihood (ML) methods. The molecular data reveal that the two specimens that were collected in northwestern Yunnan (China) are members of the genus Eupetaurus. Reconstructed phylogenetic relationships show that the populations of Eupetaurus in the eastern and western extremes of the Himalayas are two distinct species with significant genetic differences (12%) and diverged about 10.8 million years ago. Eupetaurus is significantly different from Petaurista and Pteromys. The level of estimated pairwise-sequence divergence observed between Eupetaurus and Petaurista or Pteromys is greater than that observed between Eupetaurus and Trogopterus, Belomys, Glaucomys, or Hylopetes. Considering the divergence time of the two Eupetaurus groups, the glaciations and the uplift of the Himalayas and Qinghai-Tibet plateau during the Pliocene-Pleistocene period might be the major factors affecting the present distribution of Eupetaurus along the Himalayas. (C) 2004 Elsevier Inc. All rights reserved.

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横断山区拥有独特的生物区系和丰富的生物多样性,成为研究生物和地学许 多重大理论问题的关键性区域。然而该地区复杂的高山峡谷地形不利于大范围实 地考察工作的开展,而传统的调查方法也较难直接地获取野生动物及其生境的一 些量化数据,如某种或某类生物元素的分布、变化情况以及保护状况等,因此长 期以来对于该地区保护网络的规划和管理效果一直缺乏系统地评价,保护工作的 进一步开展依然面临很多难题。近年来地理信息系统(Geographic Information System, GIS)和遥感技术(Remote Sensing, RS)已经广泛应用于野生动物及其 生境保护的各个方面,为横断山区的保护工作拓展了新的研究思路和方法借鉴。 本研究以位于云南西北部横断山区的四个县(德钦、维西、丽江、香格里拉) 作为核心研究地区,以野生动物的主要栖息地——林地为对象,借助RS 和GIS 手段研究该地区内林地的分布、变化以及受威胁程度;并针对鸡形目鸟类的保护 状况进行了分析,为该地区林地和鸡形目鸟类的保护及评价提供科学的方法指导 和建议。具体如下: (1)林地分布以及针叶林的进一步细分。在地面真实数据的辅助下,通过 对Landsat TM/TM+影像的预处理、分类、分类后处理等过程,将研究地区中的 林地与非林地进行划分;针对暖温性针叶林和寒温性针叶林这两种较难区分的类 别,采用导引聚类(guided clustering)的分类方法,进一步对针叶林进行细分。 精度评估的结果显示,林地与非林地的划分总体精度为94.3%,而针叶林细分为 暖温性针叶林和寒温性针叶林的总体精度为74.8%。该方法可以较为准确地划分 该地区不同的生境类型,为野生动物及其生境的保护奠定基础。(2)林地的受威胁程度评价。通过分析研究地区中的林地在40 多年时间跨 度里(1958-2001 年)的变化情况和保护现状,从而评价其受威胁程度,结果反 映出每个县的林地面积都有不同程度的减少,丽江和香格里拉这两个县的林地受 威胁程度相对较高。进一步对丽江和香格里拉两县在不同海拔带的林地分布和变 化情况进行分析,结果表明,丽江的林地主要分布于2000-3500 米的海拔范围内 (占该县全部林地面积的89.7%),而在香格里拉则主要分布于2500 米以上(占 该县全部林地面积的95.2%);在这两个林地分布较为集中的区域内,都是低海 拔地区林地面积减少程度较高,意味着在开展保护工作时应重点关注这两个县的 低海拔林地。本研究方法可供整个横断山区乃至其他高山峡谷地区借鉴,为保护 网络的完善提供快速的量化参考。 (3)鸡形目鸟类的保护状况分析。借助RS 和GIS 手段描绘研究地区中当 前林地(2001 年左右)以及早期林地(1958 年前后)的分布,针对那些主要以 林地为生境的鸡形目鸟类,在相应限制因子(例如海拔数据)的辅助下对它们当 前和过去的潜在生境进行预测,从而分析它们的保护现状和生境的变化情况。结 果表明研究地区中现有的保护区对这些鸟类的保护尚不完善,并且在过去40 多 年的时间跨度里它们的潜在生境都有不同程度的退化。建议将来的保护工作优先 考虑那些在当前未被充分保护的物种以及潜在生境退化程度相对较高的物种。针 对这些物种,提出在将来的进一步保护工作中的一些建议,为整个横断山区鸡形 目鸟类乃至其他野生动物类群的保护提供参考。

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The Study on rheology of the lithosphere and the environments of the seismogenic layer is currently the basic project of the international earthquake research. Yunnan is the ideal place for studying this project. Through the multi-disciplinary comprehensive study of petrology, geophysics, seismo-geology, rock mechanics, etc., the depth-strength profiles of the lithosphere have been firstly constructed, and the seismogenic layer and its geophysical and tectonic environments in Yunnan have been systematically expounded in this paper. The related results achieved are of the important significances for further understanding the mechanism of strong earthquake generation, dividing the potential foci and exposing recent geodynamical processes in Yunnan. Through the comprehensive contrast of the metamorphic rocks in early and middle Proterozoic outcropping on the surface, DSS data and experimental data of rock seismic velocity under high temperature and high pressure, the petrological structure of the crust and upper mantle has been studied on Yunnan: the upper, middle and lower crust is composed of the metamorphic rocks of greenschist, amphibolite and granulite facies, respectively or granitoids, diorites and gabbros, respectively, and the upper mantle composed of the peridotites. Through the contrast studies of the heat flow and epicenters of the strong earthquakes, the distribution of the geotemperature and the data of focal depth, the relationship of between seismicity and geothermal structure of the lithosphere in Yunnan has been studied: the strong earthquakes with magnitude M ≥ 6.0 mainly take place at the geothermal gradient zone, and the seismic foci densely distribute between 200~500 ℃ isogeotherms. On the basis of studies of the rock properties and constituents of the crust and upper mantle and geothermal structure of the lithosphere, the structure of the rheological stratification of the lithosphere has been studied, and the corresponding depth-strength profiles have been constructed in Yunnan. The lithosphere in majority region of Yunnan has the structure of the rheological stratification, i.e. the brittle regime in the upper crust or upper part of the upper crust, ductile regime in the middle crust or lower part of the upper crust to middle crust, ductile regime in the lower crust and ductile regime in the subcrustal lithosphere. The rheological stratification has the quite marked lateral variations in the various tectonic units. The distributions of the seismogenic layer have been determined by using the high accurate data of focal depth. Through the contrast of the petrological structure, the structure of seismic velocity, electric structure, geotemperature structure, and rheological structure and the study of the focal mechanism in the seismogenic layer, the geophysical environments of the seismogenic layer in Yunnan have been studied. The seismogenic layer in Yunnan is located at the depths of 3 ~ 20 km; the rocks in the seismogenic layer are composed of the metamorphic rocks of greenschist to amphibolite facies (or granites to diorites); the seismogenic layer and its internal focal regions of strong earthquakes have the structure of medium properties with the relatively high seismic velocity, high density and high resistivity; there exists the intracrustal low seismic velocity and high conductivity layer bellow the seismogenic layer, the geotemperature is generally 100~500 ℃ in the depth range in which the seismogenic layer is located. The horizontal stress field predominates in the seismogenic layer, the seismogenic layer corresponds to the brittle regime of the upper crust or brittle regime of the upper crust to semibrittle regime of the middle crust. The formation of the seismogenic layer, preparedness and occurrence of the strong earthquakes is the result of the comprehensive actions of the source fault, rock constituent, structure of the medium properties, distribution of the geotemperature, rheological structure of the seismogenic layer and its external environments. Through the study of the structure, active nature, slip rate, segmentation of the active faults, and seismogenic faults, the tectonic environments of the seismogenic layer in Yunnan have been studied. The source faults of the seismogenic layer in Yunnan are mainly A-type ones and embody mainly the strike slip faults with high dip angle. the source faults are the right-lateral strike slip ones with NW-NNW trend and left-lateral strike slip ones with NE-NEE trend in Southwestern Yunnan, the right-lateral strike slip ones with NNW trend and left-lateral strike slip ones with NNE trend (partially normal ones) in Northwestern Yunnan, the right-lateral strike slip ones with NWW trend in Central Yunnan and left-lateral strike slip ones with NW-NNW trend in Eastern Yunnan. Taking Lijiang earthquake with Ms = 7.0 for example. The generating environments of the strong earthquake and seismogenic mechanical mechanism have been studied: the source region of the strong earthquake has the media structure with the relatively high seismic velocity and high resistivity, there exists the intracrustal low velocity and high conductivity layer bellow it and the strong earthquakes occur near the transitional zone of the crustal brittle to ductile deformation. These characteristics are the generality of the generating environments of strong earthquakes. However, the specific seismogenic tectonic environments and action of the stress field of the seismic source in the various regions, correspondingly constrains the dislocation and rupture mechanical mechanism of source fault of strong earthquake.