首页 | 本学科首页   官方微博 | 高级检索  
   检索      

滦河流域及周边地区花粉与植被关系的研究
引用本文:许清海,杨振京,阳小兰,李月丛,郑振华,王瑞君.滦河流域及周边地区花粉与植被关系的研究[J].植物生态学报,2005,29(3):444-456.
作者姓名:许清海  杨振京  阳小兰  李月丛  郑振华  王瑞君
作者单位:1 河北师范大学资源与环境学院,石家庄 050016
2 中国地质科学院水文地质环境地质研究所,河北正定050803
3 中国科学院植物研究所植被数量生态学重点实验室,北京 100093
4 河北省地理研究所,石家庄,050011
5 中国科学院地质与地球物理研究所,北京100029
基金项目:国家重点基础研究发展计划(973计划),国家自然科学基金,国家自然科学基金,中国科学院知识创新工程项目,河北省自然科学基金,中国博士后科学基金
摘    要:滦河流域及周边地区空气中的花粉组合基本上反映了当地的植被面貌, 与植物的花期相对应, 乔木植物的花期多在春季, 草本植物的花期多在夏秋季, 该地冬季基本上无植物开花, 冬季空气中的花粉应是当年或多年春、夏、秋季散落在地上又被风吹到空气中的表土花粉和一些外来花粉 ;表土花粉随海拔高程的降低依次出现山地草甸、针阔混交林或以针叶树为主的针阔混交林、山地灌草丛、滨海平原草甸和滨海草甸或滨海盐生草甸的等 5个花粉组合带, 分别为蒿 (Artemisia)唐松草 (Thalictrum)松(Pinus)桦 (Betula) 孢粉组合带、松桦栎 (Quercus) 蒿孢粉组合带、藜科 (Chenopodiaceae)蒿禾本科 (Gramineae)中华卷柏 (Selaginellasinensis) 孢粉组合带、藜科蒿菊科 (Com positae)香蒲 (Typha) 孢粉组合带和藜科蒿莎草科 (Cyperaceae)禾本科孢粉组合带 ;由于花粉在河水中是以悬移质颗粒被搬运, 因此在不同时期沉积物花粉组合存在着一定的差异, 其中洪水期间河水对孢粉的分选作用最为明显。

关 键 词:空气中花粉  表土花粉  冲积物花粉  滦河流域  
收稿时间:2004-02-05
修稿时间:2004年2月5日

VEGETATION IN THE LUANHE RIVER BASIN AND SURROUNDING AREAS
XU Qing-Hai,YANG Zhen-jing,Yang Xiao-lan,LI Yue-Cong,Zheng Zhen-hua,WANG Rui-jun.VEGETATION IN THE LUANHE RIVER BASIN AND SURROUNDING AREAS[J].Acta Phytoecologica Sinica,2005,29(3):444-456.
Authors:XU Qing-Hai  YANG Zhen-jing  Yang Xiao-lan  LI Yue-Cong  Zheng Zhen-hua  WANG Rui-jun
Institution:1 College of Resources and Environment, Hebei Normal University, Shijiazhuang, 050016, China
2 Institute of Hydrologic and Environmental Geology, Chinese Academy of Geological Sciences, Zhengding, Hebei 050803, China
Abstract:This study explored the relationship between pollen and vegetation in the Luanhe River Basin and surrounding areas (39°00′-42°00′ N and 115°40′-119°50′ E) at elevations that ranged from 0 m at the Bohai Sea to 2 082 m in the Yanshan Mountains. Airborne pollen samples were collected for two years by 2 permanent weather-vane-pollen-collectors in Caiyuan, Qian'an County. Pollen samples in the surface soil were collected from 53 locations at about 100 m elevational intervals in the Yanshan Mountains and at about 20 km intervals across the level plains between the Yanshan Mountains and the Bohai Sea. Vegetation surveys were conducted simultaneously where pollen samples were collected. Alluvial pollen samples were collected from fresh sediments in the riverbed, and, at the same time, water samples were collected from the river during the low, flood, and mean water periods. Airborne pollen assemblages generally reflected the local vegetation and corresponded with flowering patterns of the vegetation over the course of the year. Most trees flowered in the spring whereas most herbs flowered in the summer and autumn. Because no plants bloom during the winter in this region, the airborne pollen in winter was wind dispersed pollen from the soil surface and some foreign pollen. From the mountain peak to seashore, five successive palynoflora zones were identified: montane meadow, coniferous-broad-leaf mixed forest or coniferous-broad-leaf mixed forest mainly composed of coniferous trees, montane brush, alluvial plain meadow and seaside meadow or saline meadow. Correspondingly, five pollen assemblages were identified: Artemisia-Thalictrum-Pinus-Betula pollen assemblage, Pinus-Betula-Quercus-Artemisia pollen assemblage, Chenopodiaceae-Artemisia-Gramineae-Selaginella sinensis pollen assemblage, Chenopodiaceae-Artemisia-Compositae-Typha pollen assemblage and Chenopodiaceae- Artemisia -Cyperaceae- Gramineae pollen assemblage. Arboreal pollen grains were dominated by Pinus that were transported a long distance, and herbaceous pollen grains were dominated by Artemisia and Chenopodiaceae that were transported a short distance. Pollen assemblages from the river water and alluvial deposits reflected the vegetation of the river basin near where the samples were collected and the genera and proportion of pollen were related to the blooming period of the different plants. The pollen concentration in river water was positively correlated with the proportion of sand in the river water indicating that the pollen grains were carried as sedimentary particles in river. The pollen in alluvial deposits came from the vegetation in the river basin, and the pollen assemblages reflected the vegetation of the whole river basin instead of partial area. Because pollen was transported in the river water by sediment suspension, pollen sorting in the river was not apparent during low and mean water flow periods but was evident during flood periods. The alluvial pollen assemblages varied among different river flow periods.
Keywords:Airborne pollen  Surface pollen  Alluvial pollen  Luan River Basin
本文献已被 CNKI 维普 万方数据 等数据库收录!
点击此处可从《植物生态学报》浏览原始摘要信息
点击此处可从《植物生态学报》下载免费的PDF全文
设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号