广西植物
廣西植物
엄서식물
GUIHAIA
2014年
5期
635-641
,共7页
岳鹏鹏%卢学峰%叶润蓉%周玉碧%赵建忠%彭敏
嶽鵬鵬%盧學峰%葉潤蓉%週玉碧%趙建忠%彭敏
악붕붕%로학봉%협윤용%주옥벽%조건충%팽민
紫花针茅%数量分类和排序%物种多样性%青藏高原
紫花針茅%數量分類和排序%物種多樣性%青藏高原
자화침모%수량분류화배서%물충다양성%청장고원
Stipa purpurea%quantitive classification and ordination%species diversity%Qinghai-Tibet Plateau
选择长江源地区典型的紫花针茅草原作为研究对象,以大量的群落学样方调查为基础,采用TWINS-PAN、DCA、物种多样性,相关分析等多元数量分析方法,系统研究了紫花针茅草原的群落特征、物种多样性、群落与环境因子的关系.结果表明:(1)所调查的紫花针茅草原是物种组成相对简单、菊科和禾本科植物最多、北温带分布属为主体的草原群落;(2)长江源区紫花针茅草原群落可划分为四个群丛类型:紫花针茅+密丛棘豆群丛,紫花针茅+梭罗草群丛,紫花针茅+伊凡苔草群丛,紫花针茅+弱小火绒草群丛;(3)影响群丛分布的主要环境因子首先是海拔、经纬度等空间因子,其次是湿润度、降雨量等水分因子的影响;(4)紫花针茅+伊凡苔草群丛的物种多样性是研究区四个群丛中最高的.Simpson指数和均匀度指数受海拔、经纬度、平均降雨量、均湿润度等环境因子影响显著.该研究揭示了紫花针茅草原群落的内在规律.
選擇長江源地區典型的紫花針茅草原作為研究對象,以大量的群落學樣方調查為基礎,採用TWINS-PAN、DCA、物種多樣性,相關分析等多元數量分析方法,繫統研究瞭紫花針茅草原的群落特徵、物種多樣性、群落與環境因子的關繫.結果錶明:(1)所調查的紫花針茅草原是物種組成相對簡單、菊科和禾本科植物最多、北溫帶分佈屬為主體的草原群落;(2)長江源區紫花針茅草原群落可劃分為四箇群叢類型:紫花針茅+密叢棘豆群叢,紫花針茅+梭囉草群叢,紫花針茅+伊凡苔草群叢,紫花針茅+弱小火絨草群叢;(3)影響群叢分佈的主要環境因子首先是海拔、經緯度等空間因子,其次是濕潤度、降雨量等水分因子的影響;(4)紫花針茅+伊凡苔草群叢的物種多樣性是研究區四箇群叢中最高的.Simpson指數和均勻度指數受海拔、經緯度、平均降雨量、均濕潤度等環境因子影響顯著.該研究揭示瞭紫花針茅草原群落的內在規律.
선택장강원지구전형적자화침모초원작위연구대상,이대량적군락학양방조사위기출,채용TWINS-PAN、DCA、물충다양성,상관분석등다원수량분석방법,계통연구료자화침모초원적군락특정、물충다양성、군락여배경인자적관계.결과표명:(1)소조사적자화침모초원시물충조성상대간단、국과화화본과식물최다、북온대분포속위주체적초원군락;(2)장강원구자화침모초원군락가화분위사개군총류형:자화침모+밀총극두군총,자화침모+사라초군총,자화침모+이범태초군총,자화침모+약소화융초군총;(3)영향군총분포적주요배경인자수선시해발、경위도등공간인자,기차시습윤도、강우량등수분인자적영향;(4)자화침모+이범태초군총적물충다양성시연구구사개군총중최고적.Simpson지수화균균도지수수해발、경위도、평균강우량、균습윤도등배경인자영향현저.해연구게시료자화침모초원군락적내재규률.
The typical Stipa purpurea steppe in the source region of the Yangtze River was selected as subj ect.Multi-variate statistics methods including TWINSPAN,DCA and correlation analysis were used to calculate the data on the basis of investigating a large number of vegetation communities in this region,in order to investigate the community characteristics,community diversity,and the relationship between community and environment factors.The results were as follows:(1)The species composition of S.purpurea steppe in the study area was relatively simple.The dom-inant families of seed plants were Gramineae and Compositoe,and the dominant areal types of genera were North temperate type;(2)The S.purpurea steppe community in the source region of the Yangtze River could be classified into 4 ecological associations:Ass.Stipa purpurea +Oxytropis densa,Ass.Stipa purpurea +Kengyilia thorol-dia,Ass.Stipapurpurea +Carexivanovae and Ass.Stipapurpurea +Leontopodiumhumilum;(3)The major environmental factors influenced the distribution of Stipa purpurea steppe ecological associations in source region of The typical Stipa purpurea steppe in the source region of the Yangtze River was selected as subj ect.Multi-variate statistics methods including TWINSPAN,DCA and correlation analysis were used to calculate the data on the basis of investigating a large number of vegetation communities in this region,in order to investigate the community characteristics,community diversity,and the relationship between community and environment factors.The results were as follows:(1)The species composition of S.purpurea steppe in the study area was relatively simple.The dom-inant families of seed plants were Gramineae and Compositoe,and the dominant areal types of genera were North temperate type;(2)The S.purpurea steppe community in the source region of the Yangtze River could be classified into 4 ecological associations:Ass.Stipa purpurea +Oxytropis densa,Ass.Stipa purpurea +Kengyilia thorol-dia,Ass.Stipapurpurea +Carexivanovae and Ass.Stipapurpurea +Leontopodiumhumilum;(3)The major environmental factors influenced the distribution of Stipa purpurea steppe ecological associations in source region of the Yangtze River firstly were space factors (altitude,longitude and latitude),then water factors (precipitation,wet-ness);(4)Ass.Stipa purpurea +Carex ivanovae hold the three highest indexes of the 4 ecological associations in the study area.Both evenness index and Simpson index were influenced by space factors and water factors.The pres-ent study proclaim the inner ecological rules of Stipa purpurea steppe in source region of the Yangtze River,and will play a very important role in maintaining the ecosystem equilibrium of ecologically fragile zones.