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1.
毛乌素沙地南缘沙丘生物结皮中微生物分布特征   总被引:4,自引:0,他引:4  
为探明半干旱沙区生物结皮中微生物分布特征,对毛乌素沙地南缘沙丘生物结皮中微生物数量进行了测定。结果表明:微生物总数从丘顶到丘间地呈递增趋势,除丘顶与迎风坡、迎风坡与背风坡结皮层微生物总数差异不显著外,其他各地貌部位结皮层微生物数量之间差异显著。同一地貌部位结皮层、0~5和5~10cm土层微生物垂直分布有变化,其变化规律为:除迎风坡放线菌数量呈先增加后递减、迎风坡微生物总数、细菌、真菌和丘顶真菌数量随剖面的加深呈递减外,其他各地貌部位微生物数量均呈先降低,后增加的趋势。微生物类群的组成表现为细菌最多,放线菌次之,真菌最少。在丘间地细菌所占微生物总数的比例与丘顶相比有所增加,而放线菌和真菌的比例有所减少。结皮下0~5和5~10cm土层微生物分布与土壤含水量的变化同步,说明土壤水分可能是影响微生物垂直分布的重要因子。  相似文献   

2.
塔里木河下游土壤水分与植被时空变化特征   总被引:8,自引:1,他引:7  
马晓东  李卫红  朱成刚  陈亚宁 《生态学报》2010,30(15):4035-4045
运用变异系数、Pearson相关和回归的方法,分析了塔里木河下游2002-2006年土壤水分的时空变化和植被的分布,以及二者之间的相互关系。结果表明:土壤含水率水平空间分布随离水源地距离增加而降低,垂直分布随土层深度的增加而增加;0-60cm土壤含水率变异性最小,属中等变异性;60cm以下土壤含水量变异性增大,属强变异性;土壤含水率的时间变化受生态输水量和持续时间的制约。土壤含水率与植被的时空分布具有同步性;植被特征指数与80-280cm土壤含水率显著相关,且二者与地下水埋深均呈现极显著负相关,说明60cm以下的土壤含水率显著影响植被的生长和分布,而且地下水位是影响土壤水分和植被时空变异的主要因素。  相似文献   

3.
陇中黄土高原主要造林树种细根生物量分布   总被引:2,自引:1,他引:1  
以2 mm为粗、细根的划分界限,采用根钻法对黄土高原安家沟流域油松、白杨、山杏、刺槐、沙棘和柠条6个主要造林树种细根分布进行研究,并测定不同林地下土壤含水率和土壤理化性质.结果表明: 在水平方向上,油松细根生物量呈先增大后减小的二次多项式分布,其他5个树种细根生物量均呈对数分布,水平根系发达,细根主要分布在冠幅半径2~3倍的范围内,表明各植被通过水平扩展来获取更多的土壤水分.在垂直方向上,随着土层深度的增加,细根生物量均呈减小趋势.6种植被细根生物量与土壤水分、容重呈显著负相关,与有机质、全N含量呈显著正相关.  相似文献   

4.
荒漠人工固沙植被区土壤水分的时空变异性   总被引:10,自引:0,他引:10  
表层土壤水分具有高度的时间和空间变异性.研究的目的:(1)揭示沙坡头人工固沙植被区浅层土壤水分的时空变异性特征;(2)确定驱动土壤水分变异的主要环境因子.在人工固沙植被区内一个4500m2的网格样地上每隔10m设置取样点,在连续7个月的时间内 (2005年4~10月),每隔15d用时域反射仪测量各样点表层以下15cm和30cm深度的土壤容积含水量.结果表明,该区网格尺度上浅层土壤水分的分布具有明显的空间变异性,其变异性随着土壤水分含量的降低而减小;相对海拔是驱动土壤水分空间变异的主要环境因子,其作用在降雨后尤为显著,且其对土壤下层的影响比上层更明显;植被和土壤水分含量的相关性时间序列与相对海拔一致--降雨使其相关性增加;土壤质地(土壤粒径分布)和土壤水分含量的相关性时间序列特征与植被和相对海拔相反,且其对土壤上层的影响比下层更明显.因此,在沙坡头荒漠人工固沙植被区,降雨后的短暂湿润期,地形和植被是驱动浅层土壤水分变异的主要影响因子,而随着降雨之后土壤逐渐变干,土壤质地的影响变得更加明显.  相似文献   

5.
祁连山草地生态系统在维护我国西部生态安全方面起着举足轻重的作用。为了解祁连山不同类型草地土壤水分、养分等理化性质与植被分布特征,及土壤理化性质与植被特征的相关关系,于祁连山选取7种类型的草地,测定土壤水分含量、养分含量、容重、颗粒组成和植被特征,计算土壤颗粒的分形维数、0~40 cm土层土壤有机碳、全氮和全磷储量、植物多样性指数。结果表明: 祁连山不同类型草地的土壤理化性质与植被特征差异显著,高寒草甸相比于其他类型草地具有较高的土壤水分、养分和黏粒含量,及较低的容重和砂粒含量;0~40 cm土层土壤有机碳、全氮、全磷储量变化范围分别为3084~45247、164~2358、100~319 g·m-2,整体表现为有机碳和全氮含量高、全磷含量低;土壤全磷储量与植物多样性指数呈显著正相关关系,表明土壤全磷含量是祁连山草地植物多样性的关键影响因素。相比其他草地类型,高寒草甸具有较好的植被状况和土壤水分、养分条件。  相似文献   

6.
韦兰英  上官周平 《生态学报》2006,26(11):3740-3748
研究了黄土区不同演替阶段草地植被细根垂直分布特征与土壤环境的关系,结果表明不同演替阶段草地植被细根生物量、根长密度、表面积、直径和比根长均具有明显的垂直分布特征。细根生物量、根长密度和细根表面积一般随土层加深而逐渐减少,且集中分布于0-40cm土层;随着演替的进行,除20a弃耕地外,0—80cm土层细根生物量、根长密度和细根表面积逐渐增加;除25a弃耕地外,细根直径随演替进行逐渐减小。0~100cm土层土壤含水量随演替进行而增加,不同演替阶段深层土壤水分较表层稳定。土壤容重的变化趋势为9〈4〈15〈20〈25a弃耕地,根系对表层土壤水分和容重的影响较大,而对深层土壤水分与容重影响较少。不同演替阶段细根各参数和土壤水分、容重差异均达到显著水平。各弃耕地细根参数之间,细根参数和土壤环境因子之间存在不同程度的相关关系,土壤含水量在草本植被的不同演替阶段均是影响其细根垂直分布的关键因素。土壤容重在演替早期对草本植被根系的影响较小,随着演替进行其影响作用进一步增强。  相似文献   

7.
毛乌素沙地南缘沙漠化临界区域土壤水分和植被空间格局   总被引:4,自引:0,他引:4  
应用地统计学和经典统计学方法,对毛乌素沙地南缘沙漠化临界区域土壤水分和植被特征的空间分布格局及其相互关系进行研究,结果表明: 0-5 cm和5-10 cm土壤水分符合指数模型,10-15 cm土壤水分和植物群落物种数、植被盖度、植被密度都符合球状模型;0-5 cm土壤水分、植物群落物种数和植被盖度都具有强空间自相关性,5-10 cm、10-15 cm土壤水分和植被密度都具有中等程度的空间自相关性;从牛枝子群落到黑沙蒿群落,各层土壤水分与植物群落物种数之间具有相似的空间格局,都呈先升高后降低的变化趋势,而植被盖度和植被密度呈逐渐减小的变化趋势;0-5 cm土壤水分与植物群落物种数之间具有显著的正相关,是制约植被物种空间分布的关键因素。  相似文献   

8.
土壤水分是重要的水文参数,也是水循环、气候变化等研究的基本要素。本研究利用中国气象局新一代自动土壤水分观测网逐小时土壤水分观测数据,分析2013—2019年间华北地区土壤水分的时空分布和变化趋势及其与降水和温度的关系。结果表明: 研究期间,华北地区10~100 cm土层土壤水分整体呈波动下降趋势,尤以100 cm根区土壤水分减少最明显。华北地区不同深度土壤水分空间分布均呈东南高、西北低的特征。10 cm土层63%面积缺墒。不同深度土壤水分随季节变化明显,夏季各层土壤水分达到最高,墒情适宜,春季土壤水分处于低值。土壤水分与降水和温度均具有较好的响应关系,随着土壤深度的增加相关性逐渐减弱,且土壤水分对降水的响应比对气温的响应更显著。  相似文献   

9.
黄河口湿地典型植物群落土壤水、盐入渗过程模拟   总被引:1,自引:0,他引:1  
为探究积水条件、盐分条件对黄河三角洲河口湿地土壤水盐运移规律的影响,本研究采用实验室原位土柱实验,对芦苇、柽柳和盐地碱蓬3种典型河口湿地植被土壤的入渗过程及水盐重分布过程进行观测,并采用Hydrus-1D模型模拟水分入渗及重分布后的土壤剖面含水率、含盐量分布状况。结果表明:积水深度对土壤水分运移影响明显,不同积水深度条件下3种类型土壤的入渗速率均表现为先升高后骤降的变化趋势,并随入渗时间延长而不断衰减并趋于稳定;入渗实验结束后,0~30 cm土层含盐量基本与入渗水含盐量一致,在水盐运移末端(深度100 cm)趋近于土壤原始含盐量;水盐重分布后,剖面各层土壤含水率的差异减小,各层含盐量同入渗实验结束时含盐量相比基本保持不变;Hydrus-1D能很好地模拟土壤水盐入渗速率及土壤剖面的整体变化趋势,研究结果可为河口湿地水盐调控、湿地水文连通修复提供理论依据。  相似文献   

10.
山西太岳山好地方典型植被类型土壤理化特征   总被引:3,自引:0,他引:3  
以山西太岳山好地方林场4种植被类型(草甸、灌丛、华北落叶松人工林、华北落叶松-白桦混交林)0~60 cm土层土壤为研究对象,采取野外定点取样和实验室分析的方法,研究不同植被类型土壤理化性质特征。结果表明:土壤容重和p H值随土层深度的增加而增加;土壤含水量随土层深度增加而减小;不同植被类型间,土壤含水量大小排序为华北落叶松-白桦混交林草甸华北落叶松人工林灌丛;容重为灌丛华北落叶松-白桦混交林华北落叶松人工林草甸;p H值变化规律为华北落叶松-白桦混交林华北落叶松人工林灌丛草甸;土壤有机质、全氮含量随土层深度增加而减小,各土层之间差异显著;全磷和全钾含量各土层间差异不显著;不同植被类型间,草甸土壤有机质、全氮、全磷含量都高于其他3种植被类型,灌丛土壤全钾含量高于其他3种植被类型;土壤有机质与全氮呈极显著正相关;容重与含水量、有机质、全氮呈极显著负相关;p H值与有机质、全氮、全磷呈极显著负相关。  相似文献   

11.
科尔沁沙地植物群落圆环状分布成因地统计学分析   总被引:11,自引:3,他引:8  
调查发现,在科尔沁沙地中部部分梁窝状沙丘的丘顶、丘坡和丘间地,植物群落依生境梯度而分布,呈典型圆环状分布格局.沙层水分状况分析表明,同一沙丘不同部位的沙层含水量为丘顶低于丘坡地,且二者均低于丘间地.地统计学分析表明,无论是流动沙丘还是固定沙丘,从丘顶、丘坡到丘间地,沙层含水量的空间异质性呈规律性的变化,块金值与基台值之比逐渐减小,变程逐渐减小,分维数逐渐增大,表明随机部分引起的空间异质性逐渐降低,而由空间自相关部分引起的空间异质性逐渐增高.因此,沙丘不同部位沙层含水量及其空间异质性的有规律变化是科尔沁沙地中部部分梁窝状沙丘植物群落呈圆环状分布格局的一个重要原因.  相似文献   

12.
土壤呼吸作用时空动态变化及其影响机制研究与展望   总被引:12,自引:0,他引:12       下载免费PDF全文
测定不同陆地生态系统土壤呼吸速率及其时空波动, 阐明其影响因子, 对于全球碳素平衡预算和全球变化潜在效应估计是最为基本的数据。然而, 有关土壤呼吸作用变异性及其影响因素的知识仍存在局限性, 一些关键的过程和机制还有待阐明。该文综述了近年来土壤呼吸作用时空动态规律、影响机制和模拟方面的研究进展, 指出环境因子和生物因子共同驱动着土壤呼吸作用的时间动态变化; 土壤呼吸作用在不同时间尺度上还具有明显的空间异质性, 这主要是植被覆盖、根系分布、主要的环境因素和土壤特性空间分布的异质性造成的。生物因子是影响土壤呼吸作用时空动态变化的主要因素之一。然而, 目前所使用的土壤呼吸作用经验模型通常利用土壤温度、土壤湿度或者两者的交互作用模拟土壤呼吸作用动态变化, 但没有考虑生物因子的影响, 这可能会导致明显的偏差和错误。因此, 为了精确估算土壤呼吸作用, 必须解决土壤呼吸作用小尺度上的空间变异性; 加强不同时间尺度上生物要素对土壤呼吸作用动态变化的影响研究; 除了气候因子外, 土壤呼吸作用经验模型应该纳入生物因子等其它影响因素作为变量, 用以提高模型模拟的正确性和准确性。  相似文献   

13.
随着流动沙丘的不断固定,不同地形部位的土壤机械组成、有机碳(SOC)和全氮(TN)含量的变化存在差异。为了探明固定沙丘的土壤机械组成与土壤养分空间变异特征,本研究以宁夏黄沙古渡固定沙丘为对象,分析了固定沙丘不同部位、不同土层的风沙土机械组成、SOC和TN特征。结果表明: 各土层土壤机械组成均以中沙和细沙为主。SOC和TN有明显的表聚作用,SOC和TN含量最大值分别为5.781和0.412 g·kg-1,分布在丘间地,脊线和背风坡含量最少。随着土层深度的增加,背风坡和迎风坡的SOC含量逐渐减少,丘间地的SOC含量先减少后增加。SOC和TN在小尺度上均表现出明显的空间异质性;SOC和TN与粉沙和极细沙含量呈显著正相关,与中沙和粗沙含量呈显著负相关。土壤机械组成对SOC和TN含量有明显影响,而且SOC和TN含量随着细颗粒含量的增加而增加,表明土壤细颗粒对有机质的吸附和积累起着重要作用。  相似文献   

14.

Background

Plants are affected by several aspects of the soil, which have the potential to exert cascading effects on the performance of herbivorous insects. The effects of biotic and abiotic soil characteristics have however mostly been investigated in isolation, leaving their relative importance largely unexplored. Such is the case for the dune grass Ammophila, whose decline under decreasing sand accretion is argued to be caused by either biotic or abiotic soil properties.

Methodology/Principal Findings

By manipulating dune soils from three different regions, we decoupled the contributions of region, the abiotic and biotic soil component to the variation in characteristics of Ammophila arenaria seedlings and Schizaphis rufula aphid populations. Root mass fraction and total dry biomass of plants were affected by soil biota, although the latter effect was not consistent across regions. None of the measured plant properties were significantly affected by the abiotic soil component. Aphid population characteristics all differed between regions, irrespective of whether soil biota were present or absent. Hence these effects were due to differences in abiotic soil properties between regions. Although several chemical properties of the soil mixtures were measured, none of these were consistent with results for plant or aphid traits.

Conclusions/Significance

Plants were affected more strongly by soil biota than by abiotic soil properties, whereas the opposite was true for aphids. Our results thus demonstrate that the relative importance of the abiotic and biotic component of soils can differ for plants and their herbivores. The fact that not all effects of soil properties could be detected across regions moreover emphasizes the need for spatial replication in order to make sound conclusions about the generality of aboveground-belowground interactions.  相似文献   

15.
融雪水土壤入渗量是干旱区沙漠重要的水平衡收入项.2012-2013、2013-2014年两个冬季对古尔班通古特沙漠南缘沙丘西坡、东坡和丘间地降雪前和融雪后的土壤含水率进行监测,根据水量平衡原理计算了沙丘西坡、东坡、丘间地和景观尺度上的融雪水土壤入渗量,并与采用筒测法的实测结果进行比较.结果表明: 降雪前土壤含水率较低,未冻层非饱和土壤水对地表冻结层土壤水分的补给可忽略不计;融雪入渗水是表层土壤获得补给的主要水源;冻结期潜水既没有蒸发,积雪融化后潜水也没有获得补给;研究区西坡、东坡、丘间地和景观尺度上的融雪水土壤入渗量分别为20~43、27~43、32~45和26~45 mm.
  相似文献   

16.
Coastal sand dunes are dynamic ecosystems characterized by strong abiotic gradients from the seashore inland. Due to significant differences in the abiotic parameters in such an environment, there is great interest in biotic adaptation in these habitats. The aim of the present study, which was conducted in the northern Sharon sand-dune area of Israel, was to illustrate the spatial changes of a soil microarthropod community along a gradient from the seashore inland. Soil samples were collected from the 0–10 cm depth at five locations at different distances, from the seashore inland. Samples were taken from the bare open spaces during the wet winter and dry summer seasons. The soil microarthropod community exhibited dependence both on seasonality and sampling location across the gradient. The community was more abundant during the wet winter seasons, with an increasing trend from the shore inland, while during the dry summers, such a trend was not observed and community density was lower. The dominant groups within soil Acari were Prostigmata and Endeostigmata, groups known to have many representatives with adaptation to xeric or psammic environments. In addition, mite diversity tended to be higher at the more distant locations from the seashore, and lower at the closer locations, a trend that appeared only during the wet winters. This study demonstrated the heterogeneity of a soil microarthropod community in a coastal dune field in a Mediterranean ecosystem, indicating that the gradient abiotic parameters also affect the abundance and composition of a soil microarthropod community in sand dunes.  相似文献   

17.
Aims Deserts are one of the ecosystems most sensitive to global climate change. However, there are few studies examining how changing abiotic and biotic factors under climate change will affect plant species diversity in the temperate deserts of Asia. This study aimed to: (i) characterize species distributions and diversity patterns in an Asian temperate desert; and (ii) to quantify the effects of spatial and environment variables on plant species diversity.Methods We surveyed 61 sites to examine the relationship between plant species diversity and several spatial/environmental variables in the Gurbantunggut Desert. Spatial and environmental variables were used to predict plant species diversity in separate multiple regression and ordination models. Variation in species responses to spatial and environmental conditions was partitioned by combining these variables in a redundancy analysis (RDA) and by creating multivariate regression trees (MRT).Important findings We found 92 plant species across the 61 sites. Elevation and geographic location were the dominant environmental factors underlying variation in site species richness. A RDA indicated that 93% of the variance in the species–environment relationships was explained by altitude, latitude, longitude, precipitation and slope position. Precipitation and topographic heterogeneity, through their effects on water availability, were more important than soil chemistry in determining the distribution of species. MRT analyses categorized communities into four groups based on latitude, soil pH and elevation, explaining 42.3% of the standardized species variance. Soil pH strongly influenced community composition within homogeneous geographic areas. Our findings suggest that precipitation and topographic heterogeneity, rather than edaphic heterogeneity, are more closely correlated to the number of species and their distributions in the temperate desert.  相似文献   

18.
Abstract

Coastal dune environments are selective ecosystems characterized by a close interaction between abiotic and biotic factors in a dynamic balance. The present study focused on the psammophilous geosigmetum, the most affected by the interactions between physical processes and biological and anthropic processes. The main purpose was to study the relationships between the abiotic properties of the dune and the presence of the various plant communities, combining morpho-sedimentological, geopedological, and geobotanical data. The study was carried out on the well-preserved dune system of Is Arenas (CW Sardinia) which is one of the most important in the Mediterranean area. The analyses revealed differences at the morphodynamic, sedimentological, and geopedological levels. The micro-topography of the dunes affects the values of the main abiotic variables, and determines the presence of various microhabitats of great heterogeneity. This work shows that thedata on the geomorphological dynamics and the chemical–physical processes, correlated with the geobotanical analyses, might make it possible to identify the ecosystemic processes, and thereby plan adequate management and conservation strategies for this coastal dune system.  相似文献   

19.
Quantitative methods were used to examine soil properties and their spatial heterogeneity in a 0-year fenced mobile dune (MD0), an 11-year fenced mobile dune (MD11) and a 20-year fenced mobile dune (MD20) in Horqin Sandy Land, Northern China. The objective of the study was to assess the effect of vegetation restoration on heterogeneity of soil properties in sand dunes and to provide a concept model to describe the relationship between vegetation succession and spatial heterogeneity variation of soil properties in the dunes. The results showed that the average values of vegetation cover, species number and diversity, soil organic carbon (C), total nitrogen (N), and electrical conductivity (EC) increased with the increase in fenced age of mobile dunes, while soil water content (0–20 cm) showed the reverse trend. Geostatistical analysis revealed that the spatial heterogeneity of soil organic C, total N, EC, very fine sand content, and soil water content (0–20 cm) increased from MD0 to MD11 with succession from sand pioneer plant to shrub species then decreased from MD11 to MD20 due to continuous development of herbaceous plants. Canonical correspondence analysis (CCA) showed that there was a relatively high correspondence between vegetation and soil factors, suggesting that the major gradients relating soil organic C, total N, EC, pH, slope, very fine sand content, and soil water content are the main factors for the distribution of dune plants and account for 68.1% of the species-environment relationship among the three sites. In addition, the distribution of the sand pioneer plant was positively related to the relative height of the sampling site and soil water content, and that of most herbaceous plants were determined by soil organic C, total N, EC, pH, and very fine sand content in mobile dunes. The conceptual model of relationship between vegetation succession and spatial heterogeneity of soil properties in mobile dunes suggests spatial patterns of soil properties are most strongly related to plant-induced heterogeneity in dune ecosystems prone to wind erosion, and conversely, the magnitude and degree of spatial heterogeneity in soil properties can influence the plant distribution pattern and vegetation succession of mobile dunes.  相似文献   

20.
In this paper, chlorophytes collected from 253 biological soil crust samples in Gurbantunggut Desert in Xinjiang Autonomous Region, China were studied by field investigation and microscopical observation in lab. The flora composition, ecological distribution of chlorophytes in the desert and dynamic changes of species composition of chlorophytes in different developing stages of biological soil crusts are preliminarily analyzed. Results showed that there were 26 species belonging to 14 genera and 10 families, in which unicellular chlorophytes were dominant. There existed some differences in distribution of varied sand dune positions. The taxa of chlorophytes in leeward of sand dunes are most abundant, but the taxa in windward, interdune and the top of sand dunes reduced gradually. Chlorophytes were mainly distributed within the crust and the taxa of chlorophytes decrease obviously under the crust. In the devel-oping stages of the biological soil crust, species diversity of chlorophytes changed a little, but species composition pre-sented some differences. Chlorococcum humicola, Chlorella vulgaris, Chlamydomonas ovalis and Chlamydomonas sp. nearly existed in all developing stages of biological crusts. In several former stages of the biological soil crust there were spherical chlorophytes and filamentous ones. When moss crust formed, filamentous chlorophytes disappeared, such as Microspora and Ulothrix.  相似文献   

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