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1.
洞庭湖洲滩土壤种子库对土壤水分变化的响应   总被引:1,自引:1,他引:0  
陈明珠  靳朝  雷光春  阳俭  雷霆 《湖泊科学》2020,32(3):745-753
由于三峡大坝及上游水库群的运行,长江中下游水域水文节律随之发生了改变,导致洞庭湖枯水期提前,进而影响洞庭湖洲滩植被及其土壤种子库的分布格局.本研究在洞庭湖4个自然保护区内选取共11个典型洲滩湿地,沿由水到陆方向根据植被类型将洲滩分为泥沙洲滩、泥沙—湖草洲滩过渡带、湖草洲滩、湖草—南荻洲滩过渡带、南荻洲滩5种洲滩类型.通过样带—样方法调查和采样,并结合湿润和水淹两种条件下的土壤种子库萌发实验,分析了土壤水分变化对洲滩种子库萌发特征的影响及土壤种子库与地表植被的关系.结果显示:①土壤含水量沿水到陆方向由泥沙洲滩向南荻洲滩递减;②不同类型洲滩土壤种子库密度没有显著差异;③温室萌发实验中,水淹条件下土壤种子库物种丰富度和种子库密度显著降低,东洞庭湖自然保护区土壤种子库物种丰富度和种子库密度较高;④地表植被物种丰富度高于土壤种子库,泥沙洲滩土壤种子库与地表植被物种组成的Jaccard相似性指数最低.此外,虉草(Phalaris arundinacea)、芦苇(Phragmites communis)、南荻(Miscanthus sacchariflorus)等只在地表植被中存在,而陌上菜(Lindernia procumbens)、通泉草(Mazus japonicus)等只在种子库中存在.结果表明,在进行湿地植被恢复时,不能仅依靠种子库移植技术,还要考虑湖区季节性的水位变化以及个别物种的特异性,配合有针对性的水文调控机制及相关的人工措施恢复其原有植被.  相似文献   

2.
近年来,受全球变化及高强度人类活动的影响,洞庭湖湿地群落分布带不断下移,引发了人们对其湿地服务功能下降的担忧.以洞庭湖北洲子洲滩为例,采用野外样带调查和室内分析相结合的方法,对洞庭湖湿地荻-苔草群落交错带植被和环境特征进行研究,以期揭示荻-苔草群落交错带动态变化和影响其变化的关键环境因子.结果表明:土壤含水量随高程增加呈逐渐降低的趋势,土壤总碳、总氮、总磷含量和p H值在样带间差异显著,但土壤电导率和总钾含量在样带间无显著差异.各样带物种丰富度和香农指数随高程增加整体上呈先降低再增加的趋势.荻生物量随高程增加呈逐渐增加的趋势,而苔草生物量呈先增加后减少的趋势.典型相关分析表明,土壤含水量与二者生物量及群落丰富度、多样性间具有很好的相关性,表明土壤含水量是调控该群落交错带植被动态变化的关键环境因子.  相似文献   

3.
周期性水文节律是影响洪泛湖泊洲滩湿地植物群落物种组成与生物多样性的重要驱动力。本研究以鄱阳湖中低滩典型植物群落为研究对象,通过实地样方调查与统计方法分析植物群落的生物多样性格局及其关键环境因子。结果表明:鄱阳湖中低滩代表性群落分别是灰化薹草群落和虉草群落;植物群落的Shannon-Wiener多样性指数均值为1.5,Pielou均匀度指数均值为0.55,生物多样性与物种均匀度偏低。虉草群落的均匀度、多样性指数高于灰化薹草群落,但二者物种丰富度差异不明显。土壤铵态氮、总磷及土壤含水量和高程是影响植物群落结构与生物多样性的关键因子,其中灰化薹草的物种多样性与土壤铵态氮高度相关,而虉草的均匀度则与土壤总磷关系更密切。此外,鄱阳湖中低滩环境下,灰化薹草群落的均匀度随土壤总磷含量的升高呈现U型响应曲线,虉草则是倒U型,这表明,鄱阳湖中低滩环境下,灰化薹草群落和虉草群落生物多样性对单个、同一的环境因子存在不同的适应机制。  相似文献   

4.
湿地植物群落结构及其动态变化特征是反映湿地生态系统健康状况的重要指标,对预测湿地生态系统演变方向和生态恢复至关重要。本文基于融合Landsat和MODIS数据获得的30 m、8 d分辨率的NDVI数据集,结合物候特征构建决策树分类方法,解译了2000 2020年鄱阳湖洪泛湿地植被空间分布格局,分析不同植物群落时空动态特征及转移变化过程。结果表明:遥感时空融合为鄱阳湖湿地植被精细化分类提供了良好的数据基础,基于物候特征的决策树分类方法将研究区解译为水体、泥滩、浮叶植物群落、蓼子草(Polygonum hydropiper)-虉草(Phalaris arundinacea)群落、苔草(Carex cinerascens)群落、芦荻(Phragmites australis-Triarrhena lutarioriparia)群落、蒌蒿(Artemisia selengensis)群落和林地8种景观,总体分类精度达89.36%。从全湖范围来看,湿地植被总面积虽有波动,但整体呈显著增加趋势,其中蓼子草-虉草群落的增加最为明显,而分布最广的苔草群落先增加后有微弱减小,次优势种的芦荻群落面积在30...  相似文献   

5.
火烧作为调控因子,对植物群落结构和生态系统功能具有重要影响,但在湖泊湿地中研究较少.通过野外调查取样与实验室分析,探讨火烧对洞庭湖湿地主要群落类型——荻(Miscanthus sacchariflorus)和苔草(Carex brevicuspis)土壤化学性质的影响.结果表明:火烧后,苔草群落土壤硝态氮含量显著减少64.6%,有机质含量增加26.3%;而荻群落土壤与之相反,硝态氮含量增加186.9%,有机质含量减少22.9%.火烧后,苔草群落的全氮、铵态氮、全碳和全磷含量均显著增加,分别增加了75.4%、36.3%、102.7%和76.9%,而荻群落土壤与对照组间无显著差异.总体上,火烧对荻群落土壤养分影响不大,可作为芦苇场的一种管理方式,但火烧促进苔草群落土壤养分释放,有助于苔草群落提前萌芽和生长,并引起牲畜牧食增加.  相似文献   

6.
周静  万荣荣  吴兴华  张宇 《湖泊科学》2020,32(6):1723-1735
基于长序列遥感影像数据、水位日观测数据以及高精度湖盆地形数据,通过提取洞庭湖1987—2016年湿地植被信息,并构建表征水位波动的多周期水情变量,采用逐步回归分析法识别影响洞庭湖湿地植被分布格局的关键水情变量并建立其与植被面积的响应关系.结果表明:1)1987—2016年,洞庭湖湿地典型植被面积在全湖尺度上呈增加趋势,尤其是林地面积,占比由1.77%上升为7.24%.湿地植被格局演变上,东洞庭湖呈现芦苇群落挤占苔草群落空间,并推动湿地植被整体向湖心扩张的趋势.2)影响东洞庭湖苔草和芦苇分布最关键的水情变量是丰水期水位.苔草对丰水期水情存在非线性阈值响应,丰水期平均水位维持在29 m左右,最适宜苔草生长;对于芦苇,丰水期偏枯的水情条件对其生长发育起到促进作用.涨水期和退水期水文过程是影响东洞庭湖湿地植被分布的次为重要的水情因子.涨水期、退水期水位偏低的水情条件对芦苇分布面积的扩张起促进作用.  相似文献   

7.
本文研究了南洞庭湖杨树清理1 a、2 a后的迹地(简称1 a和2 a)和未清理杨树洲滩(ck)涨水前后土壤种子库特征变化及其与地上植被的关系.结果显示:杨树清理迹地土壤种子库共萌发物种23科59属65种,涨水前后土壤种子库密度和种类均表现出1 a > 2 a > ck的趋势,且随着土层加深而递减.退水后ck、1 a、2 a不同土层物种数量和密度较涨水前均有所减少,其中一或二年生物种较涨水前有所减少,多年生物种占比增加;湿生物种与中生物种数目较涨水前均有所减少,而2 a土壤种子库中生物种比例较涨水前有所增加.涨水前后土壤种子库Shannon-Wiener和Simpson指数变化较小,退水后Margalef指数较涨水前有所下降.退水后地上植被物种Shannon-Wiener和Simpson指数高于涨水前地上植被,而Margalef指数有所下降.涨水前Sørensen相似性系数表现为1 a > 2 a > ck的趋势,退水后表现为2 a > 1 a > ck的趋势,涨水前后不同恢复年份土壤种子库和地上植被优势物种所占比例有所差异.研究表明,南洞庭湖杨树清理迹地退水后土壤种子库密度和种类显著下降,随着恢复年份和水淹频次的增加,一或二年生物种迅速减少,多年生物种比例增加,地上植被物种均匀性有所增加,可见水文因子是影响南洞庭湖杨树清理迹地种子库恢复能力的重要因素.  相似文献   

8.
采用野外随机取样与室内萌发实验相结合的方法,对塔克拉玛干沙漠北缘地区土壤种子库的组成、库容、分类、分布特征、季节动态规律以及与地上植被的关系等进行了研究.结果表明:(i)该地区土壤种子库属持续土壤种子库中的类型Ⅳ,物种组成简单,不同季节均维持在9种;物种多样性、均匀度及丰富度指数均较低.(ii)土壤种子库密度较低,平均222±10.79粒·m-2,呈现出一定的季节动态变化,变化范围是132±8.16~303±12.70粒·m-2,11月达到年度最大值303±12.70粒·m-2,8月降至最小值,为132±8.16粒·m-2.这些规律与地上部植物的多样性、均匀度及丰富度指数也有着同样的变化规律.(iii)土壤种子库和地上植被间的相似性系数为0.778,地上植被的各指数中除Margalef丰富度指数低于土壤种子库外,其余均比土壤种子库高.(iv)在土壤剖面的垂直方向上具有明显的分层分布规律,有活力的种子集中分布于0~3 cm土壤层中,占种子库总数的82.4%;分布在6 cm以下的植物种子几乎都未检测到活力.在此基础上对在该地区进行生态重建的可行性进行了讨论.  相似文献   

9.
李宁  冯固  田长彦 《中国科学D辑》2006,36(Z1):110-118
采用野外随机取样与室内萌发实验相结合的方法,对塔克拉玛干沙漠北缘地区土壤种子库的组成、库容、分类、分布特征、季节动态规律以及与地上植被的关系等进行了研究.结果表明(i)该地区土壤种子库属持续土壤种子库中的类型Ⅳ,物种组成简单,不同季节均维持在9种;物种多样性、均匀度及丰富度指数均较低.(ii)土壤种子库密度较低,平均222±10.79粒·m-2,呈现出一定的季节动态变化,变化范围是132±8.16~303±12.70粒·m-2,11月达到年度最大值303±12.70粒·m-2,8月降至最小值,为132±8.16粒·m-2.这些规律与地上部植物的多样性、均匀度及丰富度指数也有着同样的变化规律.(iii)土壤种子库和地上植被间的相似性系数为0.778,地上植被的各指数中除Margalef丰富度指数低于土壤种子库外,其余均比土壤种子库高.(iv)在土壤剖面的垂直方向上具有明显的分层分布规律,有活力的种子集中分布于0~3 cm土壤层中,占种子库总数的82.4%;分布在6 cm以下的植物种子几乎都未检测到活力.在此基础上对在该地区进行生态重建的可行性进行了讨论.  相似文献   

10.
湿地种子库及其植被恢复研究进展   总被引:4,自引:3,他引:1  
近年来,受损湿地生态系统的植被恢复与重建掀起了湿地植被恢复的热潮.种子库是过去植物的"记忆库",是湿地植被自然恢复的重要潜力.本文从湿地种子库的形成、湿地种子库的规模及空间分布格局、湿地种子库的物种组成及种子库与地表植被的关系等几个方面总结了湿地种子库主要研究内容的国内外研究进展,并重点介绍了湿地种子库在湿地植被恢复中的应用研究,尤其是湿地种子库幼苗萌发主要影响因素、湿地种子库种苗建群适宜生境及湿地种子库植被恢复潜力等内容的研究现状.在此基础上,对目前湿地种子库及植被恢复研究存在的问题以及将来可能的研究方向进行分析,以期对湿地种子库植被恢复理论及实践技术的发展提供参考.  相似文献   

11.
In order to understand the potential of revegetation of halophytic community at the north edge of Taklimakan Desert, the species structure, storage capacity, the vertical distribution pattern and seasonal dynamics of soil seed bank and their interrelationship with community structure of above-ground plants were investigated. The results show that (i) 9 species were identified from seed bank in different seasons indicating that plant composition in this area was simple. (ii) The seed density in soil was 222±10.79 grain/m2 on average, and showed a seasonal variation range from 132±8.16 grain/m2 in summer to 303±12.70 grain/m2 in autumn. (iii) The similarity coefficient between soil seed bank and above-ground vegetation was 0.778. (iv) Vertically, seed densities declined with soil depth. 82.4% of total seeds were found in the top 3 cm of soil profile. No active seeds were found in soil profile below 6 cm. It is concluded that the seed bank at the north edge of Taklimakan Desert contains active seeds of all plant species observed on above ground, and is able to supply potential contribution to reconstruction of vegetation.  相似文献   

12.
On the Chinese Loess Plateau, serious slope and gully erosion have caused a decrease in soil water capacity and fertility, which has resulted in vegetation degradation and a reduction in agricultural productivity. Great efforts have been made to restore vegetation to control soil erosion, but the efficiency of artificial revegetation is not satisfactory. Natural revegetation is an alternative. However, while soil seed banks are an essential source for natural revegetation, their composition and distribution on eroded slopes remains unknown. In addition, whether or not seed loss during soil erosion limits vegetation colonization is also unknown. In this work, soil seed bank composition and distribution were studied in three situations. Specifically, three main microsites were selected as sampling plots: fish‐scale pits, as artificial deposited micro‐topography; under tussocks, as trap microsites; and open areas, as eroded areas. Soil samples were collected at depths of 0–2 cm, 2–5 cm and 5–10 cm. The soil seed bank was identified using germination experiments, and a total of 34 species were identified. The dominant species in the soil seed bank were annual/biennial herbs with an average proportion more than 90% and density reaching 19,000 seeds m‐2. The pioneer species Artemisia scoparia was especially abundant. The dominant later successional species, such as Lespedeza davurica, Artemisia giraldii, Artemisia gmelinii, Stipa bungeana and Bothriochloa ischcemum, were present in the soil at a density that ranged from 38 to 1355 seeds m‐2. Compared with the eroded open areas, the fish‐scale pits retained a higher density of seeds, and the tussocks retained a larger number of species. However, there was no serious reduction of the soil seed bank in the erosion areas. The present study indicates that, on these eroded slopes, the soil seed bank is not the key factor limiting the colonization of natural vegetation. Copyright © 2011 John Wiley & Sons, Ltd.  相似文献   

13.
The paper presents a study by taking the soil seed banks and vegetation successions of the forests in Ziwuling Mountain as indicators to analyze the effects of the ages, and the litter layers and soil depths at growing locations in seven types of forest communities on their seed bank formations and soil quality. The results showed that the seed banks at different growing locations in the communities increased in the order of upper slope, middle slope, and lower slope; the seed storages of the seed banks in the different layers of the communities varied, much more higher in the litter layers than in 0–15 cm, and the seed storages of the seed banks in the seven types of forest communities ranked in the increasing order of Pinus tabulaeformis forest, Pinus shenkaneusis forest, Quercus liaotungensis forest, Populus davidiana forest, Betula platyphylla forest, scrub communities, and grassland communities; in the meantime, the seed storage of seed banks peaked in 30–50 years old P. shenkaneusis forest, 30–40 years old P. tabulaeformis forest, 15–30 years old Q. liaotungensis, and P. davidiana and B. platyphylla forests, and 10–15 years old scrub and grassland communities, and the ages of the communities varied with the seed storages of the seed banks in a significantly correlative manner following a fitted exponential equation. In addition, the soil seed banks of the seven types of communities consisted of rich and diverse species with the herbaceous and shrub species greatly outnumbering the arbor species; in general, the coniferous forests were composed of 31 kinds of plants, the deciduous and broadleaf forests consisted of 20–29 plant species, the shrubs contained 27 plant species, and the herbaceous plants numbered 20 plant species; The various species compositions contained only 4–6 arbor species with most being foreign species. In each of the compositions, Bothriochloa ischemum was the grassland plant with the highest occurrence frequency, Sophora viciifolia and Hippophae reamnoides were the shrub plants with the highest occurrence frequencies, and Q. liaotungensis was the arbor plant with the highest occurrence frequency, and they followed by P. shenkaneusis and P. tabulaeformis. These results showed that soil seed banks and forest successions are better indicators for soil quality from natural successions.  相似文献   

14.
三峡库区消落带不同水位高程植被和土壤特征差异   总被引:9,自引:3,他引:6  
王业春  雷波  张晟 《湖泊科学》2012,24(2):206-212
植被和土壤是消落带生态系统的重要组成部分.本研究选择三峡库区腹地忠县境内的3个地质地貌和土地利用历史相似的近自然消落带,对不同水位高程(160 m和170 m)植被群落和土壤特征进行研究,结果表明:一年生草本在消落带植物物种数中比例高达72.4%,而多年生草本仅为27.6%;不同水位高程植被物种组成完全相同,且盖度、生物量、生物多样性指数均没有显著差异;随着水位高程变化,群落优势物种存在一定差异,即160 m高程优势种为多年生狗牙根(Cynodon dactylon),而170 m高程为一年生白酒草(Conyza japonica);土壤容重、含水量、pH、有机质、总氮、总磷在160 m和170 m水位高程间均没有显著差异.因此,160 m和170 m水位高程在淹水时间和深度上的差异造成群落优势种的不同,而对当前植被和土壤特征并没有显著影响.  相似文献   

15.
鄱阳湖典型洲滩湿地土壤含水量和地下水位年内变化特征   总被引:3,自引:0,他引:3  
湿地植被空间分布受多个水分因子共同影响,为了探求鄱阳湖典型洲滩湿地不同植被类型下地下水、土壤水的变化特征,本文选择鄱阳湖吴城湿地保护区内一个长约1.2 km的典型洲滩湿地为实验区,建立了气象-土壤-水文联合观测系统.对观测的气象、水文要素进行分析发现:(1)洲滩湿地地下水位年内呈单峰变化,季节性差异显著,最大埋深可达10 m,出现在1月份,丰水期8月份地下水位最高时可出露地表,且地下水位与湖泊水位变化具有高度一致性;(2)由远湖区高地至近湖区低地,不同植被带中地下水平均埋深变化为藜蒿带(4.76 m)芦苇带(2.87 m)灰化薹草带(1.61 m).地下水埋深小于50 cm的持续时间分别为:藜蒿带27 d、芦苇带112 d、灰化薹草带170 d;(3)土壤平均含水量沿不同植被带梯度变化为:藜蒿带最小(15.9%),芦苇样带(40.7%)和灰化薹草样带(43.7%)较大.土壤含水量年内变幅为:藜蒿带最大(2.5%~55.2%),芦苇带和灰化薹草带相对较小,分别为22.1%~48.1%和28.4%~54.1%;(4)不同植被带土壤含水量季节变化规律不同,藜蒿带土壤含水量年内呈单峰型,仅夏季土壤含水量较高,其余季节均在10%左右,而芦苇带和灰化薹草样带春、夏、秋季均维持较高含水量(42%以上),仅冬季水分含量较低.  相似文献   

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