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1.
Enclosure is one of the most widely used management tools for degraded alpine grassland on the northern Tibetan Plateau, but the responses of different types of grassland to enclosure may vary, and research on these responses can provide a scientific basis for improving ecological conservation. This study took one site for each of three grassland types (alpine meadow, alpine steppe and alpine desert) on the northern Tibetan Plateau as examples, and explored the effects of enclosure on plant and soil nutrients by comparing differences in plant community biomass, leaf-soil nutrient content and their stoichiometry between samples from inside and outside the fence. The results showed that enclosure can significantly increase all aboveground biomass in these three grassland types, but it only increased the 10-20 cm underground biomass in the alpine desert. Enclosure also significantly increased the leaf nutrient content of the dominant plants and contents of total nitrogen (N), total potassium (K), and organic carbon (C) in 10-20 cm soil in alpine desert, thus changing the stoichiometry between C, N and P (phosphorus). However, enclosure significantly increased only the N content of dominant plant leaves in alpine steppe, while other nutrients and stoichiometries of both plant leaves and soil did not show significant differences in alpine meadow and alpine steppe. These results suggested that enclosure has differential effects on these three types of alpine grasslands on the northern Tibetan Plateau, and the alpine desert showed the most active ecological conservation in the responses of its soil and plant nutrients.  相似文献   

2.
中国西北干旱区以荒漠生态系统为主体,是中国典型脆弱生态系统。沙埋对该区域植物生存和生长、植被分布和组成以及荒漠生态系统功能和结构有重要影响。以典型荒漠植物梭梭(Haloxylon ammodendron)、柽柳(Tamarix chinensis)、白刺(Nitraria tangutorum)、沙拐枣(Calligonum mongolicum)为研究对象,对比研究了轻度沙埋和非沙埋植物在生理和生长方面的差异,并从土壤盐分、土壤水分、土壤温度等方面探究了造成这种差异的原因。结果表明:轻度沙埋环境下,梭梭、柽柳、白刺、沙拐枣的光合速率普遍高于非沙埋植株,蒸腾速率显著低于非沙埋植株,水分利用效率也均高于非沙埋植株。轻度沙埋梭梭、柽柳、沙拐枣、白刺株高明显低于非沙埋植株,但地径、冠幅、叶面积指数普遍高于非沙埋植株。主要原因是轻度沙埋植物下方土壤黏粒含量、土壤湿度高于非沙埋植物下方,轻度沙埋植物下方土壤温度、含盐量低于非沙埋环境。  相似文献   

3.
The distribution of plant species and relationships between species and soil factors in the east central part of Gurbantunggut Desert was studied to provide more insight into the flora and determine differences in vegetation across various parts of the desert. Two-way Cluster Analysis showed that the vegetation in the area could be divided into three groups, the first group was dominated by the shrub species, Ephedra przewalskii and the grass species, Carex physodes mainly in areas of flat grounds and gentle slopes; the second group was dominated by C. physodes, Artemisia songorica and A. xerophytica mainly on the slope of sand dunes and the third group was dominated by the shrub species, Haloxylon persicum mainly on the top of sand dunes. There was no difference in plant density between Groups 1 and 2 but there was a significant decrease in Group 3. Soil water under vegetation Group 3 was much lower than that in the other two groups at all soil depths. The EC, organic matter, total P and soluble Na, Ca and Mg varied very similarly with soil water. Canonical correspondence analysis(CCA) satisfactorily assessed the species-soil relations in the area. The distribution of plant species was strongly correlated with the soil factors of water content, organic matter, EC and nutrients. The variations in species occurrence explained by the three CCA axes were about 70%, indicating that some explanatory site variables may exist outside our studied parameters. Soil texture is suggested to be included in future studies to improve the explanation of CCA.  相似文献   

4.
张瑞  周晓兵  张元明 《中国沙漠》2019,39(6):151-158
环境和微生物群落的变化会影响凋落物的分解过程。生物土壤结皮是干旱荒漠区地表普遍存在的生物覆盖,对土壤物理化学性质有显著影响,但对于是否影响荒漠植物凋落物分解缺乏深入了解。选择8种在古尔班通古特沙漠广泛分布的荒漠植物(白梭梭Haloxylon persicum、梭梭Haloxylon ammondendron、黑沙蒿Artemisia ordosica、粉苞菊Chondrilla piptocoma、羽毛针禾Aristida pennata、刺沙蓬Salsola ruthenica、紫翅猪毛菜Salsola affinis、钩刺雾冰藜Bassia hyssopifolia),分析生物土壤结皮覆盖对这8种凋落物质量损失率和分解速率的影响。结果表明:生物土壤结皮和植物种对凋落物质量损失率有极显著影响(P<0.01),生物土壤结皮的存在增大了荒漠植物凋落物质量损失率,不同物种的分解率差异显著。8种植物凋落物的质量损失率在结皮覆盖条件下为13.67%~64.56%,去除结皮处理下为13.58%~54.13%。其中,结皮覆盖条件下白梭梭、梭梭、紫翅猪毛菜的质量损失率(46.12%、41.26%、64.56%)显著高于去除结皮处理(35.85%、36.97%、54.13%,P<0.05)。生物土壤结皮的存在缩短了凋落物的半分解和95%分解时间,缩短长度随物种差异而不同,受凋落物的初始全碳和全氮含量调节。荒漠地表生物土壤结皮对植物凋落物分解具有促进作用,且这种作用具有显著的种间差异,地表生物土壤结皮的存在对初始全碳含量较低而全氮含量较高的凋落物促进作用更明显。  相似文献   

5.
基于16S rRNA高通量基因测序技术,对毛乌素沙地小叶锦鸡儿(Caragana microphylla)、柠条锦鸡儿(Caragana korshinskii)根系微域(即根系、根际土、根区土、灌丛间空白土)间的细菌群落多样性和结构差异性进行表征。本研究对各根系微域间细菌群落的Alpha多样性指数进行了单因素方差分析以及基于OTU水平的PCA分析,探究其在根系微域间Alpha和Beta多样性的层级变化,证实了有关植物根系微域生态位分化的报道,并发现锦鸡儿属植物根系微域间细菌群落的多样性和结构组成随着4个微域类型由外及内呈现出显著的层级差异性(P<0.05)。通过对优势细菌群组的结构组成分析,发现锦鸡儿属植物对特定细菌群组具有显著的向根系内筛选富集的作用(P<0.05)。这种植物通过根系微域对特定细菌群组的逐级筛选富集作用,是导致锦鸡儿属植物灌丛下不同生态位间细菌群落结构和组成发生层级变异的主要原因。  相似文献   

6.
围封对退化沙质草地植物群落的影响   总被引:1,自引:1,他引:0  
对科尔沁沙地围封草地和放牧草地群落的种类组成、结构和多样性等特征进行比较研究。结果表明:(1)围封草地盖度、密度、地上生物量、高度均优于放牧草地(P<0.01)。与放牧相比,围封使植被盖度、密度、高度和地上生物量分别提高了237%、429%、77%和218%,植物群落结构得到明显改善。(2)与放牧草地相比,围封草地物种数增加了69%,多年生草本、灌木类种数和重要值均高于放牧草地。放牧草地的优势植物种依次是大果虫实(Corispermum macrocarpum)、狗尾草(Setaria viridis)、差巴嘎蒿(Artemisia halodendron),重要值占72%;而围封草地优势植物种依次是达乌里胡枝子(Lespedeza davurica)、糙隐子草(Cleistogenes squarrosa)、虎尾草(Chloris virgate)和画眉草(Eragrostis pilosa),重要值占57%,大果虫实、狗尾草和差巴嘎蒿逐渐处于群落的次要地位,取而代之的是与其环境条件相匹配的优质豆科和禾本科植物。围封使物种组成多样化,科属组成复杂化,优势物种发生了变化,群落结构和功能得到改善,沙地植被得以恢复。(3)围封草地的Shannon-Wiener指数、Simpson指数、Margalef指数、均匀度指数均大于放牧草地。围封增加了群落的物种多样性,群落的稳定性得以提高。  相似文献   

7.
付华  周志宇  陈善科 《中国沙漠》2001,21(3):265-270
对腾格里沙漠东南缘飞机播种区不同密度白沙蒿(Artemisia sphaerocephala Krasch)人工草地的土壤水分和植物生长状况进行研究。结果表明,白沙蒿密度在5.1~9株·m-2时,整个生长期土壤水分处于严重亏缺状态, 0~100 cm土层水分含量仅为0.55%~0.7%,白沙蒿死亡率高达55%~76.7%;密度在1.9株·m-2时,其土壤水分含量在0.65%~1.01%,白沙蒿死亡率为21.1%;密度在1.25株·m-2时,土壤水分在0.79%~1.48%,白沙蒿无一株死亡,且植株个体生长状况好于密度大样地,并有自繁育苗补偿,这表明研究区种植白沙蒿的适宜密度在1株·m-2左右。裸露沙地0~100 cm土壤含水量为1.3%~2.48%。  相似文献   

8.
河西走廊荒漠绿洲过渡带封育对土壤和植被的影响   总被引:1,自引:1,他引:1  
在河西走廊荒漠绿洲过渡带,封育天然植被是植被群落恢复、防止绿洲沙漠化的有效措施。以流动沙丘作为对照(0年),对封育5年和15年的半固沙和固定沙丘植被群落以及土壤进行调查取样和分析。结果表明:随着封育年限增加,天然固沙植被群落生物多样性增加,灌木层和草本层植物密度、盖度和生物量都显著增加,灌木层盖度从10%增加到40%,草本层以一年生草本植物为主,物种从5种增加到8种,生物量从1 g·m-2增加到13 g·m-2。随着天然植被盖度增加,土壤表层沙土细粒化明显,沙土中黏粉粒含量显著增加,土壤质地由粗质沙粒向细质沙粒转变;随着沙土中黏粉粒成分的增加,沙土有机质、全氮、全磷含量也增加,灌丛下土壤养分含量高于灌丛间,“沃岛效应”明显。同时,在灌丛下表层土壤出现明显的盐分集聚现象,其中SO42-、K+、Na+含量分别增加了6、3、17倍。在降水100 mm左右的荒漠绿洲过渡带,封育可以显著恢复固沙植被群落和提高沙土质地和养分。  相似文献   

9.
放牧及围封是引起沙质草地生态系统变化的重要因素。对科尔沁地区放牧和围封不同年限的沙质草地进行土壤呼吸动态测定与分析,结果表明:(1)植物生长初期土壤呼吸速率日平均值,围封样地的显著大于放牧样地的(p<0.05);植物生长末期土壤呼吸速率日平均值,放牧样地的显著大于围封样地的(p<0.05)。围封17年和围封22年样地的土壤呼吸速率日平均值相比较,7月上旬之前,围封17年样地的较围封22年样地的大,而7月中旬以后,围封22年样地的较围封17年样地的大,且差异均显著(p<0.05)。(2)土壤呼吸速率的季节动态对放牧和围封的响应过程相似,但围封引起的变异相对较小;土壤呼吸速率季节平均值,围封22年样地的显著大于围封17年的(p<0.05)和放牧的(p<0.01),围封17年样地的大于放牧的(p>0.05),故围封可以增强土壤CO2的排放,且在一定的时间内,土壤CO2的排放速率与围封时间正相关。(3)土壤温度和土壤体积含水率可解释土壤呼吸速率的变异从大到小依次为放牧(58%)>围封22年(39%)>围封17年(28%)。  相似文献   

10.
苏培玺 《中国沙漠》2022,42(1):23-33
碳是贯穿自然和社会的首要元素之一,碳循环是自然和社会系统的重要纽带。陆地生态系统的自然固碳途径有2种,一种是植物碳同化,另一种是土壤碳同化,人们一直关注植物的有机固碳,对于土壤的无机固碳重视不够。本文回顾了中国荒漠区固碳能力强的C4木本植物和土壤无机固碳研究进展。通过解剖结构观察、δ13C值和气体交换特征全面分析得出,荒漠植物梭梭(Haloxylon ammodendron)和沙拐枣(Calligonum mongolicum)为典型的C4木本植物,梭梭同化枝有大量的含晶细胞,沙拐枣同化枝有大量的黏液细胞。干旱区荒漠的非生物固碳能力至今缺乏合理解释。通过对戈壁、沙漠和壤质荒漠土壤无机碳密度和碳储量分析,提出了土壤碳同化(soil carbon assimilation)概念,并给出了土壤碳同化途径的3个阶段,解释了土壤无机固碳这一现象;与植物碳同化比较,土壤碳同化是荒漠固碳的主要途径。最后,展望了荒漠C4木本植物和土壤碳同化的研究方向及对中国2060年前实现碳中和目标的可能贡献。  相似文献   

11.
In arid and semi-arid environments, desert vegetation plays an important role in preventing soil erosion by wind and helps maintain the stability of desert and oasis ecosystems. Four types of typical desert vegetation, namely Populus euphratica, Haloxylon ammodendron, Nitraria sibirica, and Halostachs caspica, corresponding to different habitats (i.e., river bank, sand dune, desert, and salt marsh) were chosen as the model vegetation in this research. The δ2H and δ18O for rainwater, soil water, and plant water were applied to identify the water sources and quantify the proportions of different water sources used over the entire plant growth period (from March to October). The results showed that the precipitation δ2H and δ18O in the Ebinur Lake basin varied from -142.5‰ to -0.6‰ and from -20.16‰ to 1.20‰, respectively. The largest δ2H and δ18O values occurred in summer and the smallest in winter. The soil water δ2H and δ18O of the four habitats decreased gradually with increasing depth. The δ2H and δ18O values of water extracted from the stems of the four plants had similar variation trends, that is, the maximum was observed in spring and the minimum in summer. Among the four plants, H. caspica had the highest stable isotopic values in the stem water, followed by N. sibirica, H. ammodendron, and P. euphratica. The water sources and utilization ratios of desert vegetation varied across different growth stages. Throughout the growing period, H. ammodendron mainly used groundwater, whereas the water source proportions used by N. sibirica varied greatly throughout the growing season. In spring, plants mainly relied on surface soil water, with a contribution rate of 80%-94%. However, in summer, the proportion of deep soil water used was 31%-36%; and in autumn, the proportion of middle soil water used was 33%-36%. H. caspica mainly relied on topsoil water in spring and autumn, and the proportion of soil water in the middle layer slightly increased to 20%-36% in summer. P. euphratica mainly used intermediate soil water in spring with a utilization rate of 53%-54%. In summer, groundwater was the main source, with a utilization rate of 72%-88%, and only 2%-5% came from river water, whereas in autumn, the river water utilization rate rose to 11%-21%. The results indicated that there were significant differences in water use sources during the growing period for desert vegetation in arid areas. This research provides a theoretical basis for understanding water use mechanisms, water adaptation strategies, and vegetation restoration and management in arid areas.  相似文献   

12.
垫状植物是高寒地区广泛分布的一类具有特殊形态的植物,被称为高寒生态系统工程师,其在高寒退化草地中的作用如何?本研究以位于西藏当雄念青唐古拉山脉南坡4500m的一处高寒退化草地为例,调查了垫状点地梅覆盖区域内外的物种多样性、土壤养分以及水分的差异。结果表明:垫状点地梅可以显著改善土壤养分,提高幅度大约为16%-48%,其中有机质和总氮(N)分别增加了16.2%和18.9%;局部土壤含水量提高约12%;样方内的物种丰富度(S)、Shannon-Wiener指数(H)和Simpson指数(D)都随着垫状点地梅盖度的增加而呈增加的趋势。垫状点地梅在退化草地中具有显著的改善土壤微环境和提高群落物种多样性的作用,应加强保育以促进高寒退化草地的恢复。  相似文献   

13.
艾比湖流域典型荒漠植被水分利用来源研究   总被引:1,自引:0,他引:1  
郝帅  李发东 《地理学报》2021,76(7):1649-1661
在以风沙和干旱为基本特征的干旱、半干旱生态环境中,荒漠植被在防风固沙及维持荒漠和绿洲生态系统的稳定性方面有重要作用。选取艾比湖流域不同生境(河岸、沙丘、荒漠、盐沼)典型荒漠植被胡杨(Populus euphratica)、梭梭(Haloxylon ammodendron)、白刺(Nitraria sibirica)和盐穗木(Halostachys caspica)为研究对象,运用稳定同位素方法分析降水、土壤水、植株水和地下水同位素组成变化特征,量化4种植被在整个生长期内吸水来源及比例。结果表明:① 艾比湖流域降水δ2H和δ18O值变化范围为-142.5‰~-0.6‰和-20.16‰~1.20‰,表现为夏季最大,冬季最小,春秋季居中的态势。② 4类生境条件下的土壤水δ2H和δ18O值沿剖面总体表现为随着深度增加逐渐减小;不同植株茎水δ2H和δ18O值时间变化趋势基本一致,春季最大,夏季最小,秋季又逐渐增加;不同植株间比较,盐穗木茎水稳定同位素值最大,其余依次为白刺、梭梭和胡杨。③ 荒漠植被在不同生长期吸水来源及利用比例不同,梭梭在整个生长期主要利用地下水;白刺利用水源比例在整个生长季内变化较大,春季主要利用表层土壤水,贡献率为80%~94%,夏季利用深层土壤水的比例为31%~36%,秋季利用中层土壤水的比例达到33%~36%;盐穗木春季和秋季主要利用表层土壤水,夏季中间层土壤水比例略有提升,为20%~36%;胡杨春季主要利用中间层土壤水,利用比例为53%~54%,夏季主要利用地下水,比例达到72%~88%,河水利用比例仅为2%~5%,秋季河水利用比例升高为11%~21%。研究结果显示,干旱区荒漠植被生长季内水分利用来源差异明显。本文为了解干旱区荒漠植被的水分利用机理、水分适应策略,以及植被恢复和管理提供理论依据。  相似文献   

14.
许文文  赵燕翘  王楠  赵洋 《中国沙漠》2022,42(5):204-211
人工生物土壤结皮(Biological Soil Crusts, BSCs)指通过人工培养加速形成的BSCs,可用于沙化土地治理。目前关于人工BSCs的研究多在藻种选择与培养、接种方法优化及野外拓殖等方面,缺少其对荒漠生态系统功能恢复作用的研究。为探讨人工BSCs对草本植物多样性等荒漠生态系统功能恢复的影响,以腾格里沙漠东南缘人工BSCs与流沙为研究对象,对人工BSCs属性以及草本植物的组成、生长和多样性进行了研究。结果表明:人工BSCs样地共有9种草本植物,隶属于4科9属,其中苋科(Amaranthaceae)种数最多,其次为禾本科(Gramineae),优势种为砂蓝刺头(Echinops gmelini)。对照组流沙的草本植物总盖度8%、生物量11.63 g·m-2、丰富度0.71、多度1.00;人工BSCs草本植物的总盖度11%—19%、生物量80.00—179.70 g·m-2、丰富度1.67—3.67、多度4.33—16.78。人工BSCs盖度与草本植物盖度为二次函数关系,而人工BSCs属性与草本植物的盖度、生物量、丰富度、多度均呈显著正相关关系。因此,人工BSCs形成与发育有利于草本植物的生长和多样性的恢复,加快了荒漠生态系统功能恢复。  相似文献   

15.
土壤有机碳矿化是调控土壤碳库时空格局、土壤碳收支平衡和植物养分供应的重要过程,植物残体和凋落物分解释放CO2直接影响着土壤有机碳矿化。研究了不同类型凋落物对腾格里沙漠东南缘建植于1956年的人工固沙植被区土壤有机碳矿化过程及其对水分和温度的响应特征。结果表明:凋落物添加显著促进了有机碳矿化,添加柠条锦鸡儿(Caragana korshinskii)、油蒿(Artemisia ordosica)、小画眉草(Eragrostis minor)凋落物后,CO2-C最大矿化速率分别增大了6.94、5.17、3.46倍,0~5 cm层土壤是5~10 cm层土壤的1.09、1.55、1.22倍;CO2-C累积释放量分别增加了3.73、3.38、2.34倍,0~5 cm层土壤是5~10 cm层土壤的1.17、1.30、1.57倍。凋落物对有机碳矿化的促进作用与温度和水分密切相关,25℃时,CO2-C平均释放速率、最大释放速率、累积碳释放量分别是10℃的2.21、3.60、2.21倍,而含水量10%时,CO2-C平均释放速率、最大释放速率和累积碳释放量分别是含水量5%时的1.25、1.20、1.25倍。相关性分析表明,凋落物碳氮含量、碳氮比、木质素比氮和土壤有机碳以及全氮是影响有机碳矿化的主要因子。凋落添加土壤后潜在可矿化碳表现为柠条锦鸡儿>油蒿>小画眉草>对照。凋落物添加显著促进了有机碳矿化过程及碳周转,植被恢复过程中草本植物凋落物的输入更有利于土壤碳固存,凋落物对土壤碳库的调控作用受土壤理化性质和水热等环境因子的共同作用影响。  相似文献   

16.
王斌  黄刚  马健  李彦 《中国沙漠》2016,36(2):415-422
人类活动和全球气候变化导致的大气N沉降升高和降水格局的变化,将会影响植物-土壤系统的养分循环。研究了5种荒漠优势短命植物在N添加和增加降水处理下,叶片N、P含量变化及叶片N、P的再吸收特征。结果表明:自然情况下,荒漠植物叶N、P含量相对较高(平均值分别为30.1 mg·g-1、3.6 mg·g-1),而叶片N:P很低(6.8~10.5);荒漠短命植物叶N再吸收率(NRE,34.08%)低于P再吸收率(PRE,73.03%);叶片养分含量和再吸收率在物种间的差异极显著;N添加对NREPRE没有显著影响;N添加使尖喙牻牛儿苗(Erodium oxyrrhynchum)、条叶庭荠(Alyssum linifolium)和卷果涩荠(Malcolmia scorpioides)N再吸收度(NRP)减小,使丝叶芥(Leptaleum filifolium)和齿稃草(Schismus arabicus)的NRP增加,对P再吸收度(PRP)影响很小。不同含量N添加处理对NRE没有显著影响,但对PRE具有显著影响;增加降水对NRE具有显著影响,使NRE增加(丝叶芥除外),对PRENRPPRP没有显著影响,但PRENRP增加,PRP变化很小;N添加和增加降水对NRE没有显著交互作用,对PRE具有显著交互作用,但其变化因物种而异。总之,N输入增加和降水格局的变化,显著改变了荒漠短命植物养分状态及再吸收特征,这将对短命植物群落组成及所处荒漠生态系统养分循环产生重要影响。  相似文献   

17.
王楠  许文文  赵燕翘  赵洋 《中国沙漠》2022,42(4):181-189
以人工生物土壤结皮治理沙化土地技术是近年来新兴的绿色环保固沙技术,是目前沙区生态恢复研究的热点。然而,用于人工生物土壤结皮培养的荒漠蓝藻等生物体的产量是限制该技术大规模应用的瓶颈。为阐明荒漠蓝藻规模化培养的生长特征及其限制因子,以分离于腾格里沙漠蓝藻结皮中的优势荒漠蓝藻——鱼腥藻(Anabaena cylindrica)、具鞘微鞘藻(Microcoleus vaginatus)、念珠藻(Nostoc carneum)、席藻(Phormidium sp. NIES-2121)、伪枝藻(Scytonema sp. NIES-4073)、爪哇伪枝藻(Scytonema javanicum)和单歧藻(Tolypothrix tenuis)为研究对象,测定了不同扰动时长下荒漠蓝藻的生长特征和产量,分析了荒漠蓝藻的生长与扰动时长、温度、光照强度、光合有效辐射、pH和电导率对荒漠蓝藻的影响。结果显示:荒漠蓝藻接种后干重先迅速增加后逐渐趋于稳定,而6 h和12 h扰动下干重在培养后期高于3 h扰动;荒漠蓝藻在3、6、12 h扰动下的总质量分别为每培养池(15 m3)0.858、0.940、0.841 kg;在3 h和12 h扰动下荒漠蓝藻干重与日均温度呈显著二项式相关,与日均光照强度和日均光合有效辐射呈显著负相关;荒漠蓝藻总质量与有效积温显著正相关。6 h扰动时长下荒漠蓝藻的总质量最高,且6 h扰动下荒漠蓝藻长势好于3 h,较12 h扰动耗能小。在荒漠蓝藻规模化培养时应将扰动时长设置为6 h,且确保生长期内的有效积温应不低于145 ℃。  相似文献   

18.
王晶  吕昭智  钱翌  宋菁  钟晓英 《中国沙漠》2010,30(6):1367-1373
在群落演替的不同阶段,土壤与植被之间存在不同的互动关系。在新疆准噶尔盆地南缘,选择荒漠-绿洲交错区、沙漠边缘、沙漠腹地典型景观类型取样,监测不同景观条件下土壤水分、土壤有机质、全氮、全磷和植被盖度。结果表明,不同景观植被盖度、土壤水分、土壤养分含量存在显著的差异性(P0.5)。土壤水分含量、植被盖度、土壤养分含量表现为荒漠-绿洲交错区沙漠边缘沙漠腹地的变化趋势;土壤含水量由荒漠-绿洲交错带10.4%递减到沙漠边缘5.8%、沙漠腹地3.5%;植被盖度、土壤养分含量随土壤类型由荒漠灰钙土向风沙土过渡,呈现显著的下降趋势。在相同土壤属性情况下,植被盖度与土壤有机质、土壤全氮之间存在显著的线性正相关关系,表明不同区域内植被在一定程度上影响土壤养分的积累。  相似文献   

19.
Severe erosion, initiated by climatic changes during the Late Pleistocene-Early Holocene period and resultant declines in dust deposition, causes the formation of waterfalls during the winter floods in many wadi systems in the central Negev desert of Israel. In some areas, erosion of the original loess substrate has been complete, so that the underlying rock has been exposed. We examined the effects of this erosion in four wadis in the central Negev desert on soil nutrients, plant community structure and plant quality. We predicted that erosion has caused reductions in soil nutrients. Reductions in soil nutrients should result in reductions in plant cover. Furthermore, reduced soil nutrient availability should cause reductions in the nutrient status and quality of the plants growing there. In addition to the loss of biodiversity that may result, this erosion may result in economic hardship for the Bedouin peoples whose herds depend on these resources. In this study, there were significant negative effects of erosion on soil organic carbon, nitrate nitrogen and water-holding capacity, but not on soil phosphorus, conductivity or pH. Furthermore, there was a negative effect of soil erosion on an overall measure of soil quality derived from a principal components analysis in three of the four wadis we studied. Erosion resulted in an increase in plant species richness and significantly altered plant community structure in eroded areas of wadis. Increased plant species richness in eroded sites is consistent with the intermediate disturbance hypothesis of plant community structure. Plants growing in eroded areas did not differ in two quality indices (nitrogen content and digestibility), although plants typical of eroded areas had significantly lower levels of common digestion inhibitors (total polyphenols) and toxins (alkaloids) than plants from undisturbed sites. These last-mentioned results are contrary to our prediction and are consistent with the notion that plants growing in disturbed (e.g. eroded) sites maximize growth at the expense of investments in defense.  相似文献   

20.
地下水埋深对半干旱区典型植物群落土壤酶活性的影响   总被引:1,自引:0,他引:1  
土壤酶活性是反映土壤功能的关键指标,尤其在受到水分限制的半干旱区,土壤水分驱动的土壤酶活性生态功能的变化可以改变土壤养分周转并影响土壤碳质量。地下水埋深对半干旱区典型植物群落土壤酶活性的影响机制尚不明晰。以半干旱区科尔沁沙质草地两种典型植物群落(白草Pennisetum centrasiaticum和差巴嘎蒿Artemisia halodendron)为研究对象,开展地下水埋深模拟试验,地下水埋深分别为0.5、1.0、2.0 m。分析不同土层的土壤理化性质和土壤酶活性,探讨不同地下水位埋深深度下不同植被类型土壤酶活性的变化特征。结果表明:4种土壤水解酶(酸性磷酸酶(AP)、葡萄糖苷酶(βG)、乙酰氨基葡萄糖苷酶(NAG)和亮氨酸氨基肽酶(LAP))和2种氧化还原酶(过氧化氢酶(CL)和多酚氧化酶(POX))活性均受地下水位埋深和植被类型的影响。随着地下水埋深的增加,白草和差巴嘎蒿群落内土壤酶活性分别呈现不显著性和显著性的变化规律。同时,在各处理中土壤酶活性均随土层深度的增加而减小。地下水埋深对科尔沁沙质草地白草与差巴嘎蒿群落的土壤水解酶和氧化还原酶活性产生不同的影响。未来在半干旱区进行植被恢复时,建议考虑不同植物群落对地下水位变化的适应对策的差异,以更好地恢复半干旱区植物群落的地上地下生态系统功能。  相似文献   

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