首页 | 本学科首页   官方微博 | 高级检索  
相似文献
 共查询到20条相似文献,搜索用时 140 毫秒
1.
蔡晓布  周进 《应用生态学报》2009,20(11):2639-2645
利用网格采样法研究了藏北退化高寒草原土壤有机碳变化及与土壤物理性质的关系.结果表明:0~10和11~20 cm土层有机碳含量、有机碳密度及其土层差异均为:轻度退化草地>正常草地>中度退化草地>严重退化草地;有机碳含量、有机碳密度年变化速率则呈相反趋势,且表层土壤有机碳变幅均明显高于其下层土壤.正常草地、轻度退化草地0~10 cm土层有机碳年累积量为0.018和0.003 g·kg.-1,分别为11~20 cm土层年累积量的6.0和2.0倍;中度、严重退化草地0~10 cm土层年损失量达0.150和0.231 g·kg-1,分别为11~20 cm土层年损失量的2.3和2.2倍.中度、严重退化草地有机碳年损失总量为正常草地和轻度退化草地年累积总量的38倍,有机碳年损失总量达7.87×105 t C,且具有较大的潜在退化态势.土壤有机碳与5.0~1.0、1.0~0.5和0.5~0.25 mm团聚体含量,土壤有机碳与土壤容重、土壤含水量间均呈极显著或显著正相关.  相似文献   

2.
阿拉善主要草地类型土壤有机碳特征及其影响因素   总被引:56,自引:2,他引:54  
以阿拉善左旗境内贺兰山中段 (西坡 )及其山前地带主要草地类型为研究对象 ,分析了不同草地类型土壤有机碳 (SOC)的分布特征及其与气候因子、植被特征和土壤特性的关系。结果表明 :土壤有机碳含量随海拔高度的降低而逐渐降低 ,其垂直分异规律是 :山地荒漠草原沿土壤剖面依次降低 ,高山草甸、草原化荒漠和沙砾质草原化荒漠 0~ 2 0 cm与 2 0~ 40 cm土层差异不显著 ,但高于 40~ 60 cm土层。 0~ 2 0 cm和 2 0~ 40 cm土层土壤有机碳含量与年降水量、植被盖度、草地生产力、土壤含水量和<0 .0 5mm颗粒含量呈极显著正相关 ,与年均温、土壤 p H值呈极显著负相关 (P<0 .0 0 1)。偏相关分析显示 ,影响 0~ 2 0 cm土层有机碳含量最主要的因素是植被盖度、草地生产力和年降水量 ,而影响 2 0~ 40 cm土层有机碳含量的最主要因素是草地生产力和植被盖度。放牧与围封对荒漠草地土壤有机碳含量有显著影响 ,在重度放牧下 0~ 2 0 cm土壤有机碳含量明显低于轻、中度放牧处理 (P<0 .0 5) ;重度退化草地围封 3 a后土壤有机碳含量比自由放牧草地显著增加。研究区沙砾质草原化荒漠区 0~ 2 0 cm土层土壤有机碳含量在 15a持续过度放牧后下降了 2 5.2 %。  相似文献   

3.
内蒙古锡林郭勒克氏针茅退化草原土壤种子库特征   总被引:6,自引:3,他引:3  
仝川  冯秀  仲延凯 《生态学报》2009,29(9):4710-4719
以内蒙古锡林郭勒地区克氏针茅(Stipa krylovii)草原不同退化等级群落为对象,研究克氏针茅退化草原可萌发土壤种子库特征.结果表明,随着草原退化程度的增加,不论是土壤总种子库还是持久土壤种子库,组成和密度均明显下降, 重度和极度退化草原土壤总种子库密度下降至仅为轻度退化草原的46.8%和11.1%.代表土壤总种子库的4月份取样, 轻度、中度、重度和极度退化草原各样地0~9 cm土壤种子库密度分别为2800、1278、1311和311粒·m-2;代表持久土壤种子库的6月底取样,4个样地土壤种子库密度分别为1667、967、334和167粒·m-2.多数植物土壤种子库主要分布在0~6 cm土层,各样地种子库密度随土壤深度的增加而减少,轻度、中度、重度和极度退化草原4月份0~6 cm土层种子库分别占总种子库(0~9 cm)的98.4、96.5、95.8 和85.7%.不同退化等级草原地上植被与土壤种子库的Sorensen相似性指数介于0.24~0.48.  相似文献   

4.
基于稳定同位素分析不同退化程度小叶杨水分来源   总被引:1,自引:0,他引:1  
水分是干旱地区植物生长的关键限制因子。小叶杨是河北省张北县典型的防护林树种,发挥了重要的生态屏障作用。为了揭示近年来该地区小叶杨出现大面积衰退的原因和机制,本研究利用稳定同位素技术,结合图解法和多元线性混合模型,分析了张北县4种不同退化程度(未退化、轻度退化、中度退化和重度退化)小叶杨在不同时期的水分来源和水分利用策略。结果表明: 生长前期(5—6月),不同退化程度小叶杨水分来源均比较单一,主要利用0~40 cm层的土壤水,未退化、轻度退化、中度退化和重度退化的利用率分别为34.2%、50.1%、41.6%和55.7%。生长中期(7—8月),未退化小叶杨吸收利用200~280 cm和280~400 cm层的土壤水,利用率分别为20.2%和30.9%;轻度退化小叶杨利用200~280和280~400 cm层的土壤水,利用率分别为33.2%和27.9%;中度退化小叶杨吸收利用0~40和40~120 cm层的土壤水,利用率分别为30%和26.9%;重度退化小叶杨对0~40 cm层土壤水的利用率达到55.4%。生长后期(9—10月),未退化小叶杨水分来源向中上层土壤水转移,主要利用0~40、40~80和80~120 cm层的土壤水,利用率分别为23.3%、17.2%和16.5%;轻度退化小叶杨利用0~40 cm层的土壤水,利用率为35.7%,对中层80~200 cm层土壤水的利用率也较高,为20.6%;中度和重度退化小叶杨主要利用0~40 cm层的土壤水,利用率分别为43.7%和51.8%。随着退化程度加重,小叶杨的主要水分来源从深层土壤水逐渐向表层土壤水转移。  相似文献   

5.
皇甫川流域退化草地和恢复草地土壤微生物生物量的研究   总被引:11,自引:3,他引:8  
土壤微生物生物量常被作为植物所需营养元素的转化因子和资源库,是表明土壤发育状况和生化强度的一项主要指标。在内蒙古伊盟准格尔旗皇甫川流域,对退化草地和恢复草地土壤微生物生物量进行了研究。结果表明,土壤微生物生物量的垂直分布依次为0~10>10~20>20~30>30~40>40~50cm,随土层加深而递减;0~10cm土层细菌和丝状微生物生物量超过其他土层;恢复草地各土层中的土壤微生物生物量均高于退化草地;恢复草地的土壤微生物生物量与土壤肥力密切相关。  相似文献   

6.
黄土高原半湿润区苜蓿草地土壤干层形成及水分恢复   总被引:6,自引:0,他引:6  
研究了黄土高原地区不同生长年限苜蓿草地0~1000 cm土层土壤水分消耗规律.结果表明,荒地与苜蓿草地土壤干层出现的区域及发生的程度不同:荒地在80~100 cm土层深度,出现轻度干层;生长年限低于8a(含8a)的苜蓿草地,在250~350 cm土层出现轻度干层,生长年限超过8a,出现中度干层,干层范围延至500 cm土层以下.苜蓿生长超过18a,0~200 cm上层土壤水分开始恢复,年均恢复1.49%;但在200~1000 cm土壤深层,18、26年生苜蓿草地土壤含水量仅为10.20%,深层土壤通体干化,水分难以恢复.  相似文献   

7.
采用Biolog等方法,分析不同退化程度(未退化ND、轻度退化LD、中度退化MD、重度退化SD和黑土滩ED)高寒草甸0~10和10~20 cm土层土壤微生物量碳氮、碳代谢指纹和酶活性.结果表明: 所有草甸土壤微生物量、多样性指数和蔗糖酶活性在0~10 cm土层均显著高于10~20 cm土层,0~10 cm土层脲酶活性则显著低于10~20 cm土层.土壤微生物量C/N随草地退化程度加重显著降低.0~10 cm土层,ND和LD微生物量碳、氮均显著高于其他草地,MD、SD和ED微生物量碳无显著差异,MD微生物量氮显著低于其他草地;平均颜色变化率(AWCD)和McIntosh指数(U)随草地退化程度加重曲线下降,ND与MD间差异显著,其他草地间无显著差异;Shannon指数(H)和Simpson指数(D)在不同草地间均无显著差异;MD和SD脲酶活性最高,ED磷酸酶和蔗糖酶活性最低,与其他草地相比均差异显著.10~20 cm土层,ND和LD微生物量碳显著高于其他草地,MD、SD和ED间无显著差异,LD和ED微生物量氮显著高于其他草地,ND和SD间差异不显著;MD碳代谢指数最低,与LD和SD相比差异显著,ND和LD的AWCD和U指数均显著高于ED,H指数和D指数在ND、LD、SD和ED间差异不显著;ND和MD脲酶活性显著高于其他草地,LD、SD和ED间无显著差异;MD磷酸酶活性最高,与LD、SD和ED相比差异显著;MD蔗糖酶活性显著低于其他草地,ND、LD、SD和ED间差异不显著.不同退化程度高寒草地的地下生物量均与微生物量、碳代谢指数和磷酸酶呈显著正相关;脲酶与微生物量氮、H指数和D指数呈显著负相关.  相似文献   

8.
草地早熟禾草坪土壤水分动态与根系生长分布   总被引:13,自引:0,他引:13  
孙强  韩建国  刘帅  周莉华 《生态学报》2005,25(6):1306-1311
对草地早熟禾草坪土壤水分动态和根系生长发育状况进行研究,结果发现不同土壤层次水分变化有所不同,0~15cm变化最大,15~30cm次之,30cm以下土层水分变化不大;草地早熟禾的根系生长呈现双峰曲线模式,5月中旬和8月中下旬总根量处于峰值;其主体根系主要分布在0~30cm土层内,占总根量的85%以上;根重密度随土层深度呈指数衰减关系,0~30cm土层下降幅度较大,30cm以下土层根重密度相差不大;在0~30cm土层内不同层次根量占总根量的比例在不同时期亦有差异,春秋季节10~20cm和20~30cm土层内根量比例较大,说明此时期主体根系分布在较深的土层;综合分析认为草地早熟禾草坪主要利用土壤浅层水分,在降雨较少的春秋季节,根系较深,适宜深层灌溉,在降雨频繁的夏季,根系较浅,适宜浅层灌溉。  相似文献   

9.
苏德毕力格  萨仁  周禾  王培 《生态学报》2001,21(7):1104-1108
从种子库,幼苗和种子雨等方面对亚热带山地草地退化系列上5种植物的种群更新进行了研究,结果表明:(1)引入种多年生黑麦草(Lolium perenne)和白三叶(Trifolium repens)种群在轻度和中度退化条件下能够正常更新,但不能忍受草地进一步的退化;(2)本地种对草地退化的胁迫表现出较强的承受能力。簇生卷耳(Cerastium caespitosum)、箭叶蓼(Polygonum sagittatum)和华蒲公英(Taraxacum sinicum)的种群更新分别在中度、重度和极度退化草地上处于最佳状态;(3)若要防治草地退化,就应当地引入种的种群更新受到抑制时采取有效措施。  相似文献   

10.
黄河源区退化高寒草地植物种间联结性分析   总被引:4,自引:0,他引:4  
应用方差检验和2×2列联表方法,对青藏高原黄河源区轻度退化、中度退化和重度退化的高寒草地植物群落物种的种间联结性进行了定量分析.结果表明:黄河源区高寒草地退化明显影响到其植物群落物种间的联结性和关联程度;随着草地退化程度的加剧,群落中主要优势物种的总体种间联结性由显著负相关过渡到无关联,具有相同生活型和水分生态类型的物种则由互生转为竞争的关系;以毒杂草为优势的重度退化高寒草地黑土滩"植物群落的物种间关系随机性较大,物种构成不稳定,它属于一种不稳定的次生植被.  相似文献   

11.
Productivity of semiarid grasslands is primarily limited by seasonal rainfall amount and becomes increasingly limited by nutrient availability under wet conditions. Interactive effects of water and N availability on grassland productivity and parameters related to water use were studied on a grassland site in Inner Mongolia, China, in a 2-factorial experiment with two levels of water (rainfed: 158 mm; irrigated: 839 (N0) and 972 (N1) mm) and N supply (0 or 180 kg N ha?1). RUE was calculated from ANPP and cumulative water supply. Bare soil evaporation (E) was calculated from climatic data and leaf area dynamics, and percolation (D) and transpiration (T) were estimated with HYDRUS-1D. Water-use efficiency (WUE, ANPP / (T + D)) and transpiration efficiency (TE, ANPP / T) were calculated. Resource availability had pronounced effects on the water-use efficiency of semiarid grassland. RUE, WUE, and TE all decreased under irrigated compared to rainfed conditions and were significantly increased with N fertilizer application at both levels of water supply. While the irrigation effect on parameters of water-use efficiency were accordingly reflected in stable carbon isotope signatures, N supply resulted in significantly less negative δ13C-values under rainfed but not irrigated conditions. It is concluded, that spatial or temporal gradients in resource availability have pronounced effects on the water-use efficiency of semiarid grassland. The decrease of water use-efficiency under high water supply was related to differences in TE and not to a relative increase of unproductive water loss. Carbon isotope discrimination was highly correlated with WUE and TE, but can be a poor predictor of RUE.  相似文献   

12.
Water‐limited ecosystems have undergone rapid change as a consequence of changing land use and climate. The consequences of these changes on soil quality and vegetation dynamics have been documented in different regions of the world. In contrast, their effects on soil water, the most limiting resource in these environments, have received less attention, although in recent years increasing efforts have been made to relate grazing, soil water and vegetation functioning. In this paper, we present the results of field observations of plant phenology and soil water content carried out during two successive years at four sites along a degradation gradient caused by grazing in the Patagonian Monte, Argentina. We also developed a simplified soil water balance model to evaluate how changes in plant cover could affect water balance. Our field observations showed that the soil water content in the soil layer where roots of grasses are abundant (0–25 cm) was higher and the growing cycles were longer in degraded than in preserved sites. Similarly, our modelling approach showed that the deep soil (depth > 10 cm) was wetter in the degraded than in the preserved situation. Simulation also suggested a switch from transpiration to a direct evaporation dominance of water losses with degradation. Although reductions in plant cover related to grazing degradation were associated with a decrease in annual transpiration, the simulated soil water loss by transpiration was higher during summer in the degraded than in the well preserved situation. Thus, our field observations seem to be a consequence of ecohydrological changes causing an accumulation of water in the soil profile during the cold season and its transpiration during summer. In conclusion, our results showed that changes in plant cover caused by grazing disturbance can alter the soil water balance, which in turn can affect vegetation function.  相似文献   

13.
红松阔叶混交林林隙土壤水分分布格局的地统计学分析   总被引:2,自引:0,他引:2  
李猛  段文标  陈立新  魏琳  冯静  王誓强 《生态学报》2012,32(5):1396-1402
以小兴安岭原始红松阔叶混交林林隙为研究对象,采用网格法布点,通过对生长季内林隙各样点土壤含水量的连续观测,利用基本统计学和地统计学的方法分析并揭示了林隙土壤含水量的时空分布格局,旨在为红松阔叶混交林的可持续经营提供基础数据和理论参考。结果表明:林隙土壤含水量不仅存在明显的空间异质性,而且空间异质性的强度、尺度和空间结构组成随时间而改变。浅层土壤水分空间异质性大于深层,林隙0—7.6 cm、0—12 cm和0—20 cm土壤含水量大小顺序均为9月>7月>8月>6月。林隙、郁闭林分和空旷地土壤含水量大小顺序均为0—7.6 cm>0—12 cm>0—20 cm。生长季内6月土壤含水量不同空间样点极差最大,各月变异都属于中等变异程度;基台值和变程大小顺序同样为0—7.6 cm>0—12 cm>0—20 cm;林隙月平均土壤含水量斑块连接度高,形状复杂,0—7.6 cm、0—12 cm和0—20 cm平均土壤含水量最大值均分布在林隙中心及其附近,最小值分布位置不固定;生长季内土壤含水量及其变化程度均为空旷地最大,林隙次之,郁闭林分最小。  相似文献   

14.
Intra‐ and interannual variability of precipitation can lead to major modifications of grassland production and carbon storage capacity. Greater understanding of how climatic variability affects net CO2 exchange [i.e. net ecosystem exchange (NEE)] of grazed grasslands is important to adapt grassland management and reduce risks of carbon losses. Since 2002, we continuously measured NEE (i.e. eddy covariance technique) on an upland grassland site (7 ha), divided in two paddocks grazed by heifers (intensive: 1 LSU ha?1 yr?1, 213 kg N ha?1 yr?1 and extensive: 0.5 LSU ha?1 yr?1, no fertilization). For years with dry and warm growing seasons (i.e. 2003, 2005 and 2008), absolute annual NEE was higher in the intensive paddock compared with the extensive paddock. The opposite was observed during years of ample seasonal rainfall and soil moisture (i.e. 2004, 2006 and 2007). Contrasted management led to two distinct plant communities being different in leaf area index (LAI), soil bulk density and soil water holding capacity. Differences in annual NEEs could thus be assigned to interactions between in carbon and water fluxes during dry and wet growth periods. Dry growth periods led to a reduction in weekly gross primary productivity (GPP) in the extensively managed paddock, whereas the GPP was maintained in the intensive paddock. In turn, during wet growth periods, GPP was similar in both paddocks, whereas N amendment and frequent defoliation significantly increased ecosystem respiration in the intensive paddock, presumably through a higher heterotrophic respiration following on a better C substrate quality and availability (rhizodeposition and senescent fine roots). In the extensive paddock, where plant cover was denser (reducing soil temperature) and less decomposable, C losses through heterotrophic respiration were comparatively smaller under wet conditions. Our results demonstrate that grassland subjected to a moderately intensive management could be more resilient in terms of carbon storage during drought and heat waves, presumably because of a trade‐off between heterotrophic and autotrophic respiration.  相似文献   

15.
祁连山东段高原鼢鼠对高寒草甸危害评价   总被引:1,自引:0,他引:1  
周延山  花立民  楚彬  刘丽  姬程鹏  田永亮 《生态学报》2016,36(18):5922-5930
为了客观评价高原鼢鼠(Myospalax baileyi)对高寒草甸的危害程度,在祁连山东段研究了高原鼢鼠不同种群密度与草地质量之间的关系,共设置了3个高原鼢鼠种群密度梯度,调查了3个危害等级变量(鼠丘数、鼠丘面积和鼠丘产草量)和6个生境变量(草地产草量、总盖度、可食牧草产量、植被组成、土壤水分和土壤紧实度),通过One-Way ANOVA检验法研究这些因子与高原鼢鼠危害程度的关系。结果表明:在设置的3个种群密度梯度下,草地产草量、总盖度、可食牧草产量和鼠丘产草量无显著性差异;草地植物群落结构、新鼠丘面积占调查区面积的比例无显著性差异,除高原鼢鼠采食深度(0—20 cm)外,3个种群密度区土壤紧实度无显著性差异,而0—30 cm处土壤水分存在显著性差异,说明本研究中不同高原鼢鼠种群密度区的草地质量没有显著性差异。此外,研究结果表明调查样地大小与危害评价有着密切关系,在高寒草甸区,单个样方调查面积以0.5 hm~2以上为宜。  相似文献   

16.
Leaves of 407 individuals of Reaumuria soongorica (Pall.) Maxim. collected from the major distribution areas were measured to investigate the distribution characteristics of the stable carbon isotope in this desert plant, as well as correlations between δ13C values and environmental factors. Results showed that δ13C values in R. soongorica ranged from-22.77‰. to-29.85‰. and that the mean δ13C value (-26.52‰)was higher than a previously reported δ13C value for a different desert ecosystem. This indicates that R.soongorica belongs to the C3 photosynthetic pathway and has higher water use efficiency than other species. The correlations between δ13C values and environmental factors demonstrated that the foliar δ13C values in R. soongorica increased significantly with decreasing mean annual precipitation and mean relative humidity, and decreased with decreasing duration of sunshine and evaporation. The spatial distribution trend of δ13C values in R. soongorica was not obvious and there was no significant correlation between the δ13C values and mean annual temperature. We conclude that different distribution trends in δ13C values for R. soongorica were likely caused by stomatal limitation rather than by nutrient-related changes in photosynthetic efficiency and that precipitation played an important role in the wide distribution range of R.soongorica. This pattern of δ13C values for R. soongorica reinforced that it is a super-xerophil in terms of its adaptive strategies to a desert environment.  相似文献   

17.
The distribution pattern and productivity of Maowusu sandland terrestrial ecosystem are greatly affected with the future severe global change, especially global precipitation change. Considering the predicative global precipitation change and the appropriate relevant strategy for the sustainable development of the China dry territory, the authors have investigated the response of water balance to global precipitation change by creating an artificial control of four levels of water supply treating 3 dominant plants in Mauwusu sandland. The results showed that the seasonal changes of water storage and moisture of different sandland layer depths were affected by different water supply treatments and different plants. The water storage of the three plant growing sandlands and the moisture of different sandland layer depths increased as water supply was increased. The moisture of different water supply treatments and plants increased with the increase of sandland layer depth. The water storage and moisture of the same layer depth of Hedysarum mongolicum Turcz. growing sandland were larger than that of Salix psammophila C. Wang et Ch. Y. Yang growing sandland, which were in turn higher than that of Artemisia ordosica Krasch. growing sandland in the same water supply treatment. Water supply significantly affected the seasonal changes of evaporation and transpiration of the three plant growing sandlands. With the increased levels of water supply, viz. 157.5 mm, 315.0 mm, 472.5 mm and 630.0 mm, the total evaporation was 123.66 mm, 258.68 mm, 376.30 mm, 458.57 mm, respectively, and the total transpiration of A. ordosica was 50.80 mm, 68.93 mm, 108.39 mm, 163.36 mm, respectively, and that of S. psammophila , 47.37 mm, 68.17 mm, 93.65 mm, 135.97 mm, respectively, and that of H. mongolicum 46.73 mm, 67.37 mm, 86.07 mm, 109.64 mm, respectively. Evaporation was significantly higher than transpiration in the experiment.  相似文献   

18.
The length of time and form in which disturbances persist in systems depends on the intensity and frequency of disturbance and on the abilities of resident species to recover from such events. In grazed grasslands, trampling by large mammalian herbivores can periodically facilitate weed establishment by exposing patches of bare ground but whether an intense soil disturbance event results in a temporary increase in weed abundance or a persistent weed problem remains unclear. In May 2002, cattle trampling following heavy rain caused severe damage to nine-month old, rotationally grazed, cool-season pastures (Midwest USA). In September 2002, we compared the aboveground composition of paddocks (i.e., fenced pasture sections) that were heavily disturbed to those that received no damage. Relative to undisturbed paddocks, forage species relative cover was 17% lower in disturbed paddocks, and weed species and bare ground relative cover was 61% and 100% higher, respectively. By September 2004, paddock types did not differ in all aboveground community components. However, the abundance and species richness of weed seeds in the soil seed bank averaged respectively 82% and 30% higher in disturbed paddocks between 2003 and 2004. These findings indicate that a spatially extensive, intense soil disturbance event may soon become undetectable in components of aboveground pasture structure but can persist as an augmented weed seed bank. Because of high weed seed bank longevity, disturbances to formerly disturbed pastures would likely result in higher weed recruitment, with more species represented, than in those which lack previous disturbance. Disturbance history may thus be a useful predictor of weed community composition following subsequent disturbance. Based on empirical data supporting this proposition, we recommend that grassland managers explicitly incorporate disturbance history into dynamic management planning and do not rely exclusively on aboveground characters to evaluate the invasion status or colonization potential of an area by undesirable plants. We emphasize that the ecological legacies of past soil disturbance events cannot only influence the contemporary patterns and processes of grasslands, but importantly, affect their compositional trajectories following subsequent perturbation.  相似文献   

19.
渗漏型蒸渗仪对梭梭和柠条蒸腾蒸发的研究   总被引:9,自引:0,他引:9  
利用非称量蒸渗仪对梭梭、柠条的蒸散进行了研究,结果表明:3年生的梭梭的单株蒸散量是515.3mm,3年生柠条的单株蒸散量是499.1mm。供水量和蒸散量之间存在着一定的正相关关系。3年生和2年生梭梭的单株平均蒸腾量分别是105.8mm和202.77mm;3年生和2年生柠条的单株平均蒸腾量分别为120.67mm和128.72mm。在3种供水条件下,柠条的蒸腾量都是梭梭的81%左右。在水分充足的情况下,梭梭和柠条的蒸腾量呈单峰曲线;在土壤水分亏缺的情况下,它们的蒸腾量呈双峰曲线。在干旱胁迫情况下,柠条和梭梭的蒸腾量与土壤含水率之间存在着极显著的线性关系,它们分别是:ET=-33.29+3217.93x(r=0.8643)和ET=-35.63+1674.42x(r=0.8273)。全年的沙面蒸发量是104.6mm-131.6mm,6-9月份的沙面蒸发量占全年沙面蒸发量的76.84%。沙面蒸发呈明显的双峰曲线。在供水条件下,沙面蒸发量随供水量的增加而增大。在无供水条件下,降水量的90.88%用于蒸发,9.12%保留于土壤中。对3年3个不同供水量蒸渗仅实测值进行多因子回归分析,得出沙面蒸发量与环境因子的关系:Ee=-42.5131+730.2497x1+0.7422x2+0.5494x3.其中Ee为月蒸发量,x1为0—40cm沙层月均含水率,x2为月均日辐射强度,x3为某月日平  相似文献   

20.
Leaves of 407 individuals of Reaumuria soongorica (Pall.) Maxim. collected from the major distribution areas were measured to investigate the distribution characteristics of the stable carbon isotope in this desert plant, as well as correlations between δ^13C values and environmental factors. Results showed that δ^13C values in R. soongorica ranged from -22.77‰ to -29.85‰ and that the mean δ^13C value (-26.52‰) was higher than a previously reported δ^13C value for a different desert ecosystem. This indicates that R. soongorica belongs to the C3 photosynthetic pathway and has higher water use efficiency than other species. The correlations between δ^13C values and environmental factors demonstrated that the foliar δ^13C values in R. soongorica increased significantly with decreasing mean annual precipitation and mean relative humidity, and decreased with decreasing duration of sunshine and evaporation. The spatial distribution trend of δ^13C values in R. soongorica was not obvious and there was no significant correlation between the δ^13C values and mean annual temperature. We conclude that different distribution trends in δ^13C values for R. soongorica were likely caused by stomatal limitation rather than by nutrient-related changes in photosynthetic efficiency and that precipitation played an important role in the wide distribution range of R. soongorica. This pattern of δ^13C values for R. soongorica reinforced that it is a super-xerophil in terms of its adaptive strategies to a desert environment.  相似文献   

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