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81.
To date, little is still known about how alpine species occurring in the Qinghai-Tibetan Plateau (QTP) responded to past climatic oscillations. Here, by using variations of the chloroplast trnT-L, we examined the genetic distribution pattern of 101 individuals of Potentilla glabra, comprising both the interior QTP and the plateau edge. Phylogenetic and network analyses of 31 recovered haplotypes identified three tentative clades (A, B and C). Analysis of molecular variance (AMOVA) revealed that most of the genetic variability was found within populations (0.693), while differentiations between populations were obviously distinct (Fst -- 0.307). Two independent range expansions within clades A and B occurring at approximately 316 and 201 thousand years ago (kya) were recovered from the hierarchical mismatch analysis, and these two expansions were also confirmed by Fu's Fs values and 'g' tests. However, distant distributions of clade C and private haplotypes from clades A and B suggest that they had survived the Last Glacial Maximum (LGM) and previous glaciers in situ since their origins. Our findings based on available limited samples support that multiple refugia of a few cold-enduring species had been maintained in the QTP platform during LGM and/or previous glacial stages.  相似文献   
82.
黄懿梅  安韶山  薛虹 《生态学报》2009,29(6):2811-2818
以野外样地调查和室内分析法研究了黄土丘陵区不同植被恢复年限下草地土壤微生物C、N及土壤呼吸熵的变化.结果表明,土壤微生物量碳明显地随着植被恢复年限的增加而增加.在恢复前23a, 土壤微生物量碳在0~20 cm土层年增加率为24.1%;20~40 cm为104.4%.植被恢复23a后,0~20 cm土层增长率为0.83%,20~40 cm为0.19%.土壤微生物量N表现为在植被恢复的初期略有下降,3a后,开始出现明显增加.0~20 cm土层年增长率为20.14%,20~40 cm为15.11%.在植被恢复23a后,0~20 cm土层的年增长率为0.14%,20~40 cm变化不大.土壤微生物呼吸强度随着恢复年限的增加逐渐加强;土壤呼吸熵随植被封育时间的增加而呈对数降低趋势.土壤呼吸熵(qCO2)在反映土壤的生物质量变化时,显得更加稳定,受植物生长状况影响较小.相关分析表明,土壤微生物量和土壤微生物活性与土壤有机质、碱解氮和粘粒含量显著正相关;与土壤粉粒含量明显负相关;表层土壤pH值对其也有明显影响.草地植被自然恢复过程可增加土壤微生物活性,有利于土壤质量的提高.  相似文献   
83.
邓娟  上官周平 《生态学报》2009,29(6):3231-3240
为了揭示黄土高原地区人工油松林自然化发育过程中的植物叶片与土壤养分库和碳库的变化规律,采用典型样地法,以子午岭林区天然油松群落为参照,选择了不同立地条件的人工油松林,分别对其土壤的氮库、碳库及植物叶片养分库和碳库进行了分析.结果表明,该区油松针叶C、N、P的含量平均值分别为(499.5±63.75)mg/g、(8.53±0.50)mg/g和(0.94±0.64)mg/g,叶片C含量大小依次为阳坡天然林>阴坡天然林>阴坡人工林>阳坡人工林,阳坡人工林叶片N、P含量显著高于阳坡天然林.不同立地条件下油松林叶片C/N、C/P差异显著,叶片N、P和N/P均达到极显著水平,但是叶片C含量差异不显著.油松叶片C含量与N、P含量均呈极显著负相关,N和P之间的呈显著正相关.不同立地的油松林除40~60cm土层土壤C、N含量无显著差异外,0~20cm和20~40cm两个土层的人工林土壤C、N含量显著高于天然林,同时阳坡人工林土壤C、N含量显著高于阴坡人工林.0~20cm、20~40cm两个土层土壤C含量与N含量均呈极显著正相关,与植物N、P均呈显著正相关.子午岭林区阳坡的人工油松林不仅叶片养分含量较高,而且林地土壤是该区土壤的最大养分库和碳库.  相似文献   
84.
85.
Desertification has taken place in the overgrazed grassland of the Tibetan Plateau,China,and the area of mobile sandy land has increased in recent decades.The challenging problem about desertification control is how to restore the vegetation of mobile sandy lands caused by severe desertification.Sand drifting is now regarded as the limiting factor of vegetation restoration in such lands.The initial phase of vegetation restoration is plant colonization,but it is often aborted due to sand drifting,and then vegetation restoration fails to proceed.For the sake of revegetation,the first step is to stop sand drifting to ensure plant colonization.In the northeastern Tibetan Plateau,China,feasible approaches have been found through long-term experiments,and the vegetation is being restored satisfactorily with these approaches in experimental sandy lands.The approaches comprise three types:enclosure,mechanical barriers and biological barriers.Different sandy lands require dissimilar combinations of these approaches.Enclosures may be adequate to revegetate inter-dunes or degraded grassland even in cold regions like the Tibetan Plateau,China,but it is deficient for revegetation of the shifting sand dunes unless mechanical and biological barriers are established simultaneously.  相似文献   
86.
The Alpine meadow is one of the vegetation types widely distributed on the Tibetan Plateau in China with an area of about 1.2 million square kilometers. The Damxung rangeland station, located in the hinterland of the Tibetan Plateau, is covered with an typical vegetation. The continuous carbon flux data (from August to middle October, 2003) measured with the open-path eddy covariance system was used to analyze the diurnal variation pattern of net ecosystem carbon dioxide exchange (NEE) and its relationship with the environmental factors, such as photosynthetically active radiation (PAR), precipitation, and temperature. Results showed that NEE presented obvious diurnal variation pattern with single-peak of diurnal maximum carbon assimilation at 11: 00–12: 00 (local time) with an average of −0.268 mg CO2·m−2·s−1, i.e., −6.08 μmol CO2·m−2·s−1. During the daytime, NEE fitted fairly well with PAR in a rectangular hyperbola function with the apparent quantum yield (0.020 3 μmol CO2 μmol−1 PAR) and maximum ecosystem assimilation (9.741 1 μmol CO2·m−2·s−1). During the night-time, NEE showed a good exponential relation with the soil temperature at 5 cm depth. __________ Translated from Acta Ecologica Sinica 2005, 25(8): 1948–1952 [译自: 生态学报, 2005, 25(8): 1948–1952]  相似文献   
87.
繁殖期高原鼠兔的行为时间分配与后代存活率的关系   总被引:1,自引:0,他引:1  
2002年4-8月份,在中国科学院海北高寒草甸生态系统定位站附近,采用标志流放、直接观察法和解剖法对青藏高原特有的植食性小哺乳动物———高原鼠兔(Ochotonacurzoniae)的行为时间分配、繁殖特征和后代存活率等方面进行了研究。结果表明,雌、雄成体平均地面活动时间占总时间的比例分别为88.67%和89.88%,在不同的繁殖时段,成体的各种行为时间分配存在显著的变化,并影响后代的存活率。幼体从出生到15d的存活率和雌、雄性成体的每次移动距离以及雌性成体的地面活动强度都显著的正相关;从15d到45d的存活率和雄性成体的地面活动强度、观望强度显著的正相关。在相同的观察时期,高原鼠兔雌、雄成体的一些行为时间分配存在显著差异,如雄性成体地面移动距离、频次在繁殖前期显著的高于雌性成体;雄性成体的观望强度在6、7月份显著高于雌性成体。说明雄性成体在领域防卫中较雌性成体承担更多的责任,雌、雄成体在育幼活动中的繁殖投入存在互补性。  相似文献   
88.
人为干扰对黄土高原子午岭油松人工林土壤物理性质的影响   总被引:40,自引:3,他引:37  
张希彪  上官周平 《生态学报》2006,26(11):3685-3695
研究了放牧、收集枯落物及清灌等人为干扰活动对黄土高原于午岭油松林土壤结构及抗蚀性的影响。结果表明,随人为干扰强度的增加,0~50cm土壤中砂粒含量比无干扰时分别增加了11.83%、37.80%和51.60%;粉粒下降了8.16%、11.83%和15.55%;粘粒下降了8.10%、20.84%和30.72%,土壤表现出粗骨化趋势;〉0.25mm水稳性团聚体含量比无干扰林地分别下降了16.59%、43.12%和61.13%。〉1.0mm的团聚体含量仅为无干扰林地土壤的27.78%和24.34%,1.0—0.25mmm的团聚体下降幅度较小;〉0.05mm微团聚体的比例分别下降了19.39%、32.62%和33.47%。而〈0.05mm微团聚体所占比例随干扰程度的增加而大幅度上升。土壤容重增加了0.11-0.41g/cm^3。土壤总孔隙度分别降低了13.64%、25.47%和39.14%,毛管孔隙下降了7.79%、11.54%和29.32%,非毛管孔隙下降了28.47%、60.79%和64.08%。说明表层土壤非毛管孔隙对人为干扰更为敏感。最大持水量分别下降23.42%、37.15%和52.92%;毛管持水量下降33.79%、43.01%和52.22%;自然含水量下降31.03%、39.34%和46.28%。饱和持水量下降16.14%、28.80%和49.68%;田间持水量下降了12.39%、33.92%和47.47%;土壤有效水含量下降了9.55%、20.55%和58.91%。土壤前3min初渗率下降了38.74%、51.45%和63.23%;稳渗速率下降了54.06%、71.63%和84.10%,相应地受人为干扰林地前30min累计人渗量也较未受人为干扰林地土壤分别低48.15%、65.93%和73.35%。饱和导水率较对照下降了8.73%、33.33%和51.00%。土壤的结构系数。由79.12%下降到27.32%。团聚度由59.48%下降到11.11%,分散率上升了l倍多,分散系数上升了4倍多。土壤枯落物层及有机质的减少是引起土壤物理性质恶化的主要原因,其次是放牧和踏实等活动。  相似文献   
89.
青藏高原蝇科昆虫生物地理初探   总被引:3,自引:0,他引:3  
对青藏高原蝇科昆虫进行了生物地理学研究.青藏高原已知蝇科9亚科42属574种,以特有类群占优势.其中特有属占11.9%,特有种占66.2%,文中讨论了该地区区系成分的多源性,特有成份的特异性及青藏高原北缘特有属的起源与演化,特有种的狭域分布现象及理论探讨.讨论了该地区与其它地区间隔分布的多样性及高原蝇科昆虫的适应性.分析了青藏高原的隆起与冰期对蝇科昆虫的作用.青藏高原的横空崛起以及第四纪冰期--间冰期的循环往复,导致该地区生境千差万别,使蝇科区系不仅有地域分异,且垂直差异显著.在此期间,北方物种向南入侵,南北成分交互渗透,高山类群适应进化,使许多特有成分在这里被陶冶、孕育,故而造成了该地区蝇科区系的特有性和物种的多样性.  相似文献   
90.
Atmospheric bulk depositions of soluble reactive phosphorus (SRP), soluble unreactive phosphorus (SUP), particulate inorganic phosphorus (PIP), particulate organic phosphorus (POP), total phosphorus (TP) and some other dissolved and particulate components were monitored for 3 years in Ashiu, Central Japan. The mean bulk depositions of SRP, SUP, PIP, POP, TP, dissolved components (Na, Mg, nss-Ca, K, V, Mo, nss-SO4) and particulate components (Al, Fe, Ti, Ca, Mg, Mn, Ba, Sr, Zn) were 175, 76, 136, 397, 783, 156,000, 10,900, 7450, 5470, 10.3, 1.52, 40,100, 13,200, 3590, 2630, 576, 624, 42.3, 30.2, 17.4, 8.2 μmol m−2 year−1, respectively. The value for TP deposition was in the lower range of previous literature. The low P deposition probably reflected the method applied to reduce the contribution of local particles, including (1) placement of samplers off the ground surface, (2) installation of multiple samplers, and (3) rejection of contaminated samples. Al data suggested that 15 ± 5% of TP was brought by lithogenic dust from East Eurasia. Nss-SO4 and Mo data and air-mass backward trajectories suggested that 39 ± 4% of TP was derived from coal combustion in China. It was speculated that the rest (47 ± 6%) of the TP deposition might be predominantly attributed to the contribution of local biogenic particles. Net atmospheric TP input (lithogenic dust and fossil fuel combustion) was almost equal to the TP outflow from Japanese forests on granitic soils.  相似文献   
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