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131.
黄土高原半干旱偏旱区草粮轮作田土壤水分恢复效应模拟   总被引:1,自引:0,他引:1  
采用实地调查和EPIC模型相结合的方法,模拟研究了黄土高原半干旱偏旱区不同草粮轮作模式的土壤水分恢复效应.结果表明:多年生苜蓿地和苜蓿翻耕后种植粮食作物农田0~10 m土层土壤湿度调查值与模拟值间的相关系数均超过0.9(P<0.01),相对均方根误差在0.05~0.16,相对误差均低于10%;模拟与实测的土壤湿度剖面分布变化趋势一致.在黄土高原半干旱偏旱区,苜蓿地深层土壤干层恢复难度较大,在种植苜蓿期间应避免8~10 m土层土壤湿度降到5.7%以下.苜蓿地适宜种植年限为4~6 a,最长不应超过8 a.苜蓿翻耕后适宜采用马铃薯→马铃薯→春小麦轮作模式进行土壤水分恢复,32~33 a后可以再次种植苜蓿.  相似文献   
132.
在分析农业经济系统与农业生态系统相互胁迫、动态演进关系的基础上,采用改进的熵值法确定了位于黄土高原沟壑区的长武县农业生态经济系统评价指标权重,利用耦合度模型分析了1949-2008年长武县农业生态经济系统耦合规律.结果表明:1949-2008年,长武县农业生态经济系统的发展经历了"粗放式传统农业阶段-农业机械化进程阶段-前现代化农业协调发展阶段"3个历史时期,与国家宏观经济政策调控效应基本吻合,系统耦合在"协调发展"和"极限发展"间经历了两起两落的急剧变化过程.1955-1961年、1984-1992年,长武县农业生态经济系统处于极限化耦合态势;1962-1965年、1981-1983年,为纠正前阶段宏观政策后的快速过渡期;1949-1954年、1966-1980年为生态系统与经济系统的低水平协调发展阶段;1993年以后,农业生态经济系统经过螺旋式发展,进入高水平协调发展阶段.目前,长武县农业生态经济系统有突破协调发展水平,并向极限化发展的潜在危险.良好的农业政策和外部环境能够促进农业生态经济系统在协调发展的水平上稳定发展,反之,容易出现系统相悖发展的局面.  相似文献   
133.
刘琳  吴彦  孙庚  吴宁  张林  徐俊俊 《植物研究》2011,31(4):451-460
依据2006~2008冬季的自然雪被分布状况,在青藏高原东缘的高寒草甸中设置3条样带(即深雪、中雪和浅雪)。在2009年的生长季,在3个雪梯度样带中,分别测定了2种优势植物圆穗蓼(Polygonum macrophyllum)和黑褐穗苔草(Carex atrofusca subsp. Minor)生物量和碳氮营养积累及分配的动态特征。结果表明,深雪能够促进圆穗蓼和黑褐穗苔草生物量和碳氮养分的积累,可能使它们产生的凋落物数量更多且质量更好。深雪更有利于圆穗蓼(非禾本科草本植物)根系生物量、碳氮养分的积累;深雪不仅同时促进黑褐穗苔草(禾本科植物)地上部分和根系生物量、碳氮积累,而且还使其种子产量增加和质量提高,潜在地增强了黑褐穗苔草种子的繁殖能力,可能使得黑褐穗苔草的种间竞争能力增强。可以预见,未来季节性雪被的变化,必定会引起青藏高原东缘高寒草甸的初级生物量及其结构、植物群落物种组成等均发生相应变化。  相似文献   
134.
高原低氧环境下牙周炎的发病机制   总被引:1,自引:0,他引:1  
牙周炎的病理过程受全身和局部因素的综合调控,一些调查研究显示高原牙周炎患病率高于平原地区,显然高原特殊环境在牙周炎的发生和发展过程中起到一定的作用,因此本文就高原低氧环境下牙周病变组织的变化、可能的发病机制作一综述。  相似文献   
135.
青藏高原"黑土型"退化草地成因与恢复   总被引:33,自引:3,他引:30  
对青藏高原“黑土型”退化草地的成因和生态建设进行评述,认为“黑土型”退化草地是草原退化生态学行为在江河源区高寒草地的特有体现形式,由气候变暖、冰川退缩、过度放牧、鼠害等综合因子共同导致。生态恢复不仅要从草地建设入手,还要对草地资源进行合理管理与规划。加强牧区文化教育投资、实行草地长期承包、加强《草原法》建设等措施是我国高寒草地畜牧业健康发展的重要保证。青藏高原生态系统特有的“惰性”特征可能是导致其草地生态系统自我更新能力差、系统结构脆弱、生态恢复困难的重要原因,应深入开展该方面研究,为青藏高原生态环境建设提供依据。  相似文献   
136.
The vegetation of the northeast Qinghai-Tibetan Plateau is dominated by alpine meadow and desert-steppe with sparse forests scattered within it. To obtain a better understanding of the phylogeography of one constituent species of the forests in this region, we examined chloroplast trnT-trnF and trnS-trnG sequence variation within Juniperus przewalskii, a key endemic tree species. Sequence data were obtained from 392 trees in 20 populations covering the entire distribution range of the species. Six cpDNA haplotypes were identified. Significant population subdivision was detected (G(ST) = 0.772, N(ST) = 0.834), suggesting low levels of recurrent gene flow among populations and significant phylogeographic structure (N(ST) > G(ST), P < 0.05). Eight of the nine disjunct populations surveyed on the high-elevation northeast plateau were fixed for a single haplotype (A), while the remaining, more westerly population, contained the same haplotype at high frequency together with two low frequency haplotypes (C and F). In contrast, most populations that occurred at lower altitudes at the plateau edge were fixed or nearly fixed for one of two haplotypes, A or E. However, two plateau edge populations had haplotype compositions different from the rest. In one, four haplotypes (A, B, D and E) were present at approximately equivalent frequencies, which might reflect a larger refugium in the area of this population during the last glacial period. Phylogenetic analysis indicated that the most widely distributed haplotype A is not ancestral to other haplotypes. The contrasting phylogeographic structures of the haplotype-rich plateau edge area and the almost haplotype-uniform plateau platform region indicate that the plateau platform was recolonized by J. przewalskii during the most recent postglacial period. This is supported by the findings of a nested clade analysis, which inferred that postglacial range expansion from the plateau edge followed by recent fragmentation is largely responsible for the present-day spatial distribution of cpDNA haplotypes within the species.  相似文献   
137.
Chen S  Xia T  Chen S  Zhou Y 《Biochemical genetics》2005,43(3-4):189-201
Random amplified polymorphic DNA (RAPD) markers were used to measure genetic diversity of Coelonema draboides (Brassicaceae), a genus endemic to the Qilian Mountains of the Qinghai-Tibet Plateau. We sampled 90 individuals in 30 populations of Coelonema draboides from Datong and Huzhu counties of Qinghai Province in P.R. China. A total of 186 amplified bands were scored from the 14 RAPD primers, with a mean of 13.3 amplified bands per primer, and 87% (161 bands) polymorphic bands (PPB) was found. Analysis of molecular variance (AMOVA) shows that a large proportion of genetic variation (84.2%) resides among individuals within populations, while only 15.8% resides among populations. The species shows higher genetic diversity between individuals than other endemic and endangered plants. The RAPDs provide a useful tool for assessing genetic diversity of rare, endemic species and for resolving relationships among populations. The results show that the genetic diversity of this species is high, possibly allowing it to adapt more easily to environmental variations. The main factor responsible for the high level of differentiation within populations and the low level of diversity among populations is probably the outcrossing and long-lived nature of this species. Some long-distance dispersal, even among far separated populations, is also a crucial determinant for the pattern of genetic variation in the species. This distributive pattern of genetic variation of C. draboides populations provides important baseline data for conservation and collection strategies for the species. It is suggested that only populations in different habitats should be studied and protected, not all populations, so as to retain as much genetic diversity as possible.  相似文献   
138.
Xia T  Chen S  Chen S  Ge X 《Biochemical genetics》2005,43(3-4):87-101
Genetic variation of 10 Rhodiola alsia (Crassulaceae) populations from the Qinghai–Tibet Plateau of China was investigated using intersimple sequence repeat (ISSR) markers. R. alsia is an endemic species of the Qinghai–Tibet Plateau. Of the 100 primers screened, 13 were highly polymorphic. Using these primers, 140 discernible DNA fragments were generated with 112 (80%) being polymorphic, indicating pronounced genetic variation at the species level. Also there were high levels of polymorphism at the population level with the percentage of polymorphic bands (PPB) ranging from 63.4 to 88.6%. Analysis of molecular variance (AMOVA) showed that the genetic variation was mainly found among populations (70.3%) and variance within populations was 29.7%. The main factors responsible for the high level of differentiation among populations are probably the isolation from other populations and clonal propagation of this species. Occasional sexual reproduction might occur in order to maintain high levels of variation within populations. Environmental conditions could also influence population genetic structure as they occur in severe habitats. The strong genetic differentiation among populations in our study indicates that the conservation of genetic variability in R. alsia requires maintenance of as many populations as possible.  相似文献   
139.
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   
140.
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   
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