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1.
西藏色季拉山林线冷杉种群结构与动态   总被引:8,自引:3,他引:5  
急尖长苞冷杉(Abies georgei var.smithii)是西藏东南部地区高山林线森林群落的主要建群树种,主要分布在色季拉山海拔3600~4400m区域,并成为阴坡高山林线的优势树种。通过对色季拉山林线群落交错区域的定位调查,分析了急尖长苞冷杉的个体生长、种群结构与动态以及林线特征。分析结果表明:(1)西藏色季拉山海拔4320m处为森林郁闭上限,该区域存在两种类型的高山林线,阳坡为渐变型林线,林线树种为方枝柏(Sabina saltuaria);阴坡为急变型林线,林线树种为急尖长苞冷杉。阳坡与阴坡林线分布海拔上限分别为4570m和4390m,阳坡高于阴坡180m;阳坡与阴坡林线群落交错区垂直宽度分别为250m和70m,阳坡比阴坡宽180m。(2)阴坡海拔3700~3800m属急尖长苞冷杉分布的最适范围,种群径级结构表现为典型的反"J"型,种群密度约380株/hm2;种群年龄结构表现为"金字塔"型,属于扩展型种群。(3)静态生命表和种群存活曲线反映了急尖长苞冷杉种群在形成初期的20a和生长发育的60~160a分别经历了强烈的环境筛选和竞争自疏,以及后期与环境变化相关的死亡波动,200a左右为急尖长苞冷杉的生理寿命,种群后期基本稳定,400a左右为极限寿命。  相似文献   

2.
贡嘎山海螺沟林线附近峨眉冷杉种群的结构与动态   总被引:10,自引:0,他引:10  
通过对贡嘎山海螺沟海拔 35 80m处 1.0hm2 峨眉冷杉 (AbiesfabriCraib)林的定位调查 ,分析了峨眉冷杉的个体生长、种群结构与动态、干扰及更新特征。结果表明 :1)林线附近的环境胁迫影响了个体的形态发育和高、径生长 ,但对其更新繁殖无明显影响 ;2 )静态生命表和种群生存曲线反映了 2 0a以前和 6 0~ 140a分别经历的强烈环境筛选和竞争自疏 ,以及后期与环境变化相关的死亡率波动 ,峨眉冷杉寿命极限为 40 0a左右。 3)林线种群遭受高频率、小规模的林隙干扰。尽管 86 .4%的林隙由多木形成 ,但死亡的峨眉冷杉以枯立为主导致林隙较小 ;病害、冰雪和死树的打压是林隙形成的重要因素 ,而风不是这里林线环境的主要自然干扰。 4)峨眉冷杉的幼苗表现了相当的耐荫性 ,尽管其更新依赖林隙的存在 ,但更新格局存在多尺度的成因  相似文献   

3.
岷江上游林线附近岷江冷杉种群的生存分析   总被引:11,自引:1,他引:10       下载免费PDF全文
程伟  吴宁  罗鹏 《植物生态学报》2005,29(3):349-353
岷江冷杉 (Abiesfaxoniana) 林是青藏高原东南缘亚高山暗针叶林的主要类型之一, 在岷江上游地区, 岷江冷杉林一般在 2 80 0~ 380 0m之间呈带状分布并且在阴坡形成林线。为了对岷江上游林线地段的岷江冷杉种群进行生存分析, 在岷江上游林线附近弓杠岭 (33°0 2′39″N, 10 3°4 3′11″E) 设置了 10个样地, 使用侧生轮枝计数或WinDENDRO系统对个体年龄进行确定。调查数据经匀滑技术处理, 编制了岷江冷杉种群特定时间生命表, 绘制了岷江冷杉种群的存活曲线、死亡率曲线和消失率曲线。结果表明:1) 岷江上游林线地段岷江冷杉种群存活曲线趋于Deevey型。 2) 林线地段岷江冷杉种群生存率呈单调下降趋势, 生存率下降趋势前期高于后期, 说明岷江冷杉种群幼苗死亡率高, 种群后期比较稳定。3) 林线地段岷江冷杉林整个生长期中出现了两个死亡高峰期, 一个出现在幼苗向幼树过渡时期 (0~ 4 0年), 另一个出现在中龄时期 (180年) 。岷江上游林线地段岷江冷杉种群幼苗死亡率较高的原因可能和林线地段的温度较低、积雪厚度、风向、水分等环境条件有关。  相似文献   

4.
通过对贡嗄山海螺沟海拔3580m处1.0hm^2峨眉冷杉(Abies fabri Crabi)林的定位调查,分析了峨眉冷杉的个体生长、种群结构与动态、干扰及更新特征。结果表明:1)林线附近的环境胁迫影响了个体的形态发育和高、径生长,但对其更新繁殖无明显影响;2)静态生命表和种群生存曲线反映了20a以前的60-140a分别经历的强烈环境筛选和竞争自疏,以及后期与环境变化相关的死亡率波动,峨眉冷杉寿命极限为400a左右。3)林线种群遭受高频率、小规模的林隙干扰。尽管86.4%的林隙由多木形成,但死亡的峨眉冷杉在枯立为主导致林隙较小;病害、冰雪和死树的打压是林隙形成的重要因素,而风不是这里林线环境的主要自然干扰。4)峨眉冷杉的幼苗表现了相当的耐荫性,尽管其更新依赖林隙的存在,但更新格局存在多尺度的成因。  相似文献   

5.
山西五台山高山林线的植被景观   总被引:14,自引:1,他引:13       下载免费PDF全文
 过草本植物群落的分类和排序,结合对乔木和灌木分布的分析,确定了五台山高山林线的几条植被界线以及五台山森林上限附近植被的性质。结果表明:1)阳坡林线的海拔范围为2 605~2 790 m,阴坡林线的海拔范围为2 810~3 015 m;2)草本植物群落随海拔高度的变化比较明显,阴坡和阳坡从郁闭林到山顶均依次分布林下草本层、林缘草甸、亚高山灌丛草甸、高山草甸,草本植物的分布很好地体现了林线内部景观的差异性;3)海拔高度是高山林线附近草本植物群落空间分异的决定性因素。  相似文献   

6.
热量匮乏是高山树线的主要成因, 在全球变暖趋势下对高山树线及其建群种的生态学过程及特征的研究具有重要意义。该文以青藏高原东缘的折多山和剪子弯山两处高山树线(海拔分别为4 265 m和4 425 m)作为研究对象, 通过设置垂直样带, 同时结合区域温度、降水的长时间序列分析, 探究两处树线的时空动态过程, 并明确了建群种冷杉(Abies spp.)的生态学特征。结果表明: 1)折多山和剪子弯山区域的气温在过去58年均存在显著的上升趋势(分别上升了0.72和0.91 ℃), 而折多山和剪子弯山区域降水均存在微弱的降低趋势。2)折多山的峨眉冷杉(A. fabri)龄级结构呈反J形, 剪子弯山的鳞皮冷杉(A. squamata)龄级结构呈双峰形, 二者种群结构均相对稳定。3)在小尺度上, 种子扩散限制使得两处树线的冷杉聚集分布。在大尺度上, 折多山峨眉冷杉亦呈聚集分布, 而剪子弯山鳞皮冷杉受生长环境以及种内或种间关系的影响呈随机分布。4)两处样地建群树种的树高和基径均随海拔升高而降低, 位于树线交错带上部的冷杉均呈现树高生长大于径向生长的异速生长关系, 而位于样地中、下部位的冷杉大部分呈等速生长关系。5)相比10年前, 折多山和剪子弯山的树线及树种线位置均无明显变化, 剪子弯山鳞皮冷杉种群的树木密度亦无明显变化, 而折多山的树木个体数提高了约25%; 相比20年前, 折多山和剪子弯山的树种线分别上移了50和30 m, 树线位置分别升高了75和40 m, 树木个体数亦明显增加, 分别提高了约220%和100%。树线及其建群种在较大时空尺度上主要受热量的控制, 而在较小时空尺度上受温度及生长环境共同作用的影响。  相似文献   

7.
《植物生态学报》2018,42(11):1082
热量匮乏是高山树线的主要成因, 在全球变暖趋势下对高山树线及其建群种的生态学过程及特征的研究具有重要意义。该文以青藏高原东缘的折多山和剪子弯山两处高山树线(海拔分别为4 265 m和4 425 m)作为研究对象, 通过设置垂直样带, 同时结合区域温度、降水的长时间序列分析, 探究两处树线的时空动态过程, 并明确了建群种冷杉(Abies spp.)的生态学特征。结果表明: 1)折多山和剪子弯山区域的气温在过去58年均存在显著的上升趋势(分别上升了0.72和0.91 ℃), 而折多山和剪子弯山区域降水均存在微弱的降低趋势。2)折多山的峨眉冷杉(A. fabri)龄级结构呈反J形, 剪子弯山的鳞皮冷杉(A. squamata)龄级结构呈双峰形, 二者种群结构均相对稳定。3)在小尺度上, 种子扩散限制使得两处树线的冷杉聚集分布。在大尺度上, 折多山峨眉冷杉亦呈聚集分布, 而剪子弯山鳞皮冷杉受生长环境以及种内或种间关系的影响呈随机分布。4)两处样地建群树种的树高和基径均随海拔升高而降低, 位于树线交错带上部的冷杉均呈现树高生长大于径向生长的异速生长关系, 而位于样地中、下部位的冷杉大部分呈等速生长关系。5)相比10年前, 折多山和剪子弯山的树线及树种线位置均无明显变化, 剪子弯山鳞皮冷杉种群的树木密度亦无明显变化, 而折多山的树木个体数提高了约25%; 相比20年前, 折多山和剪子弯山的树种线分别上移了50和30 m, 树线位置分别升高了75和40 m, 树木个体数亦明显增加, 分别提高了约220%和100%。树线及其建群种在较大时空尺度上主要受热量的控制, 而在较小时空尺度上受温度及生长环境共同作用的影响。  相似文献   

8.
在长白山北坡,由于水、热条件及其组合的垂直分异,植被形成了完整的垂直带谱.从表观上看,各植被带间存在明显的过渡带,但由于多种因素的影响,过渡带的位置确定比较困难,文中采用梯度取样方法,应用分形分析、种群分布格局分析和种间竞争分析对海拔1400~2200m的岳桦种群过渡带进行了定量研究,结果表明,岳桦种群在海拔1650m附近与云冷杉林形成一个森林过渡带;在海拔2080m附近与高山苔原形成一个林线过渡带。  相似文献   

9.
薄毛海绵杜鹃是西藏东南部地区高山林线灌丛的优势种,在色季拉山分布在海拔4300 ~4500 m.通过样地调查和基径结构分析,研究了色季拉山林线薄毛海绵杜鹃种群分布.结果表明:随着海拔升高,薄毛海绵杜鹃种群密度增加而高度降低;在同一海拔,阴坡的种群密度和高度大于阳坡,而基径较小.在阴坡和阳坡,薄毛海绵杜鹃种群年龄结构的峰值均呈“n”型曲线,中龄级个体较多,幼苗、幼树相对不足.薄毛海绵杜鹃种群的种内竞争呈波浪式发展,强度为阴坡高于阳坡,且存在自疏现象.  相似文献   

10.
白马雪山阴坡林线长苞冷杉(Abies georgei)种群结构特征   总被引:2,自引:0,他引:2  
长苞冷杉(Abies georgei)是青藏高原特有林线树种.对白马雪山阴坡海拔4400 m以上林线0.8 hm2样地长苞冷杉种群进行每木调查,分析其种群结构、数量特征及空间分布格局.结果表明:(1)结构呈典型金字塔型,幼苗和幼树在种群中所占比重大,表现为增长型种群,种群个体数随径级的增加而减少,密度为幼苗》幼树》成年树;(2)存活曲线接近Deevy-Ⅲ型,高径级种群趋于稳定,种群具两个死亡高峰,低径级种群尤其幼苗死亡率高达90%,这是林线区的气候条件如低温、强光照、积雪及冬季冻害等综合作用的结果,种群另一死亡高峰出现于V~VI龄级,种内和种间对空间、光照和养分等生存因子的激烈竞争引起自疏,导致死亡率再度上升;(3)长苞冷杉种群各龄级空间点格局在不同尺度上表现为聚集、随机和均匀分布,以聚集分布为主,由于幼苗来源于种子库且依赖成年树的微生境,幼苗聚集强度和尺度都最大;各龄级关系密切,在不同尺度上表现出显著的相关性.  相似文献   

11.

Key message

Field survey methods influence the assessment of treeline structure and inferences on reconstructed treeline dynamics.

Abstract

Numerous field studies have described the structure of alpine treeline ecotones encompassing the forest limit and treeline to infer their dynamics in response to climate warming. However, the inferred treeline dynamics may be biased due to the selection of different plot sizes and shapes. Rectangular large plots including the whole treeline ecotone, i.e., encompassing the forest limit and the treeline, and square small plots located at current treeline have been widely used. Nevertheless, little is known about how large a plot must be to capture the main features of treeline structure and dynamics. Here, we investigate this question at Smith fir treelines located in the Sygera Mountains, southeastern Tibetan Plateau. Six rectangular large treeline plots (30 × 150 m) were sampled and compared with six square small treeline plots (30 × 30 m). Six rectangular plots with lengths shorter than the treeline ecotone span (100–135 m) were also sampled and compared with the other two plot types. Dendrochronology was used to reconstruct the recruitment dynamics of treelines, which were related to summer mean minimum temperatures. Rectangular large plots better captured the main features of recent treeline dynamics such as the abundance of recruits from the 1950s onwards and the establishment of old trees. Therefore, large plots allowed reaching more robust conclusions on treeline dynamics as compared to small plots. On the other hand, smaller rectangular plots revealed similar findings to those inferred from large rectangular plots but with a much lower survey cost. We propose using smaller rectangular plot with its longest side being shorter than the ecotone span as the most reliable and practical method to characterize alpine treeline dynamics.
  相似文献   

12.
Population structure and tree recruitment dynamics in the natural treeline ecotone of high mountains are strong indicators of vegetation responses to climate. Here, we examined recruitment dynamics of Abies spectabilis across the treeline ecotone (3439–3638 m asl) of Chimang Lekh of Annapurna Conservation Area in the Trans-Himalayan zone of central Nepal. Dendrochronological techniques were used to establish stand age structure by ring counts of adults, and by terminal bud scar count for seedlings and saplings. The results showed abundant seedling recruitment, higher regenerative inertia and colonization with a consistent range shift of the A. spectabilis treeline. The upward expansion of this sub-alpine treeline was found to be driven by a strong dependence of seedling recruitment and radial growth on snowmelt and precipitation as temperatures rise. The radial growth of A. spectabilis at the alpine timberline ecotone (ATE) and closed timberline forest (CTF) showed sensitivity to spring season (March–May) climate. Tree ring indices of CTF showed a strong positive correlation with spring and annual precipitation, and a significant negative correlation with spring and annual temperature, however, moisture sensitivity was less strong at ATE than CTF.  相似文献   

13.
高山林线变化的更新受限机制研究进展   总被引:1,自引:0,他引:1  
沈维  张林  罗天祥 《生态学报》2017,37(9):2858-2868
全球林线位置对气候变暖的响应表现为上升、无变化或下降等截然不同趋势,表明影响林线位置及动态的因子十分复杂,除了较普遍认为的低温调控机制外,还存在其它控制林线位置变化的机制。林线向上迁移开始于种子向林线以上的传播及幼苗在林线以上的定居,这些过程中的限制因子均会影响林线的位移,因此研究更新过程及其限制因子对理解高山林线对气候变化的响应具有重要的科学意义。主要从种子和幼苗两个关键阶段综述高山林线森林更新的研究进展。在种子阶段,夏季积温不足导致种子产量和活力下降,风速过低和浓密灌丛限制种子向林线以上传播,近地表的霜冻/水分胁迫和灌木释放的化感物质会阻碍种子在林线以上萌发。在幼苗阶段,除冬季低温外,生长季内较大的温度日振幅和偶然出现的冻害事件也是导致幼苗死亡的重要原因,而低温环境下的强烈光照引起的低温光抑制会显著降低生长季的光合作用;土壤低温、由土壤温度昼夜变化引起的冻举事件、夏季土壤干旱可能会导致幼苗光合作用下降和死亡率上升;积雪太浅会导致生长季早期幼苗水分供应的严重缺乏,但积雪太深会导致幼苗感染真菌的可能性增加;浓密的灌木和草本植物以及植食动物的啃食也会降低林线以上的幼苗存活率。气候变暖对林线幼苗定居的影响复杂且具有很大不确定性,需要进一步研究气候变暖导致的环境因子变化对林线更新各关键阶段的影响。未来气候变暖无疑会导致生长季起始日提前,结束日推迟,这很可能会增加生长季期间尤其是早期的低温冻害事件,对高山林线树种幼苗的存活具有重要影响。在未来研究中,需要找出定义生长季冻害事件的温度阈值,利用长期气象观测数据分析增温背景下生长季早期冻害事件特征的变化趋势,并进一步开展野外模拟增温实验以深刻理解林线树种的种子萌发和幼苗定居与生长季冻害事件的关系,加强对不同地区林线树种的繁殖策略研究,这将有助于人们进一步理解不同区域林线的形成机制并预测未来气候变化条件下林线的动态变化趋势。  相似文献   

14.
We determined the temporal dynamic of cambial activity and xylem development of stone pine (Pinus cembra L.) throughout the treeline ecotone. Repeated micro-sampling of the developing tree ring was carried out during the growing seasons 2006 and 2007 at the timberline (1,950 m a.s.l.), treeline (2,110 m a.s.l.) and within the krummholz belt (2,180 m a.s.l.) and the influence of climate variables on intra-annual wood formation was determined. At the beginning of both growing seasons, highest numbers of cambial and enlarging cells were observed at the treeline. Soil temperatures at time of initiation of cambial activity were c. 1.5°C higher at treeline (open canopy) compared to timberline (closed canopy), suggesting that a threshold root-zone temperature is involved in triggering onset of above ground stem growth. The rate of xylem cell production determined in two weekly intervals during June through August 2006–2007 was significantly correlated with air temperature (temperature sums expressed as degree-days and mean daily maximum temperature) at the timberline only. Lack of significant relationships between tracheid production and temperature variables at the treeline and within the krummholz belt support past dendroclimatological studies that more extreme environmental conditions (e.g., wind exposure, frost desiccation, late frost) increasingly control tree growth above timberline. Results of this study revealed that spatial and temporal (i.e., year-to-year) variability in timing and dynamic of wood formation of P. cembra is strongly influenced by local site factors within the treeline ecotone and the dynamics of seasonal temperature variation, respectively.  相似文献   

15.
Ren Q S  Yang X L  Cui G F  Wang J S  Huang Y  Wei X H  Li Q L 《农业工程》2007,27(7):2669-2677
Smith fir (Abies georgei var. smithii), which grows on cool aspects with elevations ranging between 3600 m and 4400 m, is a major native dominant alpine tree species in Southeast Tibet, China. The smith fir population structure, dynamics and characteristics were investigated in the timberline ecotone of the Sejila Mountain. Results indicate that the minimum crown closure (≤20%) was reached at 4320 m above sea level, where two types of alpine species exist, smith fir and blackseed savin (Sabina saltuaria). On the warm aspects, blackseed savin is a dominant species. Forest line was formed gradually with a wider timberline ecotone. While on the cool aspects, smith fir is a dominant species. Forest line was formed clearly with a narrow timberline ecotone. Furthermore, the upper limits of the distribution of the alpine species were 4570 m and 4390 m on warm and cool aspects, respectively. The timberline ecotone widths of the two species on the warm and cool aspects were 250 m and 70 m, respectively. The optimal distribution of smith fir on the cool aspects was from 3700 m to 3800 m. The smith fir's diameter class distribution was of reversed “J” shape and its density was about 380 stem·hm?2, while the age structure appeared to be of pyramid-shape, suggesting an expanding population. Finally, the static life table and the survivorship curve showed that the populations had experienced severe environmental selection during their first 20 years, self-thinning between 60 to 100 years, and environmental changes related mortality at later stages. The smith fir's physiological life span was around 200 years, and its maximum age was about 400 years old.  相似文献   

16.
Above-average climate warming occurred during the 20th century in high altitude regions, and alpine treelines are believed to be an early indicator to respond to these warming-related changes. However, empirical investigations on treeline dynamics showed diverse results. The main objectives of this study are: (1) to investigate if treeline position shifted and if tree recruitment changed along with climate warming, and (2) to test if adult trees have “nursing effect” on tree establishment at treelines. We investigated two Balfour spruce (Picea balfouriana Rehd. et Wils.) treelines in Chang Niang (CNT) and Dang Dui (DDT), Dingqing county, Changdu prefecture, eastern Tibet. At each treeline site, three replicate plots with a size 30 m × 50 m were established. The coordinates of each tree within the plots were recorded and the age of each tree was identified by dendrochronological method. The changes in treeline position and tree recruitment were examined from spatially fine-scale distribution of trees and their age structure. The spatial patterns of individual trees were analyzed to infer the neighborhood effects. Results indicate that plots CNT2, CNT3, DDT1 and DDT2 showed stable treeline position during the last century, whereas plots CNT1 and DDT3 showed treeline advancing movement. Tree recruitments in all the six plots were enhanced during the 20th century, with two peaks occurring in the 1890–1910s and the 1950–1990s. Seedlings and saplings showed a general clustered distribution in all the six plots. The diverse pattern of treeline movement and episodic regeneration suggest that the treeline activity is not merely a result of climate change. “Nursing effects” from adult trees may play an important role in shaping the treeline activities on the eastern Tibetan Plateau. Our findings reveal diverse patterns in treeline dynamics at a local scale and highlight the importance of incorporating biotic interactions into species distribution modeling approaches.  相似文献   

17.
以贡嘎山地区磨西山谷东北坡和康定山谷西南坡为样地,研究了高山林线和低海拔冷杉休眠期和生长旺盛期针叶比叶质量和组织非结构性碳水化合物含量.结果表明:生长在温暖湿润的磨西山谷东北坡的冷杉针叶比叶质量和组织非结构性碳水化合物含量均高于炎热干燥的康定山谷西南坡;高山林线冷杉比叶质量大于低海拔冷杉;高山林线冷杉组织非结构性碳水化合物含量总体高于低海拔冷杉,且生长期比休眠期更为显著.研究结果不支持"碳供应不足导致高山林线形成"的假说.  相似文献   

18.
木本植物幼苗是高山林线生态交错区的重要组成部分,其更新对气候变化背景下树线的移动至关重要.本研究通过对近几十年来全球范围内林线生态交错区的木本植物幼苗分布特征、更新机制及其对气候变化响应的研究总结得出:林线生态交错区木本植物幼苗的空间分布类型主要为渐变型和聚集型,且不同分布类型对树线动态的指示意义各异.在全球尺度上,其分布的海拔高限通常与生长季长度、均温和物种特性等有关,而在区域尺度上则多受降水影响.在幼苗更新初期,种源在很大程度上决定了种子的萌发及分布位置,之后微环境的促进作用为幼苗的定植提供庇护,提高其存活率,而在更新后期多种生物和非生物因素及其相互作用则非常关键.气候变暖促使林线生态交错区气温升高、降水充沛,有利于幼苗生长,使其向高海拔区域扩张而成为树线上移的先兆,但部分物种受遗传特性或适应策略影响,仅表现为密度增加,使树线保持相对稳定.未来应借助树轮、14C等精确定年技术,通过长期的野外定位观测和室内模拟,加强多时空尺度下林线幼苗的空间分布特征和更新机制研究,分析不同类型林线内木本植物幼苗的适应策略,预测气候变化背景下的树线动态,为山地生态系统恢复及保护提供科学依据.  相似文献   

19.
为了了解青藏高原东缘高山森林-苔原交错带土壤微生物的特征和季节变化, 研究了米亚罗鹧鸪山原始针叶林、林线、树线、密灌丛、疏灌丛和高山草甸土壤微生物生物量碳(MBC)、氮(MBN)和可培养微生物数量的季节动态。结果表明, 植被类型和季节动态对MBCMBN和微生物数量都有显著影响。不同时期的微生物在各植被类型间分布有差异, 植物生长季初期和生长季中期, 树线以上群落的MBC高于树线下的群落, 而到生长季末期恰恰相反, 暗针叶林、林线和树线的MBC显著升高, 各植被之间MBC的差异减小; 微生物数量基本上也是以树线为界, 树线以下群落土壤微生物数量显著低于树线以上群落, 其中密灌丛的细菌数量最高; 可培养微生物数量为生长季末期>生长季初期>生长季中期。生长季末期真菌数量显著增加, 且MBC/MBN最高。统计分析表明, MBN与细菌、真菌、放线菌数量存在显著的相关关系, 而MBC仅与真菌数量存在显著相关关系( p < 0.05)。植物生长季末期大量的凋落物输入和雪被覆盖可能是微生物季节变异的外在因素, 而土壤微生物和高山植物对有效氮的竞争可能是微生物季节变异的内在因素。植物生长季初期对氮的吸收和土壤微生物在植物生长季末期对氮的固定加强了高山生态系统对氮的利用。气候变暖可能会延长高山植物的生长季, 增加高山土壤微生物生物量, 加速土壤有机质的分解, 进而改变高山土壤碳的固存速率。  相似文献   

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