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1.
管涔山青扦(Picea wilsoni)天然林年龄结构及其动态的研究   总被引:13,自引:1,他引:12  
地种群年龄的研究表明,虽经人为频繁干扰,管涔肝扦天然林仍表现出异龄林结构特征,立木年龄范围超过一个级期,根据年龄结构特征值可分为相对龄林、相对异龄林和异龄林3种类型林下新一代种群的数量和结构受林冠郁闭度和结构的影响。具垂直郁闭型林冠的异龄林,林下更新数量充足,幼苗幼树年龄结构合理;而服闭型林冠,不利于一代种群的发生和发展,青扦种群年龄结构受种群发生和自疏两个过程的控制,林下种群的发生以小规模林冠空  相似文献   

2.
林窗对岷江冷杉幼苗生存过程的影响   总被引:1,自引:0,他引:1  
岷江冷杉林是我国西南亚高山暗针叶林的主体之一,其健康的种群动态和更新策略在维持长江上游生态安全方面具有重要意义。为了解岷江冷杉更新过程中林窗对幼苗种群动态的影响,通过调查林窗内和林下岷江冷杉更新幼苗的存活情况,采用数量分析方法研究了幼苗的年龄结构和动态特征。结果表明:林窗内和林下岷江冷杉幼苗的年龄结构金字塔均为两头小中间大的纺锤型,存活曲线均为DeeveyⅡ,生命期望以1龄级的最高、林下种群的高于林窗种群。幼苗的死亡率、消失率、累计死亡率和危险率均随龄级的增加而增大,生存率和死亡密度随龄级的增加而减小;岷江冷杉幼苗种群的数量化动态指数Vpi=0.1059,为增长型种群,在外界随机事件干扰时也可持续增长,尤以林窗种群抵御随机干扰、持续增长的特点更为突出;岷江冷杉幼苗种群的周期波动主要受基波控制,林窗种群在9龄级和11龄级处的波动还受谐波的影响。林窗扩大了岷江冷杉更新幼苗的数量规模、提高了种群抵御外界随机干扰的能力。因此,在岷江冷杉林更新管理中,应高度重视林窗的作用。  相似文献   

3.
 本文以植被样地调查和树木年轮数据为依据,采用空间代替时间的方法定量地论述了宿城自然保护区赤松林群落区系、种群年龄结构及其更新的特点。通过对群落区系和种群动态两个重要方面的分析,力图为探讨其群落稳定性提供证据。本群落区系组成丰富,以北温带成分为主并含有较大比重泛热带成分,特别是与我国华北山东半岛南部成分具有密切联系。在主林层中,林木大小等级和年龄等级分布都遵循倒“丁”形曲线。林下一年生幼苗枯损率,几乎接近100%。林冠下幼树枯死约占一半,而林冠层枯立木占总活立木数的4%。所有这些信息表明:该种群是以幼苗补员与幼树枯损的平衡来维持其特定的持续生存。从郁闭林冠下幼苗、幼树高枯损率证明其更新速度缓慢,但很有可能由林中空地来更替。本文所建立的种群结构动态模型结果表明:宿城亦松种群现阶段是稳定型种群。论其群落性质则应属于具有南北过渡特点的华北型地文(Physiographic)顶极群落。  相似文献   

4.
山地落叶阔叶林优势树种米心水青冈幼苗的定居   总被引:12,自引:4,他引:8  
郭柯 《应用生态学报》2003,14(2):161-164
在郁闭的林冠下、模拟林窗和林间空旷地3种光照环境中,研究了施肥和未施肥的米心水青冈幼苗生存和生长发育过程.结果表明,幼苗在林下的发育受到光照不足的严重抑制,生长在林下的幼苗比生长在林窗和空旷地幼苗死亡快,死亡率高,幼苗在郁闭林下能够生存的时间不超过12周.施肥处理的幼苗比对照的幼苗死亡快,死亡率高.幼苗死亡很可能与土壤中的病原生物有关.虽然由林下光照强度增加到模拟林窗的光照强度后,幼苗发育有明显改善,但幼苗在模拟林窗环境和空旷地的生长没有显著差异.结果说明,米心水青冈新出土的幼苗在郁闭林冠下易受伤害,更新立苗阶段需要有比较好的光照条件,肥沃土壤可能也无助于改善郁闭林冠下幼苗的定居.  相似文献   

5.
调查了福建省罗卜岩自然保护区闽楠〔Phoebebournei(Hemsl.)Yang〕种群天然更新情况,结果表明:闽楠种群天然更新良好,种子繁殖更新是其天然更新的主要方式,种群年龄结构呈“金字塔”型,它能使闽楠种群稳定增长;也可通过萌蘖繁殖进行天然更新,但更新能力较弱,种群净生殖率Ro<1.0,内禀增长能力rm<0,种群数量将递减。林冠下和林窗中更新均能使闽楠种群稳定增长,由于闽楠种子以重力传播为主,集中于母树周围,且幼苗与幼树能耐一定荫蔽,故在现存亚热带闽楠群落中,林冠下是闽楠种群更新的主要场所。  相似文献   

6.
矮牡丹种群结构的研究   总被引:11,自引:0,他引:11  
延安万花山不同生境下矮牡丹种群年龄结构与表现结构的分析结果表明:天然侧柏林缘下的矮牡丹种群属稳定发展的种群,其动态符合负指数方程N=1774。014,e^-0.1375t。而在较郁闭的辽东栎林下,矮牡丹种群呈阶段性更新循环。种群平均密度和单株最大年龄与所处生境有关。种群的表现结构因样地所在的环境条件不同,种群的年龄结构不同,以及生长速度的不同而有较明显的差异。  相似文献   

7.
濒危植物太白红杉种群年龄结构及其时间序列预测分析   总被引:30,自引:0,他引:30  
为了阐明太白红杉(Larix potaninii var.chinensis)种群的年龄结构和未来发展趋势,合理保护现有资源,在太白山地区调查了 29个样地(10 m×10m),对处于不同生境的 5个种群的年龄结构、静态生命表和时间序列预测进行了分析。种群年龄结构分析表明,各种群个体数量主要集中于Ⅲ、Ⅳ、Ⅴ、Ⅵ、Ⅶ龄级(个体数量比重占68.64%),幼、老龄个体数量较少。受所处生境条件影响,不同种群年龄结构特点不同:海拔较低的种群(B)由于水热条件适宜,林内有林窗出现,幼龄级个体数相对丰富;而其他种群由于幼龄个体严重缺乏,衰退趋势明显。太白红杉不同种群生命表和存活曲线的分析表明,尽管所处的生境差异较大,但存活曲线基本属于Deevey Ⅲ型,种群偏离典型存活曲线的程度与幼苗缺乏程度有关,一般V-Ⅸ龄级死亡率较高。时间序列分析表明,在未来20、60、100和200年中,各太白红杉种群均会呈现老龄级株数先增加后减少的趋势,种群稳定性维持困难。太白红杉种群年龄结构和动态趋势与银杉(Cathaya argyrophylla)等其他濒危植物比较,导致种群衰退的原因相似:在郁闭的林下种子萌芽和幼苗生长困难。应该利用太白红杉喜光、耐旱和中老年个体产种量丰富的特性,对现有太白红杉林分实行就地保护,合理抚育管理。低海拔地区,应适当间伐非目的树种  相似文献   

8.
调查了福建省罗卜岩自然保护区闽楠(Phoebebournei(Hemsl.)Yang)种群天然更新情况。结果表明,闽楠种群天然更新良好,种子繁殖更新是其天然更新的主要方式,种群年龄结构呈“金字塔”它能使闽楠种群稳定增长,也可能过萌蘖繁殖进行天然更新,但更新能力较弱,种群净生殖率R0〈1.0,内禀增长能力rm〈0,各群数量将递减,林冠下和林窗中更新均能使闽楠种群稳定增长,由于闽楠种子以重力传播为主,  相似文献   

9.
贵州雷公山秃杉林不同林冠环境下箭竹分株种群结构特征   总被引:16,自引:0,他引:16  
通过对贵州雷公山秃杉林的4种林冠环境,即林下(FU)、中林窗(MG)、大林窗(LG)和林缘旷地(FEW)内的箭竹的分株种群结构(包括株高、基径、生物量、叶和分株数等)和年龄结构进行较系统对比研究。结果显示:(1)从林下→中林窗→大林窗,箭竹分株种群的株高(h)、基径(bd)与生物量显著增加。(2)在4种林窗环境中,箭竹各构件的生物量的百分比发生相应变化,枝和叶片生物量的百分比沿林下→中林窗→大林窗→林缘旷地的顺序显著减小,在林缘旷地,地下茎、粗根(d>0.5 mm)和细根(d≤0.5 mm)生物量的百分比显著高于其他3种林冠环境。(3)箭竹分株单位叶面积叶重沿林下→中林窗→大林窗→林缘旷地的顺序显著增大,单叶生物量与叶面积以中林窗最大,林缘旷地次之,二者与大林窗或林下差异显著;大林窗的单株叶片数显著高于其余3种林冠环境。(4)在4种林冠环境中,箭竹分株种群死亡率以林下最低,但各种群平均年龄间无显著差异。研究表明,箭竹分株种群对林冠环境变化的响应主要体现在形态与生物量的分配上,而非种群的年龄。  相似文献   

10.
云南兰坪云南红豆杉种群年龄结构与空间分布格局分析   总被引:2,自引:0,他引:2  
利用点格局分析法对滇西北兰坪县4个云南红豆杉(Taxus yunnanensis)种群的年龄结构、不同生长阶段空间分布格局及其关联性进行分析。结果表明:(1)林窗与人为干扰影响4个云南红豆杉种群的龄级结构,小林窗的种群呈稳定型;较大林窗的种群呈进展型;群落结构完整未出现林窗和有较大人为干扰的种群年龄结构均呈衰退型,幼苗、幼树与小树个体缺乏,种群存在一定程度的更新困难,林窗的大小是种群更新的重要因素。(2)人为干扰、自然生境与本身生物学特性影响4个种群空间分布格局,种群1整体及其不同生长阶段个体均呈聚集分布;种群2和种群4在小尺度呈聚集分布,而在大尺度上呈随机分布;种群3随着空间尺度增大分布格局表现为聚集→随机→聚集趋势。(3)种群2中幼苗、小树和中树在小尺度下表现为聚集分布,其他尺度下表现为随机分布;种群3的小树阶段聚集分布和随机分布皆有出现,中树与大树在不同尺度上表现为聚集分布;种群4聚集分布的强度随生长阶段的增加在减弱。(4)4个种群各发育阶段间皆呈或接近显著正相关,种内竞争弱,有利于种群维持。  相似文献   

11.
Investigating patterns of phylogenetic structure across different life stages of tree species in forests is crucial to understanding forest community assembly, and investigating forest gap influence on the phylogenetic structure of forest regeneration is necessary for understanding forest community assembly. Here, we examine the phylogenetic structure of tree species across life stages from seedlings to canopy trees, as well as forest gap influence on the phylogenetic structure of forest regeneration in a forest of the subtropical region in China. We investigate changes in phylogenetic relatedness (measured as NRI) of tree species from seedlings, saplings, treelets to canopy trees; we compare the phylogenetic turnover (measured as βNRI) between canopy trees and seedlings in forest understory with that between canopy trees and seedlings in forest gaps. We found that phylogenetic relatedness generally increases from seedlings through saplings and treelets up to canopy trees, and that phylogenetic relatedness does not differ between seedlings in forest understory and those in forest gaps, but phylogenetic turnover between canopy trees and seedlings in forest understory is lower than that between canopy trees and seedlings in forest gaps. We conclude that tree species tend to be more closely related from seedling to canopy layers, and that forest gaps alter the seedling phylogenetic turnover of the studied forest. It is likely that the increasing trend of phylogenetic clustering as tree stem size increases observed in this subtropical forest is primarily driven by abiotic filtering processes, which select a set of closely related evergreen broad-leaved tree species whose regeneration has adapted to the closed canopy environments of the subtropical forest developed under the regional monsoon climate.  相似文献   

12.
Recent studies of Swietenia macrophylla King argue that natural regeneration of this highly valued tree is episodic and occurs only after infrequent catastrophic disturbance. An analysis of 14 population size-distributions in natural forests shows that population structure varies across this species' range. In forests that are in successional transition from open deciduous forest to evergreen forest there is often prolific regeneration. We show that in this type of forest in southern Pará (Brazil) patches of even-sized trees are small. Large-scale disturbance may be necessary for regeneration only in evergreen forests where little light penetrates through the canopy. The transition zone between evergreen and deciduous forest in Pará is moving south, and we propose that mahogany populations to the north are in the process of competitive exclusion. Sustainable harvesting of mahogany must take account of the successional stage of the forest.  相似文献   

13.
次生林概念与生态干扰度   总被引:12,自引:0,他引:12  
朱教君  刘世荣 《生态学杂志》2007,26(7):1085-1093
近一个世纪强烈的人为干扰使世界范围内的原始林面积锐减,次生林已成为中国乃至世界森林资源的主体.虽然在文献与现实中"次生林(Secondary forest)"被广泛使用,但次生林的概念在各个国家,甚至同一国家或地区以及各种不同文献中存在相互矛盾的情况,这给次生林研究与经营实践带来诸多不便;而不准确的次生林定义也为与各个层次的决策制定者及公众之间的交流带来了障碍.本文在查阅大量国内外关于次生林概念文献的基础上,结合近年来关于次生林生态与经营研究实践,综合分析了次生林概念的不确定性,同意以往次生林定义中的基本内涵,并认为:次生林是由于人为破坏性干扰或异常自然干扰使原始林固有的林分结构、物种组成或基本功能发生了显著变化,经过天然更新或人工诱导天然更新恢复形成的林分.但该定义中仍存在着很多不确定性, 如:怎样的干扰为"人为破坏性干扰"和"异常自然干扰";"林分结构、物种组成或基本功能"发生了怎样的变化为"显著变化";"人工诱导天然更新"中"人工"参与的成分比例如何等.次生林概念是在20世纪初由植物演替学家提出,当时未考虑干扰的持续性;而实际上,无论是次生林还是原始林,均是森林生态系统演替过程中的某一状态,在现代森林生态系统研究中,应重新规范"次生林"的概念.考虑到"次生林"定义的不确定性或困难性,建议使用"森林自然度"或"森林生态系统成熟度"或"森林干扰度"来表达现实森林所处的状态,但该方面的研究与实践尚需加强.  相似文献   

14.
间伐对日本黑松海岸林更新的影响   总被引:21,自引:4,他引:17  
为弄清间伐对海岸林内环境因子 ,进而对海岸林天然更新的影响 ,在黑松海岸林内进行了 4种不同强度的块状间伐试验 .林分间伐后 ,对更新状况和环境因子进行了连续观测 .结果表明 ,间伐可以改善林内光环境、提高土壤的含水量、加强空气流动、促进枯枝落叶的分解等 .4 0年生的黑松海岸林 5 0 %间伐处理后 (密度为 15 0 0株·hm-2 ,林冠开阔度 >30 % )不会对海岸林本身造成风害 ,也不会对防护功能产生较大影响 ,但却能为黑松海岸林天然更新提供良好的生态环境 .试验结果证实了间伐产生的林隙内日本黑松的更新规律 ,提出间伐可作为同龄黑松海岸林向复层、异龄海岸林演化的主要经营措施 .  相似文献   

15.
Questions: What influence do management practices and previous tree and shrub stand structure have on the occurrence and development of natural regeneration of Pinus sylvestris in Mediterranean mountain forests? How are the fine‐scale and environmental patterns of resources affected and what impact does this have on the distribution of the regeneration? Location: A Pinus sylvestris Mediterranean mountain forest in central Spain. Methods: Upperstory trees and regeneration (seedlings and saplings) were mapped in four 0.5‐ha plots located in two types of stand with different management intensities (even‐aged and uneven‐aged stands). Environmental variables were recorded at the nodes of a grid within the plots. The relationships between the upperstory and regeneration were evaluated by bivariate point pattern analysis; redundancy analysis ordination and variation partitioning were performed to characterize regeneration niches and the importance of the spatial component. Results: Seedlings and saplings presented a clumped structure under both types of management and their distribution was found to be related to the spatial distribution of favourable microsites. Regeneration was positively related to conditions of partial cover with high soil water content during the summer. More than half of the explained variance was spatially structured in both types of stand. This percentage was particularly high in the even‐aged stands where the pattern of regeneration was highly influenced by the gaps created by harvesting. Conclusions: The spatial distribution of the tree and shrub upperstory strongly influences regeneration patterns of P. sylvestris. Current management practices, promoting small gaps, partial canopy cover and moderate shade in even‐aged stands, or favouring tree and shrub cover in the case of uneven‐aged stands, appears to provide suitable conditions for the natural regeneration of P. sylvestris in a Mediterranean climate.  相似文献   

16.
Questions: Did fire regimes in old‐growth Pinus ponderosa forest change with Euro‐American settlement compared to the pre‐settlement period? Do tree age structures exhibit a pattern of continuous regeneration or is regeneration episodic and related to fire disturbance or fire‐free periods? Are the forests compositionally stable? Do trees have a clumped spatial pattern and are clumps even‐ or mixed‐age? How might information from this old‐growth forest inform current restoration and management practices? Location: A 235‐ha old‐growth forest in the Ishi Wilderness, southern Cascade Mountains, California. Methods: Age, size, and spatial pattern of trees were quantified in seven stands. Fire history was reconstructed using fire scar dendrochronology. The influence of fire on stand structure was assessed by comparing fire history with age, size, and spatial structure of trees and identifying and measuring trees killed by two recent fires. Results: Species composition in plots was similar but density and basal area of tree populations varied. Age structure for P. ponderosa and Quercus kelloggii showed periods of episodic recruitment that varied among plots. Fire disturbance was frequent before 1905, with a median period between fires of 12 years. Fire frequency declined after 1905 but two recent fires (1990, 1994) killed 36% and 41% of mostly smaller diameter P. ponderosa and Q. kelloggii. Clusters of similar age trees occurred at scales of 28‐1018 m2 but patches were not even‐aged. Interactions between tree regeneration and fire promoted development of uneven age groups of trees. Conclusions: Fire disturbance strongly influenced density, basal area, and spatial structure of tree populations. Fire exclusion over the last 100 years has caused compositional and structural changes. Two recent fires, however, thinned stands and created gaps favorable for Q. kelloggii and P. ponderosa regeneration. The effects of infrequent 20th century fire indicate that a low fire frequency can restore and sustain structural characteristics resembling those of the pre‐fire suppression period forest.  相似文献   

17.
In subalpine forests near the forest limit on Mt. Fuji in central Japan, slush avalanches occasionally destroy forest-floor vegetation through an influx of volcanic gravel from bare upper sites. The vegetation structure of Larix kaempferiAbies veitchii forests near and distant from avalanche paths was investigated to determine the effects of forest-floor disturbance on successional processes. The Larix population in a forest near an avalanche path, where there had been signs of forest-floor disturbance by avalanches, had a discontinuous age structure with three age groups, indicating that Larix seedlings established under the Larix canopy after the forest-floor disturbance. In contrast, the Larix population in a forest distant from avalanche paths, where there had been no forest-floor disturbance, had a continuous age structure, with no plants younger than the 90-year-old trees, indicating that this population had established on bare ground over a long period. These data suggest that the primary requirement for the regeneration of L. kaempferi on the forest floor is a mineral substrate. Conversely, A. veitchii had a continuous age structure in both forests. However, forest-floor disturbances by avalanche(s) may exclude A. veitchii from the forest because A. veitchii is very sensitive to scoria deposition. In conclusion, forest-floor disturbance by avalanche(s) provides L. kaempferi with an opportunity to establish on the forest floor, resulting in the maintenance of Larix forests alongside avalanche paths in the upper subalpine area on Mt. Fuji.  相似文献   

18.
Aims The loss of canopy trees associated with forest decline can greatly influence the species composition and structure of a forest and have major impacts on the ecosystem. We studied the changes in forest composition and structure 1 and 5 years following nearly total canopy mortality on several hundreds of hectares of xeric oak forests in south-central United States. Because the forests were within an ecotonal vegetation type composed of a mosaic of forest, savanna and grassland, we sought to learn whether forest decline areas would recover to forest or change to more open savanna and grassland conditions in the landscape pattern of vegetation. Because low intensity fire shaped the vegetation type, we sought to learn whether fire would keep the decline areas open.Methods The study was conducted in a xeric oak forest in east-central Oklahoma, USA. Randomly located vegetation and regeneration surveys were conducted in decline and non-decline stands 1 and 5 years following nearly total canopy mortality. Diameter at breast height (DBH), regeneration and sprout origin were recorded for all woody species.Important findings The major canopy species post oak (Quercus stellata Wangenh.), blackjack oak (Quercus marilandica Muenchh.) and black hickory (Carya texana Buckl.) suffered 85–92% mortality; however, minor canopy components experienced limited mortality. Mortality affected all size classes of canopy trees except those below 5cm breast height diameter. There was abundant regeneration of all species and fire seemed to maintain a high level of sprouting. Decline appeared to decrease the relative importance of stump sprouting and increase other types including root sprouts. Decline areas had abundant true seedlings, with stem origin from a root with the same diameter as the stem, which is very unusual for xeric oak forests. Regeneration height in decline areas was twice that of non-decline forests. Our findings suggest that forest decline may lead to: (i) reduced oak dominance and species change in the canopy, (ii) change in reproduction type to increase success of true seedlings and maintain genetic diversity of oaks.  相似文献   

19.
Vetaas  Ole R. 《Plant Ecology》2000,146(2):137-144
Poor regeneration of oak forest has been observed in north America and Eurasia. In the Himalaya it has mainly been explained by anthropogenic pressures. This study analyses the regeneration of two Quercus semecarpifolia Sm. forests (2–3000 m a.s.l.), where one forest has almost nil disturbance and the other has different degrees of canopy disturbance. The relationships between biotic and abiotic environmental variables and the number of Quercus semecarpifolia seedlings and saplings (i.e., recruits <10 cm Diameter at Breast Height (DBH)) were analysed by means of Generalized Additive Models (GAM). The two forests were compared with respect to size-class distributions of mature trees (i.e., >10 cm DBH), and the number of recruits.The size-class distributions indicate that regeneration is most reliable in the nearly undisturbed forest. Most recruits were found under high canopy cover and high potential radiation. Canopy disturbance has a negative effect on the number of seedlings. Seedlings seem to prefer a pH of around 6, Loss-on-Ignition between 20 and 30 %, and total nitrogen between 2 and 3 %. In general, there were very few plots with saplings, and there was not a clear relationship between the number of saplings and the soil variables. The size-class diagrams indicate a lack of young trees in the disturbed forest, and it is hypothesized that fire may inhibit recruits reaching the canopy phase.  相似文献   

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