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181.
The response of forest ecosystems to increased atmospheric CO2 is constrained by nutrient availability. It is thus crucial to account for nutrient limitation when studying the forest response to climate change. The objectives of this study were to describe the nutritional status of the main European tree species, to identify growth‐limiting nutrients and to assess changes in tree nutrition during the past two decades. We analysed the foliar nutrition data collected during 1992–2009 on the intensive forest monitoring plots of the ICP Forests programme. Of the 22 significant temporal trends that were observed in foliar nutrient concentrations, 20 were decreasing and two were increasing. Some of these trends were alarming, among which the foliar P concentration in F. sylvatica, Q. Petraea and P. sylvestris that significantly deteriorated during 1992–2009. In Q. Petraea and P. sylvestris, the decrease in foliar P concentration was more pronounced on plots with low foliar P status, meaning that trees with latent P deficiency could become deficient in the near future. Increased tree productivity, possibly resulting from high N deposition and from the global increase in atmospheric CO2, has led to higher nutrient demand by trees. As the soil nutrient supply was not always sufficient to meet the demands of faster growing trees, this could partly explain the deterioration of tree mineral nutrition. The results suggest that when evaluating forest carbon storage capacity and when planning to reduce CO2 emissions by increasing use of wood biomass for bioenergy, it is crucial that nutrient limitations for forest growth are considered.  相似文献   
182.
Gray Flycatchers (Empidonax wrightii) breed in a variety of habitats in the arid and semi‐arid regions of the western United States, but little is known about their breeding biology, especially in the northern portion of their range where they nest in ponderosa pine (Pinus ponderosa) forests. From May to July 2014 and 2015, we conducted surveys for singing male Gray Flycatchers along the eastern slope of the Cascade Range in Washington, U.S.A, monitored flycatcher nests, and quantified nest‐site vegetation. We used a logistic‐exposure model fit within a Bayesian framework to model the daily survival probability of flycatcher nests. During the 2 yr of our study, we monitored 141 nests, with 93% in ponderosa pines. Mean clutch size was 3.6 eggs and the mean number of young fledged per nest was 3.2. Predation accounted for 90% of failed nests. We found a positive association between daily nest survival and both nest height and distance of nest substrates from the nearest tree. Flycatchers that locate their nests higher above the ground and further from adjacent trees may be choosing the safest alternative because higher nests may be less exposed to terrestrial predators and nests in trees that are farther from other trees may be less exposed to arboreal predators such as jays (Corvidae) that may forage in patches with connected canopies. Nests in trees farther from other trees may also allow earlier detection of approaching predators and thus aid in nest defense.  相似文献   
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秦岭水灾迹地油松和华山松更新种群数量特征   总被引:3,自引:0,他引:3       下载免费PDF全文
 不同植物种群种间比较研究利于揭示种群的形成机制和影响因素。该文研究了秦岭地区蔡玉河流域范家庄段水灾迹地恢复17年后群落优势种油松(Pinus tabulaeformis) 和华山松(P. armandii)的种群数量特征。水灾灾后第一年(1989年)就有油松和华山松个体进入迹地,由于较大的高生长速度和侧生长速度,油松种群的平均高度和地径高于华山松,占据了较大的垂直和水平空间。相对来说, 油松和华山松高度结构和径级结构模式不同,二者均是小个体数量居多,大个体数量极少,但油松中等大小个体多于华山松。油松和华山松种群的年龄结构模式不同,油松的为单峰右偏曲线,华山松的则近似于正态分布。坡向对油松的年龄结构模式没有影响,但对华山松种 群有影响。油松和华山松种群不同高度级、径级和年龄级之间存在显著正或负相关关系,缺少一致性,表明种群大小结构不一定反映年龄结构。油松和华山松种群的密度动态和存活曲线类型一致,均为Ⅱ型,表明二者具有相同的种群动态。总体上说,油松和华山松具有不同的树种生物学特性,使得种群的大小结构和年龄结构不同,但对种群更新存活动态没有影响。  相似文献   
185.
Increased canopy leaf area (L) may lead to higher forest productivity and alter processes such as species dynamics and ecosystem mass and energy fluxes. Few CO2 enrichment studies have been conducted in closed canopy forests and none have shown a sustained enhancement of L. We reconstructed 8 years (1996–2003) of L at Duke's Free Air CO2 Enrichment experiment to determine the effects of elevated atmospheric CO2 concentration ([CO2]) on L before and after canopy closure in a pine forest with a hardwood component, focusing on interactions with temporal variation in water availability and spatial variation in nitrogen (N) supply. The dynamics of L were reconstructed using data on leaf litterfall mass and specific leaf area for hardwoods, and needle litterfall mass and specific leaf area combined with needle elongation rates, and fascicle and shoot counts for pines. The dynamics of pine L production and senescence were unaffected by elevated [CO2], although L senescence for hardwoods was slowed. Elevated [CO2] enhanced pine L and the total canopy L (combined pine and hardwood species; P<0.050); on average, enhancement following canopy closure was ~16% and 14% respectively. However, variation in pine L and its response to elevated [CO2] was not random. Each year pine L under ambient and elevated [CO2] was spatially correlated to the variability in site nitrogen availability (e.g. r2=0.94 and 0.87 in 2001, when L was highest before declining due to droughts and storms), with the [CO2]‐induced enhancement increasing with N (P=0.061). Incorporating data on N beyond the range of native fertility, achieved through N fertilization, indicated that pine L had reached the site maximum under elevated [CO2] where native N was highest. Thus closed canopy pine forests may be able to increase leaf area under elevated [CO2] in moderate fertility sites, but are unable to respond to [CO2] in both infertile sites (insufficient resources) and sites having high levels of fertility (maximum utilization of resources). The total canopy L, representing the combined L of pine and hardwood species, was constant across the N gradient under both ambient and elevated [CO2], generating a constant enhancement of canopy L. Thus, in mixed species stands, L of canopy hardwoods which developed on lower fertility sites (~3 g N inputs m?2 yr?1) may be sufficiently enhanced under elevated [CO2] to compensate for the lack of response in pine L, and generate an appreciable response of total canopy L (~14%).  相似文献   
186.
The raw material for evolution is variation. Consequently, identifying the factors that generate, maintain, and erode phenotypic and genetic variation in ecologically important traits within and among populations is important. Although persistent directional or stabilizing selection can deplete variation, spatial variation in conflicting directional selection can enhance variation. Here, we present evidence that phenotypic variation in limber pine (Pinus flexilis) cone structure is enhanced by conflicting selection pressures exerted by its mutualistic seed disperser (Clark's nutcracker Nucifraga columbiana) and an antagonistic seed predator (pine squirrel Tamiasciurus spp.). Phenotypic variation in cone structure was bimodal and about two times greater where both agents of selection co‐occurred than where one (the seed predator) was absent. Within the region where both agents of selection co‐occurred, bimodality in cone structure was pronounced where there appears to be a mosaic of habitats with some persistent habitats supporting only the seed disperser. These results indicate that conflicting selection stemming from spatial variation in community diversity can enhance phenotypic variation in ecologically important traits.  相似文献   
187.
调查和分析了岷江上游大沟流域的 4个坡向 (偏东坡N -E80°、偏西坡N -W 85°、偏南坡S -E10°、偏北坡N-W2 0°)人工油松 (Pinustabuliformis)林下地表苔藓植物的物种多样性、组成和结构特征。在 4个坡向的油松林下共发现 13种苔藓 ,各林下苔藓物种组成数量在 6 - 13种之间 ,并且具有较高的相似性。冰川青藓 (Brachytheci um glacile)、大羽藓 (Thuidiumcymbifolium)、厚角绢藓 (Entodonconcinnus)、密叶美喙藓 (Eurhynchiumsavatieri)、小酸土藓 (Oxysteguscuspidatus)和光萼苔 (Porellapinnata)为这 4个坡向油松林下的共有种 ,其中冰川青藓、大羽藓为优势物种。 4个坡向人工油松幼林下地表苔藓植物出现频率分别为 10 0 % (偏西、偏北油松林 )和 96 .7% (偏东、偏南油松林 ) ,其平均盖度、平均密度、平均厚度分别在 5 .5 0 %± 0 .90 %至 2 5 .6 6 %± 2 .76 %、4 80 .6 7± 133.6 5至 2 72 4 .80± 4 19.72株 /m2 和 4 .73± 0 .31至 6 .83± 0 .73mm之间。无论是苔藓植物层片的多样性指数还是结构参数 ,均以偏东坡向的油松林下为最低 ;而偏西坡向的油松林下除厚度略低于偏南坡向外 ,其他指标均最高。综合研究结果表明 ,坡向是形成苔藓植物物种多样性组成和结构差异的重要环境因素 ,对苔藓植物的生存  相似文献   
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北长山岛森林乔木层碳储量及其影响因子   总被引:3,自引:0,他引:3  
石洪华  王晓丽  王嫒  刘振英  麻德明 《生态学报》2013,33(19):6363-6372
人工林是庙岛群岛典型的陆地生态系统的组成部分,对维护海岛地区生态环境具有重要作用。采用现有生物量相对生长方程和样地调查数据相结合的方法,以庙岛群岛中北长山岛为研究区,对海岛黑松纯林与黑松×刺槐混交林两种林型的碳储量进行了估算,并分析了土壤质地及其理化性质对海岛乔木层碳储量的影响。结果表明:黑松乔木层平均碳储量为84.00 t/hm2,接近于世界平均水平(86.00 t/hm2);黑松×刺槐混交林乔木层平均碳储量为29.60 t/hm2,高于山东省乔木层的平均碳储量(27.62 t/hm2)。应用因子分析法研究影响乔木层碳储量的主要因子,结果表明:土壤质地、pH值、含水量及含盐量是影响海岛乔木碳储量重要的影响因子。北长山岛土壤全氮、总磷、土壤有机质、碳氮比等其他理化性质对乔木层碳储量影响不是非常明显。  相似文献   
190.
吴昊  张明霞  王得祥 《西北植物学报》2013,33(10):2086-2094
在秦岭山脉南坡陕西省境内设置11个样地进行实地调查,从植物物种组成、多样性指数差异以及多样性指数沿环境梯度排序等方面对该区域油松-锐齿槲栎天然混交林的群落总体以及乔木层、灌木层、草本层的各自4个α多样性指数(Patrick丰富度指数、Simpson优势度指数、Shannon-Wiener多样性指数、Pielou均匀度指数)特征进行分析,以揭示该群落多样性特征及其与环境因素的关系。结果显示:(1)11个样地共记录维管束植物112种,隶属于45科77属,分布较广的物种有蔷薇科、菊科、百合科、松科、禾本科和忍冬科。(2)研究区群落中建群种锐齿槲栎和油松的优势地位突出,乔木层伴生种稀少,平均仅为4.8种,多样性水平较低;灌木层物种组成丰富,平均11.4种;草本层次之,平均9种。(3)单因素方差分析表明,该群落不同层次的多样性指数之间均存在极显著差异(P<0.01);LSD多重比较及多样性指数变化趋势分析表明,群落多样性水平表现为总体>灌木层>草本层>乔木层。(4)CCA法将群落不同层次多样性指数沿地形因子和土壤养分等12项环境指标梯度的分布划分为界线明显的3个区域,即Ⅰ区(中等浓度土壤磷素和有机质制约区)、Ⅱ区(非环境因子制约区)和Ⅲ区(高浓度土壤磷素制约区);群落总体多样性主要受灌木层影响,同时也受乔木层均匀度影响,但环境因子对乔木层多样性基本无限制性作用。(5)土壤速效磷、全磷和有机质是造成研究区群落不同层次多样性差异的主要因素,海拔、坡向等地形因子对群落多样性影响不大,可能是由于土壤养分的直接影响削弱了地形因子的间接性生态作用。研究表明:保持中等水平的土壤速效磷(3.775±1.529 mg·kg-1)和有机质含量[(4.079±1.001)%],并通过合理补植松栎幼树和伐除枯死木等抚育手段提高乔木层均匀度是维持秦岭南坡油松-锐齿槲栎混交林群落生物多样性的有效措施。  相似文献   
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