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1.
长白松的木材解剖及其分类问题   总被引:1,自引:1,他引:0  
关于长白松的分类问题一直有争议[6-11],根据作者对吉林省安图县二道白河产的长白松的木材解剖研究,发现其木材的射线管胞内壁具深锯齿,颇与欧洲赤松(Pinus sylvestris Linn.)相近[14] [15],但以其木射线薄壁组织细胞水平壁无纹孔和晚材最后数列管胞弦壁上存在着排列成轴向单行小形具缘纹孔来看,这又显属赤松(Pinus densiflora Sieb.et Zucc.)的特征。因此,作者认为长白松的木材结构是处于欧洲赤松与赤松之间而更偏于赤松[10],故确认其当归属于赤松的种群范围。  相似文献   

2.
1. Plant communities influence the availability of important resources for ants, such as nest sites and food, as well as environmental conditions. Thus, plants affect the abundance and distribution of ants. 2. In a field experiment, the influence of plant cover on the settlement of nest sites and per‐capita productivity of sexual individuals by the ant Temnothorax crassispinus was analysed. In July 2014, in five areas with patches of alien balsam Impatiens parviflora, and another five of native balsam I. noli‐tangere, transects composed of artificial nests were established; the nest sites were situated inside patches of balsams, and outside of them. Four hundred and forty artificial nests were used. One year later, the nests were collected. 3. Colonies of the ants three times more often inhabited nest sites outside the patches of both balsams. Besides, colonies with queens were more frequently found in nest sites located away from balsams. The per‐capita productivity of sexual individuals was higher in nests collected in patches of balsam, and the colonies from patches of alien balsam produced a more female‐biased sex ratio. 4. In terms of the impact on the ant, no clear differences were found between the alien balsam and the native one. The most important factor affecting the fitness of ants in areas dominated by balsams is the presence of herbaceous plant cover rather than whether the plant is alien or native.  相似文献   

3.
A number of non-volatile, water-soluble substances can be added to the usual aceto-cannine fixing fluids. These inert substances do not alter the fixation image and serve as mounting media when the volatile ingredients of the mixture evaporate. Formulae are given for solutions containing dextrin, dextrose, gelatin, pectin, sorbitol, and sucrose. Gum arabic can be incorporated in a formic-acid-carmine fixative. The limiting factor in the use of such mounting media in fixing fluids is the osmotic value they give the solution; with certain precautions, however, they can be used in place of the usual aceto-carmine treatment. The indices of refraction of these media are not as high as those of the natural balsams and the fixation images which the mixtures produce have the characteristic limitations of those secured by the aceto-carmine technic. Some of the natural balsams (Canada balsam, sandarac and Venetion turpentine) can also be incorporated in fixing fluids. These fixatives are able to hold balsam and water in solution together, and, as the volatile components of the mixtures evaporate, the fixed specimens remain in permanent balsam mounts. The addition of carmine to these fluids enables us to fix, stain, dehydrate, clear and mount a specimen in a single operation. These fixatives preserve more details of chromosome structure than the aceto-carmiae fluids, but their use is more limited; and they can be substituted for the latter only with certain favorable material, e.g., pollen mother cells of Rhoeo and Tradescantia and salivary gland chromosomes of Cbirono-mus. Some of the newer synthetic resins can be substituted for the natural balsams. Formulae are given for fixatives which contain Venetian turpentine, sandarac, Canada balsam and two synthetic resins.  相似文献   

4.
裴雅茹  刘艳红 《生态科学》2013,32(3):386-390
利用标准地法对八达岭林场人工林主要树种的生物量进行了测定,建立了油松(Pinus tabulaeformis)、黑桦(Betula dahurica Pall)、槺椴(Tilia mandshurica)、五角枫(Acer mono Maxim)及华北落叶松(Larix principis-rupprechtii)的生物量相对生长模型。结果表明,八达岭林场各主要树种生物量分配比例的大小顺序为:五角枫>油松>槺椴>黑桦>落叶松。各树种的生物量值为五角枫93.28 t/hm2>油松86.40 t/hm2>槺椴50.24 t/hm2>黑桦 36.05 t/hm2>落叶松20.21 t/hm2。5 个树种的总生物量为286.17 t/hm2。利用IPCC 模型计算结果表明不同树种在相同的时间下产生的生物量是不同的,并用实际数据指出生长模型的建立方法不同可能带来的生物量计算的差异。此研究结果可用于建立广泛适用的生长模型及在不同树种的生物量计算方面起到重要作用。  相似文献   

5.
任玫玫  杨华 《生态学杂志》2016,27(10):3089-3097
优势种是植物群落各层次中占优势的植物种,混交林优势树种竞争关系的研究对合理经营混交林具有重要意义.本研究在吉林省汪清县金沟岭林场内,选择立地条件一致的云冷杉天然林,设置大小100 m×100 m样地.首先,用优势度分析法确定群落优势树种;其次,以优势树种为对象木,采用可描述单株林木侧方上方、种内种间竞争强度的林木竞争指数分析优势树种的竞争关系.结果表明: 该云冷杉天然林有3个优势树种:臭冷杉、红皮云杉、红松.样地中,小径级林木较多,群落林木趋于小龄化,3个优势树种的竞争树种主要有臭冷杉、红皮云杉、红松、枫桦、紫椴、青楷槭和白桦.3个优势树种受到的竞争最激烈的是臭冷杉(1412.48),其次是红皮云杉(439.17)、红松(245.28),都主要承受侧方挤占,臭冷杉、红皮云杉、红松的侧方挤占分别占各优势树种竞争强度的64.9%、65.2%、66.0%;3个优势树种侧方上方平均竞争强度大致随个体胸径的增大而减少,小径级林木的侧方上方平均竞争强度几乎相等,对象木径级越大,所承受的侧方挤占比例越大,大径级林木几乎不承受上方遮盖;3个优势树种的侧方上方竞争主要来源于臭冷杉、红皮云杉、红松、紫椴、枫桦、青楷槭和白桦.3个优势树种种间竞争均比种内竞争激烈,臭冷杉、红皮云杉、红松的种间竞争分别占各优势树种竞争强度的58.4%、87.1%、83.7%,且竞争强度大致随个体胸径的增大而减少.  相似文献   

6.
中国东北产“樟子松”的核型研究   总被引:4,自引:0,他引:4  
张敩方  李懋学 《植物研究》1982,2(4):123-131
作者研究了中国东北所产的"樟子松"的核型。结果表明,大兴安岭山地生长的樟子松与欧洲赤松的核型类似,而沙地生长的樟子松的核型则有明显的变异。根据核型比较研究,作者认为,把山地樟子松视为欧洲赤松的原变种,沙地樟子松应视为另一变种。"樟子松"分布于黑龙江大兴安岭海拔400-900米山地及大兴安岭以西、西南一带沙地。因为它生长迅速,成材期短,能耐贫瘠干旱,为石质山地和草原沙地主要造林树种之一,在我国东北、内蒙、华北地区营林事业中占有重要的地位。多年来,在植物分类学上对于"樟子松"的归属问题还存在着一些分歧:V.L.Komarov(1901)、北川政夫(1939、1979)、竹内亮(1958)等人认为,中国东北产的"樟子松"与分布于欧亚大陆的欧洲赤松(Pinus sylvestris)同属一种;D.I.Litvinov(1905)及陈嵘(1937)、刘慎谔(1955)、吴仲伦(1956),郑万钧等(1961、1978)的研究认为东北 的樟子松均为欧洲赤松的变种(Pinus sylvestris var.mongolica LitV.);近来又有的作者认为中国东北地区的"樟子松"根据产地不同可分为山地樟子松(分布于大兴安岭山地)与沙地樟子松(分布于大兴安岭以西的呼伦尔草原之沙地上)两种类型,并认为前者为欧洲赤松原变种,而后者则为欧洲赤松之另一变种。  相似文献   

7.
为了探讨人工林内优势乔木和林下灌草根际土壤氮矿化特征, 明确乔灌草根际土壤氮转化差异, 该研究以江西泰和千烟洲站区典型人工杉木(Cunninghamia lanceolata)、马尾松(Pinus massoniana)和湿地松(Pinus elliottii)林为对象, 在植被生长季初期(4月)和旺盛期(7月)分析3种人工林内乔木、优势灌木(檵木(Loropetalum chinense)、杨桐(Adinandra millettii)、格药柃(Eurya muricata))和草本(狗脊蕨(Woodwardia japonica)、暗鳞鳞毛蕨(Dryopteris atrata))根际土壤的净氮矿化速率、土壤化学性质及土壤微生物特征。结果发现: 1)物种、林型和取样季节显著影响了根际土壤净氮矿化速率(Nmin)、净铵化速率(Namm)和净硝化速率(Nnit)。马尾松和湿地松林内林下灌草根际土壤净氮矿化的季节敏感性高于乔木: 4月乔木根际土壤NminNamm显著高于大多数林下灌草, 而7月林下灌草根际土壤NminNamm显著提高, 与乔木不再具有显著差异, 与主成分综合得分方差分析的结果一致。一般情况下, 杉木林NminNnit显著高于马尾松林和湿地松林。7月净氮矿化显著高于4月。2)土壤铵态氮、硝态氮、全氮及土壤微生物量氮含量是影响根际土壤净氮矿化的主要因素。土壤化学性质对人工林根际土壤净氮矿化变异的贡献率为29.2%, 显著高于土壤微生物的解释率。充分考虑不同季节林下植被根际土壤的净氮矿化及其关键影响因素可为准确评估人工林生态系统养分循环状况提供重要支撑。  相似文献   

8.
极小种群野生植物是亟需保护、最为濒危的植物, 研究极小种群野生植物物种重要值和竞争格局对保护与恢复具有重要实践意义。本文通过野外群落调查, 研究了湖北省分布的7种极小种群野生植物大别山五针松(Pinus fenzeliana var. dabeshanensis)、水杉(Metasequoia glyptostroboides)、峨眉含笑(Michelia wilsonii)、小勾儿茶(Berchemiella wilsonii)、长果秤锤树(Sinojackia dolichocarpa)、黄梅秤锤树(S. huangmeiensis)和庙台槭(Acer miaotaiense)的重要值及改进后的Hegyi竞争指数。结果表明: 从重要值来看, 水杉、长果秤锤树在各自所属的群落中具有较高的重要值及较低的变异系数, 为群落中的优势种; 庙台槭和黄梅秤锤树重要值较高, 为群落中的亚优势种; 大别山五针松、峨眉含笑、小勾儿茶重要值较低, 为群落伴生种。从改进后的Hegyi竞争指数来看, 湖北省7种极小种群野生植物受到的竞争压力的来源和强度存在较大差异, 大别山五针松、峨眉含笑、小勾儿茶、黄梅秤锤树主要受到种间竞争, 而水杉、长果秤锤树、庙台槭主要受到种内竞争, 因此在制定保护措施前要充分考虑物种间的竞争情况, 才能采取更有针对性的保护措施。  相似文献   

9.
With the current rate of biodiversity loss, conservation management practices require a comprehensive understanding of eco-evolutionary relationships, history, and genetic structure of species. Assessments of genetic diversity are crucial, especially in rare, endemic, or threatened forest tree species with small and isolated populations, such as peat bog pine (Pinus uliginosa N.). Here, we used a novel approach, combining genetic diversity assessment, ecological niche modeling, and population demography inference to explore the complex history of a few remnant populations of this endangered pine. To asses the relative influence of isolation and fragmentation on genetic diversity in the taxonomic context, the patterns of genetic variation found in P. uliginosa were contrasted with those observed in its close relatives with much bigger distribution ranges and larger populations (Pinus sylvestris, Pinus mugo, and Pinus uncinata). We found a similar level of genetic diversity across the species at nuclear loci but contrasting patterns of variability distribution at chloroplast markers. We detected the signatures of an ancient genetic bottleneck dated at around 26 400 years ago, indicating a drastic reduction in the population size of P. uligionosa during the Last Glacial Maximum. In addition, we found substantial differentiation between current populations as a result of enhanced genetic drift during long-lasting isolation. The research suggests potential conservation management strategies for peat bog pine and emphasizes the importance of using complementary approaches for their successful development.  相似文献   

10.
《植物生态学报》2021,44(12):1285
为了探讨人工林内优势乔木和林下灌草根际土壤氮矿化特征, 明确乔灌草根际土壤氮转化差异, 该研究以江西泰和千烟洲站区典型人工杉木(Cunninghamia lanceolata)、马尾松(Pinus massoniana)和湿地松(Pinus elliottii)林为对象, 在植被生长季初期(4月)和旺盛期(7月)分析3种人工林内乔木、优势灌木(檵木(Loropetalum chinense)、杨桐(Adinandra millettii)、格药柃(Eurya muricata))和草本(狗脊蕨(Woodwardia japonica)、暗鳞鳞毛蕨(Dryopteris atrata))根际土壤的净氮矿化速率、土壤化学性质及土壤微生物特征。结果发现: 1)物种、林型和取样季节显著影响了根际土壤净氮矿化速率(Nmin)、净铵化速率(Namm)和净硝化速率(Nnit)。马尾松和湿地松林内林下灌草根际土壤净氮矿化的季节敏感性高于乔木: 4月乔木根际土壤NminNamm显著高于大多数林下灌草, 而7月林下灌草根际土壤NminNamm显著提高, 与乔木不再具有显著差异, 与主成分综合得分方差分析的结果一致。一般情况下, 杉木林NminNnit显著高于马尾松林和湿地松林。7月净氮矿化显著高于4月。2)土壤铵态氮、硝态氮、全氮及土壤微生物量氮含量是影响根际土壤净氮矿化的主要因素。土壤化学性质对人工林根际土壤净氮矿化变异的贡献率为29.2%, 显著高于土壤微生物的解释率。充分考虑不同季节林下植被根际土壤的净氮矿化及其关键影响因素可为准确评估人工林生态系统养分循环状况提供重要支撑。  相似文献   

11.
The effect of Pinus sylvestriformis seedlings density on net photosynthetic rate was studied under elevated CO2. Atmospheric CO2 concentration was controlled in OTC (Open Top Chamber). The results showed that elevated CO2 not only made net photosynthetic rates (NPRs) of two Pinus sylvestriformis seedlings densities increased,but also mitigated their intra-specific competition. Meanwhile,the difference of seedling NPRs between100 and 400 plant·m-2 under 500 μmol·mol-1 air CO2 concentration was less than that under 350 μmol·mol-1 with the same PARlevels. When air CO2 concentration reached 700 μmol·mol-1, the NPRs of seedlings under both planting densities were close to each other with the same PARlevels. The intra-specific competition was minimized under air CO2 concentration of 700 μmol·mol-1.  相似文献   

12.
九种不同材性的温带树种叶水力性状及其权衡关系   总被引:1,自引:0,他引:1       下载免费PDF全文
不同材性树种的解剖、叶脉分布等结构性状差异会影响树木的水分运输效率和水分利用策略, 进而限制树木的生存、生长和分布。然而, 材性对叶导水率、水力脆弱性及其潜在的权衡关系的影响尚不清楚。该研究选择东北温带森林中不同材性的9种树种(散孔材: 山杨(Populus davidiana)、紫椴(Tilia amurensis)、白桦(Betula platyphylla); 环孔材: 蒙古栎(Quercus mongolica)、水曲柳(Fraxinus mandshurica)、胡桃楸(Juglans mandshurica); 无孔材: 红皮云杉(Picea koraiensis)、樟子松(Pinus sylvestris var. mongolica)、红松(Pinus koraiensis), 测量其基于叶面积和叶质量的叶导水率(KareaKmass)、水力脆弱性(P50)、膨压丧失点水势(TLP)及叶结构性状, 以比较不同材性树种叶水力性状的差异, 并探索叶水力效率与安全的权衡关系。结果表明: 3种材性树种的KareaKmassP50均差异显著(p < 0.05)。无孔材树种的KareaKmass最低, 而散孔材和环孔材树种差异不显著; 环孔材树种P50最高, 而散孔材和无孔材树种差异不显著。KareaKmass均与P50显著负相关(p < 0.05), 但散孔材、环孔材和无孔材树种的相关关系分别呈线性、幂函数和指数函数关系。这表明叶水力效率与安全之间存在一定的权衡关系, 但该关系受树木材性的影响。KmassTLP显著负相关(p < 0.01), 其中散孔材和环孔材树种呈线性负相关, 无孔材树种呈负指数函数关系; P50TLP的增加而增加, 这表明树木在面临水分胁迫时, 其质外体和共质体抗旱阻力共同协调保护叶片活细胞, 防止其水分状况到达临界阈值。Kmass与叶干物质含量、叶密度、比叶重均显著负相关, 而P50与之显著正相关(p < 0.01, P50与比叶重的关系除外), 表明树木叶水力特性的变化受相同叶结构特性驱动, 树木增加对水力失调的容忍需要在叶水力系统构建上增加碳投资。  相似文献   

13.
《植物生态学报》2016,40(7):702
Aims Trees with different wood properties display variations in xylem anatomy and leaf vein structure, which may influence tree water transport efficiency and water-use strategy, and consequently constrain tree survival, growth and distribution. However, the effects of wood properties on leaf hydraulic conductance and vulnerability and their potential trade-offs at leaf level are not well understood. Our aims were to examine variations in leaf hydraulic traits of trees with different wood properties and explore potential trade-offs between leaf hydraulic efficiency and safety.
Methods Nine tree species with different wood properties were selected for measuring the leaf hydraulic traits, including three diffuse-porous species (Populus davidiana, Tilia amurensis, Betula platyphylla), three ring-porous species (Quercus mongolica, Fraxinus mandshurica, Juglans mandshurica), and three non-porous species (Picea koraiensis, Pinus sylvestris var. mongolica, Pinus koraiensis). Four dominant and healthy trees per species were randomly selected. The hydraulic traits measured included leaf hydraulic conductance on leaf area (Karea) and dry mass (Kmass) basis, leaf hydraulic vulnerability (P50), and leaf water potential at turgor loss point (TLP), while the leaf structural traits were leaf dry mass content (LDMC), leaf density (LD) and leaf mass per unit area (LMA).
Important findings The Karea, Kmass, and P50 differed significantly among the tree species with different woody properties (p < 0.05). Both Karea and Kmass were the lowest for the non-porous trees, and did not differ significantly between the diffuse-porous and ring-porous trees. The ring-porous trees had the highest P50 values, while the diffuse-porous and non-porous trees showed no significant differences in P50. Both Karea and Kmass were negatively correlated with P50 (p < 0.05) for all the trees, and the relationships for the diffuse-porous, ring-porous, and non-porous trees were fitted into linear, power, exponential functions, respectively. This indicates that significant trade-offs exist between leaf hydraulic efficiency and safety. The Kmass was correlated (p < 0.01) with TLP in a negative linear function for the diffuse- and ring-porous trees and in a negative exponential function for the non-porous trees. The P50 increased with increasing TLP. These results suggest that apoplastic and symplastic drought resistance are strictly coordinated in order to protect living cells from approaching their critical water status under water stresses. The Kmass was negatively correlated (p < 0.01) with LDMC, LD, or LMA, while the P50 was positively correlated with LDMC and LD; this suggests that variations in Kmass and P50 are driven by similar changes in structural traits regardless of wood traits. We conclude that the tree tolerance to hydraulic dysfunction increases with increasing carbon investment in the leaf hydraulic system.  相似文献   

14.
In the present report, a total of thirty-one isolates of Gibberella fujikuroi (Sawada) Wollenw. species complex of Fusarium (section Liseola) morphologically classified as F. moniliforme according to the taxonomy of Nelson, Toussoun and Marasas (1983) were analyzed for their ability to produce fumonisin B1 and fumonisin B2 by an optimized liquid chromatographic method. They were isolated from three hosts (Zea mays, Musa sapientum and Pinus pinea). The results indicate that M. sapientum is a preferential host for G. fujikuroi isolates with low or null capacity for producing fumonisins, while isolates from Z. mays and P. pinea are generally high fumonisin producers.

The molecular characterization of isolates was carried out in parallel using an optimized, simple and low-cost method for isolating DNA from filamentous fungi and polymerase chain reaction-restriction fragment length polymorphisms (PCR-RFLP) of the rDNA intergenic spacer (IGS) region. The haplotypes obtained with Hha I enzyme and combinations of Hha I, EcoR I, Alu I, Pst I and Xho I enzymes provided very characteristic groupings of G. fujikuroi isolates as a function of host type and fumonisin B1 and B2 producing capacity. IGS region restriction patterns showed no relationship to isolate geographical origin. This is the first report on this method's capacity to detect polymorphism permitting discrimination between G. fujikuroi isolates from different hosts and with different toxigenic profiles.  相似文献   


15.
以北京西山6种绿化树种白皮松、油松、柳树、五角枫、银杏、山杨为对象,应用气溶胶再发生器对植物叶片秋季PM2.5吸附量进行定量研究,同时应用原子力显微镜(AFM)观察叶表面微形态特征,分析了叶表面粗糙度等参数,阐释了各树种叶片吸附PM2.5的机制.结果表明: 不同树种单位叶面积PM2.5吸附量排序为白皮松(2.44±0.22 μg·cm-2)>油松(2.40±0.23 μg·cm-2)>柳树(1.62±0.09 μg·cm-2)>五角枫(1.23±0.01 μg·cm-2)>银杏(1.00±0.07 μg·cm-2)>山杨(0.97±0.03 μg·cm-2);从秋季不同月份来看,不同树种单位叶面积PM2.5吸附量表现为11月(2.33±0.43 μg·cm-2)>10月(1.62±0.64 μg·cm-2)>9月(1.51±0.50 μg·cm-2).白皮松和油松有大量凹陷和突起,相对高差较大,粗糙度较大,吸滞PM2.5能力强;柳树和五角枫叶片有褶皱,粗糙度相对较高,分布有大量的突起和凹陷,吸滞PM2.5能力居中;银杏和山杨因其叶表面平滑、气孔多为长圆形,粗糙度较小,吸滞PM2.5能力较弱.不同树种正背面粗糙度平均值为白皮松(149.91±16.38 nm)>油松(124.47±10.52 nm)>柳树(98.85±5.36 nm)>五角枫(93.74±21.75 nm)>银杏(80.84±0.88 nm)>山杨(67.72±8.66 nm),这与不同树种单位叶面积PM2.5吸附量排序完全一致,叶片粗糙度与单位叶面积PM2.5吸附量呈显著正相关(R2=0.9498).为提高城市植被的环境效应,可选择叶表面形态有利于吸滞PM2.5等颗粒物的树种.  相似文献   

16.
以北京西山6种绿化树种白皮松、油松、柳树、五角枫、银杏、山杨为对象,应用气溶胶再发生器对植物叶片秋季PM2.5吸附量进行定量研究,同时应用原子力显微镜(AFM)观察叶表面微形态特征,分析了叶表面粗糙度等参数,阐释了各树种叶片吸附PM2.5的机制.结果表明: 不同树种单位叶面积PM2.5吸附量排序为白皮松(2.44±0.22 μg·cm-2)>油松(2.40±0.23 μg·cm-2)>柳树(1.62±0.09 μg·cm-2)>五角枫(1.23±0.01 μg·cm-2)>银杏(1.00±0.07 μg·cm-2)>山杨(0.97±0.03 μg·cm-2);从秋季不同月份来看,不同树种单位叶面积PM2.5吸附量表现为11月(2.33±0.43 μg·cm-2)>10月(1.62±0.64 μg·cm-2)>9月(1.51±0.50 μg·cm-2).白皮松和油松有大量凹陷和突起,相对高差较大,粗糙度较大,吸滞PM2.5能力强;柳树和五角枫叶片有褶皱,粗糙度相对较高,分布有大量的突起和凹陷,吸滞PM2.5能力居中;银杏和山杨因其叶表面平滑、气孔多为长圆形,粗糙度较小,吸滞PM2.5能力较弱.不同树种正背面粗糙度平均值为白皮松(149.91±16.38 nm)>油松(124.47±10.52 nm)>柳树(98.85±5.36 nm)>五角枫(93.74±21.75 nm)>银杏(80.84±0.88 nm)>山杨(67.72±8.66 nm),这与不同树种单位叶面积PM2.5吸附量排序完全一致,叶片粗糙度与单位叶面积PM2.5吸附量呈显著正相关(R2=0.9498).为提高城市植被的环境效应,可选择叶表面形态有利于吸滞PM2.5等颗粒物的树种.  相似文献   

17.
张豆  景航  王国梁 《生态学杂志》2019,30(2):489-495
全球氮沉降通过影响树木叶片的生理过程影响森林生态系统的结构与组成,但目前关于氮沉降对森林生态系统中不同植物叶片非结构性碳水化合物(NSC)含量的影响还不十分清楚.本研究选取黄土丘陵区人工油松林中油松、辽东栎、忍冬、绣线菊、黄刺玫、茜草、披针苔草7种主要高等植物,比较了3年氮添加(0、3、6、9 g N·m-2·a-1,分别用N0、N3、N6、N9表示)对7种植物叶片中NSC的影响.结果表明: 不同植物叶片可溶性糖、淀粉含量变异很大,二者变异最高的均为黄刺玫,最低的分别为绣线菊和披针苔草;不同植物可溶性糖、淀粉对氮添加的响应存在明显差异.N6处理下茜草的可溶性糖和淀粉的变异高于其他物种,N3和N9处理下绣线菊的变异高于其他物种,可溶性糖和淀粉含量变异最小的物种在不同氮添加水平下不同.随着氮添加水平的增加,油松和披针苔草的可溶性糖含量持续升高,绣线菊持续降低,辽东栎、忍冬和黄刺玫的可溶性糖含量先降低后增加,在N6处理达到最小,而茜草的可溶性糖含量呈现较复杂的变化趋势.氮添加对植物叶片中淀粉含量的影响表现为油松、忍冬和披针苔草的淀粉含量持续增加,绣线菊先降低后增加,在N3处理达到最小,而黄刺玫和茜草则呈现较复杂的变化趋势,辽东栎淀粉含量变化趋势平缓.在氮添加后,土壤pH、有机碳、全氮、全磷与植物叶片NSC含量无相关关系,仅N0和N3水平下上述土壤理化指标会显著影响可溶性糖/淀粉.表明林地不同植物叶片中NSC含量对氮添加的响应明显不同,研究全球氮沉降或氮添加对林地生态系统的影响需要考虑不同植物,尤其不同生活型植物的不同响应.  相似文献   

18.
邹书珍  尹才佳  杨茜  马龙  康迪 《植物研究》2023,43(1):140-149
研究干旱区森林立木竞争及空间分布格局,旨在为揭示干旱区森林恢复演替过程中竞争动态和格局形成驱动机制提供科学依据。经全面调查之后,依据时空互代原理选择了4个处于不同演替阶段,面积为0.25 hm2的大样地进行研究。采用Hegyi邻体密度模型研究立木竞争强度指数。采用Kriging法与Hegyi法相结合研究立木竞争的空间格局。采用一元和二元O-ring函数模型分别研究了乔木空间分布格局和乔木种间空间相关性。结果表明:在上述4个群落中油松(Pinus tabuliformis)种群密度分别为1 476、996、800、648株·hm-2,白桦(Betula platyphylla)种群密度为48、32、44、16株·hm-2,山杨(Populus davidiana)种群密度分别为64、28、24、12 株·hm-2。3种主要乔木的竞争指数由高到低依次为油松、白桦、山杨,各物种竞争指数均随演替阶段的增长而下降;演替后期,胸径2~15 cm油松个体减少明显,而胸径大于30 cm的个体数量有所增加;在所有演替阶段中,油松竞争指数均随着胸径的增加而下降;油松种群竞争空间格局为典型的非匀质斑块状格局。点格局分析结果表明,油松种群在0~5 m尺度呈现聚集分布,且与其他树种在5~15 m尺度存在空间负相关。本研究主要结论如下,黄土高原次生油松林群落中油松竞争指数高于其他物种。油松在各演替阶段均呈现出基于径级大小的竞争不对称性,演替后期油松群落自疏机制为限制小径级个体的生长。竞争的格局在水平空间尺度具有斑块性,随着演替的进行,高竞争斑块在数量、范围和强度上减小,但并不会消失。油松生态策略为小尺度聚集分布,与其他树种在5~15 m尺度空间负相关,这个尺度已经超过了经典的树冠竞争理论范畴,其背后的原因需要更加深入地研究。  相似文献   

19.
为揭示我国西北山地温带针叶林降水利用效率(RUE)的年际变化及其对气象因子响应的差异性, 在宁夏六盘山研究了华山松(Pinus armandii)天然林、华北落叶松(Larix principis-rupprechtii)和油松(Pinus tabulaeformis)人工林的RUE及其与气象因子间的关系。结果表明: 3种针叶林RUE及其年际变化存在种间差异。生产力高的林分(两种人工林)具有更高的RUE, 华北落叶松林年平均生产力和RUE分别为6.72 t·hm -2·a -1和1.12 g·m -2·mm -1, 是华山松林的2.53倍和2.49倍; 油松林分别为5.76 t·hm -2·a -1和0.97 g·m -2·mm -1, 也远高于华山松林。在林龄小于32年时, 3种林分RUE总体表现出随林龄而增加的趋势, 但存在着种间差异, 其中两种人工林增速更快; 华山松林在林龄为32-45年时, RUE呈波动变化, 之后呈下降趋势。RUE的年际变化趋势与林分生产力相似, 即在生产力较高的年份RUE也较高。气象因子对RUE的影响有明显的“滞后效应”和种间差异。RUE受年降水量及其年内分配格局的影响。随年降水量增加, 华山松林RUE逐渐减小, 而华北落叶松和油松林RUE均先升高后降低; 在干旱年份3种针叶林RUE趋向于相近的值(不一定是最大值), 而在湿润年份趋向于相同的最小值; 除受当年春季(4月)或秋季(9-11月)的降水量影响外, 3种针叶林的RUE还受上一年夏秋(8-9月)的降水量影响。3种针叶林的RUE都极显著地受到上年6月、当年3与6月气温的影响; 此外, 华山松林RUE与当年2月气温负相关, 两人工林均受到当年4、5月气温的显著促进作用。  相似文献   

20.
土壤微生物在陆地生态系统的生物地球化学循环中起着重要作用。然而目前尚不清楚氮(N)添加量及其持续时间如何影响土壤微生物群落结构,以及微生物群落结构变化与微生物相对养分限制状况是否存在关联。本研究在亚热带黄山松林开展了N添加试验以模拟N沉降,并设置3个处理:对照(CK, 0 kg N·hm-2·a-1)、低N(LN, 40 kg N·hm-2·a-1)和高N(HN, 80 kg N·hm-2·a-1)。在N添加满1年和3年时测定土壤基本理化性质、磷脂脂肪酸含量和碳(C)、N、磷(P)获取酶活性,并通过生态酶化学计量分析土壤微生物的相对养分限制状况。结果表明: 1年N添加对土壤微生物群落结构无显著影响,3年LN处理显著提高了革兰氏阳性菌(G+)、革兰氏阴性菌(G-)、放线菌(ACT)和总磷脂脂肪酸(TPLFA)含量,而3年HN处理对微生物的影响不显著,表明细菌和ACT对N添加可能更为敏感。N添加加剧了微生物C和P限制,而P限制是土壤微生物群落结构变化的最佳解释因子。这表明,N添加诱导的P限制可能更有利于部分贫营养菌(如G+)和参与P循环的微生物(如ACT)的生长,从而改变亚热带黄山松林土壤微生物群落结构。  相似文献   

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