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1.
本研究以塞罕坝地区华北落叶松纯林、白桦纯林和华北落叶松与白桦混交林为对象,每种林分类型设置2个林分密度(200~340和880~1100株·hm-2)。基于树木大小分层取样,采集树芯样本668条。运用线性混合模型,分析了树种相互作用、林分密度和树木大小对华北落叶松生产力的影响。结果表明: 华北落叶松断面积生长量不同程度地受竞争、胸径、年龄和邻体密度的影响;在林分密度较高的混交林中,由于白桦对华北落叶松生长的促进作用,落叶松生产力发生明显的增益效应;在林分密度较低的混交林中,落叶松和白桦之间不发生相互作用,2个树种的生产力均低于相应的纯林;种内竞争是影响华北落叶松生产力的主要因素;树木大小对华北落叶松生产力产生积极的影响,但影响程度因林分密度和树种组成而异。适当增加林分密度和选择白桦作为混交树种可以提高华北落叶松生产力。  相似文献   

2.
在野外自然感染条件下,以新梢卷叶恢复率作为耐虫性指数,分析了20个不同树种对刺沙棘钉毛蚜的抗虫程度及其耐害补偿能力。结果表明:1)除桃树、沙枣和榆树外,其它树种均为刺沙棘钉毛蚜的寄主树种。2)在所有沙棘树种中,沙棘品种和沙棘杂交种最为感虫,而沙棘种和亚种则抗虫性较好。3)不同树种卷叶恢复程度差异较大。在危害高峰期,卷叶率较低的树种,如橙色、棱果沙棘等,在自身耐害补偿功能和自然天敌的影响下,其卷叶可以完全恢复正常,表现出较强的耐害性;而卷叶率高的树种,如优胜、楚伊、乌兰格木等沙棘品种,由于受害程度较重,自身耐害补偿功能力有限,卷叶不能完全恢复正常,恢复率不到50%,表现出较弱的耐害性;苹果和云南沙棘卷叶恢复率分别为55.6%和50%,耐害性居于上述两者之间。  相似文献   

3.
为量化典型黑土区主要树种根系构型特征,探究其对固土能力的影响,以该区分布较广的榆叶梅、小叶锦鸡儿、白桦、糖槭、红皮云杉、樟子松单株个体为研究对象,采用全根挖掘和WinRHIZO Pro LA2004分析系统相结合对其根系空间分布、几何形态、分形等特征进行测定,同时采用原位整株根系拉拔的方法量化根系垂直拉拔力。结果表明: 榆叶梅以倾斜根为主,小叶锦鸡儿、白桦、糖槭和红皮云杉以水平根为主,樟子松根系在水平和垂直分布上较为均衡;除白桦总根表面积和红皮云杉总根长外,灌木树种总根长、总根表面积显著大于乔木,落叶阔叶乔木总根长、总根表面积显著大于针叶常绿乔木,白桦总根体积显著大于小叶锦鸡儿、糖槭、红皮云杉和樟子松;榆叶梅、小叶锦鸡儿和白桦根系分形维数和分形丰度显著大于红皮云杉和樟子松;榆叶梅、小叶锦鸡儿和糖槭整株根系平均最大垂直拉拔力显著大于白桦、樟子松和红皮云杉。主要受根系总根长、总根表面积和倾斜根数量的影响,榆叶梅、小叶锦鸡儿和糖槭根系表现出较强的固土能力,可作为典型黑土区水土保持植被构建中优先选择的树种。  相似文献   

4.
为揭示亚热带人工林常见造林树种对森林土壤微生物群落的影响,本研究选取马尾松、米老排、枫香、冬青、火力楠、麻栎和光皮桦7个树种为研究对象,采用16S rRNA高通量测序和实时荧光定量PCR技术,探究不同树种土壤细菌的多样性、群落构成以及微生物功能群基因丰度。结果表明: 变形菌门、酸杆菌门和放线菌门是亚热带造林树种的优势细菌门,不同树种细菌多样性和丰富度指数无显著差异。冗余分析表明,土壤容重、土壤C/N、凋落物氮和凋落物C/N是影响土壤细菌组成的主要环境因子。不同造林树种土壤中氨氧化古菌、氨氧化细菌和完全氨氧化菌amoA基因丰度均具有显著差异。完全氨氧化菌在数量上占据优势地位,但只有氨氧化古菌amoA基因丰度与土壤硝态氮呈显著正相关关系,表明氨氧化古菌在亚热带酸性森林土壤自养硝化作用中可能发挥主要作用。相关分析表明,凋落物氮是不同树种影响氨氧化微生物丰度变化的关键驱动因子。本研究表明,土壤微生物功能群对树种的响应比细菌群落结构更加敏感,未来应从微生物功能群角度深入探究不同造林树种对森林生态系统功能的影响机制。  相似文献   

5.
《植物生态学报》2015,39(11):1033
Aims Forest trees alter litter inputs, turnover and rhizospheric activities, modify soil physical, chemical and biological properties, and consequently affect soil organic carbon (SOC) storage and carbon sink strength. That how to select appropriate tree species in afforestation, reforestation and management practices is critical to enhancing forest carbon sequestration. The objective of this study was to determine the effects of tree species on SOC density and vertical distributions.Methods A common garden experiment with the same climate, soil, and management history was established in Maoershan Forest Ecosystem Station, Northeast China, in 2004. The experimental design was a completely randomized arrangement with twenty 25 m × 25 m plots, consisting of monocultures of five tree species, including white birch (Betula platyphylla), Manchurian walnut (Juglans mandshurica), Manchurian ash (Fraxinus mandshurica), Dahurian larch (Larix gmelinii), and Mongolian pine (Pinus sylvestris var. mongolica), each with four replicated plots. A decade after the establishment (2013-2014), we measured carbon density and related factors (i.e., bulk density, total nitrogen concentration, microbial biomass carbon, microbial biomass nitrogen, pH value) in soils of the 0-40 cm depth for these monocultures. Important findings Results showed that tree species significantly influenced the SOC density in the 0-40 cm depth (p < 0.05). SOC density in the 0-10 cm depth varied from 2.79 to 3.08 kg·m-2, in the order of walnut > ash> birch > larch > pine, in the 10-20 cm depth from 1.56 to 2.19 kg·m-2, in the order of pine > walnut > ash > birch > larch, in the 20-30 cm depth from 1.17 to 2.10 kg·m-2, and in the 20-40 cm depth from 0.84 to 1.43 kg·m-2. The greatest SOC density occurred in the birch stands in the 20-40 cm depth. The vertical distributions of SOC density varied with tree species. The percentage of SOC in the 0-10 cm depth over the total SOC in the soil profile was significantly higher in the walnut and larch stands than in others, while the percentage of SOC in the 20-40 cm depth over the total SOC was highest in the birch stands. SOC concentration and soil bulk density differed significantly among the stands of different tree species, and were negatively correlated. SOC density was positively correlated with soil microbial biomass and soil pH in the walnut, ash, and larch stands, and with total nitrogen density in all the stands. We conclude that tree species modifies soil properties and microbial activity, thereby influencing SOC density, and that different patterns of vertical distributions of SOC density among monocultures of different tree species may be attributed to varying SOC controls at each soil depth.  相似文献   

6.
分析不同树种叶片性状的变化有助于了解植物群落结构。该文通过对典型阔叶红松(Pinus koraiensis)林15种阔叶树种的比叶质量、叶片厚度、叶干物质含量、叶绿素含量指数、叶片碳、氮、磷含量的测定, 分析了冠层高度对叶性状及叶性状间相关关系的影响。结果表明, 水曲柳(Fraxinus mandshurica)和大青杨(Populus ussuriensis)上层的比叶质量显著大于下层, 而其他树种冠层间的比叶质量无显著变化; 叶绿素含量指数在白桦(Betula platyphylla)和春榆(Ulmus japonica)冠层间的分布分别为上层显著大于下层和上层显著大于中层; 单位质量氮含量在水曲柳的中层显著大于上层。叶片性状间存在着广泛的相关性, 比叶质量与叶片厚度、干物质含量在三层间均呈显著正相关关系, 而有些性状, 只在一或二个冠层中存在一定的相关性。山杨(Populus davidiana)和大青杨的叶片倾向于选择光合能力较低、营养浓度较低、呼吸速率较慢的一端, 而黄檗(Phellodendron amurense)和山槐(Maackia amurensis)叶片更倾向于光合能力强、营养物质浓度高的一端。不同树种对光照响应的差异可能会改变不同冠层中叶片的形态和化学性状, 从而有助于群落构建和物种共存。  相似文献   

7.
Overhunting in tropical forests reduces populations of vertebrate seed dispersers. If reduced seed dispersal has a negative impact on tree population viability, overhunting could lead to altered forest structure and dynamics, including decreased biodiversity. However, empirical data showing decreased animal-dispersed tree abundance in overhunted forests contradict demographic models which predict minimal sensitivity of tree population growth rate to early life stages. One resolution to this discrepancy is that seed dispersal determines spatial aggregation, which could have demographic consequences for all life stages. We tested the impact of dispersal loss on population viability of a tropical tree species, Miliusa horsfieldii, currently dispersed by an intact community of large mammals in a Thai forest. We evaluated the effect of spatial aggregation for all tree life stages, from seeds to adult trees, and constructed simulation models to compare population viability with and without animal-mediated seed dispersal. In simulated populations, disperser loss increased spatial aggregation by fourfold, leading to increased negative density dependence across the life cycle and a 10-fold increase in the probability of extinction. Given that the majority of tree species in tropical forests are animal-dispersed, overhunting will potentially result in forests that are fundamentally different from those existing now.  相似文献   

8.
《植物生态学报》1958,44(7):730
分析不同树种叶片性状的变化有助于了解植物群落结构。该文通过对典型阔叶红松(Pinus koraiensis)林15种阔叶树种的比叶质量、叶片厚度、叶干物质含量、叶绿素含量指数、叶片碳、氮、磷含量的测定, 分析了冠层高度对叶性状及叶性状间相关关系的影响。结果表明, 水曲柳(Fraxinus mandshurica)和大青杨(Populus ussuriensis)上层的比叶质量显著大于下层, 而其他树种冠层间的比叶质量无显著变化; 叶绿素含量指数在白桦(Betula platyphylla)和春榆(Ulmus japonica)冠层间的分布分别为上层显著大于下层和上层显著大于中层; 单位质量氮含量在水曲柳的中层显著大于上层。叶片性状间存在着广泛的相关性, 比叶质量与叶片厚度、干物质含量在三层间均呈显著正相关关系, 而有些性状, 只在一或二个冠层中存在一定的相关性。山杨(Populus davidiana)和大青杨的叶片倾向于选择光合能力较低、营养浓度较低、呼吸速率较慢的一端, 而黄檗(Phellodendron amurense)和山槐(Maackia amurensis)叶片更倾向于光合能力强、营养物质浓度高的一端。不同树种对光照响应的差异可能会改变不同冠层中叶片的形态和化学性状, 从而有助于群落构建和物种共存。  相似文献   

9.
长白山阔叶红松林不同强度择伐后关键树种的竞争关系   总被引:1,自引:0,他引:1  
天然林择伐改变了林分的树种组成和结构,导致林木竞争关系发生变化,进而影响树木的生长和种群的动态.关键树种在维持群落结构和生态系统功能方面具有至关重要的作用.为了弄清长白山区阔叶红松林典型林型关键树种竞争关系的特点,本研究以红松、紫椴和水曲柳为研究对象,运用Hegyi竞争指数分析了受不同程度采伐干扰后形成的原始林(未受干扰)、轻度择伐林、中度择伐林和重度择伐林的林分结构和竞争关系.结果表明: 与原始林相比,轻度择伐林中关键树种的种群结构没有显著变化;中度择伐林和重度择伐林中3个关键树种大树(胸径DBH≥20 cm)的密度和平均胸径均显著减少,但幼树(2 cm≤DBH<10 cm)的数量增加.所有样地中关键树种的竞争指数均随径级的增加而减小,且二者服从幂函数分布,而林木胸径生长到20 cm后,竞争指数进入稳定状态.在原始林、轻度和中度择伐林中,3个树种的幼树的竞争指数受到非冠层树种的影响最大,而红松小树(10 cm≤DBH<20 cm)和大树主要受红松种内和非冠层树种的影响;水曲柳主要受红松和非冠层树种的影响,紫椴主要受种内和红松的影响.重度择伐林中,白桦是3个树种的主要竞争来源,贡献率均超过50%.根据以上关键树种竞争关系的特点,抚育非冠层树种有利于3个关键种幼树的更新和生长;对于小树来说,还需要根据树种类型来采取相应措施,而大树不需要采用抚育措施.本研究对关键树种培育和天然林择伐后快速恢复具有指导意义.  相似文献   

10.
本研究以贵州省喀斯特典型区域紫云苗族布依族自治县撂荒30余年后自然恢复形成的次生林为对象,设置140 m×120 m固定样地,系统调查样地内幼树更新,并采用空间点格局分析方法分析幼树更新优势种群在不同空间尺度下的分布格局和种间关联性。结果表明: 调查样地中幼树共计1291株,包括39个树种,其中光皮桦、化香、马尾松、枫香和山杨5个树种的幼树个体数量总和达83.7%,重要值总和达77.8%,为幼树更新的优势树种。光皮桦、化香和枫香3个幼树优势种群的空间分布格局在0~60 m空间尺度上均呈现较强的聚集分布;马尾松和山杨2个幼树优势种群在小尺度上呈现聚集分布,大尺度上则随机分布。幼树优势种群空间关联性多呈现正关联,仅马尾松与枫香和山杨在小尺度呈现正关联,大尺度呈现不相关。调查样地5个幼树优势种群空间分布格局及种间关联性差别较大,可能与树种的生物学特性、生境及空间资源的利用密切相关。目前,林分多以先锋树种为主,群落结构不稳定;以马尾松和光皮桦为优势种群的松-桦混交林可能成为下一阶段演替方向,建议通过森林经营措施加快植被恢复进程。  相似文献   

11.
根据在吉林省蛟河实验管理局1 hm2落叶阔叶混交林样地调查结果,对落叶阔叶混交林的群落结构、物种多样性、主要树种的空间分布格局以及树木种群的种间关联进行了研究.结果表明,树木种群优势程度不明显;乔木、灌木、草本的均匀度指数、生态优势度指数都较低.对5个主要乔木种群的空间格局均呈现聚集分布;15个主要树种之间有14个种对存在着显著的种间关联,一个种独立;树种之间正关联的种对少,关联强度低,而负关联多且较高,群落结构组成不稳定,处于软阔叶林向硬阔叶林直至红松阔叶林过渡的阶段.  相似文献   

12.
《植物生态学报》2017,41(10):1051
Aims Although acquisition of soil organic nitrogen (N)(mainly amino acids) by plants is a widespread ecological phenomenon in many terrestrial ecosystems, the rate of organic N uptake and their contributions to plant nutrient supply are poorly understood. Our objective was to determine the relative contributions of inorganic N (NO3-N and NH4+-N) and organic N (amino acids) to plant N uptake in a high-frigid forest ecosystem.Methods The differences in the uptake rate of three different forms of N (NO3-N, NH4+-N and glycine) were quantified by exposing seedlings of two dominant tree species (Picea asperata and Betula albo-sinensis) in subalpine coniferous forests of western Sichuan, China, to trace quantities of K15NO3,15NH4Cl and (U-13C2/15N) glycine.Important findings Both 13C and 15N were significantly enriched in fine roots 2 h after tracer application, indicating the occurrence of glycine uptake in P. asperata and B. albo-sinensis seedlings. The seedlings of two tree species had a significant preference for NO3-N compared with glycine and NH4+-N, and the uptake rate of NO3-N was 5 to 10 times greater than that of glycine and NH4+-N. The roots of seedlings in the two species took up glycine more rapidly than NH4+-N, implying that soil organic N (i.e., amino acids) could be an important N source for the two species in subalpine coniferous forests. The results of this study are of great theoretical significance for understanding N utilization strategies and nutrient regulation processes in plants of the high-frigid forest ecosystems.  相似文献   

13.
观光木群落优势树种生态位和种间联结   总被引:1,自引:0,他引:1  
为了解君子峰自然保护区极小种群观光木群落的种间关系和生态联系,加强观光木野生资源的保护,对群落优势树种的生态位特征和种间联结性进行研究。结果表明: 观光木、浙江润楠、木荷、赤杨叶的生态位宽度优势明显,是主要建群种;20个优势树种的190组种对中,有50.5%的种对生态位重叠值大于0.5,物种间生态位分化程度一般;观光木与其他19个物种生态位重叠度普遍较高,当资源不足时,有竞争风险;优势树种的总体联结性表现为显著正联结,群落处于相对稳定的演替后期;χ2检验、联结系数和Pearson相关系数检验结果均显示,种间联结性的显著率极低,种间独立性较强;种间联结性与生态位重叠之间呈正相关。君子峰观光木群落较为成熟,资源利用充分,种间关系稳定,为促进观光木种群恢复和壮大,可适当限制与观光木生态位重叠度大、有显著负联结的种群规模,提高与之有正相互作用的物种比例,为观光木营造良好的生境。  相似文献   

14.
为探求大小兴安岭过渡区物种共存、生物多样性保护与维持机制,以黑龙江中央站黑嘴松鸡国家级自然保护区蒙古栎天然次生林25 hm2固定样地调查数据为基础,从群落物种组成、结构特征、径级结构以及优势种群的空间点格局分析对该样地进行分析。结果表明:样地内共有胸径≥1 cm的维管植物10种,活立木共 34 778株,平均密度1 392株·hm-2。其中,重要值大于10%的物种共计4种,依次为蒙古栎(Quercus mongolica Fisch.ex Ledeb.)、黑桦(Betula dahurica Pall.)、白桦(Betula platyphylla Suk.)、兴安落叶松(Larix gmelinii(Rupr.)Kuzen),占全样地的89.65%。该样地的Shannon-Wiener多样性H′、Simpson多样性D、Pielou均匀度指数J分别为1.577、0.760、0.685。表明该群落稀有物种较少,常见种比例较大,群落结构较为简单。样地内所有树种平均胸径10.77 cm。群落内总径级分布呈“倒J型”,符合典型异龄林的分布特征。黑桦、白桦径级分布近似“倒J型”,属于增长种群,蒙古栎种群径级结构为双峰型。兴安落叶松种群径级近似正态分布,有随演替进行逐渐消失的趋势,属于该群落的衰退种。在CSR模型下,4种优势种群的空间格局主要表现为聚集分布,且聚集程度随尺度增加聚集程度减弱,最终呈现随机或均匀分布趋势。在NS模型下,除兴安落叶松外,其余3种植株在小尺度(0~5 m)表现聚集性,可能是受种子的扩散限制的影响。对比4种优势种群,聚集强度表现为黑桦>白桦>蒙古栎>兴安落叶松,因此我们推断群落内不同种群的聚集强度不仅与研究尺度相关,与种群的多度也存在一定的相关关系。  相似文献   

15.
李国春  宋华东  李琦  卜书海 《生态学杂志》2017,28(11):3487-3493
采用单变量和双变量O-ring函数对太白山大熊猫栖息地巴山冷杉林主要树种的空间分布格局、种间关联性及其与林下开花箭竹的空间关联性进行了多尺度分析.结果表明: 巴山冷杉林中,巴山冷杉数量最多,但种群结构衰退,白桦种群相对年轻,种群结构稳定,红桦种群也呈衰退趋势;3个主要树种在小尺度上呈聚集分布,随尺度增加,逐渐表现为随机分布.3个树种的空间关联性主要表现在小尺度范围内,随尺度增加,空间分布格局逐渐表现为不关联;巴山冷杉和白桦与开花秦岭箭竹在大、中尺度内呈现正相关,而红桦与开花秦岭箭竹在大、中尺度上表现出负相关.大熊猫栖息地内乔木和林下秦岭箭竹共同推动森林的动态演替和发展,进而影响秦岭大熊猫栖息地的环境变化.  相似文献   

16.
以木札岭世界地质公园3 hm2的温带落叶阔叶林为研究对象, 分析了群落的物种组成、胸径结构、群落分类和主要物种的空间分布格局。结果显示: 样地内共有木本植物31科52属85种, 以蔷薇科、桦木科、卫矛科、忍冬科、杨柳科和槭树科为主, 锐齿槲栎(Quercus aliena var. acuteserrata)和华山松(Pinus armandii)为群落内优势种, 稀有种和偶见种分别占总物种数的20.0%和28.24%。物种径级分布遵从典型的倒“J”型, 植物群落更新状况良好。多元回归树经过交叉验证认为可将该样地划分为4个群落类型: 1)锐齿槲栎+华山松+秦岭木姜子(Litsea tsinlingensis) +微毛樱桃(Cerasus clarofolia) +三桠乌药(Lindera obtusiloba)群落; 2)锐齿槲栎+腺柳(Salix chaenomeloides) +湖北花楸(Sorbus hupehensis)群落; 3)锐齿槲栎+臭椿(Ailanthus altissima) +微毛樱桃+秦岭木姜子群落; 4)锐齿槲栎+白蜡(Fraxinus chinensis) +秦岭木姜子+山梅花(Philadelphus incanus)群落。在完全随机分布模型下, 样地中主要物种在整个研究尺度中全部呈聚集分布, 并且这些物种主要聚集分布在不同的生境中, 具有明显的地形生境偏好;在异质性泊松分布模型下, 这些物种在不同尺度上主要呈随机分布或规则分布。该研究结果表明地形生境异质性是影响木札岭样地物种空间分布的重要因素。通过该研究可增加对木札岭世界地质公园植物组成、群落结构和群落分布的认识, 同时可为该区域生物多样性保护和森林管理提供参考。  相似文献   

17.
《植物生态学报》2021,44(12):1203
Aims The subject of this study was to investigate warming effects on leaf stomatal traits, anatomical structure and photosynthetic traits of four common tree species in subtropical evergreen broad-leaved forest of southern China, and to compare their physiological adaptability to warming. Our study aims to provide a theoretical basis for better predicting the tree growth of native forests in a warming climate.Methods One-year-old seedlings of Syzygium rehderianum, Ormosia pinnata, Castanopsis hystrix and Schima superba were selected and exposed to two levels of temperature (ambient temperature and infrared heater warming). Leaf stomatal traits, anatomical structure and photosynthetic characteristics were measured to represent the abilities of stomatal regulation, leaf tissue regulation and nutrient maintenance, respectively.Important findings For Syzygium rehderianum, warming decreased its leaf sponge tissue thickness, photosynthetic nitrogen-use efficiency (PNUE) and photosynthetic phosphorous-use efficiency (PPUE). Seedling of O. pinnata exposed to warming showed increased stomatal conductance, photosynthetic rate, PNUE and PPUE, but decreased stomatal density, leaf thickness and palisade tissue thickness. For C. hystrix, warming decreased the stomata size, but did not affect its photosynthetic rate. Seedling of Schima superba exposed to warming showed lower stomata density, leaf palisade tissue thickness, photosynthetic rate, PNUE and PPUE, but higher stomata size. These results suggested that O. pinnata, Syzygium rehderianum and Schima superba could reduce their leaf thickness to acclimate to warming conditions. The abilities of stomatal regulation, nutrient maintenance, photosynthetic rate and PNUE varied among these tree species. Warming would be beneficial for the growth of O. pinnata due to increased photosynthetic rate, PNUE and PPUE, while not for Syzygium rehderianum and Schima superba, the two dominant tree species of native forests. This study indicated that, with projected climate change, O. pinnata may replace Syzygium rehderianum and Schima superba as a new dominant tree species in the subtropical evergreen broad-leaved forest for its stronger adaptability to warming.  相似文献   

18.
以红枝蒲桃(Syzygium rehderianum)、海南红豆(Ormosia pinnata)、红锥(Castanopsis hystrix)和木荷(Schima superba) 4种南亚热带常绿阔叶林典型树种为研究对象, 采用红外-箱式增温的方法, 研究4个树种叶片气孔性状(表征气孔调节能力)、叶片解剖结构(表征叶片组织调节能力)和光合特征(表征养分维持能力)对增温的响应情况, 比较不同树种在增温背景下的生理生态适应能力, 为预测该地区森林植物在全球变暖情形下的生长变化趋势提供理论依据。结果表明: 增温后, 红枝蒲桃叶片海绵组织厚度减小, 且光合氮利用效率(PNUE)和光合磷利用效率(PPUE)降低; 海南红豆气孔导度增大、气孔密度减小以及叶片厚度和栅栏组织厚度减小, 同时光合速率、PNUEPPUE升高; 红锥气孔大小缩小, 但光合速率不变; 木荷气孔增大而密度减小, 栅栏组织厚度减小, 光合速率、PNUEPPUE降低。综上所述, 红枝蒲桃、海南红豆和木荷能够通过降低叶片厚度来适应高温环境, 不同物种的气孔调节、养分维持、光合速率和光合养分利用效率对增温的响应存在差异。增温有利于固氮植物海南红豆的生长, 但不利于传统优势树种木荷和红枝蒲桃的生长。因此, 在未来气候变暖的情况下, 固氮植物海南红豆由于具有较强的适应能力, 在南亚热带常绿阔叶林中可能会取代木荷和红枝蒲桃等成为新的优势树种。  相似文献   

19.
以黔中天龙山2 hm2喀斯特次生林为对象,采用成对相关函数g(r)结合完全随机模型(CSR)研究重要值前4位优势树种的空间分布格局及其关联性。结果表明: 样地树种的径级结构呈倒“J”型分布,在优势树种窄叶石栎和圆果化香的影响下,第Ⅴ径级(≥10 cm)的数量较多。窄叶石栎呈现倒“J”型分布,种群更新良好,处于生长发育初级阶段;而圆果化香和云南鼠刺随着径级的增大数量逐渐递增,成年树、大树数量远多于幼树、小树,表明该种群更新不足,处于生长发育的中后期并逐渐衰退。除窄叶石栎外,其余优势树种整体呈现出在较大尺度上聚集分布,聚集程度随着尺度的增大逐渐下降并趋于随机分布,此规律在幼树径级中表现得尤为突出;而受各种因素的影响,各个树种不同径级呈现出不同的空间分布格局。在种间关联上,4个优势树种之间大多呈现负关联或者无关联关系,树种重要值越高与其他优势树种关联程度越低,呈现负关联的2个树种在小尺度上关联程度最低,随着尺度的增大负关联程度逐渐降低并趋向于无显著关联。  相似文献   

20.
《植物生态学报》2016,40(11):1179
Aims The objective of this paper is to quantify the species composition and spatial distribution pattern in a deciduous broad-leaved forest in temperate to subtropical ecological transition zone.
Methods In this study, a 3-hm2 forest was selected in the temperate to subtropical ecological transition zone to analyze the community species composition, structure of diameter at breast height, community classification and spatial distribution pattern of dominant tree species.
Important findings Our results showed that in the plot there were 85 species, 52 genera and 31 families, mainly composed of Betulaceae, Celastraceae, Caprifoliaceae, Salicaceae and Aceraceae. Quercus aliena var. acuteserrata and Pinus armandii are dominant species of the community tree layer. The rare species and occasional species accounted for 20.0% and 28.24% of total species respectively. Size distribution of all species showed an invert J-shape, which indicates that the community is in a stable and normal growth status. Using multiple regression trees, the community in this plot can be divided into four categories: 1) Quercus aliena var. acuteserrata + Pinus armandii + Litsea tsinlingensis + Cerasus clarofolia + Lindera obtusiloba; 2) Quercus aliena var. acuteserrata + Salix chaenomeloides + Sorbus hupehensis; 3) Quercus aliena var. acuteserrata + Ailanthus altissima + Cerasus clarofolia + Litsea tsinlingensis; 4) Quercus aliena var. acuteserrata + Fraxinus chinensis + Litsea tsinlingensis + Philadelphus incanus. Under the completely random distribution model, the main species in the plot display clustered distributions, with the different species occurring in different habitat types, showing obvious terrain habitat preferences. However, under the heterogeneous Poisson distribution model, these species at different scales are distributed randomly or regularly. This study helps to understand the plant community species composition of the Muzhaling World Geopark, community structure and community distribution. The results show that the terrain habitat heterogeneity is an important factor influencing the spatial distribution of the species. The present work improves the understanding of plant community in Muzhaling World Geopark, and provides technical reference for biodiversity conservation and forest management of this area.  相似文献   

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