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1.
高山松(Pinus densata)是油松(P. tabuliformis)和云南松(P. yunnanensis)的天然二倍体杂交种, 是为数不多的与亲本种没有严格生殖隔离的同倍体杂交种。为了检测3个种在油松生境下的苗期适应性和生长发育特点, 为高山松成种机制提供数据, 选取了代表高山松及其亲本种遗传多样性的25个种群, 在油松生境下对比分析了苗期11个适应性指标和3个生长发育指标。结果表明, 大部分适应性指标和生长发育指标在种间和种内群体间差异显著, 主要变异存在于种间及种内群体间; 出苗率、2011年11月和2012年10月的封顶率、二年生苗在2012年10月的保存率等指标的种间方差分量较大, 种内变异较小, 是体现种间苗期适应性和生长发育状况的重要指标。油松在大部分适应性指标和3个生长发育指标上均表现最好, 总体适合度高于云南松和高山松; 云南松在封顶率和保存率上都居于最低值, 大部分一年生苗木到11月底仍未出现封顶现象且黄苗比例最高, 二年生苗的存活率为0, 表明云南松在油松生境下适合度最低; 高山松除了在紫苗比例上表现出超亲优势外, 大部分性状居于亲本种之间。此外, 位于青藏高原东北部的高山松祖先种群在适应性上表现较好, 具有在油松生境下发展的潜力; 而位于青藏高原西部的高山松种群及东南部的康定种群对油松生境的适应性较差。研究揭示出生态选择在高山松的同倍性杂交物种形成中起到了关键作用。  相似文献   

2.
研究近缘种复合体的针叶表型变异及其地理分布格局,有助于从生理生态机制上理解针叶树种的地理变异、种群动态以及对区域气候的响应。云南松(Pinus yunnanensis)、思茅松(P. kesiya var. langbianensis)和卡西亚松(P. kesiya)是一个跨越了东南亚热带和亚热带地区的近缘种复合体,具有典型的地理替代分布特征,拥有丰富的表型变异和遗传变异。该研究在3种松树分布区采集了31个代表种群,每个种群选择10个样木,测量了针叶长度、气孔密度、气孔保卫细胞长度和宽度、木质增厚层长度和宽度、气孔腔长度和宽度等共8个性状。采用巢式方差分析计算性状在树种间和种群间的差异,通过主成分分析和聚类分析揭示针叶性状的种群变异结构;分析针叶性状随纬度的变化规律,运用多元线性回归模型来确定影响针叶性状变异的主要环境因子。结果表明:(1)针叶性状在种群间的变异系数为12.01%–34.08%,气孔保卫细胞长度、木质增厚层长度和宽度、针叶长度和气孔密度的表型分化系数较高;(2)云南松和卡西亚松在大多数性状上存在显著差异,思茅松介于二者之间,聚类分析结果表明3种松树针叶性状的种群变异结构...  相似文献   

3.
拉雅松是广西西北部稀有的乡土用材、用脂树种,有较高的经济价值,但其遗传多样性状况及种间进化关系未知。利用SSR分子标记检测拉雅松群体遗传多样性,希望对该物种保护策略的制定提供参考依据。此外,鉴于该地区自然分布的松属树种仅有拉雅松、细叶云南松与马尾松三个种,试图利用SSR分子标记信息分析拉雅松与细叶云南松、马尾松的种间亲缘关系。结果表明:7对SSR引物在拉雅松群体共检测到14个等位基因。有效等位基因数为1.653,观测杂合度为0.577,期望杂合度为0.374,Shannon信息指数为0.540,Nei多样性指数为0.367,表明拉雅松具有较高的遗传多样性。拉雅松与马尾松遗传距离最近为0.0175,与3个细叶云南松群体距离较远,平均为0.0525。拉雅松与马尾松、细叶云南松平均共祖系数(Θ)分别为0.094、0.066,据此推测拉雅松可能与马尾松存在较近的亲缘关系。讨论了拉雅松的遗传多样性保护策略。  相似文献   

4.
高山松种实性状与生殖适应性   总被引:4,自引:0,他引:4       下载免费PDF全文
高山松(Pinus densata)是云南松(P. yunnanensis)与油松(P. tabulaeformis)自然杂交产生的二倍体杂种,是植物同倍体杂交物种形成的典型案例。高山松分布于青藏高原东南缘,占据了两个亲本种都不能正常生长的高海拔地带。良好生殖适应性的产生是物种形成的关键,但对高山松在高海拔生境下生殖适应性的变异与杂交起源遗传背景关系的研究尚未见报道。该研究通过对来自该种分布区内6个代表居群样本、13个反映高山松生殖适应性的种实性状的分析,探讨了其生殖性状在居群水平的变异模式,揭示了具有不同遗传组成和起源历史的高山松居群的生殖特性。研究结果表明:6个研究居群在种实性状上存在显著差异;可育种鳞数、总种鳞数、总种子数、可育种鳞率和可育种鳞密度等与纬度呈显著负相关关系;球果结种率与经度和生态梯度值呈显著的正相关关系;胚珠败育率则与经度和生态梯度值呈显著的负相关关系;球果长度也呈现了与经度的显著负相关。高山松球果结种率很高,平均为74%;球果的结种数、种子长和种翅长与云南松、油松及其它松属双维管亚属多数种接近;球果长度、球果总种鳞数接近油松的报道。这些结果表明,高山松在亲本种不能正常生长、繁衍的高原环境下具备正常的生殖能力;其种实特征在居群间分化显著并呈现一定的地理梯度变化。居群间的显著差异反映了其杂种起源特性,与高山松居群的遗传背景有关,也反映了处在异质生态环境中的高山松居群具有各自的生殖生态进化趋向。  相似文献   

5.
云南东南部松属植物分布的特点   总被引:1,自引:0,他引:1  
樊国盛  薛纪如   《广西植物》1993,13(4):349-354
本文从云南东南部松属植物的种类入手,探讨了其生态特性及分布特点。通过分析可以看出由各个方向分布而来的松属各种在此都趋向于其分布的边界,使得本区成为松属植物中不同区系成分分布的一个限制地域,并就产生这种特殊分布的原因进行了探讨;进一步从松属植物分类上分析了国产松属性状状态及其组合的分布,继此又对我国各地区所产松属植物与西南地区进行了比较,得出了云南东南部是我国松属植物发育较好和多样化的一个地区。此外,还分析了本区松属的特有种和替代种。并提出了大明松与黄山松的区别点属黄山松的变异范围之内,应予归并。  相似文献   

6.
中国松疱锈病菌锈孢子表面形态的扫描电镜观察   总被引:1,自引:0,他引:1  
中国10种松树的疱锈病菌锈孢子表面形态,在扫描电镜下观察并进行比铰,可归纳为两种类型:一是以单维管束松类的五针松的红松疱锈病菌(Cronartium ribicola)为代表,包括华山松和西伯利亚红松;另一是以双维管束松类的云南松疱锈病菌(C. flaccidum)为代表,包括樟子松、油松、赤松、马尾松、黄山松、思茅松等。孢子表面突起的形状及环纹层次是识别这两种锈疱子的主要特征。  相似文献   

7.
松属的思茅松(Pinus kesiya var. langbianensis)、云南松(P. yunnanensis)和高山松(P. densata)是组成中国西南不同海拔针叶森林的主要树种,然而这三个树种在发育速度尤其是高生长方面表现出明显的差异。为了弄清引起这些变异的生理和形态学原因,本文将三种松树种植于同一环境下,对其光合作用、生物量分配、生长速率和叶片性状进行了研究。研究发现,与来源于高海拔的树种相比,低海拔的树种有更高的株高、以及更大的干物质重量、相对生长速率、叶质比、茎质比和比叶面积,但叶片氮含量、碳含量和根质比较低。高海拔树种的光合速率并不明显低于低海拔树种。相对生长速率和树高均与叶质比呈显著正相关,与根质比负相关,但与最大光合速率没有显著关系。这些结果表明,生物量的分配式样和长期的形态特性能够更好地预测不同海拔松树的生长表现。  相似文献   

8.
松属的思茅松(Pinus kesiya var.1angbianensis)、云南松(P.yunnanensis)和高山松(P.densata)是组成中国西南不同海拔针叶森林的主要树种,然而这三个树种在发育速度尤其是高生长方面表现出明显的差异。为了弄清引起这些变异的生理和形态学原因.本文将三种松树种植于同一环境下,对其光合作用、生物量分配、生长速率和叶片性状进行了研究。研究发现,与来源于高海拔的树种相比,低海拔的树种有更高的株高、以及更大的干物质重量、相对生长速率、叶质比、茎质比和比叶面积,但叶片氮含量、碳含量和根质比较低。高海拔树种的光合速率并不明显低于低海拔树种。相对生长速率和树高均与叶质比呈显著正相关,与根质比负相关,但与最大光合速率没有显著关系。这些结果表明,生物量的分配式样和长期的形态特性能够更好地预测不同海拔松树的生长表现。  相似文献   

9.
中国10种松树的疱锈病菌锈孢子表面形态,在扫描电镜下观察并进行比铰,可归纳为两种类型:一是以单维管束松类的五针松的红松疱锈病菌(Cronartium ribicola)为代表,包括华山松和西伯利亚红松;另一是以双维管束松类的云南松疱锈病菌(C. flaccidum)为代表,包括樟子松、油松、赤松、马尾松、黄山松、思茅松等。孢子表面突起的形状及环纹层次是识别这两种锈疱子的主要特征。  相似文献   

10.
草木灰对四种松属种子发芽和幼苗生长的影响   总被引:2,自引:0,他引:2  
刘发林 《生态学报》2017,37(17):5673-5680
火干扰不仅影响森林生态系统的结构与功能,而且影响群落更新与演替。为了研究草木灰对4种松属种子萌芽和幼苗生长的影响,在湖南省株洲市黄丰桥林场采集马尾松、云南松、湿地松和火炬松种子,以马尾松次生林火烧迹地的草木灰为基质,设置对照和3个草木灰处理,进行播种试验及生长观测。结果表明:(1)草木灰处理下4个物种的种子发芽率比对照试验低,并呈现随草木灰含量的增加而降低的趋势,低草木灰含量处理马尾松种子发芽率不及对照一半,中、高草木灰含量处理发芽率更低;云南松、湿地松和火炬松种子发芽率规律类似于马尾松,而高草木灰含量处理发芽率为0。(2)培养皿播种平均发芽时间比花盆播种长,无论草木灰处理还是培养条件(培养皿或花盆),马尾松和云南松种子平均发芽时间比湿地松和火炬松短。(3)4个物种种子播种14周后,对照试验中马尾松和云南松幼苗死亡率最低,而火炬松和湿地松幼苗死亡率相对增加。(4)播种14周后不同试验处理4个物种幼苗生长差异不明显。火炬松、湿地松、云南松和马尾松幼苗的单株平均干重分别达0.038、0.031、0.027、0.024 g。各物种叶干重按降序排列依次是火炬松(0.026 g)湿地松(0.019 g)云南松(0.017 g)马尾松(0.016 g),根和茎的干重比重相当,约占对应物种幼苗叶干重的三分之一。研究表明以草木灰为培养基质,马尾松和云南松种子的发芽率较高,平均发芽时间较短,更适合作为火烧迹地植被恢复先锋树种,为火干扰后选择人工促进天然更新树种提供参考。  相似文献   

11.
The seed-dispersal systems of Coulter pine (Pinus coulteri), gray pine (P. sabiniana), and Torrey pine (P. torreyana), all of the subsection Sabinianae, are not well understood. These pines occur in arid and semi-arid foothills and mountains of California that are subjected to frequent fires. Cone and seed traits of these three California pines are compared to those of four species of pines (sugar pine, P. lambertiana; Jeffrey pine, P. jeffreyi; ponderosa pine, P. ponderosa; and lodgepole pine, P. contorta) that occur in more mesic environments in the nearby Sierra Nevada mountains. The cones of the Sabinianae pines are large with thick, dense scales, and the scales of gray and Coulter pines are armed with sharp, recurved spines. The seeds of all three species are large, and those of gray and Torrey pines are nearly wingless. In contrast, the Sierra Nevada pines have small to medium-sized seeds with large wings that are initially dispersed by the wind. Heavy wing loading of the Sabinianae pine seeds causes them to fall rapidly, and they are not dispersed far by wind. However, animals remove the fallen seeds rapidly, and rodents and jays scatter hoarded many seeds in the soil. This caching activity results in seedling establishment. The unusual morphology of the cones and seeds of the Sabinianae pines is interpreted as a combination of traits that attract animal dispersers, thwart the foraging activities of seed predators, and promote the survival of seeds in an environment subject to frequent fires.  相似文献   

12.
Aim  Native American fire use influenced bark thickness of coastal and island Monterey pine ( Pinus radiata D. Don) and bishop pine ( Pinus muricata D. Don) populations.
Methods  Basal bark thickness and d.b.h. were measured in two common-garden pine plantations that included all five native Monterey pine populations and nine of 10 native bishop pine populations. One-factor analysis of covariance was used to determine if significant differences in bark thickness existed between island and coastal populations.
Results  Bark thickness was measured on 228 Monterey and 42 bishop pines. Bark thickness in coastal and island Monterey pine populations was significantly different. Bark thickness in coastal and island bishop pine populations was not significantly different.
Main conclusions  Basal bark was thick in populations where there was a history of Native American burning. Basal bark was thin in two island populations where Native Americans have been absent or distant from the pine populations. While other influences no doubt affect the evolution of lower-bole bark thickness, it appears that frequent anthropogenic fires may be a powerful selection force.  相似文献   

13.
Seed dispersal selection pressures may cause morphological differences in cone structure and seed traits of large‐seeded pine trees. We investigated the cone, seed, and scale traits of four species of animal‐dispersed pine trees to explore the adaptations of morphological structures to different dispersers. The four focal pines analyzed in this study were Chinese white pine (Pinus armandi), Korean pine (P. koraiensis), Siberian dwarf pine (P. pumila), and Dabieshan white pine (P. dabeshanensis). There are significant differences in the traits of the cones and seeds of these four animal‐dispersed pines. The scales of Korean pine and Siberian dwarf pine are somewhat opened after cone maturity, the seeds are closely combined with scales, and the seed coat and scales are thick. The cones of Chinese white pine and Dabieshan white pine are open after ripening, the seeds fall easily from the cones, and the seed coat and seed scales are relatively thin. The results showed that the cone structure of Chinese white pine is similar to that of Dabieshan white pine, whereas Korean pine and Siberian dwarf pine are significantly different from the other two pines and vary significantly from each other. This suggests that species with similar seed dispersal strategies exhibit similar morphological adaptions. Accordingly, we predicted three possible seed dispersal paradigms for animal‐dispersed pines: the first, as represented by Chinese white pine and Dabieshan white pine, relies upon small forest rodents for seed dispersal; the second, represented by Korean pine, relies primarily on birds and squirrels to disperse the seeds; and the third, represented by Siberian dwarf pine, relies primarily on birds for seed dispersal. Our study highlights the significance of animal seed dispersal in shaping cone morphology, and our predictions provide a theoretical framework for research investigating the coevolution of large‐seeded pines and their seed dispersers.  相似文献   

14.
? The mapping of functional traits onto chronograms is an emerging approach for the identification of how agents of natural selection have shaped the evolution of organisms. Recent research has reported fire-dependent traits appearing among flowering plants from 60 million yr ago (Ma). Although there are many records of fossil charcoal in the Cretaceous (65-145 Ma), evidence of fire-dependent traits evolving in that period is lacking. ? We link the evolutionary trajectories for five fire-adapted traits in Pinaceae with paleoatmospheric conditions over the last 250 million yr to determine the time at which fire originated as a selective force in trait evolution among seed plants. ? Fire-protective thick bark originated in Pinus c. 126 Ma in association with low-intensity surface fires. More intense crown fires emerged c. 89 Ma coincident with thicker bark and branch shedding, or serotiny with branch retention as an alternative strategy. These innovations appeared at the same time as the Earth's paleoatmosphere experienced elevated oxygen levels that led to high burn probabilities during the mid-Cretaceous. ? The fiery environments of the Cretaceous strongly influenced trait evolution in Pinus. Our evidence for a strong correlation between the evolution of fire-response strategies and changes in fire regime 90-125 Ma greatly backdates the key role that fire has played in the evolution of seed plants.  相似文献   

15.
Question: What was the role of fire in montane pine‐oak (Pinus‐Quercus) stands under changing human land uses on a temperate forest landscape in eastern North America? Location: Mill Mountain in the central Appalachian Mountains, Virginia, US. Methods: A dendroecological reconstruction of fire history was generated for four stands dominated by xerophytic pine and oak species. The fire chronology began under presettlement conditions following aboriginal depopulation. Subsequent land uses included European settlement, iron mining, logging, and US Forest Service acquisition and fire protection. Results: Fires occurred approximately every 5 years until 1930 without any evidence of a temporal trend in fire frequency. Burning ceased after 1930. Area‐wide fires affecting multiple pine stands were common, occurring at intervals of approximately 16 years. Most living pines became established during the late 1800s and early 1900s. Dead pines indicated that an older cohort established ca. 1730. Most hardwoods were established between the 1920s and 1940s. Conclusions: Except for fire protection, changes in land use had no discernible influence on fire frequency. Lightning ignitions and/or large fire extent may have been important for maintaining frequent burning in the 1700s, while fuel recovery may have constrained fire frequency during later periods. The disturbance regime appears to be characterized by frequent surface fires and occasional severe fires, insect outbreaks or other disturbances followed by pine recruitment episodes. Industrial disturbances appear to have had little influence on the pine stands. The greatest impact of industrial society is fire exclusion, which permitted hardwood establishment.  相似文献   

16.
《农业工程》2023,43(1):1-10
It is established that pines persisted despite the Cretaceous rise of angiosperms by differentiating into two groups: Diploxylon pines (subgenus Pinus), adapted to various fire regimes, and Haploxylon pines (subgenus Strobus), adapted to abtiotic stress. However, the distribution and attributes of the pines have not been assessed at the group levels either globally or for regional entity like Himalaya. Here, we have addressed this knowledge gap by investigating Himalayan pines. While Diploxylon pines (e.g. Pinus roxburghii) occur in a relatively productive outer ranges, largely below 2000 m, the Haploxylon pines (e.g., P. wallichiana) occur in abiotically stressful environments of high ranges (between 2000 and 3800 m). Adapted to small, frequent, man-made surface fires, the Diploxylon pines have characters, such as thick bark, and self-pruning branches. The capacity of Diploxylon pines to take advantage of disturbance resulting from fire and biomass extraction has also contributed to their range expansion. The stress-tolerant, Haploxylon pines in Himalayas have shorter needle length (14.17 ± 3.5 cm), longer needle longevity (3 ± 0.5 years), and greater seed mass (146.1 ± 101.7 mg/seed), as compared to Diploxylon pines (20.7 ± 2.6 cm, 1.92 ± 0.1 years, and 41 ± 20.1 mg/seed, respectively). The Diploxylon and Haploxylon pines were neatly separated, both spatially and in adaptational traits.  相似文献   

17.
Aleppo pine (Pinus halepensis Mill.) is adapted to fire, the most important disturbance in Mediterranean ecosystems. This species is known to be sensitive to fire and is usually killed when burned, but has a powerful regenerative capacity following burning. Sometimes, however, pines survive within burned areas, suggesting a certain potential for recording fire events in terms of age-structure and eventually scars. In the present study, fire scars on Aleppo pine trunks were used to construct a 150-year fire record in a burned forest in southern France. Four fires were detected with a mean fire return interval of 27 years: minimum 13 years and maximum 45 years. The age structure of the Aleppo pine population was analyzed on the basis of dated fire-scars in order to test the role of fire in creating the polymodal structure of the pine population. Results show the presence of multiple “cohorts” (subpopulations) of Aleppo pine. There appear to have been several pulses of tree recruitment, with the two largest cohorts corresponding to regeneration after the 1919 and 2000 fires. Other fires were recognized based on fire scars but these were not associated with obvious post-fire pine recruitment. Regeneration success is likely to depend on fire severity and on the length of fire-free intervals. Fire history and associated age-structure can thus be reconstructed using Aleppo pine stands.  相似文献   

18.
We surveyed postfire vegetation at five sites at high elevations (> 2000 m) in the Cordillera Central, Dominican Republic. Highlands of the Cordillera Central are dominated by a single pine species, Pinus occidentalis, but plant communities are rich with endemics and conservation and fire management efforts in these systems are ongoing. The burns were 2–7 yr in age and had consumed nearly all shrub crowns. Pines suffered high mortality (> 50%, all sites combined), but shrubs resprouted at high rates (88%, N = 957) after fire. All shrub taxa produced basal resprouts; eight of 11 shrub taxa measured had resprouting rates > 90 percent, while Baccharis myrsinites had the lowest (56%). Most taxa grew to prefire height quickly (within 5–7 yr), with regrowth of stem diameters lagging behind. Patterns and rates of shrub recovery resembled those documented in high elevation shrublands in Costa Rica and Brazil. Pinus occidentalis does not resprout, but larger individuals can survive fire. Survival increases dramatically when trees attain > 13-cm dbh, when bark becomes thick enough to protect cambial tissue. Overall, pines are regenerating much more slowly than shrubs, but seedling establishment varied considerably between sites. Frequent fires may cause a decline in pines and an increase in shrub- or grass-dominated communities. Succession in these high elevation fire-dependent pine forests favors taxa already present in the preburn vegetation, with woody composition changing little after fire, in contrast to lower-elevation cloud forest, where postfire vegetation has been shown to bear little resemblance to mature forest even after several years.  相似文献   

19.
Aim Present northern distribution limit of jack pine (Pinus banksiana Lamb.) follows the northern limit of continuous open boreal forest in western Canada, but not in eastern Canada where it is located further south. We tested the hypothesis that fire plays a more important role than climate in explaining the present position of the northern distribution limit of jack pine. Location An experimental jack pine plantation was set up in 1992, c. 300 km north of the present distribution limit of the species, in the Boniface river area of northern Québec (57°43′ N, 76°05′ W). Methods Climate and fire data were used to compare sites at and north of the present distribution limit of jack pine. In 2001, surviving individuals from the plantation were measured (total height, annual shoot elongation, basal diameter, and presence/absence of cones). Results Climate data from the ten weather stations used in this study did not show major differences. The northern limit of jack pine distribution is closely associated with the occurrence of fires larger than 200 ha. Survival of the planted jack pines was 31%. About 25% of the surviving pines qualified as normal, single‐stem individuals; the others were slightly uprooted and/or showed marks of erosion or foraging. Cones were produced, although no viable seeds were found. Main conclusions The low number of degree‐days above 5 °C at the plantation site could explain why the seeds were not viable. However, such climate conditions are not sufficient to prevent growth, as was shown by annual shoot elongation measurements. Most of the surviving jack pines from the Boniface river plantation are relatively healthy and follow a normal developmental programme. Low fire frequency and small fire size are amongst the main factors that prevented P. banksiana from migrating further north or east following deglaciation in northern Québec and Labrador.  相似文献   

20.
Background and AimsUnderstanding impacts of altered disturbance regimes on community structure and function is a key goal for community ecology. Functional traits link species composition to ecosystem functioning. Changes in the distribution of functional traits at community scales in response to disturbance can be driven not only by shifts in species composition, but also by shifts in intraspecific trait values. Understanding the relative importance of these two processes has important implications for predicting community responses to altered disturbance regimes.MethodsWe experimentally manipulated fire return intervals in replicated blocks of a fire-adapted, longleaf pine (Pinus palustris) ecosystem in North Carolina, USA and measured specific leaf area (SLA), leaf dry matter content (LDMC) and compositional responses along a lowland to upland gradient over a 4 year period. Plots were burned between zero and four times. Using a trait-based approach, we simulate hypothetical scenarios which allow species presence, abundance or trait values to vary over time and compare these with observed traits to understand the relative contributions of each of these three processes to observed trait patterns at the study site. We addressed the following questions. (1) How do changes in the fire regime affect community composition, structure and community-level trait responses? (2) Are these effects consistent across a gradient of fire intensity? (3) What are the relative contributions of species turnover, changes in abundance and changes in intraspecific trait values to observed changes in community-weighted mean (CWM) traits in response to altered fire regime?Key ResultsWe found strong evidence that altered fire return interval impacted understorey plant communities. The number of fires a plot experienced significantly affected the magnitude of its compositional change and shifted the ecotone boundary separating shrub-dominated lowland areas from grass-dominated upland areas, with suppression sites (0 burns) experiencing an upland shift and annual burn sites a lowland shift. We found significant effects of burn regimes on the CWM of SLA, and that observed shifts in both SLA and LDMC were driven primarily by intraspecific changes in trait values.ConclusionsIn a fire-adapted ecosystem, increased fire frequency altered community composition and structure of the ecosystem through changes in the position of the shrub line. We also found that plant traits responded directionally to increased fire frequency, with SLA decreasing in response to fire frequency across the environmental gradient. For both SLA and LDMC, nearly all of the observed changes in CWM traits were driven by intraspecific variation.  相似文献   

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