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1.
边缘效应带和保留带内红松幼林水分生态的差异   总被引:9,自引:0,他引:9       下载免费PDF全文
 以一个经过12年边缘效应带处理的14年生红松(Pinus koraiensis)(1998年)幼林生态系统为研究对象,对处于不同宽度的边缘效应带和保留带的红松幼树木质部水势、叶片蒸腾强度、气孔导度、叶片温度、空气相对湿度和光合有效辐射的日变化以及土壤相对含水量进行了分析,结合叶片净光合速率探讨了效应带宽度对红松幼林生态系统中红松幼树水分生态及红松生长状况的可能影响模式。结果表明:1)边缘效应带的开拓降低了效应带内红松幼树木质部水势、空气相对湿度和叶片气孔导度,显著提高了叶片蒸腾强度、叶片温度和光合有效辐射  相似文献   

2.
7种木本植物根和小枝木质部栓塞的脆弱性   总被引:7,自引:0,他引:7  
安锋  张硕新 《生态学报》2005,25(8):1928-1933
用脆弱曲线表示的植物木质部栓塞脆弱性反映了植物木质部栓塞程度与其水势间的关系。众多学者的研究结果表明,脆弱曲线能够提供有关植物的许多生理生态信息,与植物的木质部结构、部位、分布、抗寒、抗旱性等存在一定关系,但各国学者利用不同材料研究得出的结果各异,为了研究木质部栓塞的这种差异是否由于树木对环境适应性不同引起,选取西北农林科技大学西林校区内自然状况下生长良好的5个耐旱树种:刺槐(RobiniapseudoacaciaL.)、元宝枫(AcertruncatumBge.)(低水势忍耐脱水耐旱树种)、白榆(UlmuspumilaL.)(亚低水势忍耐脱水耐旱树种)、油松(PinustabulaeformisCarr.)、白皮松(PinusbungeanaZucc.ex.Endl.)(高水势延迟脱水耐旱树种),及中生的女贞(LigustrumlucidumAit.)和柳树(SalixmatsudanaKoidz.f.pendulaSchneid.)为研究对象,绘制了它们根和小枝的木质部栓塞脆弱曲线,探讨了中生树种和不同耐旱类型树种根和小枝木质部栓塞脆弱性的差异。结果表明:根和小枝的栓塞脆弱性主要由木质部结构决定,栓塞脆弱性顺序基本一致,小枝容易发生木质部栓塞的,其根也较容易发生栓塞;同一树种根和小枝的木质部栓塞脆弱性与植物的耐旱性有关,与树种的耐旱策略无关;一般是中生树种的栓塞脆弱性:小枝>根;耐旱树种的栓塞脆弱性:根>小枝。  相似文献   

3.
陕北沙地小叶杨“小老树”的水力适应性   总被引:4,自引:2,他引:2  
陈佳村  李秧秧  左力翔 《生态学报》2014,34(15):4193-4200
以黄土高原"小老树"发生面积最大的树种-小叶杨为例,研究了不同水分生境下(水分相对好的沟道和干旱的梁坡片沙地,分别标记为生境A和生境B)小叶杨的生长、光合、水力学特性等,试图探讨小叶杨"小老树"对干旱生境的适应机制。结果表明:生境B小叶杨树高、地径、1 m树高处直径明显小于生境A,同时其主茎顶端枯枝长度大于生境A;生境B小叶杨叶净光合速率和气孔导度明显低于生境A。两种生境下小叶杨黎明前和正午叶水势无显著差异,生境B小叶杨正午时小枝枝干的比导水率明显低于生境A,但两种生境的比叶导水率则无显著差异,生境B小叶杨的Huber值明显大于生境A。生境B小叶杨枝干的P50(导水率损失50%时所对应的木质部水势)比生境A低约0.76 MPa左右,其气孔关闭的水势比生境A晚0.2 MPa左右,生境B小叶杨水分传输安全距离明显大于生境A。表明干旱生境下小叶杨高Huber值和低气孔导度有助于其叶水分关系维持相对稳定,低光合速率和维持大的水分传输安全距离所需的木质部碳投资增加是小叶杨形成"小老树"的重要原因。  相似文献   

4.
虎杖光合生理生态特性日变化研究   总被引:5,自引:3,他引:2  
用Li-6400便携式光合测定系统对5个虎杖材料的光合生理特性日变化及其与气象因子关系进行了研究。结果表明:(1)虎杖的净光合速率日变化呈‘单峰’型曲线,日最大净光合速率(15.0μmol·m^-2·s^-1)值出现在9:00左右;(2)叶片水压亏缺、气孔导度和蒸腾速率的峰值在同一时间出现(13:00),胞间CO2浓度不随气孔导度的降低而减小,控制虎杖光合速率因子为非气孔限制;(3)供试5个材料的净光合速率日变化趋势基本一致,并以地栽组培苗的净光合速率最高,而‘贵州凯里’的最低。光合有效辐射对光合特征参数的变化影响最大,且对净光合速率起决定性作用(r-0.534^**),环境因子主要通过对蒸腾速率、叶片水压亏缺和叶面温度的作用来影响虎杖叶片净光合速率。  相似文献   

5.
土壤水分对温室嫁接和非嫁接黄瓜生长与生理特性的影响   总被引:22,自引:6,他引:16  
观测了黄瓜生长动态与生理特性对土壤水分状况的反应。结果表明,日光温室嫁接与未嫁接黄瓜分别在土壤相对含水量70%和80%时株高,叶面积和产量增长最快,土壤水分过高与过低均不利于黄瓜的生长;随土壤含水量降低;叶片光合速率,气孔导度,水势与根系活力的下降。  相似文献   

6.
塔里木河上游胡杨与灰杨光合水分生理特性   总被引:7,自引:0,他引:7  
王海珍  韩路  李志军  彭杰  马春晖 《生态学报》2009,29(11):5843-5850
在自然条件下对塔里木河上游优势树种-胡杨、灰杨的光合水分生理特性进行比较研究.结果表明,整个生长季胡杨、灰杨的光合速率(Pn)、蒸腾速率(Tr,除8月份)日进程均为单峰曲线,水分利用效率(WUE)变化无明显规律性.胡杨与灰杨12:00后Pn的下降主要取决于非气孔因素限制.胡杨Pn、WUE高于灰杨,而Tr低于灰杨,表明胡杨属高光合、低蒸腾、高WUE型树种,灰杨属低光合、高蒸腾、低WUE型树种.胡杨、灰杨枝水势(Ψw)、清晨与正午水势日进程均呈"V"字型曲线,胡杨水势日变幅、正午水势月变幅均小于灰杨,但两树种水势间无显著差异.胡杨与灰杨具有较强的水分吸收和减少水分丧失的能力,但胡杨调节气孔导度(Gs)控制蒸腾失水的能力较强,对干旱环境表现出更强的生态适应性,从而导致两树种产生了种群地理分化.  相似文献   

7.
通过测定成熟马占相思叶片的水势、气孔导度、蒸腾速率(Tr)、叶面积指数、边材面积等参数,研究了湿季(5月)和干季(11月)叶片的水力导度(K1)、水分和光合特性的关系.结果表明:高大植株(平均树高20 m、胸径0.26 m)的边材面积与叶面积的比率(Asp/Acl)比较小植株(平均树高14.5 m、胸径0.19m)高8.5%,前者的木质部水分通量大于后者,以支持冠层叶片的水分利用.对木质部易损曲线进行分析,K1降低50%时,湿、干季的叶片水势(Ψ1)分别为-1.41和-1.55 MPa,且干季的木质部空穴化的易损性高于湿季.湿、干季的K1峰值分别为5.5和4.5 mmol·m-2·s-1·MPa-1,最大蒸腾速率(Trmax)分别为3.6和1.8 mmol·m-2·s-1,且湿季的K1和Trmax明显大于干季.一天中K1和Tr的多次波动反映了木质部空穴化和修复的往复循环,叶片气孔在K降低超过50%或Ψ1达到-1.6MPa时关闭,气孔导度在K1达到50%前仍保持较高水平.干季的水力导度与光合速率的相关性较湿季明显.季节更迭导致叶片水力导度损失是Tr和CO2交换下降的原因.  相似文献   

8.
山西太岳山辽东栎的光合特性   总被引:25,自引:0,他引:25  
对自然生长的辽东栎林木用 LI-640 0测定其光合作用 ,实验包括以下内容 :在完全接近自然生长的条件下测定辽东栎叶片光合作用的日变化规律 ;控制光合有效辐射强度 ,测定叶片在不同 CO2 浓度下光合作用的变化规律 ;控制温度比对应时间段的温度高 2~ 4℃ ,并控制 CO2 浓度在 3 75~ 70 0 ml· m- 3间变化 ,测定辽东栎光合作用的变化情况。结果如下 :1自然状态下辽东栎光合作用的日变化有两个光合速率峰 ,峰高接近 ,上午的光合速率峰持续时间较下午的长。叶片气孔导度与光合速率间有很强的正相关 ,且对胞内 CO2 浓度和蒸腾速率有较大影响。气孔导度与叶片水压亏缺呈相反的变化趋势 ,而水压亏缺受光合有效辐射、气温的影响较大。 2在控制片温度、光合有效辐射不变的情况下 ,辽东栎的叶片水压亏缺变化幅度很小 ,气孔导度变化主要受 CO2 浓度的调节 ,表现出在目前 CO2 浓度至加倍 CO2 浓度下 ,随浓度增加而增大的趋势 ,与之对应光合速率增大 ,同时光补偿点也有所提高。当 CO2 浓度超过 80 0 ml· m- 3继续上升时 ,气孔导度、光合速率均下降 ,光补偿点继续升高。3对辽东栎叶片进行升温和高 CO2 浓度处理 ,在试验进行时的温度 (2 8~ 3 7℃ )下 ,发现在 3 75~ 70 0 ml· m- 3的 CO2 浓度范围内 ,升温均导致光  相似文献   

9.
CO2浓度增高对三裂叶蟛蜞菊光合生理特性的影响   总被引:7,自引:0,他引:7  
刘金祥  李志芳 《广西植物》2005,25(5):477-480,446
在人工控制CO2浓度梯度条件下,测量了喜阴多年生草本植物三裂叶蟛蜞菊1月和3月的光合速率(Pn)、蒸腾速率(Tr)、胞间CO2浓度(Ci)、气孔导度(Gs)和叶面饱和蒸气压亏缺(Vpdl)。结果表明:CO2浓度升高对三裂叶蟛蜞菊的光合生理特性影响较大,当CO2浓度由0升高到1900μmol·mol1的过程中,Pn增加很快,其值在1.53~11.3μmol·m2·s1之间;水分利用率(WUE:光合与蒸腾之比)随CO2浓度的升高也在增大,当CO2浓度为1900μmol·mol1时,1月份的WUE是18.248μmol·mmol1,3月份的只有8.794μmol·mmol1,高水分利用效率与其对干旱的适应性密切相关。  相似文献   

10.
以生长于浑善达克沙地上的C3植物白榆(Ulmus pumila)、C4植物沙米(Agriophyllum pungens)和CAM植物钝叶瓦松(Orostachys malacophyllus)3种不同光合途径植物为材料,测定了它们生长期叶片的光合气体交换参数、叶绿素荧光参数和水势,探讨它们对生长环境的生理响应特征.结果表明,白榆和沙米的净光合速率、气孔导度均高于钝叶瓦松,特别是在夏季高温(>40℃)和强光照(>2 100 μmol·m-2·s-1)条件下表现得更加明显.白榆和沙米的光合速率、叶片水势都发生了严重的午休现象,其白天光合速率的降低主要是由于气孔关闭造成的.钝叶瓦松的叶片水势在3种植物中最高,但是白天的光合速率很低;其Fv/Fm值在14:00最低,一天中此时光系统II受伤害最大;CAM物种瓦松的碳固定仅发生在夜间.研究发现,C3植物白榆和C4植物沙米比CAM植物钝叶瓦松对热和高光照有着更强的忍耐力,瓦松固定碳主要发生在生长最快的阶段;CAM植物瓦松为了能够在夏季强光和高温条件下生存,它必须进行高强度的呼吸,仅在早晨和夜间进行碳固定.  相似文献   

11.
本研究以辽东山区红松人工林为种源的3种不同林带(落叶松林带、针叶混交林带和阔叶混交林带)内天然更新红松幼苗为对象,运用静态生命表和生存分析方法研究天然更新红松幼苗的种群结构与动态特征.结果 表明:3种不同林带内天然更新红松幼苗的年龄结构呈"(n)"型左偏态分布,前期幼苗数量较多且死亡率较高,后期不断减少,属于衰退型种群...  相似文献   

12.
以205国道淮安段具有5 m和20 m宽林带的路段为研究区域,对国道东西两侧200 m范围内农田水稻(Oryza sativa L.)叶片和糙米中Al、Fe、Cu、Zn、Cd、Cr、Ni和Pb含量及其与路侧距离的相关性进行了分析.结果表明:具5 m宽林带路段两侧稻叶和糙米中大多数重金属元素的含量呈现随路侧距离增加而减少的趋势,且峰值多出现在距路侧5~10m或20 m附近;其中,东侧稻叶中Cu、Cr和Ni含量及糙米中Al、Fe、Cu、Zn和Ni含量以及西侧稻叶中Cu和Pb含量及糙米中Cd和Pb含量与路侧距离呈显著或极显著负相关.具20m宽林带路段两侧稻叶和糙米中大多数重金属元素的含量并没有呈现随路侧距离增加而减少的趋势,且峰值多出现在距路侧20 m以外;只有东侧稻叶中Cr和Ni含量及糙米中Fe和Ni含量以及西侧糙米中Al和Cu含量与路侧距离呈显著或极显著负相关.具5m宽林带路段两侧稻叶和糙米中的重金属含量分布特征与无林带路段十分相似,而具20m宽林带路段两侧稻叶和糙米中的重金属含量较低,说明20 m宽林带对公路大气污染物有较明显的阻滞作用.根据研究结果,建议在公路两侧10~20 m范围内设置乔灌草结构模式的防护林带,并适当提高防护林中灌木的比例,保持乔木疏密适度.  相似文献   

13.
Summary Kudzu occurs in a variety of habitats in the southeastern United States. It is most common in exposed, forest edge sites and road cuts where it forms an extensive ground canopy as well as a canopy overtopping nearby trees, but it can also be found in completely open fields and deeply shaded sites within a forest. Microclimate, stomatal conductance, leaf water potential and photosynthetic responses to light, temperature and humidity were measured in two contrasting microhabitats on Pueraria lobata, kudzu. Midsummer leaf temperatures and leaf-to-air water vapor deficits for plants growing in an exposed site were significantly greater than for those in a shaded site, exceeding 35° C and 50 mmol mol-1, respectively. Maximum stomatal conductance exceeded 400 mmol m-2 s-1 in exposed leaves during peak vegetative growth. Stomatal conductance in shaded leaves was approximately half the value measured in exposed leaves on any particular dya. Maximum photosynthetic carbon uptake was also higher in leaves growing in exposed sites compared to leaves in shaded sites, exceeding 18.7 and 14.0 mol m-2 s-1, respectively. Photosynthesis, stomatal conductance and intercellular CO2 concentration decreased dramatically in response to increasing water vapor deficit for leaves from both sites. However, transpiration showed an initial increase at intermediate water vapor deficits, leveling off or even decreasing at higher values. Leaf water potential demonstrated marked diurnal variation, but remained constant over a wide range of transpirational water fluxes. This latter feature, combined with microenvironmental modification through rapid leaf orientation and pronounced stomatal responses to water vapor deficits may represent important adaptive responses in the exploitation of a diverse array of habitats by kudzu.  相似文献   

14.
Air temperature, vapor pressure deficit, and light intensity microclimatic gradients were examined along four forest edge and four paired forest interior transects in the East and West Usambara Mountains, Tanzania. Between 14 August 1995 and 11 August 1998, 287, 282, and 196 air temperature, vapor pressure deficit, and light intensity gradients, respectively, were measured along the four forest edge and four interior transects. The relationship between microclimate and distance from the forest edge was examined using piecewise linear regression. All microclimatic gradients were classified into one of nine shapes based on the sign and the size of the two estimated slopes. The relative frequency in the shapes of 65 percent of air temperature gradients, 52 percent of vapor pressure deficit gradients, and 62 percent of light intensity gradients along forest edge transects exceeded the relative frequency of these same shapes along forest interior transects, indicating that a majority of the forest edge microclimatic gradients measured were influenced by edge effects. Yet this result also indicated that approximately one‐third of all air temperature and light intensity gradients and nearly one‐half of all vapor pressure deficit gradients recorded during this study were affected by factors independent of edge effects per se, and that forest edge microclimatic gradients were temporally nonconstant. For air temperature and vapor pressure deficit gradients, low spatial but high temporal variation existed in estimated edge width and the relative change in microclimate between the forest edge and interior. For light intensity gradients, both high spatial and temporal variability characterized estimated edge width and relative change in microclimate between the forest edge and interior. The pooled mean edge width and relative change in microclimate between die forest edge and interior across the four forest edge transects for air temperature, vapor pressure deficit, and light intensity gradients were 94.1 m and 2.00°C, 82.6 m and 0.29 kPa, and 60.5 m and 10.6 joules/sec/m2, respectively. These results suggest that forest edge microclimatic gradients in general may be inherently dynamic and nonconstant.  相似文献   

15.
A model of stomatal conductance was developed to relate plant transpiration rate to photosynthetic active radiation (PAR), vapour pressure deficit and soil water potential. Parameters of the model include sensitivity of osmotic potential of guard cells to photosynthetic active radiation, elastic modulus of guard cell structure, soil‐to‐leaf conductance and osmotic potential of guard cells at zero PAR. The model was applied to field observations on three functional types that include 11 species in subtropical southern China. Non‐linear statistical regression was used to obtain parameters of the model. The result indicated that the model was capable of predicting stomatal conductance of all the 11 species and three functional types under wide ranges of environmental conditions. Major conclusions included that coniferous trees and shrubs were more tolerant for and resistant to soil water stress than broad‐leaf trees due to their lower osmotic potential, lignified guard cell walls, and sunken and suspended guard cell structure under subsidiary epidermal cells. Mid‐day depression in transpiration and photosynthesis of pines may be explained by decreased stomatal conductance under a large vapour pressure deficit. Stomatal conductance of pine trees was more strongly affected by vapour pressure deficit than that of other species because of their small soil‐to‐leaf conductance, which is explainable in terms of xylem tracheids in conifer trees. Tracheids transport water by means of small pit‐pairs in their side walls, and are much less efficient than the end‐perforated vessel members in broad‐leaf xylem systems. These conclusions remain hypothetical until direct measurements of these parameters are available.  相似文献   

16.
Leaf functional traits are important because they reflect physiological functions, such as transpiration and carbon assimilation. In particular, morphological leaf traits have the potential to summarize plants strategies in terms of water use efficiency, growth pattern and nutrient use. The leaf economics spectrum (LES) is a recognized framework in functional plant ecology and reflects a gradient of increasing specific leaf area (SLA), leaf nitrogen, phosphorus and cation content, and decreasing leaf dry matter content (LDMC) and carbon nitrogen ratio (CN). The LES describes different strategies ranging from that of short-lived leaves with high photosynthetic capacity per leaf mass to long-lived leaves with low mass-based carbon assimilation rates. However, traits that are not included in the LES might provide additional information on the species'' physiology, such as those related to stomatal control. Protocols are presented for a wide range of leaf functional traits, including traits of the LES, but also traits that are independent of the LES. In particular, a new method is introduced that relates the plants’ regulatory behavior in stomatal conductance to vapor pressure deficit. The resulting parameters of stomatal regulation can then be compared to the LES and other plant functional traits. The results show that functional leaf traits of the LES were also valid predictors for the parameters of stomatal regulation. For example, leaf carbon concentration was positively related to the vapor pressure deficit (vpd) at the point of inflection and the maximum of the conductance-vpd curve. However, traits that are not included in the LES added information in explaining parameters of stomatal control: the vpd at the point of inflection of the conductance-vpd curve was lower for species with higher stomatal density and higher stomatal index. Overall, stomata and vein traits were more powerful predictors for explaining stomatal regulation than traits used in the LES.  相似文献   

17.
为确定香果树实生苗的适生环境并为其自然更新提出有针对性策略,研究了不同生境(冠下、冠缘、林窗和林缘)中2年生香果树实生苗的净光合速率、水分利用效率、叶绿素含量、苗高、基径、生物量等的变化及其与生态因子之间的关系.结果表明: 4种生境中的光合有效辐射最大值为50~1380 μmol·m-2·s-1,冠下和冠缘中香果树实生苗的净光合速率日变化呈单峰型,而林窗和林缘实生苗的净光合速率日变化呈双峰型;香果树实生苗为耐阴植物,但耐阴能力较弱,其功能叶的光饱和点、补偿点和暗呼吸在4种生境中大小顺序为: 林缘>林窗>冠缘>冠下,表观量子效率的变化规律与之相反;林窗和冠缘2种生境中香果树实生苗的适应能力较强,叶片的蒸腾速率、气孔导度、水分利用效率和净光合速率较高;林窗中香果树实生苗叶片的叶绿素含量较低,但实生苗的生长速度最快,生物量最大;香果树实生苗的净光合速率与光合有效辐射和气孔导度呈显著正相关.对于冠下生境,需降低林冠层密度,增加透光率,以利于香果树实生苗的光合作用;对于林缘生境,则需要增加植被盖度,降低光照强度,以利于其快速生长.  相似文献   

18.
不同类型绿化带对交通噪声的衰减效果比较   总被引:2,自引:0,他引:2  
为研究绿化带对交通噪声的衰减效应,在北京市郊国道边或市区内有代表性的绿化带设置30 m宽林带23个,测试不同类型林带对实时交通噪声、模拟交通噪声、白噪声和不同频率噪声(125~8 000 Hz)的降噪值,并分析了季节和距噪声源的距离对各林带降噪效果的影响。结果显示:不同林带的降噪效果有明显差异。对于实时交通噪声,降噪效果最佳的是刺槐(Robinia pseudoacacia)纯林和油松-刺柏(Pinus tabulaeformis-Juniperus formosana)混交林,最弱的是旱柳(Salix matsudana)纯林;对于模拟交通噪声,降噪效果最佳的是刺柏-侧柏(Juniperus formosanaPlatycladus orientalis)混交林和国槐(Sophora japonica)纯林,最弱的是旱柳纯林和加杨(Populus×canadensis)纯林;对于白噪声,油松纯林的降噪效果较好,银杏-圆柏(Ginkgo biloba-Sabina chinensis)混交林降噪效果较差。冬季不同林带对不同噪声的衰减效果总体上小于夏季,其中,针叶混交林、针阔叶混交林或针叶纯林在夏、冬季对实时交通噪声和模拟交通噪声或白噪声的降噪效果接近。10 m宽林带的降噪值随距噪声源距离的变化而差异明显,离噪声源越近降噪效果越好。不同林带对中低频率(2 000 Hz以下)噪声的整体降噪效果优于对高频噪声的降噪效果,其中对500 Hz噪声的降噪值最大,对5 000和8 000 Hz噪声的降噪值最小。为了充分发挥绿化带的降噪功能,根据研究结果,建议在公路绿化带建设中应优先选用针叶混交林或分枝高度较低且分枝多、叶片小而密集的树种;绿化带的宽度至少10 m且应规则种植。  相似文献   

19.
选择立地条件基本一致的毛竹(Phyllostachys edulis)纯林,分别设置宽度为6 m、8 m、10 m,垂直长度为30 m的样地进行条带式采伐,在采伐带相邻的位置设置相同宽度的保留带,另随机选取3块不进行采伐的常规经营毛竹林作为对照,测定不同宽度带状采伐毛竹竹鞭、鞭根、竹篼和篼根的养分情况,分析毛竹地下构件在不同宽度采伐后的恢复潜力,探寻合理的带状采伐宽度,为毛竹林的科学管理提供理论依据。结果表明:(1)采伐带毛竹地下竹鞭、鞭根和篼根有机碳含量均随采伐带宽的增加先增后降,竹篼有机碳含量则持续上升;3种宽度采伐带篼根、8 m采伐带鞭根和10 m采伐带竹篼有机碳含量均显著高于保留带(P<0.05),8 m采伐带鞭根、3种带宽采伐带竹篼和篼根有机碳含量均与对照差异显著;6 m和10 m采伐带篼根、8 m采伐带鞭根有机碳含量所占地下构件有机碳比例较保留带有大幅提升。(2)3种采伐带宽中竹鞭、鞭根和竹篼全氮含量均表现为8 m>6 m>10 m,篼根全氮含量则随着带宽的增加持续上升;8 m采伐带鞭根和10 m采伐带竹篼与保留带有显著差异,3种带宽鞭根、竹篼和篼根全氮含量均与对照有差异;各构件总氮含量所占比例均基本表现为竹鞭>竹篼>鞭根>篼根,8 m采伐带鞭根和10 m采伐带竹鞭、鞭根、篼根总氮所占比例显著增加。(3)采伐带毛竹竹鞭、竹篼和篼根全磷含量均随带宽的增加呈先增后降的趋势,而鞭根全磷含量持续上升;8 m采伐带竹鞭全磷含量显著高于对照,其竹篼全磷含量显著高于相应保留带和对照;8 m和10 m采伐带均以竹篼全磷含量所占比例最高,6 m采伐带则是竹鞭全磷占比最高。(4)采伐带毛竹地下构件全钾含量均以8 m带宽最高,8 m采伐带的竹篼和篼根全钾含量分别显著高于6 m采伐带17.69%和106.90%,显著高于10 m采伐带102.87%和121.12%;8 m采伐带竹鞭、鞭根和篼根全钾含量均显著高于保留带和对照;随着带宽的增加,全钾含量占比在采伐带竹鞭和竹篼中呈下降趋势,在鞭根中则呈上升趋势,在篼根中则先上升后降低。研究认为,带状采伐处理能促进毛竹地下构件的发育,且8 m采伐带毛竹地下构件对养分的吸收效率显著增加,养分元素含量相对较高,可以为竹林恢复生长提供大量能量和生长潜力,有利于采伐后毛竹林的快速恢复,是较为合理的采伐带宽度。  相似文献   

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