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1.
以四川省德阳市旌阳区低效柏木林改造8年后的3种模式(即:柏木+桤木+杂交竹模式(柏+竹+桤)、柏木+麻栎模式(柏+栎)、柏木+杂交竹模式(柏+竹))作为研究对象,柏木纯林作为对照,调查了柏木低效林不同改造模式的细根生物量。结果表明:不同改造模式与土层对细根生物量的影响非常显著(P0.01),柏+竹与柏+竹+桤模式细根生物量显著高于纯柏模式,柏+栎模式细根生物量最小。在不同改造模式中,柏木细根生物量在土壤层次上的分布也存在显著差异,柏+竹与柏+竹+桤模式中柏木细根生物量随着土层的加深呈上升趋势,而柏+栎模式中则随着土层的加深呈下降趋势,柏+栎模式中柏木死细根的比重明显高于其他模式。几种模式中,柏+竹+桤模式细根生物量分布相对稳定,而柏+栎模式的稳定性较差。  相似文献   

2.
四川盆地四种柏木林分类型的水文效应   总被引:2,自引:1,他引:1  
四川盆地丘陵区是长江上游水土流失最严重地区之一,该区大面积柏木纯林林分结构不合理、天然更新不良、林分稳定性差、产品产量和水土保持功能低,急需进行结构调整。通过群落样地调查和坡面径流场观测,对比分析了四川盆地4种柏木林分类型的水文效应。结果表明:(1) 4种林分类型林冠截留量与降水量呈幂函数关系; 林冠截留率随雨量级的增大而减小,对次降雨的最大截留量为栎柏混交林 (9.5 mm) > 桤柏混交林 (9.2 mm) > 松柏混交林 (8.8 mm) > 柏木纯林 (8.5 mm)。(2) 4种林分类型之间未分解层和半分解层枯落物持水量随浸泡时间的变化存在极显著差异;枯落物总存储量变化范围为4.06-7.62 t/hm2,枯落物总持水量排序为栎柏混交林 (17.07 t/hm2) > 桤柏混交林 (13.26 t/hm2)> 松柏混交林 (8.89 t/hm2) > 柏木纯林 (7.57 t/hm2)。(3) 4种林分0-40 cm土层非毛管孔隙度变化范围为 4.21%-6.94%,土壤最大持水量排序为栎柏混交林(1820.83±124.80) t/hm2 > 松柏混交林(1686.85±76.15) t/hm2 > 桤柏混交林(1644.45±119.84) t/hm2 > 柏木纯林(1574.14±119.89) t/hm2;4种林分类型雨季产沙量变化范围在534.2-1467.9 kg/hm2之间。综合分析表明,栎柏混交林是4种柏木林分类型中水土保持效果最优的;因此,该区柏木纯林的结构调整应以促进栎柏混交林的演替为目标。  相似文献   

3.
杉木观光木混交林细根的分布   总被引:12,自引:0,他引:12  
对27年生混交比例为2行杉木和1行观光木的混交林和杉木纯林群落细根分布的研究表明,杉木和观光行间的杉木细根密度虽比极木行间的低8.5%,但观光木细根密度则高152.09%,其细根总密度比杉木与杉木行间的大10.43%。混交林中杉木各径级活动根密度呈单峰型分布,均以5-10cm土层最大,而观光木各径级各活细根主要分布在0-10cm土层内。纯林杉木各径活细根密度亦基本呈单峰型分布,但峰值出现在10-20cm或20-30cm土层。不同树种不同径级死细根的分布均与其各自的活细根分布相似。混交林中灌木细根密度在30-40cm的土层最大,而纯林中的灌木细根集中于0-10cm的表土层;混交林和纯林中的草木细根均集中在0-5cm土层。与纯林的相比,混交林中杉木细根主要分布的土层明显上移,表层土壤细根所占比重增大,有利于更好利用土壤养分和提高群落生产力。  相似文献   

4.
刘媛  席慧青  陈姝含  邸楠  席本野 《生态学报》2023,(24):10363-10375
通过林木根系研究中不同吸收根的判定标准下根系空间分布特征的差异对比,阐明根系分级标准对吸收根空间分布格局的影响,提升根系研究精度,明确林木根系有效“觅食”区域。在7年生毛白杨林分中于5株样树周围挖取780个土柱,选取根系形态指标:根系平均直径(RD)、根系表面积密度(RAD)、根长密度(RLD)和根系体积密度(RVD)研究其垂向与径向的分布动态,并分析不同吸收根判定标准对毛白杨细根空间分布以及各形态指标的影响。结果表明:选取2 mm作为吸收根判定标准确实会导致运输根被误判为吸收根,但其空间分布特征仍能反映吸收根的真实空间分布格局。而且在该判定标准下,判定标准对于实际的细根形态和空间分布情况是否会产生的影响由于监测指标的不同以及研究位置的变化而不同。其中RAD、RLD和RVD的空间分布特征基本相同,但RVD的差值比例远高于其他指标,且深土层的差值比例普遍高于浅土层。因此,以2 mm为吸收根判定标准时,选取RLD和RAD更能准确反映吸收根的真实空间分布格局,且该标准更适用于在进行相对较浅的土层中开展研究,采用2 mm为阈值划分吸收根研究细根垂直分布特征时建议以各形态指标在各个土层所占比例来...  相似文献   

5.
高成杰  唐国勇  李昆  谢青海 《生态学报》2013,33(6):1964-1972
以元谋干热河谷10年生印楝和大叶相思为研究对象,采用分层挖掘法对印楝纯林、大叶相思纯林及印楝×大叶相思混交林根系生物量及其分布特征进行研究.结果表明:印楝×大叶相思混交林根系总生物量为2.707 t/hm2,介于印楝纯林(2.264t/hm2)和大叶相思纯林(3.405 t/hm2)之间.混交林内主根总生物量为1.057 t/hm2,为印楝纯林和大叶相思纯林的69.9%和69.7%,而除粗根外,混交林内其它径级的侧根(中根、小根和细根)生物量均介于印楝纯林和大叶相思纯林之间,分别为印楝纯林的228.7%、120.1%、450.0%,为大叶相思纯林的71.3%、65.8%和48.8%.干热河谷印楝和大叶相思人工林根系在土壤表层分布比例大,尤其足0-0.2 m土层内,其根系生物量占根系总生物量的63.6%-76.3%.根系垂直累积生物量与土壤深度可用二次方程拟合,拟合方程的二阶导数表明,垂直方向上,印楝纯林根系分布较混交林均匀,而混交林较大叶相思纯林均匀.  相似文献   

6.
采用分层收获法,对元谋干热河谷20年生赤桉、新银合欢纯林及其混交林的生物量分配与空间结构进行对比研究.结果表明:混交林林分生物量(82.99t·hm-2)介于赤桉纯林(60.64t·hm-2)与新银合欢纯林(127.79t·hm-2)之间;混交林内赤桉单株平均生物量(44.32kg)较其纯林(29.58kg)提高了49.8%.新银合欢纯林的枝叶生物量分配比例(25.4%)显著高于赤桉纯林(8.9%),且地上部生物量分配比例(78.0%)显著高于赤桉纯林(73.4%).新银合欢纯林及混交林中新银合欢的根系主要分布于0~40cm土层,赤桉纯林及混交林中赤桉的根系则主要分布于0~80cm和0~60cm土层.混交林中新银合欢的侧根(中根、小根和细根)分配比例均高于其纯林,而赤桉则相反.新银合欢的引入在一定程度上可促进赤桉生长,尤其是增加其地上部生物量及表层土壤(0~20cm)中的侧根生物量,对该地区的水土保持具有重要意义.  相似文献   

7.
为了解长期植被恢复的成熟人工林林下植物组成与多样性特征及其影响因素,基于广东鹤山生态系统国家野外科学观测研究站的南亚热带人工林生态系统,对环境相似(坡度、坡向、海拔)、30 a生4种类型人工林(桉树混交林、马占相思纯林、乡土混交林、针叶混交林)进行调查研究,分析林下植物组成和物种多样性(Shannon-Wiener指数、Simpson指数、Pielou指数)特征。结果表明,人工林林下植物类型丰富,均可形成乔-灌-草垂直结构;4种林型林下植物组成既有相似性,也有差异性,桉树混交林与针叶混交林、马占相思纯林与乡土混交林的灌木层组成相似;桉树混交林与马占相思纯林、乡土混交林与针叶混交林的草本层组成相似,而桉树混交林与针叶混交林的草本层组成极不相似。林分类型影响林下植物多样性,马占相思纯林林下灌草多样性显著低于其他3种混交林(P<0.05),灌木物种数、个体数最少;针叶混交林林下物种丰富度最高。林分郁闭度与林下植物多样性呈正相关(P<0.001),林下植物分布与土壤养分含量相关,桉树混交林、马占相思纯林林下植物多样性与不同形态氮含量相关,有效磷、全磷影响乡土混交林林下物种的分布,针叶混交林受土壤酸碱度、全钾的影响较为明显。在4种人工林林下植物群落中,乡土混交林多样性,均匀度最高,优势度最低,具有更佳的保育和维持林下生物多样性功能。因此,乡土树种混交林更适用于生态公益林构建或对一些针叶林及外来树种纯林进行林分改造。  相似文献   

8.
四川桤柏混交林生物量的研究   总被引:16,自引:0,他引:16       下载免费PDF全文
 对四川省盐亭县桤柏混交林单株干重、平均净生产量、林分生物量和生产力动态的系统研究表明:桤木和柏木不同器官生物量随年龄积累变异显著,积累最多的是树干,其它器官积累较少。桤木各器官平均净生产量在2~12年上升,在12~14年左右达到峰值,随后下降,其生物量结构和垂直分布也程相同的趋势,表明桤木在16年以后已成熟,主伐年龄可定在18~20年间。柏木叶积累量的增长在幼龄期有“超前现象”。其各器官平均净生产量在2~18年内增长呈“J”型曲线.生物量结构和垂直分布仍处于剧烈分化期。在我国人工混交林中,桤柏混交林的生物量和生产力都比较高。  相似文献   

9.
杉木,火力楠纯林及其混交林细根分布,分解与养分归还   总被引:20,自引:0,他引:20  
廖利平  杨跃军 《生态学报》1999,19(3):342-346
用土钻法研究了杉木,火力楠纯林和混交林的细根分布,用分解袋法研究了杉木和火力楠细根的分解,计算了3个林分中细根分解的N、P,K,Ca,Mg的归还量,活细根的垂直分布以火力楠纯林层次性最强,混交林次之,杉木纯林最差。  相似文献   

10.
为研究混交过程中柏木根系分泌物对栾树细根生长的影响,以一年生栾树盆栽幼苗为研究对象,通过施加1株、2株、4株、8株4个浓度柏木根系分泌物(分别记为G1、G2、G4、G8)于栾树盆栽中,探讨柏木根系分泌物对栾树幼苗1~5级细根形态及N、P含量的影响。结果表明:(1)栾树细根直径随根序的增加而增大,施加根系分泌物显著减小了1~2级细根的直径(P0.05);细根比根长、比表面积均随根序的增加而减小,施加根系分泌物显著增大了1~2级细根的比根长及比表面积(P0.05);随根系分泌物施加浓度的提高,栾树比根长及比表面积先增大,而直径先减小,然后均趋于平缓波动的态势。(2)栾树细根N、P含量均随根序的增加而减小,而N/P在根序间的变化不显著;施加柏木根系分泌物显著增大了栾树1~2级细根的N、P含量(P0.05),但减小了1~5级细根的N/P;随根系分泌物施加浓度的提高,栾树细根P含量增大,N/P减小,而N含量先增加后呈现平缓变化的趋势。(3)栾树细根N、P含量均与其比根长、比表面积和直径等形态特征之间呈显著的相关关系(P0.05)。研究发现,柏木根系分泌物可改善土壤养分的有效性,从而缓解栾树植株的缺P症状,细根通过调整其形态以提高养分利用效率;柏木根系分泌物主要影响栾树1~2级细根的形态及N、P含量;4株柏木根系分泌物的剂量更有利于栾树根系的生长。  相似文献   

11.
Monoculture causes nutrient losses and leads to declines in soil fertility and biomass production over successive cultivation. The rhizosphere, a zone of usually high microbial activities and clearly distinct from bulk soil, is defined as the volume of soil around living roots and influenced by root activities. Here we investigated enzyme activities and microbial biomass in the rhizosphere under different tree compositions. Six treatments with poplar, willow, and alder mono- or mixed seedlings were grown in rhizoboxes. Enzyme activities associated with nitrogen cycling and microbial biomass were measured in all rhizosphere and bulk soils. Both enzyme activities and microbial biomass in the rhizosphere differed significantly tree compositions. Microbial biomass contents were more sensitive to the changes of the rhizosphere environment than enzyme activities. Tree species coexistence did not consistently increase tested enzyme activities and microbial biomass, but varied depending on the complementarities of species traits. In general, impacts of tree species and coexistence were more pronounced on microbial composition than total biomass, evidenced by differences in microbial biomass C/N ratios stratified across the rhizosphere soils. Compared to poplar clone monoculture, other tree species addition obviously increased rhizosphere urease activity, but greatly reduced rhizosphere L-asparaginase activity. Poplar growth was enhanced only when coexisted with alder. Our results suggested that a highly productive or keystone plant species in a community had greater influence over soil functions than the contribution of diversity.  相似文献   

12.
Red alder (Alnus rubra Bong.) and sitka alder (A. viridis ssp. sinuata [Regel] Löve & Löve) are nitrogen-fixing woody species that grow sympatrically along the Pacific coast of North America. Red alder is found in poorly drained lowlands, as well as in soils of moist upland slopes, whereas sitka alder generally colonizes well-drained soils. To identify factors that contribute to flood tolerance, we conducted greenhouse experiments subjecting both species to a 20-day flood and 10-day recovery and red alder to a 50-day flood and 20-day recovery. We determined the effect of this stress on nitrogenase activity, root and nodule alcohol dehydrogenase (ADH) activity, lenticel and adventitious root development, relative growth rate (RGR), and leaf gas exchange. After 24 h of flooding, nitrogenase activity could not be detected in either species. Limited nitrogenase activity did return in red alder at the end of a 10-day recovery following the 20-day flood, but sitka alder showed no recovery of nitrogenase activity. After 50 days of continuous flooding, red alder nitrogenase activity returned to pretreatment levels. Red alder root and nodule ADH activity was more than twice that of sitka alder under flooded conditions. Sitka alder showed extensive root mortality and leaf abscission over the same 20-day flooding period. Flooded red alder exhibited an initial decline in root RGR, but recovered between days 10 and 20 with the formation of adventitious roots. Furthermore, initiation of adventitious roots in red alder coincided with an increase in stomatal conductance without a similar recovery of carbon dioxide exchange rate. Sitka alder formed few adventitious roots, lost much of its root and leaf biomass, and showed no restoration of growth during flooding or recovery. Different responses of red and sitka alder to flooding serve as a partial explanation for the different patterns of distribution of these species and suggest some adaptations of red alder that permit flood tolerance.  相似文献   

13.
Development of below-ground biomass and biomass allocation were studied in two different stands of young grey alder stands growing on a peat bog. Both stands were given the same fertilization and irrigation treatment. The roots were investigated from 1) open plastic tubes enclosing the complete root systems in 1982, and 2) root cores 1984–86. Coarse roots (diameter>1 mm) were mainly found close to the trunk of the trees while fine roots (≤1 mm) were more evenly distributed in the stands. Root nodules were intermediate in distribution. The root systems were shallow, with more than 90% of the biomass in the uppermost 9–10 cm of the soil, probably because of low oxygen availability in the peat soil. The biomass allocation to the above-ground parts increased during the study period.  相似文献   

14.
桤柏混交林种群生物量动态与密度调节   总被引:20,自引:5,他引:15  
研究了四川省盐亭县桤柏混交林中桤木和柏木种群的生物量动态、密度动态及 种群密度对生物量动态的调节.结果表明,桤木种群生物量在18 a内符合逻辑斯蒂增长, 柏木种群生物量在20 a内呈幂函数增长.而种群密度在 18 a内均呈负幂函数降低在桤 柏混交林中.密度制约是决定种群生物量动态的主要因素,棺木和柏本平均单株生物量较 符合Yoda提出的-3/2自疏定律为快,其自疏系数分别为一2.33和一3.97.个体平均生 物量的增长比由密度下降引起的生物量降低快,因此,两种群生物量在密度调节过程中仍 然保持增长状态.其中柏木是生物量增长旺盛的种群.  相似文献   

15.
杨树和桤木落叶混合分解对土壤微生物生物量的影响   总被引:1,自引:0,他引:1  
陈琴  方升佐  田野 《应用生态学报》2012,23(8):2121-2128
通过室内培养,研究了杨树和江南桤木落叶混合分解过程中两种落叶的混合比例及落叶添加方式对土壤微生物生物量的影响.结果表明:落叶混合比例对土壤微生物生物量碳(MBC)、氮(MBN)均有显著的影响.培养30 d,江南桤木落叶比例为50%以上的土壤MBC和MBN显著高于纯杨树落叶处理及对照;75 d时,江南桤木落叶比例≥40%的土壤MBC和≥30%的土壤MBN均显著高于纯杨树落叶处理及对照;135 d后,江南桤木落叶比例≥20%的土壤MBC和≥40%的土壤MBN均显著高于纯杨树落叶处理及对照.不同混合比例的土壤MBC/MBN无显著差异,总体呈前期增长后期下降的变化趋势.杨树和江南桤木落叶混合分解对土壤MBC和MBN有显著的协同促进作用.在整个培养过程中,落叶添加方式对土壤MBC、MBN和MBC/MBN无显著影响.  相似文献   

16.
While plant species respond differently to nutrient patches, the forces that drive this variability have not been extensively examined. In particular, the role of herbivory in modifying plant-resource interactions has been largely overlooked. We conducted a glasshouse study in which nutrient heterogeneity and root herbivory were manipulated, and used differences in foraging among plant species to predict the influence of root herbivores on these species in competition. We also tracked the influence of neighborhood composition, heterogeneity, and herbivory on whole-pot plant biomass. When herbivores were added to mixed-species neighborhoods, Eupatorium compositifolium, the most precise forager, was the only plant species to display a reduction in shoot biomass. Neighborhood composition had the greatest influence on whole-pot biomass, followed by nutrient heterogeneity; root herbivory had the smallest influence. These results suggest that root herbivory is a potential cost of morphological foraging in roots. Root herbivores reduced standing biomass and influenced the relative growth of species in mixed communities, but their effect was not strong enough at the density examined to overwhelm the bottom-up effects of resource distribution.  相似文献   

17.
土壤微生物残留物是稳定性碳库的重要组分,然而固氮树种引入对落叶松人工林土壤团聚体微生物残留物分布的影响还不清楚.为了阐明固氮树种对不同团聚体粒级内微生物残留物分布的影响,本研究以氨基糖作为微生物残留物的生物标识物,比较了辽东日本落叶松人工纯林和落叶松与固氮树种赤杨混交林土壤团聚体氨基糖的分布特征.结果表明: 赤杨引入不影响团聚体氨基糖的分布,但显著提高了团聚体氨基糖含量.与纯林相比,混交林土壤不同团聚体各粒级总氨基糖含量增加1.3~1.7倍.其中,混交林土壤团聚体内总氨基糖增加量的66.5%~66.9%来自氨基葡萄糖,30.0%~30.6%来自氨基半乳糖,2.5%~3.2%来自胞壁酸.赤杨引入显著提高了>2000 μm和<250 μm团聚体中的氨基葡萄糖/胞壁酸值,但不影响250~2000 μm粒级团聚体中真菌和细菌残留物的相对贡献.此外,赤杨引入增加了土壤不同团聚体内的氨基糖对土壤有机碳的贡献,但不影响团聚体粒级之间的微生物贡献,说明赤杨对微生物贡献的影响存在空间均一性.  相似文献   

18.
Abstract

Root turnover is a relevant process controlling carbon and nutrient cycles. Furthermore, root biomass could influence the effectiveness of riparian buffer systems with regard to immobilizing and processing soil water pollutants and improving soil quality. However, sampling root biomass presents many technical problems, because there is as yet no well-established method for assessment thereof. In the present study, we evaluated the effects of limited sampling depth on biomass assessment in four riparian buffers and on two different dates (January and June): a poplar forest, two mixed deciduous afforestations of different ages, and a grassy area. Although, for all systems, most root biomass was limited to the first 30 cm, detection of differences in root biomass among vegetation types depended strongly on sampling depth for both sampling dates. Furthermore, although the poplar forest presented one of the most stable root systems in terms of total biomass between the sampling dates, it was one of the most seasonally dynamic in terms of the amount and distribution with depth of root biomass. The results of this study suggest that a minimum sampling depth should be established for each study according to seasonal variation in vertical distribution of root biomass.  相似文献   

19.
以呼伦贝尔克氏针茅草原不同放牧强度下的演替群落为对象,开展群落及其群落建群种的地下生物量和根系形态特征研究.结果表明:从轻度放牧到重度放牧,群落种类组成和根系功能群类型趋于简单化;群落地下生物量的空间分布形态呈“T”型;不同放牧强度下草原群落的建群种出现了明显替代现象,轻度放牧样地群落建群种为密丛型根系的克氏针茅,中度放牧为疏丛型根系的糙隐子草(Cleistogenes squarrosa,重度放牧为鳞茎型根系的碱韭(Allium polyrhizum);随着放牧强度的增大,群落建群种根冠比逐渐增加,分别为0.47、1.0、4.1,并且群落建群种根系数量、根系体积、根系生物量、比根长及根长密度等各指标均发生了明显变化.另外,3种放牧强度样地群落建群种根冠比、根长密度均与土壤速效氮含量呈现显著正相关(P<0.05).  相似文献   

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