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1.
With the continuing increase in the impact of human activities on ecosystems, ecologists are increasingly becoming interested in understanding the effects of nitrogen deposition on litter decomposition. At present, numerous studies have investigated the effects of single form of nitrogen fertilization on litter decomposition in forest ecosystems. However, forms of N deposition vary, and changes in the relative importance of different forms of N deposition are expected in the future. Thus, identifying the effects of different forms of N deposition on litter decomposition in forest ecosystems is a pressing task. In this study, two dominant litter types were chosen from Zijin Mountain in China: Quercus acutissima leaves from a late succession broad-leaved forest and Pinus massoniana needles from an early succession coniferous forest. The litter samples were incubated in microcosms with original forest soil and treated with four different forms of nitrogen fertilization [NH4 +, NO3 , CO(NH2)2, and a mix of all three]. During a 5-month incubation period, litter mass losses, soil pH values, and soil enzyme activities were determined. Results show that all four forms of nitrogen fertilization significantly accelerate litter decomposition rates in the broadleaf forest, while only two forms of nitrogen fertilization [i.e., mixed nitrogen and CO(NH2)2] significantly accelerate litter decomposition rates in the coniferous forest. Litter decomposition rates with the mixed nitrogen fertilization were higher than those in any single form of nitrogen fertilization. All forms of nitrogen fertilization enhanced soil enzyme activities (i.e., catalase, cellulase, invertase, polyphenol oxidase, nitrate reductase, urease, and acid phosphatase) during the litter decomposition process for the two forest types. Soil enzyme activities under the mixed nitrogen fertilization were higher than those under any single form of nitrogen fertilization. These results suggest that the type and activity of the major degradative enzymes involved in litter decomposition vary in different forest types under different forms of nitrogen fertilization. They also indicate that a long-term consequence of N deposition-induced acceleration of litter decomposition rates in subtropical forests may be the release of carbon stored belowground to the atmosphere.  相似文献   

2.
Anthropogenic nitrogen (N) deposition is an expanding problem that affects the functioning and composition of forest ecosystems, particularly the decomposition of forest litters. Legumes play an important role in the nitrogen cycle of forest ecosystems. Two litter types were chosen from Zijin Mountain in China: Robinia pseudoacacia leaves from a leguminous forest (LF) and Liquidambar formosana leaves from a non-leguminous forest (NF). The litter samples were mixed into original forest soils and incubated in microcosms. Then, they were treated by five forms of N addition: NH4 +, NO3 ?, urea, glycine, and a mixture of all four. During a 6-month incubation period, litter mass losses, soil microbial biomass, soil pH, and enzyme activities were investigated. Results showed that mixed N and NO3 ?-N addition significantly accelerated the litter decomposition rates of LF leaves, while mixed N, glycine-N, and urea-N addition significantly accelerated the litter decomposition rates of NF leaves. Litter decomposition rates and soil enzyme activities under mixed N addition were higher than those under single form of N additions in the two forest types. Nitrogen addition had no significant effects on soil pH and soil microbial biomass. The results indicate that nitrogen addition may alter microbial allocation to extracellular enzyme production without affecting soil microbial biomass, and then affected litter decomposition process. The results further reveal that mixed N is a more important factor in controlling litter decomposition process than single form of N, and may seriously affect soil N cycle and the release of carbon stored belowground.  相似文献   

3.
为了解亚热带不同演替阶段次生林地的凋落物持水特性规律,选取湖南大山冲森林公园保存完好的三种亚热带典型次生林地,按两月一次采集新近的凋落物并采用水浸泡法测定凋落物持水量、持水率和吸水速率,对比分析不同森林类型凋落物持水性差异及其与凋落物碳氮凋落量的关系。结果表明:(1)三种次生林地凋落物量及组成均表现出特有的变化规律。针叶林和常绿阔叶林凋落物量以夏季5-9月最大,落叶阔叶林凋落物则以春、秋两个季节最大;(2)三种次生林地凋落物的饱和持水量、半饱和时间以及与水亲和力均呈现显著季节性变化特征。针叶林凋落物饱和持水量在5-7月达到最高为(59.68±2.91) g/m2,常绿阔叶林凋落物饱和持水量则在9月达到最高,落叶阔叶林凋落物饱和持水量在11月份达到最高为(190.60±8.81) g/m2;三种次生林凋落物的半饱和时间均以11月份为最低,且落叶阔叶林凋落物半饱和时间比其他两种次生林地更低,全年平均(0.62±0.12) h;凋落物的水亲和力系数,全年均以落叶阔叶林最大为142.72±26.12;(3)落叶阔叶林凋落物饱和持水率全年显著高于其他两种次生林(P<0.01),且针叶林和落叶阔叶林凋落物饱和持水率均在11月份达到最大值;(4)落叶阔叶林凋落物吸水速率A值显著低于其他两种次生林(P<0.01),而针叶林凋落物吸水速率系数B值显著高于其他两种次生林(P<0.01);(5)凋落物饱和持水量与凋落物水亲和力和饱和持水率存在显著正相关关系,与凋落物凋落碳氮总量同样存在显著正相关关系;凋落物饱和持水率与凋落物半饱和时间、吸水速率系数A和B值存在显著负相关,与凋落物碳含量和C/N比极显著负相关,与凋落物氮含量极显著正相关(P<0.01)。综上,不同次生林类型凋落物持水性存在显著差异,凋落物持水性与凋落物碳氮量存在显著联系,该研究为深入探讨森林生态环境效应提供了支撑,丰富了森林凋落物持水特性的研究理论。  相似文献   

4.
以川西高山林线交错带两种优势地被物锦丝藓和高山冷蕨为对象,对针叶林和林线中锦丝藓植物残体及高山冷蕨凋落叶分解的质量损失和木质纤维素酶活性特征进行研究.结果表明: 锦丝藓和高山冷蕨的质量损失率在雪被期和生长季均表现为林线高于针叶林,而酶活性整体上表现为针叶林显著高于林线.两种地被物不同季节的质量损失有显著差异,雪被期林线和针叶林的锦丝藓质量损失率占全年的69.8%和83.0%;生长季林线和针叶林的高山冷蕨质量损失率分别占全年的82.6%和83.4%.高山冷蕨凋落叶在生长季节快速分解,与其生长季节末较高的纤维素酶活性相吻合,说明纤维素和半纤维素的酶解作用可能是凋落物前期质量损失的主要原因.多元线性回归分析表明,环境因子和凋落叶初始质量能共同解释酶活性变异的45.8%~85.1%,两种地被物分解过程中酶活性主要受到雪被期冻融循环的影响.  相似文献   

5.
森林凋落物作为森林土壤腐殖质的主要来源, 在土壤腐殖质的形成中发挥着重要作用, 但不同森林类型凋落物因其含量、组成等的不同, 对土壤腐殖质的影响也不同。该研究以川西亚高山针叶林、阔叶林和针阔混交林3种不同森林类型为对象, 采用凋落物原位控制实验, 对比研究不同关键期凋落物去除对土壤可提取腐殖质、胡敏酸和富里酸含量及胡敏酸/富里酸、胡敏酸/可提取腐殖质的影响。主要结果: (1)土壤可提取腐殖质、胡敏酸和富里酸含量在不同森林类型中差异显著。土壤可提取腐殖质含量总体表现为针叶林>针阔混交林>阔叶林, 胡敏酸含量总体表现为针阔混交林>针叶林>阔叶林, 而富里酸含量则表现为针叶林>阔叶林>针阔混交林, 其中3种林型中土壤腐殖质的主要成分为富里酸, 总体均表现为富里酸型。不同采样时期也显著影响了土壤可提取腐殖质、胡敏酸和富里酸含量, 总体均表现为先升高后下降的趋势。除个别采样时期外, 凋落物去除总体降低了土壤可提取腐殖质、胡敏酸和富里酸的含量。(2)胡敏酸/富里酸和胡敏酸/可提取腐殖质的结果显示3种林型土壤总体腐殖化程度均较低, 整体表现为针阔混交林>阔叶林>针叶林, 凋落物去除在一定程度上有利于提高阔叶林与针阔混交林的腐殖质品质。(3)相关分析表明不同凋落物处理间土壤可提取腐殖质与土壤有机碳含量、全氮含量和土壤含水量呈显著正相关关系, 与温度呈显著负相关关系。综上所述, 短期的凋落物去除会降低土壤腐殖物质的含量, 但不同林型间由于凋落物类型差异会导致土壤腐殖质的不同变化, 说明土壤腐殖质的动态变化受凋落物类型以及环境因素的综合调控。因此, 关于凋落物变化对土壤腐殖质的影响还需进一步的长期研究。  相似文献   

6.
季节性雪被对高山森林凋落物分解的影响   总被引:4,自引:0,他引:4       下载免费PDF全文
季节性雪被可能对高山森林凋落物分解产生重要影响, 但一直没有深入的研究。该文采用凋落物分解袋法, 于2010-2012年雪被覆盖下几个关键时期(冻结初期、深冻期和融化期)以及生长季节, 研究了川西高山森林代表性树种岷江冷杉(Abies faxoniana)、红桦(Betula albosinensis)、四川红杉(Larix mastersiana)和方枝柏(Sabina saltuaria)凋落叶在不同厚度冬季雪被下的分解动态。经过两年的分解, 不同雪被覆盖下岷江冷杉凋落物分解率为33.98%-39.55%, 红桦为46.49%-48.22%, 四川红杉为42.30%-44.93%, 方枝柏为40.34%-43.84%。相对于无雪被覆盖环境, 厚型雪被覆盖均小幅提高了4种凋落物两年的失重率(1.57%-5.57%)。3个针叶树种(岷江冷杉、四川红杉和方枝柏) Olson凋落物分解系数k均以厚型雪被覆盖最大, 薄型雪被覆盖最小, 而阔叶树种红桦分解系数k则表现为无雪被>薄型雪被>较厚型雪被>厚型雪被>中型雪被。尽管在第二年生长季中雪被对红桦凋落物分解的促进作用不明显, 但雪被覆盖明显促进了两年各个关键时期岷江冷杉、四川红杉和方枝柏凋落物的分解。第一年雪被期凋落物分解对当年分解总量的贡献达42.5%-65.5%, 季节性雪被变化明显改变了凋落物冬季分解格局, 对深冻期凋落物分解过程影响尤为显著。综上所述, 当前气候变化情景下冬季雪被的减少可能减缓该区森林凋落物分解过程, 但相对于易分解的阔叶凋落物, 针叶凋落物的响应特征可能更为强烈。  相似文献   

7.
季节性冻融对岷江冷杉和白桦凋落物酶活性的影响   总被引:1,自引:0,他引:1  
为了了解季节性冻融对亚高山森林生态系统过程的影响,2006年10月—2007年10月,采用凋落物分解袋法,研究了冻融和非冻融处理下岷江冷杉和白桦凋落物的酶活性动态.结果表明:凋落物的酶活性均具有明显的月变化,但活性高峰与酶类有关;季节性冻融显著影响了冷杉和白桦凋落物分解过程中的转化酶、纤维素酶、脲酶和脱氢酶活性(P<0.05).冻融处理使冷杉凋落物分解过程中的转化酶、纤维素酶和脲酶活性在生长季节内分别增加了66.1%、14.8%和76.3%,但脱氢酶活性降低了18.4%;冻融处理使白桦凋落物分解过程中的转化酶活性增加了39.4%,但脲酶、纤维素酶和脱氢酶活性分别降低了18.2%、28.7%和15.6%.冻融处理对两种凋落物的过氧化物酶和多酚氧化酶活性影响不显著.说明季节性冻融对亚高山森林凋落物分解过程具有不同程度的影响,其影响程度与凋落物种类和分解阶段有关.  相似文献   

8.
鼎湖山森林凋落物量及营养元素含量研究   总被引:19,自引:3,他引:16       下载免费PDF全文
 本文研究了鼎湖山南亚热带常绿阔叶林和针叶林的凋落物量及凋落物中主要营养元素(N、P、K、Ca、Mg)的含量。8年的测定结果表明,两个森林类型的年均凋落物量(t·ha-1)及凋落物中主要营养元素的含量(t·ha-1·yr-1)分别为:常绿阔叶林9.056,0.220;针叶林2.695,0.032。凋落物中叶、枝和花果的百分组成及凋落特征各异。鼎湖山南亚热带常绿阔叶林的年均凋落物量低于热带雨林而高于暖温带落叶阔叶林,说明不同气候带的森林类型,其凋落物量是有差异的。与针叶林相比较,常绿阔叶林的凋落物量较大,凋落物中主要营养元素的含量较高,凋落物的分解速率也较快,因此从提高森林的质量和增强森林的生态效益来考虑,在造林绿化上应提倡多营造常绿阔叶林或针阔叶混交林。  相似文献   

9.
为阐明不同生长年限森林叶片和不同分解程度枯落物养分含量特征,为植物-土壤养分循环研究提供科学依据。以藏东南色季拉山几种典型森林植被(雪山杜鹃(Rhododendron aganniphum)、海拔4000 m和3900 m区域急尖长苞冷杉(Abies georgei var. smithii)、川滇高山栎(Quercus aquifolioides))为研究对象,分析了1年生和2年生植物叶片及不同分解程度枯落物有机碳(OC)、全氮(TN)、全磷(TP)和全钾(TK)含量。结果表明:色季拉山森林叶片和枯落物OC含量表现为2年生叶片1年生叶片未分解枯落物(ND)半分解枯落物(SD)完全分解枯落物(CD),即老叶片以C积累为主,而枯落物OC含量随分解程度的增加而下降,叶片OC平均含量(68.5%)显著高于中国平均水平(45.5%);叶片N、P、K含量表现为1年生2年生,即新叶以N、P、K等营养物质的吸收积累为主。枯落物TN含量低于中国森林的平均水平(12.03 g/kg),而TP含量显著高于中国森林平均水平(0.74 g/kg),枯落物TN和TP以SD最高,即分解初期表现为净固定,而后期则呈净释放,TK含量随分解程度的增加而增加,表现为K的净固定;叶片C∶N,C∶P和C∶K表现为2年生1年生,枯落物C∶N,C∶P和C∶K随着分解程度的增加而显著降低;叶片N∶P处于较低水平(6.08),显著低于全球平均水平(16.0),表现出明显的N限制营养型;研究结果为科学阐明藏东南森林生态系统植被-土壤养分循环研究提供了数据支撑。  相似文献   

10.
森林凋落物与大型土壤动物相关关系的研究   总被引:24,自引:6,他引:18  
以针阔混交林及落叶阔叶林为例,探讨了森林凋落物与大型土壤动物的相关关系。研究表明,森林凋落物中大型土壤动物的个体数依林型、凋落物厚度、凋落物量不同而异,凋落物的分解程度影响大型土壤动物的种类、数量分布,凋落物中矿质元素含量与大型土壤动物体内矿质元素含量相关较好,凋落物中微量元素含量与大型土壤动物体内微量元素含量明显不相关。本研究为揭示大型土壤动物在凋落物分解中的作用,进而为森林的经营和保护提供科学依据。  相似文献   

11.
《农业工程》2014,34(2):110-115
In most terrestrial ecosystems, the majority of aboveground net primary productivity enters the decomposition system as plant litter. The decomposition of plant litter plays a critical role in regulating build up of the forest soil organic matter, releasing of nutrients for plant growth, and influencing the carbon cycling. Soil fauna are considered to be an important factor in the acceleration litter decomposition and nutrient transformations. Mechanisms of soil faunal contribution to litter decomposition include digestion of substrates, increase of surface area through fragmentation and acceleration of microbial inoculation into litter. The Pinus koraiensis mixed broad-leaved forest is one of the typical forest vegetation types in Changbai Mountain. Previously, major studies carried here were focused on climate, soil and vegetation; however, on litter decomposition and the role of soil fauna in this forest ecosystem were limited. In this paper, we conducted a litter decomposition experiment using litterbag method to explore the contribution of soil fauna on litter decomposition and provide a scientific basis for maintaining a balanced in P. koraiensis mixed broad-leaved forest in Changbai Mountains. During 2009 and 2010, we used litterbags with different mesh sizes to examine the decomposition of two dominant tree species (P. koraiensis, Fraxinus mandshurica) in studied site. The results showed that the process of litter decomposition can be separated into two apparent stages. The initial decomposition process at former six months was slow, while accelerated the final six months. The former six months (from October 2009 to April 2010) was winter and spring. There was low temperature and almost no activity of soil fauna and microbes. The final six months (from June to October 2010), decomposition rates increased. In summer and autumn, both temperature and moisture increases, abundance of soil fauna was much than before and was most active. The remaining mass of P. koraiensis was higher than that of F. mandshurica in two mesh size litterbags after 1 year decomposition, meanwhile litter in 2 mm mesh size litterbag had higher decomposition rate than that of 0.01 mm for two species litter. The Collembola, Acari, Enchytraeidae Lithobiomorpha and Diptera larvae were mainly fauna groups in the litterbags. The composition of soil fauna community was difference between P. koraiensis and F. mandshurica during litter decomposition. 24 different soil fauna groups and 1431 individual were obtained in P. koraiensis litterbags; Isotomidae, Tomoceridae and Oribatida were dominant groups; while 31 different soil fauna groups and 1255 individual were obtained in F. mandshurica litterbags; Isotomidae, Hypogastruridae Oribatida and Mesostigmata were dominant groups. The rate of litter decomposition was positively correlated with the individual and group density of soil fauna. Contribution rate to litter decomposition was 1.70% for P. koraiensis and 4.83% for F. mandshurica. Repeated measures ANOVA showed that litter species, time and soil fauna had a significant impact on the rate of litter decomposition (P < 0.05). Our results suggested that soil fauna could accelerate litter decomposition and, consequently, nutrient cycling in P. koraiensis mixed broad-leaved forest, Changbai Mountains.  相似文献   

12.
Palozzi  Julia E.  Lindo  Zoë 《Plant and Soil》2017,420(1-2):277-287

Aims

Warming has the potential to alter plant litter mass loss and nutrient release during decomposition. However, a great deal of uncertainty remains concerning how other factors such as litter species or substrate quality might modify the effects of increased temperature on decomposition. Meanwhile, the temperature sensitivity of plant litter decay in tropical and subtropical forest ecosystems remains poorly resolved.

Methods

This study was designed to assess the effects of experimental warming on litter decomposition and nutrient release of two contrasting tree species (Schima superba and Machilus breviflora) by translocating model forest ecosystems from the high-elevation sites to the lower-elevation sites in subtropical China. Translocating model mountain evergreen broad-leaved forest (MEBF) to the altitude of 300 m and 30 m increased the average monthly soil temperature at 5 cm depth by 0.88 and 1.84 °C, respectively during the experimental period. Translocating model coniferous and broad-leaved mixed forest (CBMF) to the altitude of 30 m increased the average monthly soil temperature at 5 cm depth by 0.85 °C.

Results

We found that experimental warming accelerated litter decomposition in both model forest types, and the promoting efficiency was greater when the temperature increased. The litter with high quality (Schima superba) had stronger response to warming than low quality litter (Machilus breviflora). Warming accelerated Na, K, Mg, P, N and Ca release from Schima superba litter, but only simulated Ca release from Machilus breviflora litter. Overall, litter decomposition was controlled by the order: soil temperature > litter quality > soil moisture > litter incubation forest type under experimental warming in the subtropical China.

Conclusion

We conclude that leaf litter decomposition was facilitated by experimental warming in subtropical China. Litter species might modify the effects of increased temperature on litter decomposition; however, forest type has no effect on litter decomposition.
  相似文献   

13.
Hansen  Randi A. 《Plant and Soil》1999,209(1):37-45
The contribution of microarthropod activity to litter decomposition varies widely but can be substantial. Oribatid mites are the most diverse and abundant of the microarthropod groups in forest litter. This experiment was designed to examine the effect of litter type and complexity on the diversity and species composition of oribatid mites, and to test whether alterations in species composition due to litter type affected litter decomposition. In an array of plots on a mixed-hardwood site in the mountains of North Carolina, I exposed microarthropod assemblages to a range of litter types: yellow birch, sugar maple, red oak and two mixed litters. Over several years, the litter types selected oribatid mite assemblages of different species composition. By comparing the decomposition of consecutive cohorts of litter, it was possible to detect differences in decomposition accompanying the shifts in the assemblage. A comparison of the mass loss rates between the two litter cohorts over eighteen months reveals similar trajectories for four litter types. In the oak litter, however, the second cohort disappeared significantly faster than the first. In both years, the litters came from the same trees and were nearly identical in initial carbon and nitrogen contents. Since the response was specific to oak litter, it is unlikely that differences in environmental factors are responsible for the faster mass loss of oak. A significant increase of endophagous oribatid mites, those that burrow into plant material, in the second cohort of oak may account for its accelerated decomposition. The woody petioles and thick leaf-planes of oak leaves provide microhabitats for burrowing mites. Endophage activity can accelerate the litter decomposition both through direct comminution of leaf material and by facilitating microbial growth. Because of their low population growth rates, oribatid populations that are reduced by disturbance are slow to recover and by disrupting these non-resilient populations, disturbance may have long-term repercussions for decomposition. This revised version was published online in June 2006 with corrections to the Cover Date.  相似文献   

14.
Litterbag experiments were carried out in five forest ecosystems in the Netherlands to study weight loss and nitrogen dynamics during the first two years of decomposition of leaf and needle litter. All forests were characterized by a relatively high atmospheric nitrogen input by throughfall, ranging from 22–55 kg N ha–1 yr–1.Correlation analysis of all seven leaf and needle litters revealed no significant relation between the measured litter quality indices (nitrogen and lignin concentration, lignin-to-nitrogen ratio) and the decomposition rate. A significant linear relation was found between initial lignin-to-nitrogen ratio and critical nitrogen concentration, suggesting an effect of litter quality on nitrogen dynamics.Comparison of the decomposition of oak leaves in a nitrogen-limited and a nitrogen-saturated forest suggested an increased nitrogen availability. The differences in capacities to retain atmospheric nitrogen inputs between these two sites could be explained by differences in net nitrogen immobilization in first year decomposing oak leaves: in the nitrogen-limited oak forest a major part (55%) of the nitrogen input by throughfall was immobilized in the first year oak leaf litter.The three coniferous forests consisted of two monocultures of Douglas fir and a mixed stand of Douglas fir and Scots pine. Despite comparable litter quality in the Douglas fir needles in all sites, completely different nitrogen dynamics were found.  相似文献   

15.
王敏英  刘强 《广西植物》2012,32(5):630-636
为探究海南岛中部丘陵地区植被恢复过程中凋落物分解动态和土壤碳氮含量变化,采用时空互代法,在琼中湾岭地区同时具有经自然恢复的草丛、灌丛、次生林和人工恢复的马占相思林4种植物群落的两个山坡采用凋落物袋法进行凋落物交互分解实验。结果表明:4类型凋落物在同一样地中分解时,灌丛凋落物肖梵天花分解速率最高;同一种类凋落物在4个样地中分解时,在灌丛样地的分解率较高,而在3个自然植被样地中,分解速率为灌丛>草丛>次生林,显示随着植物群落进展演替的进程,凋落物分解速率呈现先增加后降低的趋势;马占相思凋落物和在马占相思林样地分解凋落物的分解率均低于次生林。土壤碳氮含量变化不显著,但有随植被恢复进程而增加的趋势。  相似文献   

16.

Aims

This study was carried out to improve our understanding of the interception effect of understorey vegetation on litter decomposition in Cinnamomum camphora plantation forest of subtropical China.

Methods

The interception simulation experiment in field was performed to determine how the litterfall interception delayed the leaf litter decomposition of C. camphora, by comparing the difference in variables among 4 litter interception locations.

Results

The results showed that total mass loss, lignin loss, cellulose loss, microbial activities (CO2 release, fungal biomass and enzyme activities), and water content except nitrogen for litters on the crown were significantly lower than that of litters without interception. The maximum mass loss difference value among litter locations reached 35 %, indicative of obvious decomposition delay by the understorey. Litter CO2 release, enzyme activities and water content exhibited a clear seasonal pattern, suggesting a strong relation between the degree of microbial activities and the succession of cold and warm as well as moist and dry periods. A clear nitrogen increase was observed in this experiment, indicating persistent immobilization. No clear variation pattern in nitrogen content was observed in this study, which was probably mixed by the N precipitation from acid rain.

Conclusions

The litterfall interception delayed the decomposition of leaf litter, displaying slow decomposition rate and inhibitive microbial activities by interception, which presumably resulted from low water content on the crown.  相似文献   

17.
In this study, the litter of Catalpa fargesii and Eucommia ulmoides was treated with the water extracts of 5 types of coniferous litter for a 0.5-year indoor, simulated decomposition experiment, and the effects of plant secondary metabolites (PSMs) from coniferous litter on the mass loss and C, N and P release of the 2 types of litter were detected. The results indicated that the litter extracts of Platycladus orientalis, Pinus tabuliformis, Pinus armandii and Larix principis-rupprechtii significantly reduced the decomposition and overall final nutrient release rates of the litter of C. fargesii and E. ulmoides (in which only the extracts of P. orientalis litter did not affect the mass loss of E. ulmoides litter). Correspondingly, significant decreases in the activity of soil cellulase and polyphenol oxidase were observed during the entire decomposition period, especially during the middle and later decomposition stages, indicating that the PSM release from coniferous litter might inhibit the decomposition and nutrient cycling of C. fargesii and E. ulmoides litter by depressing the activity of lignocellulolytic enzymes during mixed decomposition. In conclusion, more attention should be given to the effects of leached litter PSMs on the decomposition of other types of litter during mixed afforestation or in the mixed transformation of pure forests.  相似文献   

18.
刘秉儒  张文文  李学斌 《生态学报》2021,41(20):8145-8158
贺兰山是我国重要生态屏障,贺兰山生态森林生态系统保护受到极大关注,森林凋落物及土壤微生物对全球气候变化研究具有重要意义。目前,贺兰山不同林分的凋落物分解过程中微生物群落结构特征差异、不同凋落物化学组成对微生物群落结构的影响尚不清楚。以贺兰山具有代表性的3种林分(油松林、青海云杉林以及油松-山杨混交林)凋落物为研究对象,开展凋落物化学组成、微生物群落组成及多样性特征研究,揭示不同林分凋落物的优势微生物群落特征和影响因子。结果表明,3种林分凋落物的细菌和真菌在多个多样性指数之间差异性均不显著,但是在多样性指数中真菌PD whole tree指数显著大于细菌,真菌Shannon指数与Ghao1指数却显著小于细菌。在门水平上不同林分凋落物的微生物优势菌类无显著差异,但在属水平上差异显著,而且细菌差异小于真菌,在各个分类水平上,凋落物细菌和真菌群落组成均表现为油松-山杨混交林<青海云杉林<青海云杉林,凋落物微生物多样性在青海云杉林中最为丰富。细菌不同节点间连接线负相关数量略大于正相关,真菌则相反。油松林凋落物与其它林分凋落物相比,微生物群落之间联系更加紧密。油松林凋落物OC含量最大、青海云杉林凋落物的TK含量最大、油松-山杨混交林的TN含量最大,且在3种林分中显著差异。相关性分析表明OC、TN、TP、TK是影响凋落物细菌和真菌群落组成及多样性的主要因素,冗余分析表明不同林分凋落物的微生物多样性指数受养分影响,凋落物OC、TN、TP、TK是影响微生物群落组成和多样性的重要因素,其中OC与微生物群落多样性相关性最显著,是影响凋落物细菌和真菌群落组成和多样性最主要的因子。  相似文献   

19.
Aims With the continuing increase in the impact of human activities on ecosystems, ecologists are increasingly interested in understanding the effects of high temperature on litter decomposition since litter decomposition and the accompanying release of nutrients and carbon dioxide are key processes in ecosystem nutrient cycling and carbon flux. This study was conducted to evaluate the temperature sensitivity of forest litter decomposition and soil enzymes during litter decomposition in subtropical forest in China.Methods Two dominant litter types were chosen from Zijin Mountain in China: Quercus acutissima leaves from a broadleaf forest (BF) and Pinus massoniana needles from a coniferous forest (CF). The litter samples were incubated in soil microcosms at ambient control temperature (20°C) and 10°C warmer. During a 5-month incubation, chemical composition of litter samples, litter mass losses, and related soil enzyme activities were determined.Important findings Three main results were found: (i) high temperature accelerated decomposition rates of both litter types, and the temperature sensitivities of litter decomposition for BF leaves and that for CF needles are equivalent basically, (ii) high temperature enhanced soil enzyme activities in the two forest types, and the temperature sensitivities of polyphenol oxidase were significantly higher than those of the other soil enzymes and (iii) the temperature sensitivities of nitrate reductase were significantly higher in the CF soil than in the BF soil, while there was no significant difference in the temperature sensitivities of the other soil enzymes between BF and CF. As a long-term consequence, the high-temperature-induced acceleration of litter decomposition rates in these subtropical forests may cause carbon stored belowground to be transferred in the atmosphere, which may alter the balance between carbon uptake and release, and then alter the global carbon cycle in the coming decades.  相似文献   

20.
Summary Studies have been made on the production of ammonia and nitrate nitrogen, rate of decomposition along with comparative changes in microbial population during decomposition of deciduous and coniferous litters. At the same time the effect of addition of antibiotics on the microbial population and rate of decomposition of coniferous litter was investigated.Liberation of nitrogen in the form of ammonia occurred somewhat more rapidly in decomposing deciduous litter than in that of the coniferous litter. Towards the end of the experiment the nitrification process commenced in the deciduous litter but was absent in the coniferous litter.The deciduous litter decomposed more rapidly than the coniferous litter.The bacteria and actinomycetes were consistently more numerous in the deciduous litter than in the coniferous litter; in the case of fungi the reverse occured. An antifungal antibiotic (cycloheximide) had little or no effect on numbers of fungi in the decomposing coniferous litter while antibacterial antibiotics (streptomycin and chloramphenicol) reduced slightly the numbers of bacteria and actinomycetes. Numbers of bacteria and actinomycetes were increased greatly in cultures receiving the antifungal antibiotic and fungal growth was apparently stimulated where antibacterial antibiotics were added. In spite of the observed shift in the microbial population brought about by the addition of antibiotics the rate of decomposition of the coniferous litter appeared to be unaffected. This would suggest that the type of microbia l population is not as important as the type of litter or some other factor in regard to decomposition rate.Joint contribution from the Divisions of Bacteriology (No. 469) and Chemistry (No. 412), Science Service.  相似文献   

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