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1.
森林凋落物分解与酶的相互关系研究进展   总被引:3,自引:2,他引:1  
森林凋落物分解是森林生态系统物质循环和能量流动的重要环节,凋落物通过分解向土壤释放有机物和养分元素,对林地肥力的维持具有重要意义。凋落物分解受到一系列物理和化学因素的影响,主要包括气候、凋落物自身性质和土壤生物等。凋落物和土壤中的酶是凋落物分解过程的重要参与者,其在森林生态系统物质循环和能量流动过程中扮演着重要角色。文中评述了酶的种类和酶活性与凋落物分解的关系及凋落物层次、多样性和分解产物与酶的关系,简要概述了酶活性的测定方法,为深入研究凋落物分解机理及其在森林可持续经营中的作用提供参考。  相似文献   

2.
A study was conducted to identify the differences in the decompositions of leaf litter, lignin and carbohydrate between coniferous forest and broadleaf forest at 20℃ and 30℃ in Huangshan Mountain, Anhui Province, China. Results showed that at 20℃ mass loss of leaf litter driven by microbial decomposers was higher in broadleaf forest than that in coniferous forest, whereas the difference in mass loss of leaf litter was not significant at 30℃. The temperature increase did not affect the mass loss of leaf litter for coniferous forest treatment, but significantly reduced the decomposition rate for broadleaf forest treatment. The functional decomposers of microorganism in broadleaf forest produced a higher lignin decomposition rate at 20℃, compared to that in coniferous forest, but the difference in lignin decomposition was not found between two forest types at 30℃. Improved temperature increased the lignin decomposition for both broadleaf and coniferous forest. Additionally, the functional group of microorganism from broadleaf forest showed marginally higher carbohydrate loss than that from coniferous forest at both temperatures. Temperature increase reduced the carbohydrate decomposition for broadleaf forest, while only a little reduce was found for coniferous forest. Remarkable differences occurred in responses between most enzymes (Phenoloxidase, peroxidase, !5-glucosidase and endocellulase) and decomposition rate of leaf litter to forest type and temperature, although there exist strong relationships between measured enzyme activities and decomposition rate in most cases. The reason is that more than one enzyme contribute to the mass loss of leaf litter and organic chemical components. In conclusion, at a community scale the coniferous and broadleaf forests differed in their temperature-decomposition relationships.  相似文献   

3.
[目的]研究外来引进树种日本落叶松林凋落物对土壤养分的影响。[方法]采用分解袋法分别对18年生和24年生日本落叶松林以及周围针阔混交林凋落物的分解和养分释放规律进行了研究。[结果]凋落物分解和养分释放速率均表现为针阔混交林日本落叶松纯林;24年生日本落叶松林18年生日本落叶松林。其中不同林分的凋落物残留率与时间呈指数相关,凋落物年分解系数(K)也表现为针阔混交林(0.555 6)24年生日本落叶松林(0.445 0)18年生日本落叶松林(0.366 2)。凋落物分解速率与初始N元素含量呈极显著正相关,而与C/N比呈显著负相关,高的木质素含量对凋落物的分解有一定影响。C元素、K元素表现为直接释放模式,而研究中C/N比和C/P比相对较高,使N元素和P元素均表现为先富集后释放的模式。各养分元素的残留率总体呈现出18年生日本落叶松林24年生日本落叶松林针阔混交林的格局。[结论]不同林分凋落物分解和养分释放速率差异较大。凋落物年分解系数表现为针阔混交林24年生日本落叶松林18年生日本落叶松林。  相似文献   

4.
森林凋落物分解过程中酶活性研究进展   总被引:4,自引:0,他引:4  
凋落物的分解是生态系统养分循环的重要过程.森林凋落物和土壤中的酶在森林凋落物分解过程中起着重要的作用.本文对森林凋落物分解过程中酶活性的测定方法及影响因素进行了综述,结论为:提取技术的不断提高使得对森林凋落物分解过程中的酶进行定量测定及精确测定其活性成为可能;森林凋落物分解过程中的酶活性受生物因素、非生物因素及凋落物自身化学组成的影响;微生物群落是影响酶活性的主要生物因素,土壤有机质、温度和湿度等是影响酶活性的重要非生物因素;对凋落物分解与酶系统相互作用机制的研究将成为凋落物分解过程中酶活性研究的一个发展趋势.  相似文献   

5.
本文选择川西亚高山针叶纯林和针阔混交林作为研究对象,并于2007年7月~12月采用收集框法研究了森林凋落物量以及N、P、K养分归还量。结果表明,混交林凋落量(2 090.47 kg·hm-2)比针叶林凋落量(1 189.59kg.hm-2)高出43%,林分凋落动态和归还动态呈单峰型,其高峰都出现在10月份。混交林中阔叶对凋落量的贡献达69%。同时,阔叶的养分归还量大于针叶的养分归还量。混交林和针叶林养分归还量都表现为N﹥K﹥P,针阔混交林凋落物养分归还量大于针叶林。在川西亚高山地区针阔混交林比针叶纯林具有更强的自肥能力。  相似文献   

6.
We investigated the dynamics of litterfall and litter decomposition of Sasa dwarf bamboo (Sasa senanensis) and trees to clarify the characteristics of organic matter and nitrogen cycling between plant and soil in a natural cool-temperate mixed forest ecosystem dominated by an understory vegetation of Sasa. Mean annual Sasa litterfall over the 3-year study period was 164 g m?2 year?1, which accounted for approximately 29% of total litterfall. Litter decomposition of Sasa leaf and Sasa culm was significantly slower than that of tree leaf during first and second years. The slow decomposition rates of both Sasa litter types were caused by a significantly higher silicate than in tree leaf. Nitrogen concentration in litter increased as decomposition progressed, especially in Sasa leaf and tree leaf. As a result of the slow decomposition of both Sasa litter types, 111 and 73% of nitrogen to the initial amounts were retained in Sasa leaf and Sasa culm after 3 years, respectively. The amounts of retained nitrogen in Sasa leaf, Sasa culm, and tree leaf after 3 years were 1.29, 0.47, and 3.92 g N m?2, respectively, indicating that the differences of litter decomposition rates among the litter types influence on the nitrogen cycling in forest ecosystem through the differences of the nitrogen release from litter.  相似文献   

7.
对宽甸地区几种主要林分类型枯落物及其土壤蓄水功能进行了研究,结果表明:各类型林分枯落物现存量依次为人工纯林针阔混交林,枯落物持水率为针阔混交林人工纯林;林分的土壤渗透能力和蓄水能力均为混交林人工纯林。  相似文献   

8.
指出了森林枯落物是森林生态系统的重要组成部分,枯落物层是森林拦蓄降水的重要环节。为了调查景谷县森林枯落物水文作用,选取了具有代表性的6个大样区和18个标准样地进行调查取样,结果表明:(1)景谷县3种植被类型中枯落物蓄积量最大的是季雨林,最小的是暖性针叶林,常绿阔叶林和李雨林林下枯落物半分解层所占比例要比未分解层大,而暖性针叶林林下枯落物未分解层所占比例要比半分解层大;(2)景谷县3种植被类型中,常绿阔叶林枯落物自然含水率最高,季雨林最小,暖性针叶林介于二者中间;(3)自然状态下,阔叶林枯落物的最大持水率大于针叶林,但由于针叶林枯落物数量较多,不易分解糜烂,因此仍有很强的拦蓄能力,3种植被类型中,暖性针叶林的拦蓄能力是最强的。  相似文献   

9.
不同林分类型及土层对土壤养分的影响   总被引:2,自引:0,他引:2  
在中山五桂山保护区选择4个不同的林分类型,分别进行土壤采样,测定土壤养分指标,分析不同林分类型及土层对土壤养分的影响,为林分改造、土壤养分改良提供理论和数据支撑。结果表明:(1)四种土壤养分指标在四种林分类型间均有显著性差异,四种林分类型的土壤养分指标含量大小排序大致为:沟谷季雨林阔叶混针阔混针叶林,只有有效磷含量是阔叶混大于沟谷季雨林。(2)四种土壤养分指标在针叶林、针阔混交林、沟谷季雨林这3种林型中的5个土层间变化均有显著性差异,而在常绿阔叶林中仅速效钾在5个土层间有显著性差异。(3)四种林分类型中,沟谷季雨林各指标含量相对较高,处于"中下"等级,而针叶林各指标含量低,处于"很低"等级。总的来说,四种林分类型的土壤养分含量偏低,特别是针叶林,各项土壤指标含量均为"很低",可以参考群落演替方向对针叶林进行林分改造来提高土壤养分。  相似文献   

10.
In northeastern India, subtropical forests are over-exploited for timber, fuel wood and common agricultural practice like shifting cultivation, which are responsible for the degradation of natural forest. In degraded areas, large-scale plantations of different species of Quercus have been raised since 1980 for the production of economic Tasar silk. Conversion of natural forest into plantation affects the process of nutrient cycling due to management practices. Thus, it would be of importance to study the litterfall, litter decomposition process and the factors regulating the rate of litter decay in these ecosystems to improve recommendations for their management and conservation. We recorded litterfall by using litter traps and decomposition of leaf litter by nylon net bag technique to understand the amount of organic matter and nutrient return and their release in soils of forest and plantation in Manipur, northeast India. Total litterfall was 419.9 g m−2 year−1 in plantation and 547.7 g m−2 year−1 in forest. Litter decomposition rate was faster at plantation site than the forest in the early stage of litter decomposition whereas the reverse was observed at later stages of decomposition. Stepwise regression analysis showed the significant role of relative humidity and mean temperature on mass loss rates in the forest. Relative humidity, maximum temperature, population of fungi and actinomycetes were the best predictor variables for mass loss rates in plantation. Nutrient retranslocation efficiency and the immobilization of N and P in forest litter were higher than plantation. This suggests that Q. serrata growing in natural ecosystem in oligotrophic condition adapted strong nutrient conservation mechanisms to compete with the other plant species for the meager soil nutrients. The same species in plantation loses these adaptive capabilities because of exogenous supply of nutrients and in the absence of intense competition with other plant species. Thus, the optimization of organic and chemical fertilizer input in plantation is recommended for maintaining the soil fertility level to produce quality leaf for silkworm by conserving essential nutrients in the system.  相似文献   

11.
滇中高原区主要森林类型枯枝落叶层对降雨的截留功能   总被引:2,自引:0,他引:2  
枯枝落叶层是森林植被对降雨再分配的第2作用层,也是对土壤发育具有重要影响的层次。在实测本区主要森林类型枯枝落叶量及其持水能力的基础上,采用100m2最大截留能力、100g枯枝落叶最大持水能力及最大持水率等指标对不同森林类型枯枝落叶量、组成及其发育情况进行了综合评价。  相似文献   

12.
在孟加拉吉大港丘陵地区,调查了热带季风气候条件下的3种人工林(7年生大叶相思(Acacia auriculiformis)林、15年生大叶相思林和18年生混交林)和1种天然林的森林凋落物及其对土壤性质的作用.结果表明,总的有机质积累随人工林树龄增加而增加,但是年积累量随之降低.在同一植被类型内,不同坡位新鲜或部分分解的凋落物有机质累计量变化较大,坡底部有机质积累量最高,沿着山坡向上逐渐减少.在15年生大叶相思人工林内,土壤整合有机物积累量变化趋势与新鲜或部分分解有机质积累量变化趋势相反.在7年生和15年生的大叶相思林以及18年龄的阔叶混交人工林内,新鲜、部分分解和完全分解(含土壤整合有机质)有机质总生产速率分别是2554.31、705.79和1028.01kg.ha-1·a-1,新鲜凋落物有机质在3种林分中的生产速率分别是38.23,19.40和30.48 kg·ha-1·a-1.3种人工林和自然林内,平均新鲜凋落物的有机质积累占有机质产出总量的32.45%,部分分解凋落物占13.50%,而全分解整合土壤有机质占54.56%.森林土壤酸度随凋落物分解阶段的深入而增加.  相似文献   

13.
不同林型内土壤的理化性质存在差异,柞树林内土壤结构疏松,渗透能力强,土壤物理性质最好,其次为红松林,杂木林内最差,10~20 cm土层深度渗透速率仅为0.57 mm.min-1。从化学性质来看,阔叶树种土壤中养分含量较针叶林高,比较而言,柞树林内土壤各养分含量比杂木林内高。作为针叶树种的红松林土壤内,其速效养分含量较其他林型高。  相似文献   

14.
Forest gap in alpine forests may redistribute the hydrothermal conditions in winter and growing season, which may affect the releases of copper and zinc in foliar litter during decomposition. However, the details of this process are largely unknown. Foliar litters of willow (Salix paraplesia), larch (Larix mastersiana), fir (Abies faxoniana), azalea (Rhododendron lapponicum), birch (Betula albosinensis) and cypress (Sabina saltuaria) were selected in an alpine forest of eastern Tibetan Plateau. The litterbags were placed on the forest floor from gap center, canopy gap edge and expanded gap edge to closed canopy. Zinc and copper contents were studied as litter decomposition proceeded. After one year of decomposition, zinc accumulated in all foliar litters regardless of gap positions, but copper accumulated in the litters of fir, azalea and cypress. Separately, copper was released from all foliar litters in winter, whereas zinc in litters of larch, azalea, birch and cypress was released in winter. Moreover, both copper and zinc accumulated during the growing season regardless of litter species. Nevertheless, higher accumulation rates were observed under closed canopy compared with other gap positions. These results suggest that forest gap slows the releases of copper and zinc in foliar litter during forest regeneration in these cold biomes.  相似文献   

15.
长宁竹海5种林分类型的水文效应评价   总被引:4,自引:0,他引:4  
对长宁竹海的苦竹、毛竹、黄竹林,杉木林及白栎林5种林分类型的水文效应进行了研究。结果表明:林分中的草本植物植冠层的水分最大截留量是乔灌层植物的2.4倍。按种类以苔草最高,为6.34 g/g(干生物量);黄竹最小,为1.19 g/g。5种林分林地枯落物的现存量为4.33~14.87 t/hm2,其分解层的蓄水量高于末分解层,枯落物层最大蓄水总量为1.0~3.5 mm,依杉木林>白栎林>毛竹>苦竹>黄竹排序;土壤蓄水量以杉木林最大,白栎林次之,竹林最差;而土壤稳定渗透系数K10以竹林最大,杉木林次之,白栎林最小,表明竹林土壤抗水蚀能力强于杉木林和白栎林。  相似文献   

16.
缙云山自然保护区4种森林类型林地土壤的持水特性研究   总被引:1,自引:0,他引:1  
对缙云山自然保护区的常绿阔叶林、针阔混交林、竹林、灌木林林地及农地(对照)土壤的物理性质、土壤水分的入渗性能进行了测定分析,结果表明:其林地(农地)表层土壤容重的顺序为,常绿阔叶林>针阔混交林>竹林>农地>灌木林;土壤非毛管孔隙度的顺序为,灌木林>针阔混交林>竹林>常绿阔叶林>农地。灌木林林地土壤的有效水分涵蓄量要明显大于其他的森林类型,其蓄水量是竹林的1.4倍,是农地的2.14倍。4种森林类型林地及农地土壤的水分下渗性能,其层间稳渗率以腐殖质层>淀积层>母岩层;在土壤层,以竹林和农地的水分初渗为高。灌木林林地土壤的水分渗透性能极强,其初渗值达到了10.169 mm/min。从土壤水分的入渗性能来看,灌木林涵养水源和理水调洪的功能要远大于其他森林类型,针阔混交林要优于常绿阔叶林,而竹林最差。然而,对于遭遇短历时较高强度的降雨而言,竹林的理水调洪作用可能略好于针阔叶混交林和常绿阔叶林。  相似文献   

17.
西藏自治区森林枯落物碳储量估算   总被引:1,自引:0,他引:1  
利用典型样地采样,建立了枯落物碳密度与厚度关系方程,并结合森林资源连续清查的样地坡度与枯落物厚度因子,估算出西藏自治区森林枯落物碳储量.结果表明,西藏自治区丰富的森林植被生产了巨大的枯落物层碳库,有机碳分解和碳库消耗缓慢.研究该部分碳库状况,为估算和评价陆地生态系统碳储量并据此制定相应的对策提供了基础数据.  相似文献   

18.
千岛湖地区森林土壤类型与可持续利用研究   总被引:2,自引:1,他引:2  
对千岛湖地区森林土壤类型及其分布进行了调查,结果表明:森林土壤有3个土类、5个亚类、10个土属。分布以黄红壤为主,占86.8%;钙质紫砂土次之,占7.8%;侵蚀性红壤占2.7%;石灰岩土占2.5%;黄壤面积最小,仅占0.2%。研究了不同林分类型的土壤理化性质,认为不同湖区林场的天然林土壤养分差异较大,从整个地区角度看各种林型间土壤养分无差异性,但从每个林场单独分析,无论是天然林,还是人工林,阔叶林地养分明显高于针叶林和混交林地。因而,实施针叶林阔叶化改造,对千岛湖地区林地的持续发展,提高其水源涵养、保持水土、景观生态等效益是有益的。  相似文献   

19.
以长白山主要支脉张广才岭和哈达岭山系为研究对象,通过对各林分类型凋落物现存量及其组成分析,探讨不同林分类型凋落物现存量的差异.结果表明,天然林凋落物平均现存量为5.97 t/hm2;人工林凋落物平均现存量为5.96 t/hm2;在天然林各调查群落中,阔叶混交林和落叶阔叶纯林面积占有较大比例,凋落物平均现存量分别为6.11和5.99 t/hm2;其针叶混交林面积最小,平均现存量仅为2.74 t/hm2;在人工林各调查群落中,针叶纯林面积最大,平均现存量为6.09 t/hm2;针阔混交林面积最小,平均现存量为5.76 t/hm2.在人工林、天然林未分解层各组分中,均表现出凋落叶(阔叶+针叶)>凋落枝(阔枝+针枝)>杂物的趋势.  相似文献   

20.
为探讨马尾松不同类型林地地上部微生物区系及优势种群及其季节性变化,对三峡库区云阳县马尾松近熟龄天然林、中龄天然林和人工林林地空气、叶面和树皮表面等地上部的可培养细菌和真菌进行了分析。结果表明,空气、叶面和树皮表面的真菌、细菌两大类微生物数量四季变化趋势基本一致,夏季和秋季的数量多于冬季和春季,中龄天然林的两大类微生物数量最大且四季变化亦最大;优势种群的种类和数量随季节和林地类型不同而有所变化。人工林空气中可培养真菌种类秋、冬、春、夏分别有4、3、4、3种,近熟龄天然林和中龄天然林四季中均为3种;优势种群多  相似文献   

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