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1.
森林枯枝落叶分解及其影响因素   总被引:5,自引:2,他引:5  
枯枝落叶在森林生态系统中占有极其重要的地位,枯枝落叶的分解是一个以生物为主要参与者的过程,土壤动物使粗枯落叶实现物理性分解,土壤微生物则使枯落物碎片进一步分解为简单无机分子或转化为腐殖物质。土壤微生物的分解受枯落物自身成份的影响,粗脂肪与可溶性糖等在前期分解,木质素与纤维素等在后期分解,低w(C)/w(N)比枯落物易于分解,枯落物内的有机氮最终将降解为NH 4和NO-3,用于描述枯落物分解的最常用模型是指数方程x/x0=e-kt。自然因素与人为因素引起的火烧也是引起地面枯落物消失的重要因素,它有很强的负面效应,造成有机氮的损失。影响枯落物分解的因素很多,它们主要是通过影响分解生物而起作用,这些因素有树种、温度、湿度、酸碱度、污染等。阔叶树枯落物通常比针叶的分解快,温度与有机氮的矿化有线性关系,硝化作用可在大幅度的温度范围内发生,但最适温度通常在25℃。碳矿化的最适含水量约60%,在过于淹水条件下易于出现反硝化作用而造成氮损失。森林枯落物分解以真菌为主,适于在较高pH条件下进行,但与枯落物种类有关,云杉最适分解酸度为pH5~7,多种阔叶树最适分解酸度在pH3.5,土壤变酸时通常造成细菌数量显著下降,而以真菌占主导。枯落物的处理方式影响森林土地的生产力,移除地面枯落物或采伐剩余的枝叶可造成土地肥力的显著下降,相反,则有利于维持土地肥力。  相似文献   

2.
Lignin and its effects on litter decomposition in forest ecosystems   总被引:1,自引:0,他引:1  
Lignin is a major component of plant litter. In this review, we found lignin comprises a complex class of organic compounds whose concentration differs greatly both between and within plant species. There are many analytical methods for detecting the composition and structure of lignins. As lignins are enormously complex compounds, chemical assay is difficult and different methods vary with the results. Lignin plays a significant role in the carbon cycle, sequestering atmospheric carbon into the living tissues of woody perennial vegetation. It has also great effects on nitrogen dynamics of forest ecosystems as well as other ecological processes. Lignin is one of the most slowly decomposing components of dead vegetation, contributing a major fraction of the material that becomes humus as it decomposes. Lignin is highly correlated with decomposition of litter. Thus, there is evidence that the lignin concentration is a more influential factor than the other chemical concentrations, in determining the rate of leaf litter decomposition of different forest ecosystems. Although a great number of researchers have addressed lignin's role in litter decomposition, still there are many aspects of lignin biogeochemistry that are not known. This lack of information hinders complete amalgam of lignin effects on litter decomposition processes and dynamics of nutrient cycling.  相似文献   

3.
李欢  李晓林  向丹 《生态环境》2010,19(7):1569-1573
丛枝菌根真菌(Abuscular mycorrhizal fungi)能够影响植物生长及养分含量,从而影响凋落物的降解。采用根袋的方法研究了接种两种丛枝真菌Glomus mosseae和Glomus claroideum对羊草(Leymus chinensis)地上部及根系凋落物降解的影响。结果表明,随时间的延长,凋落物的重量逐渐减少,凋落物氮、磷含量均表现出先下降后逐渐升高的趋势。接种对地上部凋落物的养分含量及降解速度未产生显著性影响,但显著降低了根系氮磷含量及降解系数。接种Glomus mosseae和Glomus claroideum羊草根系氮、磷含量均显著低于CK;接种与未接种相比羊草根系k值显著降低;根系C:N未接种处理显著低于接种处理。说明丛枝菌根真菌可能间接影响草原生态系统中有机物质的分解和养分释放。  相似文献   

4.
模拟氮沉降对兴安落叶松林凋落物分解的影响   总被引:1,自引:0,他引:1  
试验施加NH4NO3、KNO3和NH4Cl3种氮肥,设置对照(N0,0 kg·hm-2·a-1)、低氮(N1,10 kg·hm-2·a-1)、中氮(N2,20kg·hm-2·a-1)、高氮(N3,40 kg·hm-2·a-1)4个施氮水平,通过交互试验,研究模拟N沉降对大兴安岭兴安落叶松(Larix gmelinii)林凋落物分解的影响。结果表明,在兴安落叶松林凋落物分解过程中,叶分解最快,其次是枝,分解最慢的为果,在分解16个月后,枝、叶、果的质量残留率分别为76.68%、47.98%和80.43%,3者异极其显著(p〈0.01)。凋落物叶分解95%所需时间为6.71 a,而枝和果所需时间分别为18.07和18.10 a。在模拟大气氮沉降下凋落物分解过程中,施加KNO3,N2处理下的枝、叶、果的质量残留率极显著低于N3处理(p〈0.01),显著低于N0和N1处理。施加NH4Cl下,N1处理显著低于N0处理(p〈0.05)。在施加NH4NO3下,N1水平处理下的枝、叶、果的分解速率显著增加(p〈0.05),但是随着施氮量的增加,分解速率就会减慢,N3处理下,有着明显的抑制作用(p〈0.05),说明氮沉降对于凋落物分解有着促进作用,但是随着时间和氮沉降量的增加,促进作用延缓甚至是抑制作用。  相似文献   

5.
随着纳米技术的迅速发展,纳米氧化锌广泛应用于抗菌涂料、电子装置、个人护理品等产品中,其生态毒理机制已成为生态学的研究热点。为了探究水生丝状真菌对纳米氧化锌的响应及适应机制,本文选用3种不同粒径的纳米氧化锌30 nm、90 nm和200 nm作为影响因子,通过室内模拟钻天杨Populus nigra L.凋落叶降解过程,研究纳米氧化锌的慢性暴露对水生丝状真菌生物量及代谢功能的影响效应,其中包括真菌的生孢率、群落多样性、脱氢酶活性、胞外降解酶活性、体系pH值、凋落叶降解速率以及碳氮含量,结果表明,粒径较小的纳米氧化锌(如30和90 nm)对水生丝状真菌活性及细菌代谢功能的抑制作用更强,且抑制作用达到显著水平所需的时间越短。46 d的慢性暴露显著影响了水生丝状真菌的生孢率与群落组成,其中Alatospora的生孢率与凋落叶降解速率呈显著负相关,表明该菌是纳米氧化锌的敏感菌,而Anguillospora和Flabellospora在纳米氧化锌的介入环境中产出较多的分生孢子,表明其为纳米氧化锌的耐受菌。另外,纳米氧化锌的长期暴露使水生丝状真菌对有机氮的降解功能具有促进作用,而对有机碳的代谢功能没有明显影响。总之,水生丝状真菌对纳米氧化锌的响应导致了凋落叶降解速率及碳氮分解效率在各处理间呈现显著差异。综上所述,本研究为纳米氧化锌对生态过程的毒理机制提供了必要的理论基础。  相似文献   

6.
采用动态密闭气室分析法测定了沙蒿(Artemisia desertorum)群落、赖草(Leymus secalinus)群落、甘草(Glycyrrhizauralensis)群落和冰草(Agropyron crisatum)群落4种典型荒漠草原植物群落土壤呼吸和枯落物分解的CO2释放速率(RS+L)、土壤呼吸CO2释放速率(RS),利用推导法估算得到了枯落物分解的CO2释放速率(RL)及其对总释放的贡献。得到了如下结论:(1)4种群落的RS+L差异较大,其平均值大小排序分别为冰草群落〉赖草群落〉甘草群落〉沙蒿群落,且各群落的RS+L在1 d中是不稳定的,均表现为不对称的单峰曲线形式;土壤基础呼吸大小排序分别为冰草群落〉甘草群落〉赖草群落〉沙蒿群落,且土壤基础呼吸高的土壤,其土壤养分状况较好。(2)RS相对于气温具有时滞性,4个群落的平均值大小为冰草群落〉赖草群落〉沙蒿群落〉甘草群落。(3)RL平均值大小排序分别为冰草群落〉甘草群落〉赖草群落〉沙蒿群落;对RS+L的贡献率大小排序为甘草群落〉冰草群落〉沙蒿群落〉赖草群落,表明RL值大的,其对RS+L的贡献率不一定大,两者之间不存在正相关关系。不同植物群落枯落物对土壤呼吸的贡献与枯落物量、温度因子的相关关系并未表现出一致性,但与15 cm处的地温相关性最高。夏季RL对RS+L的平均贡献量(以CO2计)在0.05~0.16 g.m-2.h-1之间,平均贡献率在12.88%~35.33%,是大气CO2的一个重要的排放源。  相似文献   

7.
湿地挺水植物凋落物立枯分解研究进展   总被引:4,自引:0,他引:4  
在许多湿地生态系统中,挺水植物立枯常组成凋落物总量的主要部分,其分解过程研究对于正确评价湿地生态系统的碳收支状况具有重要意义。对立枯分解过程与传统研究中凋落物分解过程的差异,分解过程中的 CO2排放,立枯分解的研究方法,以及分解过程的影响因素进行了综述。一般认为,湿地挺水植物立枯与传统研究中凋落物所处环境的差异造成了分解过程的差异,其分解过程中产生 CO2是湿地温室气体排放的重要途径;凋落袋和红外气体分析仪是湿地挺水植物立枯分解研究的主要方法;真菌组成了立枯体上微生物的大部分,对于立枯分解具有重要作用;环境因子(温度、水分等)和“基质质量”是影响挺水植物立枯分解过程的重要因素。在全球变化背景下,气候变化因子会直接或间接影响凋落物立枯分解过程,引起对气候变化的反馈,因此,在全球范围内开展气候变化对于湿地生态系统挺水植物立枯分解影响的研究具有重要的意义,必将成为凋落物研究的一个重要方向。  相似文献   

8.
马川  董少锋  莫江明 《生态环境》2012,21(4):647-653
为了了解我国南方森林常见的人为干扰(凋落物收取)活动对生态系统养分循环的影响,研究了鼎湖山马尾松林3种主要树种凋落物分解及其养分释放对凋落物输入量变化的响应。这3种树种分别为马尾松(Pinus massoniana)、荷木(Schimasuperba)和锥栗(Castanopsis chinensis)。凋落物输入量变化分别为凋落物去除(L-)、加倍(L+)和对照(L)3种处理,每种处理25个重复。经过18个月的处理试验,凋落物分解速率及其养分释放随树种、分解阶段和凋落物处理不同而异。荷木、马尾松和锥栗分解物平均残留率分别为0.46±0.01、0.42±0.01、0.40±0.02,其中,荷木与锥栗、马尾松差异性显著。不同处理间的凋落物分解速率差异显著,加倍、对照和去除处理样地凋落物的平均残留率分别为0.51±0.08、0.53±0.09和0.55±0.08。凋落物加倍处理促进了凋落物分解过程中C的释放,而去除凋落物处理则抑制了N、P的释放。以上结果表明,凋落物收取活动不仅直接带走凋落物中的大量养分,而且抑制了凋落物分解及其养分释放。  相似文献   

9.
为深入理解凋落物类型和微生物群落之间的相互关系,通过小盆+凋落袋控制实验,运用PCR-DGGE技术解析了南方红壤丘陵区典型针叶树种马尾松和湿地松的凋落物分别与白栎、青冈两个阔叶树种凋落物混合分解对土壤微生物基因型多样性的影响.结果表明:1)针叶凋落物中加入阔叶后细菌群落结构未发生显著变化,将所有处理归为一类的相似度达72%,其差异仅表现在马尾松+白栎和湿地松+青冈处理土壤微生物群落16S rDNA的丰富度和多样性分别显著高于单一马尾松和湿地松;2)针叶凋落物中加入阔叶后真菌群落结构发生了显著变化,单一针叶处理与针阔混合处理间18S rDNA基因泳道带型的相似度只有28%,并且单一马尾松处理土壤18S rDNA的丰富度和多样性显著高于马尾松+白栎和马尾松+青冈,单一湿地松处理土壤18S rDNA的丰富度也显著高于湿地松+白栎和湿地松+青冈,多样性显著高于湿地松+白栎处理;3)土壤真菌18S rDNA的丰富度与凋落物初始C含量呈显著正相关,与凋落物初始N含量呈显著负相关.针叶凋落物中引入阔叶凋落物后,增加了凋落物中N的比重,C的比重则下降,显著影响了土壤真菌群落的结构.  相似文献   

10.
Lignin-derived phenols, C/N ratios and ratios of refractory to total organic matter were used to study the sources, distribution, and diagenesis of sedimentary organic matter along estuary, river bank, and salt marsh systems. The Changjiang Estuary showed a higher signal of terrestrial organic matter at the river mouth which decreased farther offshore. The locations along the Qiantang River were affected by their adjacent surroundings, and the Andong salt marsh showed higher terrestrial organic matter signal at the upper marsh compared to the lower marsh. All studied areas showed slight increases in organic matter decomposition farther downstream and towards the sea. Study of these three different systems will improve our understanding on their ecotoxicological impact. The Changjiang Estuary had higher pollutant levels near the river mouth, which decreased farther offshore due to dilution. The midstream Qiantang River was most likely affected by pollution from their adjacent surroundings. Pollutants were likely to be accumulated in the Andong salt marsh due to the presence of marsh plants and small-sized particles. Organic pollutants were likely to be decomposed during transport along the systems. The ability of the sediments to release inorganic pollutants was determined by whether these systems were oxic or anoxic.  相似文献   

11.
Dissolved organic carbon export from floodplain litter during flood events is an important energy subsidy for lowland rivers. Temperature affects both the release and decomposition of dissolved organic carbon from floodplain plant litter. Unseasonally warm flood conditions have resulted in the release and consumption of carbon at a rate so rapid that water column oxygen has been depleted, causing the death of aquatic organisms upon exposure to this ‘hypoxic blackwater’. To date, there has not been a systematic investigation of the role of temperature on hypoxic blackwater dynamics. In a series of laboratory experiments, we investigated the temperature dependence of both leaching and decomposition of carbon from a common floodplain litter component in south-eastern Australia – the leaves of the river red gum Eucalyptus camaldulensis. The leaching rate increased with temperature and approximated Arrhenius kinetics. Additionally, the solubility of the leaf carbon increased substantially at temperatures above ~25°C. The rate of organic carbon respiration also increased with temperature, and the relationship with temperature was approximately linear. These data can be used to improve models for the prediction of hypoxic blackwater risk.  相似文献   

12.
植物叶片汞浓度与大气气态单质汞(GEM/Hg0)浓度的线性关系表明叶片汞浓度大小可用于指示植物生长区内GEM浓度的高低水平.通过分析上海市绿地公园(25座)中常见落叶树木樱花、水杉、法桐叶片汞浓度的时空变化特征,探究区域内GEM含量水平及分布特征.2017年5-10月对7座公园中这3种树木叶汞浓度进行连续监测,结果显示...  相似文献   

13.
A leaf-bag field experiment was conducted to investigate the decomposition and release of nutrients from leaves of two aquatic macrophytes (floating-leaved Trapa bispinosa and submerged Vallisneria natans) deposited in the four vertical locations (i.e. air-water interface, AW; sediment-water interface, SW; buried at a depth of 10?cm, B10; buried at a depth of 20?cm, B20) of littoral zone in Nanhu Lake, China, for 60 days from July to August 2015. Leaf initial quality significantly influenced mass loss and nutrient release except TN (total nitrogen) remaining. Compared to V. natans, T. bispinosa leaves decomposed faster under the same treatments. The decomposition was greatly affected by both leaf chemical quality and the location of deposition. With the increasing depth of vertical locations, leaf biomass loss and nutrient release of both T. bispinosa and V. natans decreased. In addition, initial N:P ratio and cellulose were the major determinants for decomposition in AW and SW treatments while total phenol in B10 and B20. Our results suggest that the combined effect of leaf chemical quality and burial could mediate macrophyte mass loss and release of nutrients and carbon, which in turn can influence organic matter accumulation and nutrient cycling in shallow freshwater lakes.  相似文献   

14.
The decomposition of the mangrove Rhizophora mangle and the seagrass Thalassia testudinum was examined using litterbags along a natural gradient in nutrient availability. Seagrass leaves had a higher fraction of their biomass in the labile pool (57%), compared to mangrove leaves (36%) and seagrass rhizomes (29%); the overall decomposition rates of the starting material reflected the fractionation into labile and refractory components. There was no relationship between the N or P content of the starting material and the decomposition rate.

Nutrient availability had no influence on decomposition rate, and mass was lost at the same rate from litterbags that were buried in the sediment and litterbags that were left on the sediment surface. The dynamics of N and P content during decomposition varied as a function of starting material and burial state. N content of decomposing mangrove leaves increased, but seagrass rhizomes decreased in N content during decomposition while there was no change in seagrass leaf N content. These same general patterns held for P content, but buried seagrass leaves increased in P content while surficial leaves decreased. δ13C and δ15N changed by as much as 2‰ during decomposition.  相似文献   

15.
The decomposition of the mangrove Rhizophora mangle and the seagrass Thalassia testudinum was examined using litterbags along a natural gradient in nutrient availability. Seagrass leaves had a higher fraction of their biomass in the labile pool (57%), compared to mangrove leaves (36%) and seagrass rhizomes (29%); the overall decomposition rates of the starting material reflected the fractionation into labile and refractory components. There was no relationship between the N or P content of the starting material and the decomposition rate.

Nutrient availability had no influence on decomposition rate, and mass was lost at the same rate from litterbags that were buried in the sediment and litterbags that were left on the sediment surface. The dynamics of N and P content during decomposition varied as a function of starting material and burial state. N content of decomposing mangrove leaves increased, but seagrass rhizomes decreased in N content during decomposition while there was no change in seagrass leaf N content. These same general patterns held for P content, but buried seagrass leaves increased in P content while surficial leaves decreased. δ13C and δ15N changed by as much as 2‰ during decomposition.  相似文献   

16.
汽车尾气会给高速公路路域环境带来一定程度的硫(S)、铅(Pb)污染,而绿化树木可通过吸收作用从而有效降低这些污染物在空气中的含量,目前这方面的研究较少。对山东省高速公路路侧主要绿化树木叶片S、P质量分数的研究表明,I107杨树(Populus Linn.)叶片S、Pb质量分数与高速公路车流量呈显著正相关。I107杨树叶片S、Pb质量分数对高速公路路域环境污染具有一定指示作用,不同路段杨树叶片的S、Pb质量分数存在明显差异,济青高速公路路侧杨树叶片的S、Pb质量分数最高,其次是京沪高速,最低的是日东高速。I107杨和龙柏对S污染物的吸收能力较强,其次是垂柳(Salix babylonica L.),较差的是紫叶李(Prunus cerasifera cv.Pissardii.)、大叶女贞(Ligustrum lucidumAit)和雪松(Cedrus deodara(Roxb.)Loud);而I107杨和紫叶李对Pb的吸收能力较强。  相似文献   

17.
东江水源林不同混交组合林地枯落物和土壤持水能力研究   总被引:11,自引:0,他引:11  
东江是广东省重要的河流,东江水源林的质量直接关系到流域内的社会和经济的发展,关系到深圳和香港的生活用水。作者针对现有水源林生态功能较差的情况,在广东省东源县设计和营造了8种不同混交类型的水源林,并对其林地枯落物和土壤持水能力进行了调查研究。结果表明,与对照的马尾松纯林相比,红锥×枫香混交组合、楠木×锥栗混交组合以及格木×海南红豆混交组合林地枯落物持水能力有较大提高;枫香×樟树混交组合、楠木×锥栗混交组合、红苞木×枫香混交组合以及红锥×枫香混交组合土壤持水能力明显提高。综合枯落物和土壤持水特性对各混交类型进行聚类分析,将8个混交组合进行分类,其中椆木×红锥混交组合、马尾松纯林、火力楠×红锥混交组合以及木荷×椆木混交组合林地持水能力较差;格木×海南红豆混交组合和红锥×枫香混交组合林地持水能力一般;红苞木×枫香混交组合和枫香×樟树混交组合林地持水能力较好;楠木×锥栗混交组合林地持水能力最好。总体上,造林初期,水源涵养试验林在提高原有林地持水能力方面已取得了一定的效果。  相似文献   

18.
为研究植物叶片重金属含量与滞尘之间的关系,对青岛市区道路绿化树种——圆柏(Sabinachinensis)叶片中Pb、zn、Cu、Cd4种重金属含量及其滞尘特征进行了系统分析,并在此基础上探讨了两者之间的关系。结果表明:不同距离和高度处的叶片Pb、Zn含量差异显著,与距离和高度呈负相关关系;叶片Cu含量与高度负相关,与距离相关性不显著;Cd含量则与距离和高度均没有显著相关关系。距离和高度对滞尘量有显著影响,而两者的交互作用对滞尘量的影响不显著,随着距离和高度的增加滞尘量逐渐减少。叶面尘中Pb、Zn含量空间分布差异较大,而Cu、Cd含量分布差异不显著。叶片重金属含量与相对应的叶面尘重金属含量之间具有显著正相关关系,除Cd以外叶片重金属含量与滞尘量之间也表现出不同程度的正相关关系。  相似文献   

19.
塔里木河下游应急输水前后胡杨年轮生长差异   总被引:1,自引:0,他引:1  
1972年塔里木河下游大西海子水库建成,下游365km河道彻底断流。为拯救沿河植被,2000年5月启动了塔里木河下游应急输水工程,迄今已经完成了7次应急输水。文章通过对塔里木河中游英巴扎和下游输水河畔英苏、喀尔达依、阿拉干断面胡杨(Populus euphratica)一级枝年轮取样调查,运用统计方法比较不同离河距离输水前后胡杨生长量差异的大小,分析了下游应急输水河畔胡杨种群对输水的响应。结果表明:1)英苏断面和喀尔达依断面在离河0~1000m输水前后胡杨生长量差异极显著。阿拉干断面在离河0~300m输水前后胡杨生长量差异极显著,离河300~700m生长量差异显著,700~1000m生长量差异不显著。由输水前后胡杨年轮生长量均值差可得,同一断面不同离河距胡杨年均生长量随离河距增大而降低。2)输水后下游3个调查断面在离河0~300m胡杨生长量增长由大到小顺序为:喀尔达依>英苏>阿拉干;离河300~700m由大到小顺序为:喀尔达依>阿拉干>英苏。3)以中游胡杨同年生长量作为参照对下游胡杨生长量进行相关比较的结果表明:应急输水前输水河畔各离河距离胡杨生长量均小于中游参照河段的生长量。应急输水后,输水河畔离河0~300m生长量已超过中游的生长量;离河300~700m输水河畔的生长量接近中游生长量;离河700~1000m生长量小于中游参照河段生长量,应急输水明显地促进了胡杨生长。  相似文献   

20.
东江中上游主要造林树种光合生理特征   总被引:1,自引:0,他引:1  
在东江中上游,以6年生造林树种木荷Schima superba、红锥Castanopsis hystrix、火力楠Michelia macclurei和藜蒴Castanopsis fissa为材料,利用Li-6400光合作用测定系统,对东江中上游水源林主要造林树种木荷、红锥、火力楠和藜蒴叶片光合日变化和光响应进行了测定,探讨了4种树种在当地自然生境下的光合生理特征。结果表明:木荷和藜蒴净光合速率(Pn)日变化呈"单峰"曲线,火力楠和红锥净光合速率(Pn)日变化呈"双峰"曲线,4种树种净光合速率(Pn)最大值均出现在10:00左右,分别为8.73、6.00、6.68和7.91μmol.m-1.s-1;4种树种净光合速率(Pn)日均值表现为木荷〉火力楠〉红锥〉藜蒴,蒸腾速率(Tr)日均值表现为红锥〉木荷〉火力楠〉藜蒴,水分利用效率(WUE)日均值表现为木荷〉藜蒴〉火力楠〉红锥,木荷具有高光合、高水分利用效率的生理特性,对环境适应能力强。4种树种光响应曲线均符合非直角双曲线模型(R2〉0.98)和指数模型(R2〉0.98),采用非直角双曲线模型拟合的4种树种最大净光合速率(P,max)、暗呼吸速率(Rd)和表观量子效率(a)基本高于指数模型相应拟合值,且接近实测值,但2种模型拟合的光饱和点低于实际观测值。在中幼龄阶段,木荷、红锥、火力楠和藜蒴表现出较高的光饱和点(LSP)、较低的光补偿点(LCP)和较低表观量子效率,具有较强的耐阴喜光特性,对光照强度表现出一定的适应性和可塑性,对弱光与强光的利用能力较高。这些研究结果为东江流域水源林造林设计、树种筛选和抚育提供理论参考。  相似文献   

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