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1.
李雪峰  张岩  牛丽君  韩士杰 《生态学报》2007,27(5):1782-1790
采用交互分解实验,研究长白山白桦叶片和白桦、山杨与水曲柳混合叶片在白桦纯林和白桦山杨混交林内的分解过程。两年的分解实验结果表明,两种类型叶片均存在一个快速分解阶段和一个慢速分解阶段,森林类型和凋落物类型对凋落物分解率的影响在快速分解阶段不显著而在慢速分解阶段显著;混交林内的环境促进了凋落物分解和养分元素释放;在同一林型内,底物质量高的混合叶片其分解率和养分元素释放率均大于底物质量低的白桦叶片;凋落物的底物质量在一定程度上可以抵消森林类型对凋落物分解的影响;白桦山杨混交林混合叶片分解速率和养分元素释放率要显著大于白桦纯林内的白桦叶片,说明白桦山杨混交林的物质循环速度和养分元素供应能力要显著大于白桦纯林。  相似文献   

2.
 通过福建省中亚热带杉木观光木混交林(Cunninghamia lanceolata and Tsoongiodendron odorum mixed forest)和杉木纯林(Pure C. lanceolata forest)凋落物的分解和养分释放动态试验研究表明,凋落物各组分分解过程中干物质损失速率随时间而减小,分解1年时以观光木叶的干重损失最大。各组分分解过程中N、P元素浓度增加而K和C元素浓度下降。混交林中各组分的养分释放速率大小为观光木叶>混合样品(等重量的观光木叶和杉木叶混合)>杉木叶>杉木  相似文献   

3.
杉木与楠木叶凋落物混合分解及其养分动态   总被引:12,自引:0,他引:12  
采用网袋法研究了杉木和楠木叶凋落物以不同比例的混合分解及其养分动态,结果表明:杉木与楠木叶凋落物混合处理的分解速率和K释放率基本上均大于单独的纯杉木和纯楠木,而N和P释放率则介于单独的纯杉木和纯楠木之间;杉楠混合分解可加快了混合中杉木叶凋落物的分解速率和N、K两元素的释放率,并且随楠木叶比例的增加,促进作用越明显;混合分解对混合处理的分解速率和K元素释放有明显的促进作用,而对N、P元素的释放影响不明显。  相似文献   

4.
森林凋落物是森林土壤的重要组成部分,凋落物分解在调控森林生态系统养分循环中发挥了关键作用。采用凋落物分解袋法,研究河北塞罕坝地区华北落叶松与白桦,华北落叶松与蒙古栎,华北落叶松、白桦和蒙古栎混合凋落叶及纯华北落叶松凋落叶分解过程中分解速率、养分释放和酶活性的变化。结果表明: 经过近2年的分解,混合凋落叶分解速率均显著高于纯华北落叶松凋落物叶;在所有处理中,华北落叶松与白桦混合凋落叶分解速率最高。在凋落叶分解过程中,不同处理养分含量变化一致,凋落叶N、P含量呈上升趋势,C、K含量和C/N呈下降趋势;相对纯华北落叶松凋落叶,各混合凋落叶分解可以促进凋落叶C、K的释放,但对N、P的释放有一定的抑制作用。在凋落叶分解过程中,不同处理凋落叶过氧化氢酶、脲酶、酸性磷酸酶活性呈上升趋势,蔗糖酶活性呈下降趋势;凋落叶分解速率与凋落叶过氧化氢酶、脲酶、酸性磷酸酶活性呈正相关,与蔗糖酶活性呈负相关。总体来看,华北落叶松和白桦、蒙古栎凋落叶混合可以促进华北落叶松凋落叶的分解,且凋落叶中酶活性动态变化与凋落叶的分解密切相关。  相似文献   

5.
凋落物分解过程中的养分释放对土壤质量、养分平衡和生产力的可持续维持发挥着重要作用。2015年5月,以辽东山区日本落叶松(Larix kaempferi)-红松(Pinus koraiensis)和日本落叶松-赤杨(Alnus japonica)人工混交林为研究对象,采用凋落物网袋法将落叶松分别与红松、赤杨叶片凋落物以75∶25、50∶50和25∶75比例混合,研究不同类型、不同比例的混合凋落物对其分解速率以及养分动态变化的影响。结果表明:在单一植物凋落物的分解过程中,赤杨叶片质量损失最高,分解最快;而红松叶片质量损失最低,分解最慢。凋落物混合分解对氮素释放的影响中,3种比例的落叶松与赤杨叶片的混合凋落物均表现出抑制作用,而落叶松与红松叶片混合凋落物(以25∶75比例混合)表现出促进作用。因此,落叶松在与红松、赤杨混合分解时产生了"非加和效应",并且其分解过程中氮和磷的养分释放状况受混合比例影响。  相似文献   

6.
毛竹凋落叶组成对叶凋落物分解的影响   总被引:1,自引:0,他引:1  
毛竹混交林具有较高的生产力和较好的生态功能,可能与混合凋落物的养分归还特征有关。本研究采用凋落物分解袋法对不同混合比例毛竹凋落叶分解特征进行了为期1年的研究,共设置5个处理,分别为Ⅰ(毛竹纯叶)、Ⅱ(毛竹、楠木叶比例为8:2);Ⅲ(毛竹、杉木叶比例8:2)、Ⅳ(毛竹、楠木叶比例5:5)和Ⅴ(毛竹、杉木叶比例5:5)。结果表明,不同处理凋落物分解速率符合Olson指数分解模型,R2均高于0.92。5个处理分解系数的排列顺序为Ⅱ>Ⅰ>Ⅲ>Ⅴ>Ⅳ,分别为0.68、0.66、0.58、0.55和0.49。处理Ⅰ和Ⅱ的分解速度显著高于其他处理,说明并非所有类型毛竹混合凋落叶均会促进凋落物分解,只有合适的比例和树种会促进凋落物分解。其中,竹阔混合凋落叶的分解速度高于竹针混合凋落叶的分解速度,竹阔混交可能更有利于竹林持续生产力的维持。N、P、K3种元素养分释放模式不同,N元素表现为净富集与净释放交替出现;P元素在经过4个月的快速富集后,4—5个月有短暂的净释放过程,其后呈富集状态;K元素浓度先升高后降低,在放置的前3个月净释放,随后呈富集状态。竹林凋落叶的养分含量对凋落物养分归还有重要影响,尤其是C/N和P可能作为竹林凋落...  相似文献   

7.
叶片凋落物分解对生态系统的养分循环和生产力有着重要意义。该文利用网袋分解法对九寨沟国家自然保护区内黄果冷杉(Abies ernestii)、油松(Pinus tabulaeformis)、红桦(Betula albo-sinensis)和高山柳(Salix cupularis) 4个典型树种叶片凋落物在林下及高山湖泊中的分解及养分释放特征进行了对比研究。结果表明: 1)叶片凋落物分解质量损失规律符合Olson的负指数衰减模型(r > 0.93, p < 0.01), 4个树种叶片在林下完全分解(99%)的时间依次为: 高山柳(6.80 a) <红桦(10.34 a) <黄果冷杉(18.88 a) <油松(27.21 a), 且分别是其在水体中分解的1.48倍、1.55倍、1.80倍和1.65倍。2)分解1年后凋落物质量剩余率(MR)和氮素剩余率(NR)均与叶片初始N含量极显著负相关, 而与叶片初始C:N值极显著正相关。3)不同树种间叶片N和P释放特征差异明显, 且在林下和水体间的释放模式也存在差异; 高山柳叶片凋落物在林下和水体分解过程中N元素从分解初期便开始释放, 而其他树种叶片凋落物N元素释放前存在明显的富集过程; 各树种叶片凋落物P元素释放模式为释放—富集—释放。研究表明: 叶片凋落物分解是一个受其自身性质和外界环境因素共同作用的复杂过程, 而凋落物在高山湖泊中的快速分解将对保护区现有的水体景观产生潜在影响。  相似文献   

8.
Liu ZL  Wang QC  Sun XX 《应用生态学报》2011,22(8):1999-2004
利用35年生白桦、落叶松纯林土壤分别栽植白桦、落叶松1年生苗木,通过对苗木生长、生物量、叶片养分及土壤养分变化的研究,对两种土壤的肥力进行评价,探讨白桦、落叶松混交林种间互作机制.结果表明:白桦纯林土壤全氮、碱解氮含量显著高于落叶松纯林土壤(P<0.05),落叶松纯林土壤全磷、全钾、速效磷含量显著高于白桦纯林土壤(P<0.05).盆栽第1年,白桦纯林土壤上的白桦苗木苗高、地径和生物量分别比在落叶松纯林土壤上增加69%、52%和65%(P<0.05),落叶松苗木分别增加12%、8%和37%(P>0.05).以白桦纯林土壤为基质时,白桦、落叶松苗木叶片氮浓度高于落叶松纯林土壤,而磷浓度低于落叶松纯林土壤.白桦凋落量大且分解速度快,落叶松对土壤磷具有活化作用,导致白桦纯林土壤氮素有效性较高,落叶松纯林土壤有效磷含量较高.推测两树种混交时,土壤氮、磷的互补作用可能对林分产量产生有益的作用.  相似文献   

9.
杉木乳源木莲混交林凋落物研究   总被引:15,自引:0,他引:15  
周东雄 《生态学杂志》2005,24(6):595-598
分析10年生杉木乳源木莲(3∶1)混交林和杉木纯林凋落物的数量、组成以及凋落规律、分解速率和养分归还量。结果表明,混交林平均年凋落物量4004kg·hm-2(8~10年),是杉木纯林凋落物量的3·15倍。在凋落物各组分中,落叶占比重最大。乳源木莲一年中有3次凋落高峰,95%的凋落物分解仅需2·1年,杉木需要4·4年,主要营养元素归还较快,对维持地力,实现森林的可持续发展有积极的作用。  相似文献   

10.
亚热带红壤丘陵区四种人工林凋落物分解动态及养分释放   总被引:16,自引:0,他引:16  
应用网袋分解法,连续2a对我国亚热带红壤丘陵区内有代表性的人工林类型马尾松(Pinus,massoniana)、湿地松(Pinus elliottii)、杉木(Cunninghamialanceolata)、木荷(Schimasuperba)+马尾松(Pinus,massoniana)混交林的凋落物的分解速率,及其C、N元素释放动态进行了研究,凋落物样品分地上、地下两组处理方式。4种林分凋落物地上组的第1、2年分解速率(凋落物的年失重率)依次为马尾松林〉混交林〉湿地松林〉杉木林,马尾松林〉混交林〉杉木林〉湿地松林;地下组的第1、2年分解速率顺序分别为马尾松林〉混交林〉杉木林〉湿地松林,马尾松〉杉木林〉湿地松林〉混交林。各林分地上组凋落物分解速率明显快于地下部分,马尾松林凋落物的分解速率在不同时期均高于其它林分。4种林分凋落物的分解动态符合Olson指数衰减模型。根据拟合方程得出的凋落物分解95%时间为4~01a,介于暖温带常见树种凋落物95%被分解所需时间8~17a,地处南亚热带季风区的鼎湖山凋落物分解95%所需的时间2~8a。养分元素释放率的变化因不同林分和分解时期而异。C在各林分中始终表现为净释放,地上组凋落物的释放率大多数时间均高于地下组。N则于湿地松林、马尾松林和混交林中前期表现出富集现象,而后开始净释放,其中湿地松林凋落物的N富集现象最为显著,释放速率在两个试验年度均为各林分中最低,凋落物中初始的高C/N比是导致上述现象的原因。杉木林凋落物具有最低的初始C/N比,没有出现N富集现象,且在两个试验年度末期均维持了较高的N释放率.  相似文献   

11.
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   

12.
杨树刺槐混交林及纯林枯落叶分解   总被引:17,自引:0,他引:17  
研究了杨树(Populusspp.)、刺槐(Robiniapseudoacacia)纯林及混交林枯落叶一年中的分解及养分动态变化规律.结果表明,杨树枯落叶分解速度较慢,刺槐较快,而混交林则较杨树有较大提高.在分解过程中,杨树枯落叶N、P释放困难,需经过长达10个月的养分富积过程;刺槐枯落叶N、P元素释放较为容易;混交林枯落叶养分富积时间缩短、幅度下降,分解速度加快,说明杨树和刺槐混交有利于枯落叶分解和N、P循环.  相似文献   

13.
The effects of simulated N deposition on changes in mass, C, N and P of decomposing pine (Pinus massoniana) needles in a disturbed and a rehabilitated forest in tropical China were studied during a 24-month period. The objective of the study was to test the hypothesis that litter decomposition in a disturbed forest is more sensitive to N deposition rate than litter decomposition in a rehabilitated forest due to the relatively low nutrient status in the former as a result of constant human disturbance (harvesting understory and litter). The litterbag method and N treatments (control, no N addition; low-N, 5 g N m−2 year−1; medium-N, 10 g N m−2 year−1) were employed to evaluate decomposition. The results revealed that N addition increased (positive effect) mass loss rate and C release rate but suppressed (negative effect) the release rate of N and P from decomposing needles in both disturbed and rehabilitated forests. The enhanced needle decomposition rate by N addition was significantly related to the reduction in the C/N ratio in decomposing needles. However, N availability is not the sole factor limiting needle decomposition in both disturbed and rehabilitated forests. The positive effect was more sensitive to the N addition rate in the rehabilitated forest than in the disturbed forest, however the reverse was true for the negative effect. These results suggest that nutrient status could be one of the important factors in controlling the response of litter decomposition and its nutrient release to elevated N deposition in reforested ecosystems in the study region.  相似文献   

14.
Yonghong Xie  Hongyan Qin  Dan Yu 《Hydrobiologia》2004,529(1-3):105-112
The responses of decomposition to N and P supply were investigated in three leaf types of water hyacinth (Eichhornia crassipes (Mart.) Solms): dead green leaves collected from Donghu Lake; green, and brown leaves collected from outdoor tanks. The ratios of C:N, C:P, lignin:N and lignin:P were lowest in the green leaves collected from Donghu Lake, and highest in the brown leaves collected from outdoor tanks. Decomposition constant (k) of water hyacinth varied greatly, ranged from 0.006 to 0.099 d–1. Leaf litters decayed most quickly within the initial two weeks during the experimental period, but decomposition rate decreased significantly in the following days. Decomposition and nutrient (N and P) release were fastest in the green leaves collected from Donghu Lake, intermediate in the green leaves collected from outdoor tanks, slowest in the brown leaves collected from outdoor tanks. Statistical analyses revealed that the effects of P-availability on decomposition rate and N, P release rate of the three litter types were significant, whereas the impacts of N-availability was insignificant (p > 0.05) except for the brown leaves collected from outdoor tanks. These results suggest that decomposition rate and nutrient content dynamics of water hyacinth differ with their growth habitats, and could partly be regulated by nutrient availability, especially by P-availability, in the environments.  相似文献   

15.
解婷婷  单立山  张鹏 《生态学报》2022,42(19):8041-8049
为探讨水分变化对农林复合生态系统凋落物分解特性的影响,以河西走廊杨树(Populus)-玉米(Zea mays)凋落物为研究对象,设置正常水分(9200 m3/hm2,对照),轻度干旱胁迫(减少15%,7800 m3/hm2),中度干旱胁迫(减少30%,6400 m3/hm2)3种不同水分处理条件,采用分解袋法研究了不同水分条件下杨树叶和玉米秸秆的质量残留率、分解速率和养分含量变化特征。结果表明:(1)随着干旱胁迫的加剧,两种凋落物的质量残留率均增加,而分解速率降低。经过164 d的分解后,杨树叶和玉米秸秆的质量残留率分别为70.43%-77.49%、63.55%-68.29%。分析表明:水分和时间对各类型凋落物的质量残留率均有极显著的影响(P<0.001),但二者的交互作用不显著(P>0.05);干旱胁迫显著降低了玉米秸秆的分解速率,但杨树叶的分解速率却只是在中度干旱胁迫下显著降低(P<0.05)。对于不同类型凋落物而言,分解速率表现为玉米秸秆>杨树叶。(2)两种类型凋落物的氮(N)残留率在分解过程中表现为降低的趋势,但随着干旱程度的加大,N的残留率增加,表明水分抑制了N的释放过程。分解164d后,同一类型凋落物不同水分条件下的N残留率均存在显著差异。对于同一水分条件下不同凋落物而言,玉米秸秆的N残留率最低,而杨树叶最高。总的来说,水分降低对干旱区农林复合系统内凋落物的分解和氮元素含量具有显著的抑制作用。  相似文献   

16.
福建和溪亚热带雨林落叶的分解动态   总被引:1,自引:0,他引:1  
福建和溪亚热带雨林落叶的分解动态邵成,郑文教,林鹏(厦门大学,厦门361005)DynamicsoflitterdecompositioninHexisubtropicalrainforestofFujian¥ShaoCheng;ZhengWenji...  相似文献   

17.
森林凋落物分解重要影响因子及其研究进展   总被引:56,自引:4,他引:56  
当前 ,森林凋落物分解被放在陆地生态系统碳平衡背景下进行研究 ,认识凋落物分解过程的影响因素和影响机理对理解地表碳平衡具有重要意义。凋落物在分解过程中 ,伴随有养分含量的变化 ,低品质凋落物在分解前期 (可达 2~ 3年 )会从环境中固定养分 ,特别是氮磷养分 ,而在后期则会释放出养分。凋落物本身的养分含量是影响分解速率的重要因素 ,高养分含量的凋落物分解快些 ,阔叶凋落物比针叶凋落物分解快些。有资料显示 ,在总分解率为2 9 4 %的构成中 ,理化因素、微生物因素与土壤动物因素对凋落物分解的贡献率分别为 7 2 %、8 0 %和 14 2 %。不同类型凋落物在分解过程中的土壤动物类群也不同 ,它也是造成凋落物分解速率不同的关键因素 ,通常阔叶树种凋落物分解过程中 ,会有更多的微节肢动物出现。CO2浓度升高将造成植物有机质含碳量与其它养分的比值升高 ,形成低品质的凋落物 ,从而间接影响凋落物分解速率 ,一般认为 ,全球CO2 浓度升高会加强土壤作为碳汇的功能。  相似文献   

18.
揭示竹林与其林下植被细根单独和混合分解特征,探讨竹林细根与其林下植被细根之间相互影响的潜在机制,为毛竹林林下植被的合理经营管理提供理论参考。采用原位分解袋法研究了四川长宁毛竹(Phyllostachys edulis)与林下植被芒箕(Dicranopteris pedata)细根分解和养分释放过程,试验周期为1年。结果表明(1)毛竹和芒箕细根初始化学组分有着明显差异,碳(C)含量、碳氮比(C/N)和碳磷比(C/P)毛竹显著高于芒箕(P0.05),而氮(N)含量、磷(P)含量和氮磷比(N/P)均芒箕高于毛竹(P0.05)。(2)毛竹和芒箕细根分解系数(k)分别为0.66±0.04和0.42±0.41,毛竹细根分解速率显著高于芒箕;土壤温度与分解速率呈显著正相关,是影响细根分解速率的关键环境因子。(3)毛竹和芒箕细根碳(C)、氮(N)、磷(P)养分释放均表现为净释放,毛竹细根碳(C)释放速率高于芒箕,但细根氮(N)和磷(P)释放率均低于芒箕。(4)混合分解的实测值和期望值对比结果表明毛竹和芒箕细根混合对分解速率和磷(P)元素的释放没有显著影响,但显著促进了碳(C)元素的释放,抑制了分解初期氮(N)元素的释放。毛竹与林下植被芒箕单独细根分解和养分释放特征均表现不同;细根混合分解速率无显著混合效应,但养分释放的混合效应表现出不同阶段性和不同方向(正或负),说明林下植被通过影响细根养分释放而影响竹林生态系统的养分循环。  相似文献   

19.
Mammalian herbivores commonly alter the concentrations of secondary compounds in plants and, by this mechanism, have indirect effects on litter decomposition and soil carbon and nutrient cycling. In northernmost Fennoscandia, the subarctic mountain birch (Betula pubescens ssp. czerepanovii) forests are important pasture for the semidomestic reindeer (Rangifer tarandus). In the summer ranges, mountain birches are intensively browsed, whereas in the winter ranges, reindeer feed on ground lichens, and the mountain birches remain intact. We analyzed the effect of summer browsing on the concentrations of secondary substances, litter decomposition, and soil nutrient pools in areas that had been separated as summer or winter ranges for at least 20 years, and we predicted that summer browsing may reduce levels of secondary compounds in the mountain birch and, by this mechanism, have an indirect effect on the decomposition of mountain birch leaf litter and soil nutrient cycling. The effect of browsing on the concentration of secondary substances in the mountain birch leaves varied between different years and management districts, but in some cases, the concentration of condensed tannins was lower in the summer than in the winter ranges. In a reciprocal litter decomposition trial, both litter origin and emplacement significantly affected the litter decomposition rate. Decomposition rates were faster for the litter originating from and placed into the summer range. Soil inorganic nitrogen (N) concentrations were higher in the summer than in the winter ranges, which indicates that reindeer summer browsing may enhance the soil nutrient cycling. There was a tight inverse relationship between soil N and foliar tannin concentrations in the winter range but not in the summer range. This suggests that in these strongly nutrient-limited ecosystems, soil N availability regulates the patterns of resource allocation to condensed tannins in the absence but not in the presence of browsing.  相似文献   

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