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1.
从2006—2008年,研究了川西亚高山林线交错带群落凋落物产量及N、P、K、Ca和Mg主要养分归还动态。结果表明:林线交错带植被凋落物年产量为389.83kg.hm-2.a-1,5种主要养分年归还量总量为15.82kg.hm-2.a-1,归还量排序为Ca>N>K>Mg>P。其中,叶、枝和其他混合杂物分别占凋落物总量的72.2%、17.9%和9.9%,占养分归还总量的87.4%、7.0%和5.6%。凋落物各组分及养分归还月动态均呈单峰曲线型变化,叶高峰期在9月,而枝、杂物则在10月。凋落物养分含量季节动态因不同凋落物组分和养分元素而异。叶凋落物中N、P、K和Mg含量在生长高峰的6、7月较高,而Ca含量较低;枝凋落物各元素含量总体上月变化不显著,其他混合杂物各元素含量6与10月相对较高,其余各月则无显著差异。  相似文献   

2.
华南人工林凋落物养分及其转移   总被引:20,自引:0,他引:20  
对华南 5种人工林凋落物量、凋落物养分及绿叶养分含量的测定结果表明 ,各种人工林凋落物量大小依次为 :马占相思 (11.1t·hm-2 ) >湿地松 (7.3t·hm-2 ) >荷木 (6 .5t·hm-2 ) >大叶相思 (4.8t·hm-2 ) >柠檬桉(2 .6t·hm-2 ) .马占相思通过落叶回归土壤的养分量高于其它类型 .5种人工林均通过养分转移机制 ,大量从枯老叶中转移N、P、K养分 ,其中马占相思转移的养分量最大 ,营养转移的季节性差别较大 .各种人工林对其它元素的转移现象不确定 .  相似文献   

3.
锥栗人工林结果初期养分动态特征及其模拟   总被引:4,自引:0,他引:4  
陈辉  何方 《应用生态学报》2002,13(5):533-538
应用系统分析和动态模拟的方法 ,对结果初期锥栗人工林的养分动态变化进行了分析和模拟 ,构建了林分树体地上部分、地下部分、土壤和凋落物 4个分室 ,测定了各分室的N、P、K、Ca、Mg各养分元素的现存库量 .土壤分室中N、P、K、Ca的现存量最高 ,分别达 311.4 7、11.4 36、2 18.9kg·hm-2 和 87 5 6kg·hm-2 ,Mg含量水平以凋落物分室最高 ,达 7.2 6 9kg·hm-2 .根据分室模型 ,计算了 5种元素各分室的流通量和流通率 ,并在不同营养元素补偿水平下 ,对系统各分室在未来 5年内的养分变化进行了模拟 ,结果表明 ,各元素每年最适宜的补充量为N 2 0kg·hm-2 、P 8kg·hm-2 、K 5kg·hm-2 、Ca 10kg·hm-2 、Mg 5kg·hm-2 .在这种补偿条件下 ,系统各分室间养分流动通畅 ,树体生长代谢正常 .研究结果可为锥栗人工林该期栽培营养管理提供依据  相似文献   

4.
神农架巴山冷杉天然林凋落量及养分特征   总被引:5,自引:0,他引:5       下载免费PDF全文
研究了湖北神农架巴山冷杉 (Abies fargesii) 天然林凋落物量、凋落物N、P、K、Ca、Mg的含量及其归还量。结果表明:巴山冷杉天然林的年凋落量为5702.99kg·hm-2;巴山冷杉林的凋落 物组成比较丰富, 主要有落叶、落枝、球花、球果和其他5部分, 其中以落叶为多, 占总凋落量的46.00%;凋落量的月变化模式呈双峰型, 分别在2006年10~11月和2007年4~5月达到峰值;凋落物养分含量的大小顺序为:N>K>Ca>P>Mg;N、P、 K、Ca、Mg的年归还量分别为:39.1063、4.5346、13.4367、5.4965和0.0911kg·hm-2;就凋落物各组分的养分年归 还量而言, 落叶的养分归还量远远大于其余组分的养分归还量, 占总归还量的52.65%。因此, 不论凋落量还是养分归还量, 巴山冷杉林凋落物中的落叶都占绝对优势。  相似文献   

5.
贡嘎山峨眉冷杉林凋落物的特征   总被引:15,自引:3,他引:12       下载免费PDF全文
 研究了贡嘎山峨眉冷杉(Abies fabri)林凋落物量、凋落物特征及其N、P、K、有机碳的归还量,并探讨了它们在演替进程中的变化。结果表明,峨眉冷杉成熟林、中龄林和幼龄林的凋落物量依次为:2 809.925、2 787.086、2 043.585 kg·hm-2·a-1;其中N、P、K的归还量依次为:34.850、33.917、42.571 kg·hm-2· a-1。峨眉冷杉林凋落物量及其N、P、K的归还量较少,与我国其它森林区针叶林存在一定差异,而与美国西北部冷杉林相近。  相似文献   

6.
通过原位进行了对照(CK)、低氮(LN,50kgN.hm-2.a-1)、中氮(MN,100kgN.hm-2.a-1)和高氮(HN,150kgN.hm-2.a-1)处理,研究了川西南天然常绿阔叶林凋落物分解及养分释放对模拟N沉降的响应.结果表明:凋落物分解95%需要4.72~6.33年,分解率最高的为CK,最低的为HN.经过365d,各处理的分解率均低于CK,仅HN与CK间差异显著(P<0.05);C残留率均高于CK;N和K残留率均显著高于CK(P<0.05);P残留率均高于CK,仅LN与CK间差异显著(P<0.05).各处理凋落物的C/N升高3.9%~23.7%.凋落物分解过程中N元素的迁移模式为富集-释放,C、P和K元素则表现为直接释放.N沉降对凋落物中养分元素的释放及木质素和纤维素的降解均具有抑制作用.随着处理时间的延长,N沉降对川西南常绿阔叶林凋落物分解的影响从正效应转向负效应,且负效应随沉降浓度的增加而加强.  相似文献   

7.
 本文对武夷山甜槠林76龄成熟林内粗死木质残体的贮量、增枯量和分解量等进行了研究,对不同林龄甜槠林粗死木质残体的贮量动态进行了对比分析,并初步评述了它们在森林生态系统养分循环中的作用。研究结果表明:(1)甜槠林成林粗死木质残体贮量为7.349t·hm-2,增枯量为1.425t·hm-2·a-1,分解量为0.512t·hm-2·a-1;(2)随着林龄增长,不同林龄甜槠林的粗死木质残体贮量呈“S”型动态模式,至58龄阶段达到最大值,其后渐趋稳定;(3)粗死木质残体是甜槠林生态系统中较为重要的组成部分,其各养分元素贮量占该系统生物量分室总贮量的0.09%~1.91%,由增枯量实现的各养分元素归还量占养分元素归还总量的l.94%~4.48%。  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.
季节性冻融期间亚高山森林凋落物的质量损失及元素释放   总被引:4,自引:1,他引:3  
季节性冻融期间的凋落物分解对季节性冻土区的森林生态系统过程可能具有重要的影响,但已有的研究报道很少.因此,采用凋落物分解袋法研究了岷江冷杉 (Abies faxoniana Rehder & E. H. Wilson)林和白桦(Betula platyphylla Sukaczev)林凋落叶的分解.一个季节性冻融期间,冷杉林和白桦林凋落物的质量损失率分别为(19.4 ±2.0)%和(21.5±3.5)%,约为1a中凋落物分解的64.5%和65.6%,表明季节性冻融对亚高山森林凋落物分解影响显著.冷杉凋落物中C、N、P、K、Ca和Mg的释放率为(15.0±1.0)%、(34.1±3.6)%、(17.0±0.9)%、(22.8±5.9)%、(20.1±0.1)%和(36.3±2.1)%,白桦凋落物中C、N、P、K、Ca和Mg的释放率为(20.7±0.1)%、(29.4±3.4) %、(15.7±1.3)%、(16.8±5.1)%、(21.3±1.8)%和(20.5±2 8)%.结合叶凋落物产量可以推断,冷杉林凋落物在一个季节性冻融期间释放到土壤的N、P、K、Ca、Mg为(10.17±1.14) kg · hm-2、(0.68±0.08) kg · hm-2、(4.08±0.46) kg · hm-2、(0.46±0.05) kg · hm-2、(0.09±0.01) kg · hm-2,白桦林为(5.61±1 12) kg · hm-2、(0.34±0.07) kg · hm-2、(1.21±0.24) kg · hm-2、(0.300±0.059) kg · hm-2、(0.051±0.010) kg · hm-2,这对于春季亚高山森林植物生长具有重要的生态学意义.  相似文献   

10.
崔洋  汪思龙  于小军  颜绍馗 《生态学杂志》2012,31(11):2709-2715
采用野外缩微实验方法,研究了会同林区常绿阔叶林和杉木人工林土壤动物对凋落物早期分解的影响。结果表明:孔径为2mm的网筒内试验土壤和凋落物中大型土壤动物的类群数和多度均明显少于孔径为4mm的网筒;排除大型土壤动物后,常绿阔叶林中凋落物C、K、Ca、Mg养分浓度显著增加,杉木林中凋落物Mg浓度显著增加,2个样地中的凋落物失重率以及凋落物C、P、Ca、Mg等养分元素的释放率均极显著降低(P0.01);大型土壤动物对不同元素释放率的影响不同,2个样地中对凋落物Ca、Mg元素释放率的影响均较大,杉木人工林中对N和K释放率的影响较小,常绿阔叶林中对P释放率的影响最小。  相似文献   

11.
Chinese fir (Cunninghamia lanceolata) is the most important forest plantation species in subtropical Asia and is rapidly replacing natural forests. Such land‐use change may affect ecosystem nutrient cycling through changes in litterfall nutrient flux. Tropical cyclones often cause pulses of litterfall. Previous studies, however, have mostly focused on the effects of a single cyclone with little effort examining the effects of repeated cyclones. We examined litterfall in a natural hardwood forest and a Chinese‐fir plantation in central Taiwan experiencing an average of one typhoon per year. The natural hardwood forest had 54 percent higher annual litterfall (11,400 kg/ha/yr) than the Chinese‐fir plantation (7400 kg/ha/yr). Four typhoon‐affected months (typhoon period) contributed to approximately 60 percent of the litterfall and litterfall element flux in the natural hardwood forest and 80 percent in the Chinese‐fir plantation, with contributions from individual typhoons varied by more than twofold. Litterfall N and P concentrations were significantly higher in typhoon period than in non‐typhoon period, likely the result of limited retranslocation. Precipitation was a better predictor of quantity of typhoon‐associated litterfall than wind velocity. Both types of forests in southeastern China beyond the reach of typhoons have litterfall peaks in the dry season. In contrast, we measured higher litterfall during the typhoon period than during the dry season, suggesting that in regions with frequent cyclones, cyclones drive temporal variation of litterfall. Global climate change is affecting the frequency and intensity of cyclones; therefore, knowledge of typhoon‐litterfall dynamics is indispensable for understanding the effects of climate change on ecosystem nutrient cycling.  相似文献   

12.
 该研究以浙江天童常绿阔叶林及退化群落的凋落物特征为内容,探讨了养分归还和土壤养分动态之间的联系。结果显示:1)常绿阔叶林退化显 著降低了凋落物的年凋落量,从成熟常绿阔叶林的13.03 Mg·hm-2下降到灌丛的6.38 Mg·hm-2。2)凋落物氮含量在成熟群落至灌丛阶段下降显 著,而磷含量无明显递减规律;氮磷归还量均随常绿阔叶林退化显著下降。 3)凋落物特征(年均值)与土壤养分的相关分析表明,土壤氮磷含 量与凋落物凋落量间呈显著线性正相关;土壤氮含量与凋落物氮含量间无显著线性关系,而与氮归还量呈显著线性正相关(p<0.05);土壤总磷 含量与凋落物磷含量和磷归还量间均呈显著线性正相关( 磷含量:p<0.01; 磷归还量: p<0.001);土壤无机氮含量与凋落物各特征间无显著相关 关系;土壤氮素硝化速率与凋落物凋落量和氮归还量间呈显著线性正相关(凋落物凋落量:p<0.01; 氮归还量: p<0.005),而与凋落物氮含量无 显著线性关系,与之相比,土壤氮素矿化速率与凋落物特征间均不存在显著线性关系。可以认为,在常绿阔叶林退化过程中,由于不同植物在 养分归还特征上的差异,导致了养分归还量的下降,从而使土壤养分库的物质来源减少,但是,群落结构简化而导致的非生物要素的改变,对 控制土壤生物过程发挥着更大的作用。  相似文献   

13.
Parasitic plants are increasingly becoming the focus of research in many ecosystems. They have been shown to alter litterfall properties and decomposition rates in environments where they occur. Despite this recognition, the role of mistletoes in nutrient cycling in semi-arid savanna remains poorly understood. We investigated the litter input, element returns, and associated below-canopy soil nutrient concentrations of three mistletoe species (Erianthemum ngamicum, Plicosepalus kalachariensis, and Viscum verrucosum) that parasitize Acacia karroo trees in a semi-arid savanna, southwest Zimbabwe. Element concentrations in mistletoe leaf litter were enriched relative to the host. Litterfall from mistletoes significantly increased overall litterfall by up to 173 %, with E. ngamicum and P. kalachariensis having greater litterfall than their host trees. Associated with these changes in litterfall was an increase in element returns and the below-canopy soil nutrient concentrations. The increase in nutrient returns was due to both the effect of enriched mistletoe litter and increased volumes of litterfall beneath host trees. Litterfall, element returns, and the below-canopy soil nutrient concentrations were significantly influenced by mistletoe density, with higher values at high mistletoe density. Overall, E. ngamicum and P. kalachariensis had greater influence on litterfall, element returns, and soil nutrient concentrations than V. verrucosum. These findings are consistent with current understanding of enhanced nutrient cycling in the presence of parasitic plants particularly in nutrient-poor ecosystems. We conclude that the introduction of nutrients and associated increase in resource heterogeneity play an important role in determining ecosystem structure and function in semi-arid savannas.  相似文献   

14.
Fertilization experiments in tropical forests have shown that litterfall increases in response to the addition of one or more soil nutrients. However, the relationship between soil nutrient availability and litterfall is poorly defined along natural soil fertility gradients, especially in tropical montane forests. Here, we measured litterfall for two years in five lower montane 1‐ha plots spanning a soil fertility and precipitation gradient in lower montane forest at Fortuna, Panama. Litterfall was also measured in a concurrent nitrogen fertilization experiment at one site. Repeated‐measures ANOVA was used to test for site (or treatment), year, and season effects on vegetative, reproductive and total litterfall. We predicted that total litterfall, and the ratio of reproductive to leaf litterfall, would increase with nutrient availability along the fertility gradient, and in response to nitrogen addition. We found that total annual litterfall varied substantially among 1‐ha plots (4.78 Mg/ha/yr to 7.96 Mg/ha/yr), and all but the most aseasonal plot showed significant seasonality in litterfall. However, litterfall accumulation did not track soil nutrient availability; instead forest growing on relatively infertile soil, but dominated by an ectomycorrhizal tree species, had the highest total litterfall accumulation. In the fertilization plots, significantly more total litter fell in nitrogen addition relative to control plots, but this increase in response to nitrogen (13%) was small compared to variation observed among 1‐ha plots. These results suggest that while litterfall at Fortuna is nutrient‐limited, compositional and functional turnover along the fertility gradient obscure any direct relationship between soil resource availability and canopy productivity.  相似文献   

15.
Multi‐year studies comparing changes in litterfall biomass and nutrient inputs in sites under different restoration practices are lacking. We evaluated litterfall dynamics and nutrient inputs at 5 yr and after a decade of recovery in four treatments (natural regeneration—no planting, plantation—entire area planted, tree islands—planting in patches, and reference forest) at multiple sites in an agricultural landscape in southern Costa Rica. We inter‐planted two native species (Terminalia amazonia and Vochysia guatemalensis) and two naturalized N‐fixing species (Inga edulis and Erythrina poeppigiana) in plantation and island treatments. Although litterfall N was higher in plantations in the first sampling period, litter production and overall inputs of C, N, Ca, Mg, P, Cu, Mn, and Fe did not differ between island, plantation, or reference forest after a decade; however, all were greater than in natural regeneration. Potassium inputs were lower in the natural regeneration, intermediate in island and plantation, and greater in reference forest. The percentage of litterfall comprised by the N‐fixing planted species declined by nearly two‐thirds in both plantations and islands between sampling periods, while the percentage of V. guatemalensis more than doubled, and the percentage from naturally regenerated species increased from 27 to 47 percent in islands. Island and plantation treatments were equally effective at restoring litterfall and nutrient inputs to levels similar to the reference system. The nutrient input changed substantially over the 7‐yr interval between measurements, reflecting shifts in vegetation composition and demonstrating how rapidly nutrient cycling dynamics can change in recovering forests.  相似文献   

16.
Nutrient accessions in litterfall are described for a mixed conifer (mostly Agathis australis D.Don (Lindl.), New Zealand kauri) and angiosperm temperate forest in northern New Zealand to determine the relative contributions to nutrient cycling of the conifer and angiosperm components of the forest. Concentrations for many nutrients were significantly lower in conifer litterfall fractions than for equivalent angiosperm fractions. Angiosperm leaves had concentrations of N and P twice those found in conifer leaf fall. Despite a large contribution to litterfall from weight, conifer reproductive parts (mostly cone scales) were very low in nutrients (especially N, P and Ca). Whereas angiosperm litterfall constituted < 45% of total litterfall by weight, nutrient accessions from the angiosperm component accounted for 45–60% of total nutrient accessions and the conifer fraction for only 30–45%, almost the exact reverse of their contributions to litterfall by weight. Of the macronutrients, P (3 kg ha–1 year–1) showed the lowest rate of accession in litterfall while Ca (84 kg ha–1 year–1) showed the highest. Faunal detritus, although < 1% of total litterfall by weight, contributed 10% of total P and 4% of total N reaching the forest floor via the litterfall pathway each year. The C:N and C:P ratios in litterfall and litterstore were all well above the levels at which mineralization is likely to occur. Based on the estimated residence times, long‐term immobilization was more likely for N than for P. The annual pattern of nutrient accessions differed for the two components, with angiosperm accessions highest in spring and summer, and conifer accessions highest in autumn, due largely to a peak in litterfall of reproductive parts at that time of year. It is argued that differences in litter quality, decomposition rates and spatial and temporal patterns of litterfall for angiosperm versus conifer components of the forest, in conjunction with long‐term disturbance regimes, may contribute to conifer–angiosperm coexistence.  相似文献   

17.
通过对福建建瓯万木林自然保护区内以观光木(Tsoongiodendron odorum,TSO)和细柄阿丁枫(Altingia gracilipes,ALG)为建群种的2种天然林及杉木(Cunninghamia lanceolata,29年生)人工林凋落量与养分归还为期3a(2000~2002年)的研究表明,3种林分年均凋落量(t.hm-2)范围从杉木人工林的4.63t.hm-2到观光木林的6.74t.hm-2,叶所占比例范围为62%~69%。细柄阿丁枫林凋落量每年只出现1次峰值(3月份或4月份),观光木林的出现2次(3月份、6~8月份),而杉木林的则出现3次(3月份或4月份、6~8月份和11~12月份)。3种林分Ca和Mg年归还量大小排序与按总凋落量的不同。除杉木人工林的Ca年归还量最大外,其余养分年归还量均以观光木天然林的最大。通过凋落物各组分的养分归还中,落叶是养分归还的主体。与针叶树人工林相比,天然林的凋落量大、养分归还量高,具有良好维持地力的能力。因此,保护和扩大常绿阔叶林资源已成为南方林区实现森林可持续经营的重要措施之一。  相似文献   

18.
We examined the impact of soil stress (low water and nutrient availabilities) and two keystone insect herbivores on pinyon pine (Pinus edulis) needle litterfall. We compared trees growing on two distinct soil types: volcanic cinders, which exhibit pronounced water and nutrient limitation, and sandy-loam soils, which have higher water-storage capacity and nutrient availability. Using two long-term herbivore removal experiments (15 and 18 years, respectively), we also examined the effects of the pinyon needle scale (Matsucoccus acalyptus, which attacks juvenile trees) and the stem-boring moth (Dioryctria albovittella, which attacks mature trees) on pinyon litterfall. These herbivores reach high densities on cinder soils but are absent or occur at much lower levels on sandy-loam soils. Four years of litterfall measurements showed four major patterns. First, independent of herbivory, needle litterfall was 20% lower under trees on high-stress cinder soils than on sandy-loam soils. Second, in agreement with the negative impact of scales on tree growth (that is, a 30% decline in stem growth), trees with scale infestations had 25% lower litterfall rates than trees resistant to scale; however, 15 years of scale-insect removal did not significantly increase needle litterfall. This implies possible intrinsic differences in litter production between scale-resistant and scale-susceptible trees. Third, in contrast with significant negative effects of moth herbivory on tree growth (that is, a 27% decline in stem growth), moth herbivory had no effect on needle litterfall. This, along with increased stem density in moth-susceptible trees, may be evidence of compensatory production. Fourth, there were strong year by soil type and year by scale herbivory interactions, such that in some years the effect on litterfall can be obscured or reversed by some other factor. In summary, soil stress has a strong and predictable effect on needle litterfall, whereas the relationship between insect herbivory and needle litterfall is weaker and depends on the individual herbivore. These effects, however, are mediated by other environmental factors that have considerable annual variation.  相似文献   

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