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1.
UV-B辐射对马尾松凋落叶分解和养分释放的影响   总被引:1,自引:0,他引:1  
由大气臭氧层减薄导致的UV-B辐射变化将直接影响到凋落物的分解。目前,有关UV-B辐射影响木本植物凋落物分解的研究还很少,在国内还没有开展。采用分解袋法开展了马尾松凋落叶在自然环境和UV-B辐射滤减两种辐射环境下的分解试验。结果表明:在UV-B辐射滤减环境下的马尾松凋落叶年分解速率比对照环境减慢了47.74%。UV-B辐射极显著(p<0.01)地加快了马尾松凋落叶的分解速率,促进了凋落叶中碳、磷、钾的释放和木质素的降解,对氮的释放无明显影响。研究结果意味着UV-B辐射将加快马尾松林的营养循环速度,降低马尾松林凋落物层的碳储量。  相似文献   

2.
采用模拟UV-B辐射增强方法研究了UV-B辐射对中国亚热带常见树种杜英(Elaeocarpus sylvestris)叶片化学组成及其凋落后分解和养分释放的影响。结果表明:增强的UV-B辐射显著增加了杜英凋落叶中的N含量,显著降低了凋落叶中的C、P、K、木质素含量和C∶N、木质素∶N;在分解过程中,对照和UV-B辐射增强处理凋落叶的分解差异不显著,在前10个月的分解过程中均发生了N的富集,且对照凋落叶的N富集程度显著强于UV-B辐射增强处理;2组处理下凋落叶均发生了P和K的释放,但处理间差异不显著。  相似文献   

3.
杉木与主要阔叶造林树种叶凋落物的混合分解   总被引:42,自引:2,他引:42       下载免费PDF全文
杉木(Cunninghamia lanceolata)与主要阔叶造林树种叶凋落物混合分解实验是用网袋法进行的。目的是检验“杉木叶凋落物与阔叶凋落物混合分解时,杉木叶凋落物的分解速率和养分释放都可得到加强”这样一个假设。结果发现,杉木与火力楠(Michelia macclurei var.subalanea)、桤木(Alnus cremastogyne)叶凋落物混合分解时分解速率有较强的促进作用,而  相似文献   

4.
外加氮源对杉木叶凋落物分解及土壤养分淋失的影响   总被引:37,自引:0,他引:37       下载免费PDF全文
采用原位(In situ)模拟实验方法研究了外加N源对杉木叶凋落物分解及土壤养分淋失的影响,结果表明,施加NH^+4-N时,杉木叶凋落物的失重率与对照(未加任何N的处理)相比,没有差异:而施加NO^-1-N时,使杉木叶凋落物分解速率显著提高(p=0.05,达10%以上,与施加NH^+4-N相比,施加NO^-3-N明显促进了杉木叶凋落物的分解(p=0.05)。施加NH^+4-N和NO3^--N会产生  相似文献   

5.
通过对中亚热带格氏栲天然林(natural forest of Castanopsis kawakamii。约150年生)、格氏挎和杉木人工林(monoculture plantations of C.kawakamii and Cunninghamia lanceolata,33年生)凋落物数量与季节动态、养分归还及凋落叶分解与其质量的关系为期3a的研究表明。林分年均凋落量及叶所占比例分别为:格氏栲天然林11.01t/hm^1。59.70t/hm^2;格氏栲人工林9.54%。71.98%;杉木人工林5.47t/hm^2。58.29%。格氏栲天然林与人工林凋落量每年只出现1次峰值(4月份)。而杉木林的则出现3次(4或5月份、8月份和11月份)。除杉木林的Ca和格氏栲人工林的Mg年归还量最大外。N、P、K及养分总归还量均以格氏栲天然林的为最大。杉木人工林的最小。分解la后格氏栲天然林中格氏栲叶的干重损失最大(98.16%)。杉木叶的最小(60.78%)。C/N及木质素/N比值与凋落叶分解速率呈显著负相关。而N、水溶性化合物初始浓度与分解速率呈显著正相关。与针叶树人工林相比,天然林的凋落物数量大、养分归还量高、分解快。具有良好自我培肥地力的能力。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   

6.
全球环境变化对森林凋落物分解的影响   总被引:22,自引:4,他引:22  
全球环境变化将对森林生态系统凋落物的分解和养分循环产生直接和间接的多重影响.就全球环境变化如全球变暖、大气CO2浓度升高、UV-B辐射增强、氮沉降等对凋落物分解影响的研究进展进行了综合述评.影响凋落物分解的内部因素为凋落物基质质量,外部因素包括生物因素(微生物和动物)和非生物因素(温度、水分和土壤性质等).全球变暖对凋落物分解的非生物作用有正效应,也有负效应.全球变暖对凋落物化学组成虽然只有轻微的影响,但可以通过影响植被的物种组成来间接改变凋落物的产量、化学性质和分解.全球变暖对凋落物分解生物作用的主要影响是增强土壤微生物活性,从而加速凋落物的分解.CO2浓度上升将增加凋落物产量,并通过影响凋落物质量(提高C/N比、木质素/N比等)和生物环境(微生物的数量和活性)而影响分解过程.UV-B辐射和大气N沉降的增加亦对凋落物分解产生直接和间接的影响,但影响效果尚不很清楚,有待进一步的研究.总起来看,全球环境变化将通过影响凋落物的分解速率而对全球碳循环产生重要影响,但由于气候变化和凋落物分解响应的复杂性以及各因子之间的相互作用,气候变化对凋落物分解的总效应尚需更深入的研究来定量化.  相似文献   

7.
凋落物分解是森林生态系统能量流动与养分循环的重要过程.叶凋落物包括自然衰老叶凋落物(SL)和绿色叶凋落物(GL),但针对自然衰老和绿色叶凋落物分解速率和养分释放对人工林间伐强度和施肥措施的响应是否存在差异性尚不清楚.因此,本研究以亚热带13年生杉木(Cunninghamia lanceolata(Lamb.)Hook)...  相似文献   

8.
UV-B辐射增强对陆地生态系统碳循环的影响   总被引:1,自引:0,他引:1  
作为全球变化的重要现象之一,紫外射线B(UV-B,波长280~320 nm)辐射增强对陆地生态系统碳循环具有重要影响.UV-B辐射增强主要通过改变植物的光合作用、凋落物分解以及土壤呼吸来影响陆地生态系统碳的输入和转化输出.其他气候因子(大气CO2浓度、温度和水分)可能会促进或减缓UV-B辐射对陆地生态系统碳循环的作用.本文介绍了UV-B辐射增强的背景,综述了国内外近年来UV-B辐射增强及与其他气候因子交互作用对陆地生态系统碳循环的影响,总结了目前研究存在的不足,讨论了未来的研究重点和方向.  相似文献   

9.
杉木与伴生植物凋落物混合分解的相互作用研究   总被引:30,自引:4,他引:30  
通过对杉木与9种伴生植物凋落物混合分解特征比较研究表明,8种植物对杉木凋落物的分解均有不同程度的促进作用,其中观音座莲对杉木凋落物分解的促进最大,而木荷对杉木凋落物分解的影响则表现出先有一定程度的促进而后又有微弱的抑制作用,促进大小表现出观音座莲>杜茎山>三龙爪>狗脊>苎麻>丝栗栲>闽粤栲>芒萁。杉木 落物反过来对木荷和闽粤栲凋落物有一些抑制作用,而对丝栗栲则有一些促进作用,但这种相互作用未达到显著差异水平。说明杉木与某些伴生植物种类的凋落物在混合分解过程中存在着相互作用的现象,因此,合理保护和恢复林下植物对加快杉木人工林生态系统的养分循环和地力维护具有重要的意义。  相似文献   

10.
亚热带3种树种凋落叶厚度对其分解速率及酶活性的影响   总被引:4,自引:0,他引:4  
季晓燕  江洪  洪江华  马元丹 《生态学报》2013,33(6):1731-1739
对中国亚热带树种杉木(Cunninghamia lanceolata)、香樟(Cinnamomum camphora)、银杏(Ginkgo biloba)3个树种在不同凋落物厚度下凋落物分解速率和分解酶活性进行了探究.利用分解网袋法,根据浙江省的平均酸雨水平,在酸雨(pH4.0)条件下设置了凋落物40g、凋落物20g、凋落物10g 3个梯度.结果表明:凋落物分解速率随厚度的增加呈加快的趋势,杉木凋落物10、20、40g的年分解系数K分别为0.24、0.27、0.34,香樟凋落物10、20、40g的年分解系数K分别为0.25、0.3、0.32,银杏凋落物10、20、40g的年分解系数K分别为0.42、0.5、0.58;脲酶活性表现为:凋落叶40g>凋落叶20g>凋落叶10g,纤维素酶活性表现为:凋落叶40g、凋落叶20g>凋落叶10g,蔗糖酶活性表现为:后期凋落叶40g>凋落叶20g>凋落叶10g,凋落物分解过程是多种酶共同作用的结果.  相似文献   

11.
We examined whether the exposure of Quercus robur L. to elevated UV-B radiation (280–315 nm) during growth would influence leaf decomposition rate through effects on litter quality. Saplings were exposed for eight months at an outdoor facility in the UK to a 30% elevation above the ambient level of erythemally weighted UV-B radiation under UV-B treatment arrays of fluorescent lamps filtered with cellulose diacetate, which transmitted both UV-B and UV-A (315–400 nm) radiation. Saplings were exposed to elevated UV-A alone under control arrays of lamps filtered with polyester and to ambient radiation under unenergised arrays of lamps. Abscised leaves from saplings were enclosed in 1 mm2 mesh nylon bags, placed in a Quercus–Fraxinus woodland and were sampled at 0.11, 0.53, 1.10 and 1.33 years for dry weight loss, chemical composition and saprotrophic fungal colonization. At abscission, litters from UV-A control arrays had ≈ 7.5% higher lignin/nitrogen ratios than those from UV-B treatment and ambient arrays (P < 0.06). Dry weight loss of leaves treated with elevated UV-B radiation during growth was 2.5% and 5% greater than that of leaves from UV-A control arrays at 0.53 and 1.33 years, respectively. Litter samples from UV-B treatment arrays lost more nitrogen and phosphorus than samples from ambient arrays and more carbon than samples from UV-A control arrays. The annual fractional weight loss of litter from UV-B treatment arrays was 8% and 6% greater than that of litter from UV-A control and ambient arrays, respectively. Regression analyses indicated that the increased decomposition rate of UV-B treated litters was associated with enhanced colonization of leaves by basidiomycete fungi, the most active members of the soil fungal community, and that the frequency of these fungi was negatively associated with the initial lignin/nitrogen ratio of leaves.  相似文献   

12.
在区域尺度上,凋落物的底物性质是决定其分解速率的关键因素。本研究以亚热带杉木人工林为对象,通过埋设电缆进行土壤增温,分析气候变暖对杉木枝、叶凋落物理化性质的影响。结果表明: 经过5年的土壤增温试验(4 ℃),杉木枝凋落物的氮(N)、磷(P)含量和可萃取物含量分别增加35.2%、40.8%、7.6%,叶凋落物分别增加41.2%、45.9%、5.9%;枝凋落物的碳(C)含量、纤维素含量和C/N分别降低5.1%、11.6%、28.8%,叶凋落物分别降低5.3%、11.3%、33.3%。土壤增温导致杉木叶凋落物的比叶面积提高29.8%,抗拉强度减小40.7%,但增温对杉木枝和叶凋落物木质素含量和pH值无显著影响。13C NMR和红外光谱分析显示,增温后杉木凋落物中氨基酸、多糖、多酚和脂肪族化合物含量变化显著,而且在不同器官凋落物之间有所差别,表现为多糖类物质只在叶凋落物中显著增加,枝凋落物中氨基酸的增加量大于叶凋落物。土壤增温显著改变了杉木枝、叶凋落物的理化性质, N、P养分含量的提高以及抗拉强度减小等特征可能加速初期凋落物的分解速率,而由于复杂大分子化合物的增多,后期凋落物的分解速率可能较慢。  相似文献   

13.
Altered surface ultraviolet‐B (UV‐B) radiation resulting from a combination of factors that include changes in stratospheric ozone concentrations, cloud cover, and aerosol conditions may affect litter decomposition and, thus, terrestrial nutrient cycling on a global scale. Although litter decomposition rates vary across biomes, patterns of decomposition suggest that UV‐B radiation accelerates litter decay in xeric environments where precipitation is infrequent. However, under more frequent precipitation regimes where litter decay rates are characteristically high, the effect of UV‐B radiation on litter decomposition has not been fully elucidated. To evaluate this association between moisture regime and UV‐B exposure, a litter decomposition experiment was designed for aspen (Populus tremuloides) leaf litter, where conditions that influence both abiotic (photodegradation) and biotic (microbial) processes could be manipulated quantitatively. We found that experimentally increasing UV‐B exposure (0, 7.4, and 11.2 kJ m?2 day?1, respectively) did not consistently increase litter decomposition rates across simulated precipitation frequencies of 4, 12, and 24 days. Instead, a UV‐B exposure of 11.2 kJ m?2 day?1 resulted in a 13% decrease in decomposition rates under the 4‐day precipitation frequency, but an increase of 80% under the 24‐day frequency. Furthermore, the same UV‐B dose increased litter decomposition rates under the 24‐day precipitation frequency by 78% even in conditions where microbial activity was suppressed. Therefore, under more xeric conditions, greater exposure to UV‐B radiation increased decomposition rates, presumably through photodegradation. In contrast, when decomposition was not moisture‐limited, greater UV‐B exposure slowed decomposition rates, most likely from the resulting inhibition of microbial activity. Ultimately, these experimental results highlight UV‐B radiation as a potential driver of decomposition, as well as indicate that both the direction and magnitude of the UV‐B effect is dependent on moisture availability, a factor that may change according to future patterns in global precipitation.  相似文献   

14.
根系在凋落物层生长对凋落叶分解及酶活性的影响   总被引:1,自引:0,他引:1  
根系向凋落物层生长是森林生态系统存在的普遍现象,研究根系存在对凋落物分解的影响对理解森林生态系统的养分物质循环具有重要意义.在福建三明市楠木和格氏栲林进行1年的凋落叶分解试验,设置有根处理和无根处理(对照),研究根系生长对凋落叶分解速率、养分释放和酶活性的影响.结果表明:在分解360 d后,有根处理楠木和格氏栲凋落叶干...  相似文献   

15.
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   

16.
凋落物的树种多样性与杉木人工林土壤生态功能   总被引:14,自引:0,他引:14  
通过模拟试验和野外调查对凋落物的树种多样性与杉木人工林土壤生态功能之间关系进行了研究。林分取样调查的结果表明 ,有两个树种凋落物覆盖的几个杉阔混交林土壤脲酶和蔗糖酶活性均明显高于只有杉木凋落物覆盖的杉木纯林土壤 ,酸性磷酸酶活性也呈现相同的变化趋势 ,这 3种土壤酶活性均以具有凋落物种类最多的次生常绿阔叶林土壤最高。除了土壤酶活性升高之外 ,杉阔混交林的土壤有机质和全氮含量也明显高于仅有一种杉木凋落物覆盖的杉木纯林土壤。采用杉木叶凋落物与不同阔叶树种凋落物处理土壤的模拟试验结果表明 ,在凋落物投放量和 (1 5NH4 ) 2 SO4 施用量相同的控制条件下 ,随着投放的凋落物树种组成的增加 ,土壤中 1 5N的残留量也随之增加 ,而其损失量却随之减少 ;土壤中杉木幼树对于 1 5N的吸收量以及杉木幼树的单株鲜重也随着处理凋落物组成树种的增加而增加 ,具有不同树种数量的凋落物处理之间差异显著 (p<0 .0 5 )。可见随着凋落物树种多样性的增加 ,不仅土壤有机质和全氮含量这两个基本的质量指标得到明显改善 ,而且土壤酶活性、土壤养分保蓄功能以及保证幼树良好生长等的生态功能明显改善  相似文献   

17.
From studies on living plant tissues it has been inferred that elevated UV‐B radiation could negatively affect litter quality and subsequent decomposition. However, in general, the effects of UV‐B radiation on litter chemistry and decomposition reported in the literature are variable and are often only marginally (if at all) significant. This might be due to the ecologically unrealistic conditions under which these experiments were performed. We investigated the effects of elevated UV‐B radiation on litter quality and subsequent decomposition on initial litter chemistry and long‐term (2 years) decomposition of freshly senesced Carex arenaria and Calamagrostis epigejos leaf litter under ecologically realistic conditions. This material was collected from a dune grassland that had received UV‐B radiation treatments for three growing seasons. It was then used in a 2‐year decomposition study using litter bags. We found no significant effects of elevated UV‐B radiation on any of the litter chemistry parameters in either of the two species, nor did we find significant effects on litter decomposition. However, we did find significant differences in litter decomposition between the species. These differences were related to the interspecific differences in litter chemistry, particularly the litter phenolics concentration. These results show that litter quality and decomposition in dune grasslands are, also under ecologically realistic conditions, not affected by UV‐B radiation. Instead, litter decomposition is determined by constitutive interspecific differences in litter chemistry. In conclusion, with our results added to the already existing literature, the preponderance of evidence now clearly suggests that elevated UV‐B radiation has very little, if any, impact on litter quality and subsequent decomposition in real ecosystems.  相似文献   

18.
随着叶片功能性状研究的不断深入, 通过简单易测量的叶片指标, 同时探究植物生活史权衡对策和估算林分生产力的研究需求日益增长, 例如叶干质量比(LDMC)和比叶面积(SLA)的相互转换。杉木(Cunninghamia lanceolata)是亚热带重要的常绿针叶树种, 基于LDMC对杉木SLA进行估算, 能够为核算SLA提供途径, 为机理解释和生产估算构建连接途径, 为小区域到大尺度、精算到估算搭建桥梁。该研究在湖南会同和河南信阳两个杉木生长区, 对处于不同小生境(坡向、坡位和冠层深度)以及不同生活史(林龄和叶龄)的叶片进行抽样和采集, 通过测得不同叶龄的单叶LDMCSLA, 初步探究在不同因子下两个性状值的分布差异, 进一步基于LDMC构建SLA估算模型并讨论以叶龄为差分因子对模型的影响。结果表明: 1)杉木SLA平均值为(103.15 ± 69.54) cm 2·g -1, LDMC为0.39 ± 0.11; 2)杉木LDMCSLA可用非线性模型进行估算, 模型符合估算要求; 3)其中一年生叶的拟合效果最好, 老叶(大于二年生叶)的拟合优度较低, 老叶较低的SLA (52.28-75.74 cm 2·g -1)可能暗示LDMC的变化保持相对独立性。该研究基于杉木LDMCSLA估算模型可信且有效, 且不同叶龄对LDMCSLA的影响可能预示着杉木叶片的响应敏感性和生活史权衡策略。  相似文献   

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