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1.
以北京油松(Pinus tabuliformis)人工林为研究对象,采用独立样本T检验、冗余分析等方法,分析重度火烧1年后林下植被(灌木层和草本层)的物种多样性、叶功能性状及其与土壤因子的关系.结果显示:(1)与对照样地相比,重度火烧后灌木层物种丰富度指数极显著降低(P <0.01),但Shannon指数、Simpson指数以及Pielou指数虽呈下降趋势但未达显著水平(P> 0.05);草本层除Pielou指数外,各物种多样性指数均显著增加(P <0.05).(2)重度火烧样地灌木层和草本层的叶厚度(LT)、叶干物质含量(LDMC)、叶碳含量(LCC)、叶磷含量(LPC)均高于对照样地,而比叶面积(SLA)、叶氮含量(LNC)、叶片氮磷比(N:P)、叶绿素含量(CHL)低于对照样地,除灌木层LPC和N:P及草本层SLA、LCC和LPC外,其他各叶功能性状在火烧与对照间差异均达显著水平.对于不同生活型而言,对照样地的LDMC、LNC、LCC、CHL存在显著差异,而在重度火烧后差异不显著;LT、SLA在重度火烧和对照样地上均呈现显著差异;而LPC、N:P在重度火烧与对照样地上均无显著差异.(3)重度火烧后1年,灌木层和草本层的叶功能性状均仅与土壤含水率、容重和非毛管孔隙度密切相关.本研究表明在油松人工林重度火烧后1年,灌木层物种多样性降低,而草本层物种多样性增加,灌草层的各叶功能性状主要受土壤物理性质的影响呈现不同的变化规律.(图4参45)  相似文献   
2.
人工马褂木林下草本植物物种多样性与林分郁闭度的关系   总被引:7,自引:1,他引:7  
通过对崇明岛5年生人工马褂木林下草本植物分布及生长状况的调查,研究了不同郁闭度下草本植物物种多样性与林分郁闭度的关系.结果表明:在马褂木幼龄林中,随着林分郁闭度的增大,林下草本植物种数呈先增加后减少的趋势,郁闭度为0、(0,0.2]、(0.2,0.4]、(0.4,0.6]、(0.6,0.8]、(0.8,1.0]下的草本植物种数分别为16、16、19、15、9和7种;林下草本植物的平均盖度、平均密度与林分郁闭度在α=0.01水平上呈显著负相关(r盖度-郁闭度=-0.964 3,r密度-郁闭度=-0.981 5);林分郁闭度为(0.2,0.4]林下草本植物多样性指数最高,其中辛普森指数为0.754 8,香农-威纳指数为1.327 3,均匀度指数为0.880 6.  相似文献   
3.
Forest die‐off around the world is expected to increase in coming decades as temperature increases due to climate change. Forest die‐off will likely affect understory plant communities, which have substantial influence on regional biological diversity, ecosystem function, and land–atmosphere interactions, but how die‐off alters these plant communities is largely unknown. We examined changes in understory plant communities following a widespread, drought‐induced die‐off of trembling aspen (Populus tremuloides) in the western United States. We assessed shrub and herbaceous cover and volume in quadrats in 55 plots located across a wide range of levels of aspen mortality. We measured species richness and composition of herbaceous plant communities by recording species presence and absence in 12 sets of paired (1 healthy, 1 dying) aspen plots. Although understory composition in healthy and dying stands was heterogeneous across the landscape, shrub abundance, cover, and volume were higher and abundance of herbaceous species, cover, and volume were lower in dying aspen stands. Shrub cover and volume increased from 2009 to 2011 in dying stands, which suggests that shrub growth and expansion is ongoing. Species richness of herbs declined by 23% in dying stands. Composition of herbs differed significantly between dying and healthy stands. Richness of non‐native species did not differ between stand types. The understory community in dying aspen stands was not similar to other shrub‐dominated plant communities in the region and may constitute a novel community. Our results suggest that changes in understory plant communities as forests die off could be a significant indirect effect of climate change on biological diversity and forest communities. Efectos de la Mortalidad Extensiva de Álamos Inducida por Sequía sobre Plantas del Sotobosque  相似文献   
4.
We report on the effects of forest management practices of understory removal and N-fixing species (Cassia alata) addition on soil CO2 fluxes in an Eucalyptus urophylla plantation (EUp), Acacia crassicarpa plantation (ACp), 10-species-mixed plantation (Tp), and 30-species-mixed plantation (THp) using the static chamber method in southern China. Four forest management treatments, including (1) understory removal (UR); (2) C. alata addition (CA); (3) understory removal and replacement with C. alata (UR+CA); and (4) control without any disturbances (CK), were applied in the above four forest plantations with three replications for each treatment. The results showed that soil CO2 fluxes rates remained at a high level during the rainy season (from April to September), followed by a rapid decrease after October reaching a minimum in February. Soil CO2 fluxes were significantly higher (P < 0.01) in EUp (132.6 mg/(m2·hr)) and ACp (139.8 mg/(m2·hr)) than in Tp (94.0 mg/(m2·hr)) and THp (102.9 mg/(m2·hr)). Soil CO2 fluxes in UR and CA were significantly higher (P < 0.01) among the four treatments, with values of 105.7, 120.4, 133.6 and 112.2 mg/(m2·hr) for UR+CA, UR, CA and CK, respectively. Soil CO2 fluxes were positively correlated with soil temperature (P < 0.01), soil moisture (P < 0.01), NO3?-N (P < 0.05), and litterfall (P < 0.01), indicating that all these factors might be important controlling variables for soil CO2 fluxes. This study sheds some light on our understanding of soil CO2 flux dynamics in forest plantations under various management practices.  相似文献   
5.
生物多样性关系到森林生态系统的稳定性及其功能的正常发挥,渐伐可为林下更新创造有利条件,进而对林下植被多样性产生影响。在大兴安岭兴安落叶松(Larixgmelinii(Rupr.)Rupr.)林区,采用空间代替时间的方法,应用Simpson指数、Shannon.Wiener指数和Pielou均匀度指数,以原始林为对照,研究不同林龄草类.兴安落叶松渐伐林下植被物种多样性的变化规律。结果表明:在群落恢复过程中,渐伐林灌木层多桦性指数呈先升高后降低的变化规律,草本层呈“降低→升高→降低”的趋势,且渐伐林在灌木层多样性指数最高的中龄林时期,草本层多样性指数最低;而原始林在生长发育过程中林下植被多样性指数变化规律一致,均呈“升高→降低→升高”的趋势;渐伐林和原始林林下植被多样性指数均在演替中期(中龄林或近熟林)最高,演替前期和后期相对降低。对比灌木层和草本层发现,渐伐林和原始林各龄林的simpson指数和Shannon.Wiener指数均为草本层〉灌木层。与原始林相比较,渐伐后群落各龄林灌木层Simpson指数、Shannon-Wiener指数和均匀性指数及草本层均匀性指数均显著增加,可见渐伐有利于林下植被的发育和多样性的提高。  相似文献   
6.
Abstract:  The occurrence of fauna in commercial plantations is often associated with structural complexity. Through a meta-analysis, we tested whether the structural complexity of plantations could enhance bird species assemblages and whether bird assemblages respond differently depending on taxonomic affiliation, body size, and diet. Our analyses included 167 case studies in 31 countries in which bird assemblages in forests and plantations were compared and 42 case studies in 14 countries in which bird assemblages in plantations of different structural complexity were compared. Species richness, but not abundance, was higher in forests than in plantations. Both species richness and abundance were significantly higher in complex than in structurally simple plantations. Taxonomic representation and body size did not differ between forest and plantations, except that there were fewer insectivorous birds in plantations than in forests. In the comparison of simple versus complex plantations, abundance of all taxonomic and dietary groups was higher in complex plantations. Body size did not affect bird species richness or abundance. Independent of the type of plantation, bird richness and abundance were greater in structurally complex plantations. Enhancing the structural complexity of plantations may mitigate their impact and offer habitat for some native species.  相似文献   
7.
低效低质人工林优化改造后林下植被多样性研究   总被引:3,自引:0,他引:3  
采用样地调查法,对经过人工优化改造的陕西吴起县城周边的低效低质林,选取了其中的11种改造模式(即人工林林分)及1块天然次生林,进行了林下植被多样性的研究。结果表明:12个样地共调查到55种植物,各样地林下植物种有11-23种;阿尔泰狗娃花(altaicus(Willd.)Novopokr.)、达呼里胡枝子(davuriea(Laxm.JSehi月d1.)、赖草(JPc口li”淞(GeorgOTzveL)、针茅(capillataLinn.)、毛连蒿(vestitaWall.exBess.)和委陵菜(chinensisSer.)是最常见的种。而赖草、毛连蒿、达呼里胡枝子、华北米蒿(giraldiiPamp.)、茵陈蒿(capillarisThunb.)、艾蒿(1avandulaefolia DC.)是改造后人工林林下重要值最大的优势种,植物偶见种也较多;不同样地林下植物多样性指数差异显著;物种多样性指数Gleason指数和种间相遇机率(PIE)指数变化趋势基本一致,Simpsom指数、Pielou均匀度指数变化趋势与前两者相反,Shannon—Wiener指数变化趋势不明显。分析表明:人工林林下植被多样性较之天然林要差,其多样性受人工林林分密度、林龄及林分组成等影响。  相似文献   
8.
间伐改变了林分结构,影响林下植被的生长和发育,但长期间伐对杉木Cunninghamia lanceolata林下植被多样性的影响尚缺乏系统研究。在浙江开化通过样地调查,采用Simpson指数、Shannon-Wiener指数和Pielou均匀度指数研究3种间伐处理下杉木人工林林下植被多样性的变化;分析林下植被主要营养元素含量,研究间伐对营养元素现存量的影响。以试验区传统经营方式为对照,即林木生长中期(第14年)进行1次轻度间伐(间伐强度约15%,T1);中度(总间伐强度约35%, T2)和强度(总间伐强度约50%,T3)间伐均在第7年和第14年进行了2次间伐。间伐15年后的结果表明,3种间伐处理下,林下植物种类数分别为18种(T1)、17种(T2)和20种(T3),林下植被总密度和盖度均随间伐强度增加而增大;林下植物Simpson指数、Shannon-Wiener指数和Pielou均匀度指数在不同间伐处理之间均没有显著差异(P>0.05)。林下植被全碳(TC)、全磷(TP)和全钾(TK)含量在不同间伐处理之间差异不显著(P>0.05),全氮(TN)含量随间伐强度增加而降低,其中T3处理显著低于T1(P<0.05)。林下植被生物量随间伐强度增大而增加,林下植被TC、TN、TP和TK现存量在不同间伐处理之间均没有显著差异(P>0.05)。这些试验结果说明杉木人工林间伐15年后间伐强度不会显著影响林下植被多样性和营养元素的积累。  相似文献   
9.
调查了青藏高原东部川西云杉原始林下优势灌木银露梅及其在皆伐7 a后迹地上的种群结构、生长与繁殖状况,并进行了对比研究.发现(1)皆伐迹地生境中的银露梅灌丛年龄结构、萌生株年龄结构、萌生株数大小结构和冠幅结构与原始林下相比均存在着较大的差异;(2)在皆伐生境中,与林下同龄的银露梅丛冠幅、基径总和以及株高总和均显著增加,皆伐显著促进了银露梅的无性萌生能力和结实数量的增加.综合分析表明,银露梅能有效适应迹地退化形成的阳性生境,因此可作为高海拔地区皆伐迹地植被恢复中先锋灌木种.图2表1参21  相似文献   
10.
采用PLFA(phospholipid fatty acids,磷脂脂肪酸)分析法研究江西省九连山国家级自然保护区杉木纯林、马尾松纯林、杉木阔叶混交林、马尾松阔叶混交林与天然常绿阔叶林的土壤微生物群落结构特征,探讨植被特征和土壤理化特征对土壤微生物群落的影响. 结果表明:①杉木阔叶混交林土壤细菌、放线菌和总微生物生物量最高,分别为7.77、1.74和18.21 nmol/g,而马尾松纯林均最低. ②针阔混交显著提高了土壤微生物生物量及其丰富度. 土壤微生物生物量及其丰富度均与土壤含水率、w(AN)(AN为有效氮)、w(TC)、w(TN)呈显著正相关(R为0.426~0.701),而与C/N〔w(TC)/w(TN)〕呈显著负相关(R分别为-0.447、-0.518). ③w(AN)对土壤微生物群落结构的解释率达55.8%. 尽管林下灌木、草本层生物量对土壤微生物生物量影响不大,但对微生物群落结构有一定影响,解释率分别为5.5%和6.3%. 灌草层丰富度与土壤微生物生物量及其丰富度呈显著正相关(R为0.369~0.452). 可见,阔叶树种和林下灌草层能够显著影响土壤微生物群落组成.   相似文献   
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