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1.
为了预测气候变化对麦田节肢动物群落多样性的影响, 本研究在麦田开放环境中设置4种处理, 分别是高温(高于当时气温2℃和当前CO2浓度)、高CO2浓度(500 μL/L和当时气温)、高温+高CO2浓度和对照(当前CO2浓度和气温)等, 采用定期随机抽样方法调查节肢动物群落的多样性, 用经典的多样性指数对整体节肢动物群落以及不同食性节肢动物群落多样性进行分析。共采到节肢动物3纲10目42科52种。仅“高温”和“高温+高CO2”处理显著增大节肢动物群落的均匀度, 其余处理均无显著影响。“高温+高CO2”处理的影响随小麦生长发育期不同而略有差异, 在苗期可增大Shannon-Wiener多样性指数, 而在后期使该指数减小; “高温+高CO2”与“高温”处理的群落多样性较为相似。对不同食性节肢动物群落的分析表明, 与对照相比, 植食性昆虫群落在“高CO2”下丰富度显著增大; 寄生性昆虫群落的多度在“高温”下显著增大; 腐食性等节肢动物群落的多度在“高CO2+高温”和“高温”处理下有所增大、均匀度在“高温”下略降低, 但均未达统计上的显著水平; 捕食性节肢动物群落不受影响。本研究说明, CO2浓度和气温升高不同程度地影响麦田节肢动物群落的物种多样性, 两类因素同时升高与各自单独升高的影响不完全一致。  相似文献   

2.
了解氮沉降增加背景下草原生态系统结构和功能的响应特征,是研发草原可持续管理措施的基础。目前内蒙古典型草原有关氮沉降增加的研究主要集中在植物群落,而对土壤动物影响的研究较少。通过在内蒙古典型草原连续5年的养分添加实验,研究了地表节肢动物对不同氮添加(N_0、N_(2.5)、N_5、N_(10))处理的响应,并分析了4种氮添加处理下地表节肢动物与环境因子之间的关系。结果表明,氮输入增加后,地表节肢动物群落的多样性并没有显著降低(P0.05),群落多度也没有显著增加(P0.05),仅在低氮处理下,群落生物量显著高于对照(P0.05)。不同地表节肢动物功能群对各水平N添加的响应均不太敏感,捕食性、杂食性、腐食性功能群动物的生物量对N添加都没有显著响应(P0.05),仅植食性动物的生物量在低氮和高氮处理显著高于对照(P0.05)。回归分析表明,植食性节肢动物的多度和生物量主要受植物叶氮含量显著影响(P0.05),而腐食性节肢动物的多度、生物量和类群数受土壤有机碳显著影响(P0.05)。研究表明,温带典型草原地表节肢动物对氮添加的响应受其食物来源影响,明显滞后于植物群落;不同功能群对氮添加有不同响应形式,是群落水平响应较弱的主要原因。  相似文献   

3.
辽东山区次生林与人工林大型地表节肢动物多样性   总被引:1,自引:0,他引:1  
采用陷阱法在地表节肢动物活动高峰期(7—8月)对辽东山区蒙古栎(Quercus mongolica)林、胡桃楸(Juglans mandshurica)林和阔叶混交林3种次生林以及红松(Pinus koraiensis)人工林和落叶松(Larix spp.)人工林地表节肢动物群落进行了调查。共捕获地表节肢动物5135头,隶属于7纲18目66个类群,优势类群为蚁科(20.4%)、葬甲科(19.5%)、蜣螂科(17.2%)和步甲科(14.5%);地表节肢动物的功能群丰度依次为:腐食性杂食性捕食性植食性;系统聚类分析表明,地表节肢动物群落和地表甲虫群落均显示红松人工林、落叶松人工林和胡桃楸林群落结构聚为一类,蒙古栎林和阔叶混交林群落聚为一类;冗余度分析表明,凋落物厚度、植被盖度与树高因子可以解释地表节肢动物及地表甲虫群落差异的85.9%和81.9%。研究结果表明,研究区森林植被及凋落物状况、人为干扰是影响研究区大型地表节肢动物群落多样性的重要因素。  相似文献   

4.
采用扫网、目测和手捕的方法,调查了山地桔园生态护理区和常规管理区节肢动物种群结构和多样性,获得生态护理区节肢动物2851只,隶属于2纲11目60科143种,常规管理区节肢动物2311只,隶属于2纲11目50科99种。生态护理区捕食性、寄生性和中性类亚群落节肢动物的种类增加了123.9%~168%,数量增加了83.5%~330.7%;捕食性、寄生性和中性类亚群落优势种群增多,而植食性亚群落相对减少;3—10月各亚群落消长动态相对平稳,害虫优势种柑桔红蜘蛛和桔蚜种群数量一直低于常规管理区,柑桔粉虱则相反;除植食性外,各亚群落的相对丰富度均大于常规管理区、优势集中度均小于常规管理区;总群落、捕食性、中性和植食性亚群落的Shannon指数分别比常规管理区高,而寄生性亚群落则低0.56,Hill多样性指数N1、N2与Shannon指数趋势相似;总群落、中性和植食性亚群落的均匀度指数高0.01~0.21,捕食性和寄生性的低0.03~0.04。因此,生态护理对增加桔园节肢动物种群结构和多样性效果明显,对害虫的持续控制和柑桔安全生产具有实际意义。  相似文献   

5.
【目的】探讨桃园捕食性节肢动物群落特征、结构组成及动态规律,为桃园害虫防治提供依据。【方法】在西北农林科技大学实验站选择树龄5~6年的桃园为调查对象,系统调查园内节肢动物群落的种类和数量,测定群落的相对丰富度、多样性指数(H')、均匀度指数(E)及优势集中性指数(C)等指标,研究园内捕食性节肢动物群落的变化规律。【结果】桃园捕食性节肢动物群落的多样性指数和均匀度指数表现为高-低-高-低的趋势;群落优势度(B)与优势集中性指数呈现低-高-低趋势。食蚜蝇、蜘蛛、瓢虫、步甲和草蛉是桃园主要捕食性节肢动物亚群落。大灰食蚜蝇Metasyrphus corollae和黑带食蚜蝇Episyrphus balteata是食蚜蝇亚群落的优势种群,5月中旬至6月下旬是其发生高峰期;龟纹瓢虫Propylaea japonica是瓢虫亚群落的优势种群,5月中旬至7月下旬是其发生高峰期,随后数量维持在较低水平;龟纹瓢虫鼎斑变型和锚斑变型是桃园最常见的色斑变型,分别占49.6%和29%;蜘蛛亚群落主要包括皿蛛、蟹蛛和球蛛类群,5月上中旬、8月中下旬和10月中旬是其发生高峰期;步甲亚群落的发生高峰期为5月上旬至6月下旬,随后维持在较低的水平;中华草蛉Chrysoperla sinica为草蛉亚群落的优势种群,6月上旬至8月上旬是其发生高峰期。【结论】桃园捕食性节肢动物主要包括捕食性蜘蛛、食蚜蝇、捕食性瓢虫、步甲和草蛉5个亚群落,不同天敌亚群落的结构特征随着季节和气温的变化而相互演替,共同发挥控制害虫的作用。  相似文献   

6.
土壤动物群落结构和多样性可能随凋落物分解进程和基质质量的变化不断改变。为了解亚热带森林凋落叶分解过程中土壤节肢动物群落变化特征,以四川盆地亚热带森林麻栎(Quercus acutissima)和柳杉(Cryptomeria fortunei)凋落叶为对象,于2011-2015年采用分解袋法研究了2种凋落叶分解过程中土壤节肢动物组成、结构和多样性动态变化。整个研究期间,柳杉和麻栎凋落叶分解袋中共捕获土壤节肢动物3855只,分属于16目51科,且均以等节跳科和棘跳科为优势类群;麻栎凋落叶中土壤节肢动物的个体密度随分解进程呈现增加趋势,在分解的1079天达最高值后降低,而柳杉凋落叶则在分解的156天急剧增加后快速降低,2种凋落叶中土壤节肢动物类群数量具有相似的动态变化过程;2种凋落叶中土壤节肢动物总体以菌食性数量比例最高,腐食性最低,且随凋落叶分解进程,植食性土壤节肢动物占比明显下降,菌食性则上升;非度量多维尺度(NMDS)分析显示,2种凋落叶中土壤节肢动物群落组成具有显著差异,聚类分析表明,2种凋落叶土壤节肢动物群落结构相似性随分解进程不断降低。亚热带森林凋落叶分解过程中土壤节肢动物群落组成、结构和多样性受凋落叶类型影响。  相似文献   

7.
枣园节肢动物群落的时间动态   总被引:4,自引:0,他引:4  
将枣园节肢动物群落视为一个整体,根据群落内物种的组成和数量,采用不同群落参数和群落分析法对太谷地区枣园节肢动物群落的时间格局进行了比较。结果表明,影响枣园节肢动物群落时间格局的主导因子及时间格局分化较为明显。可将枣园节肢动物群落在时序上分为发展期、过渡期、鼎盛期和衰减期4个阶段,并结合气候、物候变化,讨论了各阶段群落的发生特点和主要害虫的治理对策。  相似文献   

8.
荒漠草原地面节肢动物功能群对草地封育的响应   总被引:2,自引:1,他引:1  
Liu RT  Li XB  Xin M  Ma L  Liu K 《应用生态学报》2011,22(8):2153-2159
以宁夏盐池国家级草原资源生态监测站为依托,选择荒漠草原典型植被类型的封育与未封育样地调查了地面节肢动物、植被及土壤特征,同时根据动物食性对节肢动物功能群进行了划分.结果表明:荒漠草原地面节肢动物可划分为捕食性、植食性、腐食性和杂食性4种营养功能群.其中,植食性和捕食性节肢动物在数量上占优势,植食性和腐食性节肢动物生物量所占比例较大,表明荒漠草原地面节肢动物区系以植食性动物分布为其主要特征.围栏封育增加了捕食性、植食性和杂食性节肢动物个体数量和类群数,增加了捕食性和杂食性节肢动物的生物量,提高了捕食性和植食性节肢动物的物种多样性,这与植被恢复和土壤环境改善密切相关,说明荒漠草原围栏封育增加了地面节肢动物功能群的多样性和复杂性.但是围栏封育后,腐食性节肢动物个体数量减少,生物量降低,反映了腐食性节肢动物对放牧草地生境的依赖性.  相似文献   

9.
为探明不同邻作对云南普洱地区玉米田节肢动物多样性的影响.采用目测法和粘虫板等多种诱集法对邻作咖啡、水稻、李树及单作的玉米田节肢动物群落进行系统调查,分析不同邻作作物对玉米田节肢动物群落的影响.结果表明:不同邻作玉米田天敌亚群落主要为双翅目和膜翅目,其中玉米单作田赤池信息量准则(AIC)值最低为-16.858,最优模型为Y=-10.312-1.639D+2.629PC2(Y为物种多样性,D为调查总个体数,PC2代表以天敌亚群落个体数为主的主成分2),节肢动物总个体数和天敌亚群落个体数与节肢动物群落多样性相关,邻作能够增加玉米田节肢动物群落多样性,其中邻作咖啡玉米田节肢动物多样性指数最高为4.082.影响玉米田节肢动物群落的主要主成份因子有天敌亚群落和中性亚群落.天敌亚群落个体数对玉米田节肢动物多样性影响最大,邻作能不同程度增加玉米田节肢动物群落多样性,邻作咖啡最佳.研究结果可为利用邻作种植模式调节玉米田节肢动物多样性提供依据.  相似文献   

10.
作物多样性对害虫及其天敌多样性的级联效应   总被引:1,自引:0,他引:1  
植物物种丰富度对植食性、寄生性和捕食性节肢动物多样性的影响是群落生态学的一个重要研究内容.探讨了作物物种丰富度对害虫及其天敌多样性的影响.通过连续4年5个作物物种丰富度水平的野外实验,发现作物物种丰富度显著性影响害虫物种丰富度,但对天敌物种丰富度的影响甚微.然而,害虫物种丰富度却显著影响天敌物种丰富度.这些发现表明,相邻营养层之间的级联效应较强,而不相邻营养层之间的作用关系被中间营养层所弱化.此外,本研究还发现,混栽田中节肢动物群落稳定性高于单一种植田中节肢动物群落稳定性.本研究结果突出了不同营养层之间复杂的作用关系以及作物多样性在农业生态系统食物网中的关键性角色.  相似文献   

11.
Summary During one year in Panama the size (=body length) of arthropods (representing the potential prey of a spider community) was determined by sampling with pitfall traps, bowl traps and sweep-netting. Most arthropods found were small and the distribution of their size is considerably skewed to the left (Figs. 1, 2). Pitfall traps and bowl traps yielded similar results but sweep-netting collected larger arthropods and may be size-selective. Although the variation of arthropod size is high, no seasonal influence on body size could be detected in the main prey groups of spiders (Figs. 3, 4). Differences in the size spectra of the actual prey of a tropical spider community are therefore not caused by seasonal variations in the availability of particular prey size classes. Species-specific prey size spectra, however, may be dependent on properties of the webs concerned, microhabitat selection or other, e.g. physiological or ethological differences between the spider species.  相似文献   

12.
放牧后自然恢复沙质草地土壤节肢动物群落结构与多样性   总被引:5,自引:2,他引:3  
以中国科学院奈曼沙漠化研究站为依托,对不同放牧强度后自然恢复沙质草地土壤节肢动物群落进行了调查,分析了土壤节肢动物群落结构及其多样性变化,探讨了植被和土壤环境对土壤节肢动物群落的影响.结果表明: 无牧草地土壤动物种类丰富,个体数量较多,多样性最高;中牧后恢复草地土壤动物个体数量少,但主要类群较多,分布较均匀,多样性较高;重牧后恢复草地土壤动物主要类群少,但个体数量多,多样性较高;而轻牧后恢复草地土壤动物分布均匀性最差,多样性最低.植物个体数、高度及盖度和土壤酸碱度是影响不同放牧强度后恢复草地土壤动物种类和个体数量分布的主要因素.说明沙质草地经过12年的围封可以一定程度上恢复土壤动物群落,而放牧干扰对土壤动物群落的负面影响是长期的.  相似文献   

13.
1. Aquatic resource fluxes from streams can provide significant subsidies for riparian consumers. Because aquatic resource fluxes can be highly variable in space and time, the subsidy efficiency (i.e. transfer to the recipient food web) is controlled by the short‐term aggregative response of riparian consumers. 2. Field manipulations of stream‐derived invertebrate prey subsidies were used to examine specific aggregative responses of ground‐dwelling arthropods to riverine subsidy pulses in a braided‐river (Tagliamento River, NE Italy). Subsidy manipulation comprised short‐term reductions of natural stream‐derived subsidies and increased subsidies of stream‐derived invertebrate prey during four seasons. 3. We hypothesised that specific aggregative responses of riparian arthropods depend on their specialisation on aquatic insects which was inferred from stable isotope analysis. Natural riverine subsidy sources including aquatic insect emergence and surface‐drifting organisms were quantified. 4. Arthropods responded significantly with a reduction in abundance by 51%, at reduced subsidies and an increase by 110% at increased subsidies, when averaged over all seasons. Different arthropod taxa responded differently to subsidy manipulations in relation to their specialisation on aquatic subsidies: ground beetles with a diet consisting predominantly of aquatic insects responded only to subsidy reductions, indicating that their local abundance was not limited by natural stream‐derived subsidies; lycosid spiders with a partly aquatic diet showed no significant response; and ants, although relying on a terrestrial diet, responded positively to added stream‐derived invertebrate prey, indicating that stranding of surface‐drifting terrestrial invertebrates represented an important subsidy pathway. 5. Ground beetles and lycosid spiders were seasonally separated in their use of aquatic subsidies. Results indicate that the life‐history characteristics of riparian consumers can control the subsidy efficiency for the recipient community. By the effective uptake of pulsed riverine‐derived subsidies, riparian arthropods can enhance the transfer of riverine food sources to the riparian food web.  相似文献   

14.
Maternally inherited endosymbionts of arthropods are one of the most abundant and diverse group of bacteria. These bacterial endosymbionts also show extensive horizontal transfer to taxonomically unrelated hosts and widespread recombination in their genomes. Such horizontal transfers can be enhanced when different arthropod hosts come in contact like in an ecological community. Higher rates of horizontal transfer can also increase the probability of recombination between endosymbionts, as they now share the same host cytoplasm. However, reports of community‐wide endosymbiont data are rare as most studies choose few host taxa and specific ecological interactions among the hosts. To better understand endosymbiont spread within host populations, we investigated the incidence, diversity, extent of horizontal transfer, and recombination of three endosymbionts (Wolbachia, Cardinium, and Arsenophonus) in a specific soil arthropod community. Wolbachia strains were characterized with MLST genes whereas 16S rRNA gene was used for Cardinium and Arsenophonus. Among 3,509 individual host arthropods, belonging to 390 morphospecies, 12.05% were infected with Wolbachia, 2.82% with Cardinium and 2.05% with Arsenophonus. Phylogenetic incongruence between host and endosymbiont indicated extensive horizontal transfer of endosymbionts within this community. Three cases of recombination between Wolbachia supergroups and eight incidences of within‐supergroup recombination were also found. Statistical tests of similarity indicated supergroup A Wolbachia and Cardinium show a pattern consistent with extensive horizontal transfer within the community but not for supergroup B Wolbachia and Arsenophonus. We highlight the importance of extensive community‐wide studies for a better understanding of the spread of endosymbionts across global arthropod communities.  相似文献   

15.
双季稻区两类生境稻田节肢动物群落结构比较   总被引:4,自引:0,他引:4  
刘雨芳  古德祥 《生态科学》2004,23(3):196-199,203
用吸虫器采样法,对双季稻区中处于多样化生境及单一生境中的两类稻田中的节肢动物群落结构特征进行了比较研究。结果表明:在早稻生长发育初期和晚稻生长全期,多样化生境稻田中捕食性节肢动物的物种数和个体数量都显著高于单一化生境稻田。同时,多样化生境中稻田植食性昆虫的物种丰富度高于单一化生境稻田,但其个体数量较低。非稻田生境主要作为稻田捕食性节肢动物群落的种库,能促进稻田捕食性节肢动物群落的重建。  相似文献   

16.
围封会促进退化高寒草甸植被和土壤环境恢复,长期围封也会导致生物多样性及其功能下降,影响高寒草甸生态系统的稳定,但这种影响会随着季节和生境条件变化而异。为了探究不同退化程度高寒草甸地表节肢动物群落变化对围封禁牧的响应,利用陷阱法调查了疏勒河源区沼泽化草甸、草甸和草原化草甸3种不同退化梯度高寒草甸围封禁牧和自由放牧处理下地表节肢动物群落结构变化。结果表明:围封禁牧对高寒草甸地表节肢动物群落组成及多样性的影响随生境条件不同而异。禁牧降低了沼泽化草甸地表节肢动物的物种丰富度,而提高了草甸和草原化草甸地表节肢动物的物种丰富度;围封禁牧对沼泽化草甸地表节肢动物群落结构影响较小,显著降低了草甸生境地表节肢动物活动密度、提高了地表节肢动物多样性和均匀度,相反,禁牧显著提高了草原化草甸生境地表节肢动物活动密度、降低其多样性和均匀度;豹蛛属1种是高寒草甸主要的地表节肢动物类群(相对多度为67.0%),高寒草甸土壤水分有效性等生境条件不同影响了豹蛛属1种对围封禁牧的响应模式,进而影响了地表节肢动物群落结构变化。总之,高寒草甸退化程度影响了地表节肢动物多样性对禁牧和放牧的响应模式,沼泽化草甸适度放牧有利于提高地表节肢动物多样性及其功能。  相似文献   

17.
Cantharidin is a defense chemical produced by only two beetle families, Meloidae and Oedemeridae. This compound also functions as an attractant for certain groups of arthropods (canthariphilous arthropods). Cantharidin‐producing beetles and canthariphilous arthropods build a cantharidin‐mediated community, called cantharidin world. In this study, to clarify the canthariphilous arthropod community formed on small islands, the arthropods were collected by cantharidin‐baited traps and compared among the mainland, peninsula and 11 small islands of the Izu–Ogasawara Arc, Japan. Control traps without cantharidin were also used to collect non‐canthariphilous arthropods. Cantharidin‐producing beetles were distributed across the study area, but the number of species was reduced on islands. We identified 10 species of five families as canthariphilous arthropods in this study area: two species of Anthicidae and Pyrochroidae (Coleoptera), four species of Ceratopogonidae (Diptera), three species of Formicidae (Hymenoptera) and one species of Podoctidae (Opiliones). The number of canthariphilous species was not correlated with island size (area) but was negatively correlated with the distance of island from the mainland. These tendencies were also seen in non‐canthariphilous fauna. The canthariphilous arthropods increased with the number of cantharidin‐producing beetle species, but the non‐canthariphilous fauna did not. Thus, the cantharidin world on islands seems to be affected not only by the geographic characteristics of islands, particularly the degree of isolation from the mainland, but also by the diversity of cantharidin‐producing members within it.  相似文献   

18.
Tropical landscapes are dominated by agroecosystems, but the potential value of agroecosystems for the survival of species is often overlooked. In agroecosystems, species conservation is especially important when functional groups such as predators are affected. In Central Sulawesi, we sampled arthropods on cocoa in a gradient of land-use intensity from extensively used forest gardens to intensively used agroforestry systems. The abundance and diversity of all arthropods did not correlate with land-use intensity, so human impact was not followed by high species losses. However, the number of species and abundance of the phytophagous arthropods increased and that of the entomophagous arthropods decreased with land-use intensity. The reduced predator–prey ratio in intensified systems can be related to their reduced species richness of shade trees and the changed microclimate (increased temperature, decreased humidity and canopy cover). In conclusion, transformation of traditional into intensified agroforestry systems had a great impact on arthropod community structure on cocoa. Since predator–prey ratios decreased with increasing land-use intensity, local farmers should have least pest problems in the traditionally diversified agroforestry systems.  相似文献   

19.
The extensive land use conversion expected to occur to meet demands for bioenergy feedstock production will likely have widespread impacts on agroecosystem biodiversity and ecosystem services, including carbon sequestration. Although arthropod detritivores are known to contribute to litter decomposition and thus energy flow and nutrient cycling in many plant communities, their importance in bioenergy feedstock communities has not yet been assessed. We undertook an experimental study quantifying rates of litter mass loss and nutrient cycling in the presence and absence of these organisms in three bioenergy feedstock crops—miscanthus (Miscanthus x giganteus), switchgrass (Panicum virgatum), and a planted prairie community. Overall arthropod abundance and litter decomposition rates were similar in all three communities. Despite effective reduction of arthropods in experimental plots via insecticide application, litter decomposition rates, inorganic nitrogen leaching, and carbon–nitrogen ratios did not differ significantly between control (with arthropods) and treatment (without arthropods) plots in any of the three community types. Our findings suggest that changes in arthropod faunal composition associated with widespread adoption of bioenergy feedstock crops may not be associated with profoundly altered arthropod‐mediated litter decomposition and nutrient release.  相似文献   

20.
L. E. O. Braack 《Oecologia》1987,72(3):402-409
Summary Carcasses are temporary resources which are unbredictable and inconsistent in their availability and locality. A recognisable community of interacting user arthrocods comprising sarcophages, coprophages, dermatophages, keratophages, detritivores, predators and parasites has evolved to exploit the carcass habitat. The large number of arthropods, close confinement, and limited duration of resources necessitates aggressive utilisation. The trophic relations, competition and successionary pattern of these arthropods is discussed. Several pathways to reduce competitive conflict are described. Succession at carcasses is viewed as being inherently different from the traditional concept as the habitat is non-replenishing and does not lead to a climax community.  相似文献   

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