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首页> 外文期刊>Environmental Entomology >The Influence of Vegetation and Landscape Structural Connectivity on Butterflies (Lepidoptera: Papilionoidea and Hesperiidae), Carabids (Coleoptera: Carabidae), Syrphids (Diptera: Syrphidae), and Sawflies (Hymenoptera: Symphyta) in Northern Italy Farmland
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The Influence of Vegetation and Landscape Structural Connectivity on Butterflies (Lepidoptera: Papilionoidea and Hesperiidae), Carabids (Coleoptera: Carabidae), Syrphids (Diptera: Syrphidae), and Sawflies (Hymenoptera: Symphyta) in Northern Italy Farmland

机译:植被和景观结构的连通性对意大利北部农田中的蝴蝶(鳞翅目:Papilionoidea和Hesperiidae),甲足类(鞘翅目:Carabidae),Syrphids(双翅目:Syrphidae)和锯蝇(Hymenoptera:Symphyta)有影响。

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摘要

Landscape structure as well as local vegetation influence biodiversity in agroecosystems. A study was performed to evaluate the effect of floristic diversity, vegetation patterns, and landscape structural connectivity on butterflies (Lepidoptera: Papilionoidea and Hesperiidae), carabids (Coleoptera: Carabidae), syrphids (Diptera: Syrphidae), and sawflies (Hymenoptera: Symphyta). Vegetation analysis and insect samplings were carried out in nine sites within an intensively farmed landscape in northern Italy. Plant species richness and the percentage of tree, shrub, and herb cover were determined by means of the phytosociological method of Braun-Blanquet. Landscape structural connectivity was measured as the total length of hedgerow network (LHN) in a radius of 500 m around the center of each sampling transect. Butterflies species richness and abundance were positively associated both to herb cover and to plant species richness, but responded negatively to tree and shrub cover. Shrub cover was strictly correlated to both species richness and activity density of carabids. The species richness of syrphids was positively influenced by herb cover and plant richness, whereas their abundance was dependent on ligneous vegetation and LHN. Rarefaction analysis revealed that sawfly sampling was not robust and no relationship could be drawn with either vegetation parameters or structural connectivity. The specific responses of each insect group to the environmental factors should be considered in order to refine and optimize landscape management interventions targeting specific conservation endpoints.
机译:景观结构以及当地植被影响农业生态系统中的生物多样性。进行了一项研究,以评估植物多样性,植被格局和景观结构的连通性对蝴蝶(鳞翅目:Papilionoidea和Hesperiidae),腕甲(鞘翅目:Carabidae),剑兰(Diptera:Syrphidae)和锯齿(Hymenoptera:Symphyta)的影响。 。在意大利北部一个集约化耕地中的九个地点进行了植被分析和昆虫采样。植物物种丰富度以及树木,灌木和草本植物的覆盖率通过Braun-Blanquet的植物社会学方法确定。景观结构的连通性以树篱网络(LHN)的总长度进行测量,该树篱网络位于每个采样样带中心周围500 m的半径内。蝴蝶物种的丰富度和丰度与草本植物的覆盖度和植物物种的丰富度均呈正相关,而对树木和灌木的覆盖度则呈负相关。灌木的覆盖率与甲的物种丰富度和活动密度都密切相关。紫草的物种丰富度受草本覆盖和植物丰富度的积极影响,而其丰度则取决于木本植物和LHN。反射分析表明,锯蝇采样不是很可靠,并且与植被参数或结构连通性都没有关系。为了完善和优化针对特定保护终点的景观管理干预措施,应考虑每个昆虫群对环境因素的具体反应。

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