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Bumblebee communities as an indicator for landscape monitoring in the agri-environmental programme

机译:大黄蜂社区作为农业环境计划中景观监测的指标

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The current article focuses on the possibilities of applying bumblebees as one of the biodiversity indicators in the monitoring and evaluation of the Estonian Agri-Environmental Programme (AEP) at landscape level. The need for agri-environmental indicators arises, at least partially, because the desired state of the environment sought by policy makers may not be directly observable. To develop agri-environmental measures favourable to landscape quality, it is necessary to know more about the relationship between landscape structure and composition and the number of different species. This study tested the relationship between the data sets of landscape elements and bumblebee communities from 11 agricultural areas in Estonia. The localities were divided into two groups: intensively used agricultural areas (IA) (the percentage of arable land was >65%) and less intensively used agricultural areas (LIA) (the percentage of arable land was <45%). The following elements of landscape structure were analysed: buffer zones narrower than 5 m and wider than 5 m, ecotones between cultivated land and broad-leaved forests, ecotones between cultivated land and mixed or coniferous forests, ditches and brooks, fallow land, mixed forests, coniferous forests, broad-leaved forests, bushes, wetlands, cultivated grasslands, pastures, legumes, arable land, semi-natural grasslands. Fifteen bumblebee species were recorded in LIA and 13 in IA. The most widely distributed and abundant species were Bombus lucorum, Bombus pascuorum and Bombus lapidarius. These species dominated in both types of agricultural area. Two species, Bombus jonellus and Bombus hypnorum were found only in LIA. Principal component analysis (PCA) was applied to the landscape elements and the bumblebee species found. Results showed that there was a significant co-structure between the data sets of landscape elements and bumblebee communities. The most important landscape features that correlated with the distribution of the bumblebee species were the ecotone length between cultivated land and forests, and the size of the area covered with mixed forests and wetlands
机译:本文主要关注将大黄蜂作为生物多样性指标之一在景观层面上对爱沙尼亚农业环境计划(AEP)进行监测和评估的可能性。至少部分地出现了对农业环境指标的需求,因为决策者所寻求的理想环境状况可能无法直接观察到。为了制定有利于景观质量的农业环境措施,有必要更多地了解景观结构与组成以及不同物种数量之间的关系。这项研究测试了爱沙尼亚11个农业地区的景观要素数据集与大黄蜂群落之间的关系。这些地区分为两类:集约化农业区(IA)(耕地比例> 65%)和集约化农业区(LIA)(耕地比例<45%)。分析了以下景观结构要素:小于5 m且大于5 m的缓冲区,耕地与阔叶林之间的过渡带,耕地与混交或针叶林之间的过渡带,沟渠和溪流,休耕地,混交林,针叶林,阔叶林,灌木丛,湿地,人工草地,牧场,豆类,耕地,半天然草原。 LIA记录了15种大黄蜂,IA记录了13种。分布最广,物种最丰富的是孟买的孟买,孟买的孟买和羊驼。这些物种在两种类型的农业地区均占主导地位。仅在LIA发现了两个物种,Bombus jonellus和Bombus hypnorum。将主成分分析(PCA)应用于景观要素和发现的大黄蜂物种。结果表明,景观要素和大黄蜂群落之间存在显着的协同结构。与大黄蜂物种分布相关的最重要的景观特征是耕地和森林之间的过渡带长度,以及混交林和湿地覆盖的面积大小

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