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生物多样性丧失的维度:土地利用对欧洲蜜蜂物种、功能和系统发育多样性影响的空间不匹配

Dimensions of biodiversity loss: Spatial mismatch in land-use impacts on species, functional and phylogenetic diversity of European bees.

作者信息

De Palma Adriana, Kuhlmann Michael, Bugter Rob, Ferrier Simon, Hoskins Andrew J, Potts Simon G, Roberts Stuart P M, Schweiger Oliver, Purvis Andy

机构信息

Department of Life Sciences Natural History Museum London SW7 5BD UK.

Department of Life Sciences Imperial College London Ascot SL5 7PY UK.

出版信息

Divers Distrib. 2017 Dec;23(12):1435-1446. doi: 10.1111/ddi.12638. Epub 2017 Sep 13.

Abstract

AIM

Agricultural intensification and urbanization are important drivers of biodiversity change in Europe. Different aspects of bee community diversity vary in their sensitivity to these pressures, as well as independently influencing ecosystem service provision (pollination). To obtain a more comprehensive understanding of human impacts on bee diversity across Europe, we assess multiple, complementary indices of diversity.

LOCATION

One Thousand four hundred and forty six sites across Europe.

METHODS

We collated data on bee occurrence and abundance from the published literature and supplemented them with the PREDICTS database. Using Rao's Quadratic Entropy, we assessed how species, functional and phylogenetic diversity of 1,446 bee communities respond to land-use characteristics including land-use class, cropland intensity, human population density and distance to roads. We combined these models with statistically downscaled estimates of land use in 2005 to estimate and map-at a scale of approximately 1 km-the losses in diversity relative to semi-natural/natural baseline (the predicted diversity of an uninhabited grid square, consisting only of semi-natural/natural vegetation).

RESULTS

We show that-relative to the predicted local diversity in uninhabited semi-natural/natural habitat-half of all EU27 countries have lost over 10% of their average local species diversity and two-thirds of countries have lost over 5% of their average local functional and phylogenetic diversity. All diversity measures were generally lower in pasture and higher-intensity cropland than in semi-natural/natural vegetation, but facets of diversity showed less consistent responses to human population density. These differences have led to marked spatial mismatches in losses: losses in phylogenetic diversity were in some areas almost 20 percentage points (pp.) more severe than losses in species diversity, but in other areas losses were almost 40 pp. less severe.

MAIN CONCLUSIONS

These results highlight the importance of exploring multiple measures of diversity when prioritizing and evaluating conservation actions, as species-diverse assemblages may be phylogenetically and functionally impoverished, potentially threatening pollination service provision.

摘要

目标

农业集约化和城市化是欧洲生物多样性变化的重要驱动因素。蜜蜂群落多样性的不同方面对这些压力的敏感度各异,同时也独立影响着生态系统服务(授粉)。为了更全面地了解人类对欧洲蜜蜂多样性的影响,我们评估了多个互补的多样性指标。

地点

欧洲各地的1446个地点。

方法

我们从已发表的文献中整理了蜜蜂出现情况和丰度的数据,并用PREDICTS数据库进行补充。我们使用Rao二次熵评估了1446个蜜蜂群落的物种、功能和系统发育多样性如何响应土地利用特征,包括土地利用类别、农田集约化程度、人口密度和距道路的距离。我们将这些模型与2005年土地利用的统计降尺度估计相结合,以估计并绘制(比例尺约为1千米)相对于半自然/自然基线(无人居住网格方块的预测多样性,仅由半自然/自然植被组成)的多样性损失。

结果

我们发现,相对于无人居住的半自然/自然栖息地的预测局部多样性,欧盟27国中有一半国家的平均局部物种多样性损失超过10%,三分之二的国家平均局部功能和系统发育多样性损失超过5%。所有多样性指标在牧场和高强度农田中通常都低于半自然/自然植被,但多样性的不同方面对人口密度的响应不太一致。这些差异导致了损失在空间上的明显不匹配:在某些地区,系统发育多样性的损失比物种多样性的损失严重近20个百分点,但在其他地区,损失则轻近四十个百分点。

主要结论

这些结果凸显了在确定保护行动的优先级和评估保护行动时探索多种多样性指标的重要性,因为物种多样的组合在系统发育和功能上可能较为贫乏,这可能会威胁到授粉服务的提供。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/37af/5699437/360961d219c9/DDI-23-1435-g001.jpg

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