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小麦间作系统中的花卉条带:对比利时传粉者数量和多样性的影响

Flower Strips in Wheat Intercropping System: Effect on Pollinator Abundance and Diversity in Belgium.

作者信息

Amy Clara, Noël Grégoire, Hatt Séverin, Uyttenbroeck Roel, Van de Meutter Frank, Genoud David, Francis Frédéric

机构信息

Functional and Evolutionary Entomology, Department of Agronomy, Biology and Chemistry, Gembloux Agro-Bio Tech, University of Liege, Passage des Déportés 2, 5030 Gembloux, Belgium.

TERRA-AgricultureIsLife, Gembloux Agro-Bio Tech, University of Liege, Passage des Déportés 2, 5030 Gembloux, Belgium.

出版信息

Insects. 2018 Sep 4;9(3):114. doi: 10.3390/insects9030114.

Abstract

The decline of pollinators in agricultural areas has been observed for some decades, this being partly due to landscape simplification in intensive agrosystems. Diversifying agricultural landscapes by sowing flower strips within fields could reduce these adverse effects on biodiversity. In this context, the study presented here aimed at assessing and comparing the abundance and diversity of bees (Hymenoptera: Anthophila) and hoverflies (Diptera: Syrphidae) found and visiting flowers in three types of flower strips in Belgium: (i) a mixture of 11 wild flowers, (ii) a monofloral strip of (Asteraceae) and (iii) a monofloral strip of (Brassicaceae), where the last two are considered to be intercrops since they are valuable on the market, all sown within a field of winter wheat ( L.). Pollinators were captured with pan traps and by netting in standardised transects from May to July 2017. One-thousand one-hundred and eighty-four individuals belonging to 43 bee species and 18 hoverfly species were collected. Significant differences in hoverfly diversity were found between the different flower strips. The multifloral treatment supported a greater diversity of syrphid species. Various pollinator species visited the different flowers composing the mixture and also . The pollinator community proved to be predominantly generalist, with the exception of an oligolectic species in Belgium, . Moreover, the three tested flower strips were effective in attracting hoverflies, among them natural enemies of insect pests. This study opens new perspectives in the design of intercropping systems with flower strips towards the design of sustainable agro-ecosystems. Improving economic profitability of sowing flower strips could encourage farmers to diversify their agricultural systems and foster conservation biology strategies.

摘要

在农业区域传粉者数量减少的现象已被观测到数十年,部分原因是集约化农业系统中景观的简化。通过在田间播种花卉带使农业景观多样化,可以减少对生物多样性的这些不利影响。在此背景下,本文提出的研究旨在评估和比较在比利时三种花卉带中发现并访花的蜜蜂(膜翅目:Anthophila)和食蚜蝇(双翅目:食蚜蝇科)的丰度和多样性:(i)11种野花的混合物,(ii)一种菊科单种花卉带,以及(iii)一种十字花科单种花卉带,后两种因其在市场上有价值而被视为间作作物,所有这些都播种在冬小麦(Triticum aestivum L.)田中。2017年5月至7月,通过陷捕盘和在标准化样带中用网捕的方式捕获传粉者。共收集到属于43种蜜蜂和18种食蚜蝇的1184个个体。在不同花卉带之间发现食蚜蝇多样性存在显著差异。多花处理支持了更丰富的食蚜蝇物种多样性。各种传粉者物种访了构成混合物的不同花朵以及[此处原文缺失部分信息]。传粉者群落被证明主要是泛食性的,比利时的一种寡食性物种除外,[此处原文缺失具体物种信息]。此外,这三种测试花卉带在吸引食蚜蝇方面很有效,食蚜蝇是害虫的天敌。这项研究为设计带有花卉带的间作系统以实现可持续农业生态系统的设计开辟了新视角。提高播种花卉带的经济收益可能会鼓励农民使他们的农业系统多样化,并促进保护生物学策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/01bb/6164983/59cbe206cf3d/insects-09-00114-g001.jpg

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