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由植食性螨类和捕食性螨类物种构成的植物-螨类网络的对比结构。

Contrasting structures of plant-mite networks compounded by phytophagous and predatory mite species.

作者信息

de Araújo Walter Santos, Daud Rodrigo Damasco

机构信息

Postgraduate Program in Animal Biodiversity, Institute of Biological Sciences, Universidade Federal de Goiás, Goiânia, GO, 74690-900, Brazil.

Department of General Biology, Center of Biological Sciences and Health, Universidade Estadual de Montes Claros, Montes Claros, MG, 39401-089, Brazil.

出版信息

Exp Appl Acarol. 2018 Apr;74(4):335-346. doi: 10.1007/s10493-018-0250-2. Epub 2018 Mar 23.

Abstract

Differences in the feeding habits between phytophagous and predatory species can determine distinct ecological interactions between mites and their host plants. Herein, plant-mite networks were constructed using available literature on plant-dwelling mites from Brazilian natural vegetation in order to contrast phytophagous and predatory mite networks. The structural patterns of plant-mite networks were described through network specialization (connectance) and modularity. A total of 187 mite species, 65 host plant species and 646 interactions were recorded in 14 plant-mite networks. Phytophagous networks included 96 mite species, 61 host plants and 277 interactions, whereas predatory networks contained 91 mite species, 54 host plants and 369 interactions. No differences in the species richness of mites and host plants were observed between phytophagous and predatory networks. However, plant-mite networks composed of phytophagous mites showed lower connectance and higher modularity when compared to the predatory mite networks. The present results corroborate the hypothesis that trophic networks are more specialized than commensalistic networks, given that the phytophagous species must deal with plant defenses, in contrast to predatory mites which only inhabit and forage for resources on plants.

摘要

植食性螨类和捕食性螨类在取食习性上的差异,可能决定螨类与其寄主植物之间不同的生态相互作用。在此,利用关于巴西自然植被中栖息于植物上的螨类的现有文献构建了植物 - 螨类网络,以对比植食性螨类和捕食性螨类网络。通过网络专一性(连接度)和模块性来描述植物 - 螨类网络的结构模式。在14个植物 - 螨类网络中,共记录到187种螨类、65种寄主植物和646种相互作用。植食性网络包括96种螨类、61种寄主植物和277种相互作用,而捕食性网络包含91种螨类、54种寄主植物和369种相互作用。在植食性网络和捕食性网络之间,未观察到螨类和寄主植物物种丰富度的差异。然而,与捕食性螨类网络相比,由植食性螨类组成的植物 - 螨类网络显示出较低的连接度和较高的模块性。鉴于植食性物种必须应对植物防御,而捕食性螨类仅栖息于植物并在其上觅食资源,目前的结果证实了营养网络比共生网络更具专一性这一假设。

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