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首页> 外文期刊>Aquatic Ecology >Aquatic insects associated with two morphologically different submerged macrophytes, Lagarosiphon ilicifolius and Vallisneria aethiopica, in small fishless ponds
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Aquatic insects associated with two morphologically different submerged macrophytes, Lagarosiphon ilicifolius and Vallisneria aethiopica, in small fishless ponds

机译:在小型无鱼塘中,与两种形态不同的沉水植物Lagarosiphon ilicifolius和Vallisneria aethiopica相关的水生昆虫

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摘要

The study assessed the composition and abundance of insect assemblages associated with two submerged macrophytes, Lagarosiphon ilicifolius and Vallisneria aethiopica, in fishless ponds. Six ponds were used, with each plant occurring singly in two ponds, whilst the remainder had both plants. The insects were sampled using a 500-mu m mesh. The number of insect taxa, diversity and total abundance on Lagarosiphon were greater than on Vallisneria when the plants occurred in separate ponds. In ponds comprising both plants, the total insect abundance on Lagarosiphon was greater than on Vallisneria. In all ponds, anisopteran naiads were dominant. Hemicordulia, Diplacodes and Trithemis made up 36.2, 27.1 and 15.2%, respectively, of the total number of insects on Lagarosiphon in single plant ponds. Trithemis was the only odonate in ponds comprised exclusively of Vallisneria and made up 68.7% of insects. In ponds that were cultured with both plants, four anisopteran taxa, Hemicordulia, Diplacodes, Trithemis and Tramea, were collected. In single plant ponds, the body-size class distribution of naiads on Lagarosiphon was characterised by a broader range, with significantly greater numbers of smaller and larger size classes than on Vallisneria (Kolmogorov-Smirnov test, P < 0.05). The study shows that in fishless waters, epiphytic insect assemblages may differ between the two plant species, especially when they are widely separated in space, probably due to greater predator-prey interactions on Vallisneria than on Lagarosiphon. The two plants may also differentially affect water physicochemical conditions, which may possibly influence insect ovipositing behaviour, and so affect insect community assemblage.
机译:该研究评估了无鱼池塘中与两种淹没的大型植物Lagarosiphon ilicifolius和Vallisneria aethiopica相关的昆虫组合的组成和丰富度。使用了六个池塘,每个植物都单独出现在两个池塘中,而其余的都有两个植物。使用500微米筛孔对昆虫进行采样。当植物在不同的池塘中生长时,Lagarosiphon上的昆虫分类单元的数量,多样性和总丰度均大于Vallisneria。在包含两种植物的池塘中,Lagarosiphon上的总昆虫丰度高于Vallisneria。在所有的池塘中,无翅opter科鱼类是主要的。在单株植物池塘中,Lamicosdulia,Diplacodes和Trithemis分别占Lagarosiphon昆虫总数的36.2%,27.1%和15.2%。 Trithemis是池塘中唯一由Vallisneria组成的唯一卵酸盐,占昆虫的68.7%。在用两种植物培养的池塘中,收集了四个无翅类类群,半翅类,双斑类,Trithemis和Tramea。在单一植物池塘中,Lagarosiphon上naiads的体型大小分布特征是范围较宽,大小和等级级别明显高于Vallisneria(Kolmogorov-Smirnov检验,P <0.05)。研究表明,在无鱼水域中,两种植物之间的附生昆虫组合可能会有所不同,特别是当它们在空间上广泛分开时,这可能是由于Vallisneria上的捕食者与猎物的相互作用比Lagarosiphon更大。两种植物还可能差异地影响水的理化条件,这可能会影响昆虫的产卵行为,从而影响昆虫的群落组成。

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