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首页> 外文期刊>Hydrobiologia >Predatory impacts of the invasive 'killer shrimp' Dikerogammarus villosus on a resident amphipod and isopod (Crustacea: Malacostraca) are influenced by water quality and habitat type
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Predatory impacts of the invasive 'killer shrimp' Dikerogammarus villosus on a resident amphipod and isopod (Crustacea: Malacostraca) are influenced by water quality and habitat type

机译:侵袭性“杀手虾”Dikerogammarus Villosus对常驻Amphipod和Isopod(甲壳成分:Malacostraca)的掠夺性影响受水质和栖息地类型的影响

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The Ponto-Caspian amphipod Dikerogammarus villosus has invaded Central European and British freshwaters and its arrival is associated with biodiversity decline, as D. villosus is predatory towards many macroinvertebrate taxa, including resident amphipods such as Crangonyx pseudogracilis and isopods such as Asellus aquaticus. I investigated how differential physiological tolerance, habitat use and predation may drive coexistence or exclusion among D. villosus and resident supertramp' prey such as C. pseudogracilis. Experiments revealed that D. villosus could not survive 12h in the extremely poor water qualities that C. pseudogracilis and A. aquaticus commonly live. Experiments manipulating oxygen levels, revealed low survivorship of C. pseudogracilis and A. aquaticus in the presence of D. villosus at higher oxygen levels but this survivorship increased significantly as oxygen levels fell. Predation of C. pseudogracilis by a resident amphipod Gammarus pulex followed a similar pattern but was much less severe and A. aquaticus appeared resistant to G. pulex predation. Mesocosm experiments showed that C. pseudogracilis survivorship in the presence of D. villosus increased when dense vegetation was present compared to bare substrate. Survivorship of A. aquaticus was uniformly poor in all habitats. Taxa with high environmental tolerance and adaptability may be resistant to this invader's worst impacts.
机译:Ponto-Caspian Amphipod Dikerogammarus Villosus已入侵中欧和英国菜肴,其到来与生物多样性下降有关,因为D. Villosus是许多大型大型动物群的追查,包括Crangonyx Pseudogracilis和asellus aquaticus等常见症的居民Amphipods。我调查了差异的生理耐受性,栖息地使用和捕食可能会驱使D. Villosus和居民高级频率等C.Pseudogracilis之间的共存或排除。实验表明,D. villosus无法在C.Pseudogracilis和Aquaticus常存的极低的水质中生存12小时。实验操纵氧气水平,揭示了在D. villosus在较高的氧水平的D. villosus的情况下低生存,并且这种生存率随着氧气水平下降而增加显着增加。常驻Amphipod Gammarus Pumarus Pumarus Pumarus Pupaudogracilis的捕食遵循类似的图案,但严重严重,A. Aquaticus出现抗G. Pulex捕食。 Mesocosm实验表明,与裸衬底相比,在存在茂密的植被时,C.Pseudogracilis生存。所有栖息地都均匀地贫穷的救生。具有高环境耐受性和适应性的分类群可能抵抗这种入侵者的最严重的影响。

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