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Canal type affects invasiveness of the apple snail Pomacea canaliculata through its effects on animal species richness and waterweed invasion

机译:运河类型通过其对动物物种丰富度和水草入侵的影响来影响苹果蜗牛Pomacea canaliculata的入侵。

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摘要

Loss of complex natural microhabitats due to human activity is a major cause of decreased biodiversity but its effects on biological invasion are not well understood. The effects of physical environmental factors, especially the type of agricultural canals, on the invasive freshwater snail Pomacea canaliculata were studied at 33 sites in the Chikugogawa River basin, Kyushu, Japan. Differences among sites in the local fauna and vegetation were also monitored. Structural equation modeling with a model selection procedure revealed that canals with a concrete lining had more snails. The effect was indirect in that the concrete lining reduced animal species richness and increased the invasive waterweed Egeria densa, which may serve as a refuge, protecting the snails from predation. A tethering experiment conducted simultaneously indicated high predation pressure on the snails: over 20% of the tethered snails were lost within a day. Thus, human impacts may increase biological invasion by reducing biotic resistance and increasing the risk of invasional meltdown.
机译:由于人类活动造成的复杂自然微生境的丧失是生物多样性减少的主要原因,但人们对其生物入侵的影响尚不十分清楚。在日本九州的筑后川流域的33个地点研究了物理环境因素(尤其是农渠的类型)对入侵淡水蜗牛Pomacea canaliculata的影响。还监测了当地动植物种群之间的差异。用模型选择程序对结构方程建模表明,带有混凝土衬砌的渠道有更多的蜗牛。其间接效果是混凝土衬砌减少了动物物种的丰富度,并增加了入侵性水草埃塞里亚(Egeria densa),可作为避难所,保护蜗牛不受捕食。同时进行的拴系实验表明,蜗牛的捕食压力较高:一天中有超过20%的拴系蜗牛丢失。因此,人类的影响可能会通过降低生物抵抗力和增加侵袭性融化的风险来增加生物侵袭。

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