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A novel artificial habitat collection device for studying resettlementpatterns in anguillid glass eels

机译:一种新型的人工栖息地收集装置,用于研究鳗gu玻璃鳗的安置方式

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摘要

The number of glass eels Anguilla australis and A. reinhardtii caught in artificial habitat collectors, made from a PVC base and polyethylene split rope fibres, was related to the number of rope fibre tufts attached to each collector rather than collector area directly. Ageing of collectors ill situ to promote algal growth enhanced the catch of glass eels. Glass eels entered the collectors at night primarily during the flood tide, and did not move into the collectors during daylight hours. Glass eel abundance increased with increasing distance from the freshwater drain located in the causeway. The artificial habitat collectors are effective for assessing relative numbers of resettling glass eels and may be useful for studying recruitment and settlement patterns of ether anguillid eel species, as well as identifying areas and habitats within a catchment that provide important shelter for glass eels. Sampling glass eels can be carried out with maximum effect and minimum effort using compact, aged artificial habitat collectors on the night lime flood tide when low tide coincides with dusk.
机译:被捕获在人工栖息地收集器中的玻璃鳗鳗(Anguilla australis)和雷氏拟南芥(A. reinhardtii)的数量,是由聚氯乙烯(PVC)基底和聚乙烯分裂的绳状纤维制成的,与附着在每个收集器上的绳状纤维簇的数量有关,而不是直接与收集器区域相关。不适当的收集器老化以促进藻类的生长增强了玻璃鳗的捕获。玻璃鳗主要在洪水潮时在晚上进入收集器,而在白天则没有移入收集器。玻璃鳗的丰度随着与堤道中淡水排水口距离的增加而增加。人工栖息地收集器可以有效地评估安置玻璃鳗的相对数量,并且对于研究以太鳗鳗物种的募集和定居模式,以及识别流域内为玻璃鳗提供重要庇护所的区域和栖息地可能很有用。当潮汐与黄昏相吻合时,在夜灰洪水时,使用紧凑的,老化的人工栖息地采集器,可以以最大的效果和最少的精力进行玻璃鳗采样。

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