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解开河口虾对栖息地结构建筑组成部分的反应。

Decoupling the response of an estuarine shrimp to architectural components of habitat structure.

作者信息

Crooks Jeffrey A, Chang Andrew L, Ruiz Gregory M

机构信息

Tijuana River National Estuarine Research Reserve, Imperial Beach, CA, United States; Smithsonian Environmental Research Center, Tiburon, California, United States.

Smithsonian Environmental Research Center , Tiburon, California , United States.

出版信息

PeerJ. 2016 Aug 2;4:e2244. doi: 10.7717/peerj.2244. eCollection 2016.

Abstract

In order to explore biotic attraction to structure, we examined how the amount and arrangement of artificial biotic stalks affected responses of a shrimp, Palaemon macrodactylus, absent other proximate factors such as predation or interspecific competition. In aquaria, we tested the effect of differing densities of both un-branched and branched stalks, where the amount of material in the branched stalk equaled four-times that of the un-branched. The results clearly showed that it was the amount of material, not how it was arranged, that elicited responses from shrimp. Also, although stalks were not purposefully designed to mimic structural elements found in nature, they did resemble biogenic structure such as hydroids, algae, or plants. In order to test shrimp attraction to a different, perhaps more unfamiliar habitat type, we examined responses to plastic "army men." These structural elements elicited similar attraction of shrimp, and, in general, shrimp response correlated well with the fractal dimension of both stalks and army men. Overall, these results indicate that attraction to physical structure, regardless of its nature, may be an important driver of high abundances often associated with complex habitats.

摘要

为了探究生物对结构的吸引力,我们研究了人工生物茎杆的数量和排列如何影响一种虾(大指长臂虾)的反应,同时排除了诸如捕食或种间竞争等其他近因。在水族箱中,我们测试了不同密度的无分支和有分支茎杆的影响,其中有分支茎杆中的物质含量是无分支茎杆的四倍。结果清楚地表明,引发虾反应的是物质的数量,而非其排列方式。此外,尽管茎杆并非特意设计来模仿自然界中发现的结构元素,但它们确实类似于生物成因结构,如水螅、藻类或植物。为了测试虾对另一种可能更不熟悉的栖息地类型的吸引力,我们研究了虾对塑料“玩具兵”的反应。这些结构元素引发了虾类似的吸引力,总体而言,虾的反应与茎杆和玩具兵的分形维数密切相关。总体而言,这些结果表明,对物理结构的吸引力,无论其性质如何,可能是与复杂栖息地相关的高丰度的一个重要驱动因素。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4791/4975033/00966550d013/peerj-04-2244-g001.jpg

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