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首页> 外文期刊>Zoological Science >Burrow Morphology of Alpheid Shrimps: Case Study of Alpheus brevicristatus and a Review of the Genus
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Burrow Morphology of Alpheid Shrimps: Case Study of Alpheus brevicristatus and a Review of the Genus

机译:Alpheid Shrevicpps的洞穴形态:Alpheus Brevicristatus的案例研究及对属的综述

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The Alpheus brevicristatus De Haan, 1844 is one of the commonest shrimp species inhabiting the tidal flats in Japan. This species is sometimes accompanied by the facultative symbiotic goby, Acentrogobius spp. Here, we investigated the burrow morphology of A. brevicristatus in a tidal flat of Uranouchi Inlet, Kochi Prefecture, Japan. We also reviewed existing literature on alpheid burrow morphology using the resin casting technique, to determine how burrows vary in the presence and absence of gobies. Nine burrows were casted in situ using polyester resin. All burrows were long, but shallow in structure, with several funnel-shaped openings and short cul-de-sac branches. This species appears to use several burrow openings to access the sediment surface for feeding with high efficiency. Gobies were not associated with all burrows cast; however, 1-3 individuals of the small alpheid shrimp Athanas japonicus Kubo, 1936 were entombed in seven of the casts. A review of 12 studies on the burrow morphology of 16 Alpheus species based on resin casting techniques showed wide variation in burrow characteristics, such as burrow depth, length, and number of openings. Our findings suggest that burrow structure is influenced by species-specific characteristics and sediment type. The possibility that the presence of the symbiotic goby affects the burrow morphology of Alpheus shrimp is discussed.
机译:Apheus Brevicristatus de Haan,1844是居住在日本潮汐公寓的最常见的虾类之一。该物种有时伴随着兼校有共生鼠,AceNtrogobius SPP。在这里,我们调查了日本喀里奇县的狂暴平面繁殖的A.Brevicristatus的洞穴形态。我们还使用树脂铸造技术对alpheid洞穴形态进行了审查的现有文献,以确定洞穴在存在和缺乏胶石中的变化。使用聚酯树脂原位铸造九个洞穴。所有洞穴都很长,但结构浅,有几个漏斗形的开口和短的Cul-De-Sac分支。该物种似乎使用多个挖洞开口来进入沉积物表面以高效率喂养。 Gobies没有与所有洞穴施放的所有洞穴相关联;然而,1-3个小型虾虾·山地朱博,1936年的七分之一的施工。基于树脂铸造技术的16个alpheus种类的挖掘机形态研究综述显示洞穴特性的宽变化,如洞穴深度,长度和开口数量。我们的研究结果表明,洞穴结构受特异性特征和沉积物的影响。讨论了共生虎虎的存在的可能性影响了虾的洞穴形态。

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