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硬骨鱼的下颌内关节:一种使鱼类能够获取吸食性捕食者无法得到的猎物的机制。

The Teleost Intramandibular Joint: A mechanism That Allows Fish to Obtain Prey Unavailable to Suction Feeders.

作者信息

Gibb Alice C, Staab Katie, Moran Clinton, Ferry Lara A

机构信息

*Department of Biology, Northern Arizona University, Flagstaff, AZ 86011-5640, USA; Biology Department, McDaniel College, Westminster, MD 21157, USA; School of Mathematical and Natural Sciences, Arizona State University, Glendale, AZ 85069-7100, USA

*Department of Biology, Northern Arizona University, Flagstaff, AZ 86011-5640, USA; Biology Department, McDaniel College, Westminster, MD 21157, USA; School of Mathematical and Natural Sciences, Arizona State University, Glendale, AZ 85069-7100, USA.

出版信息

Integr Comp Biol. 2015 Jul;55(1):85-96. doi: 10.1093/icb/icv042. Epub 2015 May 21.

Abstract

Although the majority of teleost fishes possess a fused lower jaw (or mandible), some lineages have acquired a secondary joint in the lower jaw, termed the intramandibular joint (IMJ). The IMJ is a new module that formed within the already exceptionally complex teleost head, and disarticulation of two bony elements of the mandible potentially creates a "double-jointed" jaw. The apparent independent acquisition of this new functional module in divergent lineages raises a suite of questions. (1) How many teleostean lineages contain IMJ-bearing species? (2) Does the IMJ serve the same purpose in all teleosts? (3) Is the IMJ associated with altered feeding kinematics? (4) Do IMJ-bearing fishes experience trade-offs in other aspects of feeding performance? (5) Is the IMJ used to procure prey that are otherwise unavailable? The IMJ is probably under-reported, but has been documented in at least 10 lineages within the Teleostei. Across diverse IMJ-bearing lineages, this secondary joint in the lower jaw serves a variety of functions, including: generating dynamic out-levers that allow fish to apply additional force to a food item during jaw closing; allowing fish to "pick" individual prey items with pincer-like jaws; and facilitating contact with the substrate by altering the size and orientation of the gape. There are no consistent changes in feeding kinematics in IMJ-bearing species relative to their sister taxa; however, some IMJ-bearing taxa produce very slow movements during the capture of food, which may compromise their ability to move prey into the mouth via suction. Despite diversity in behavior, all IMJ-bearing lineages have the ability to remove foods that are physically attached to the substrate or to bite off pieces from sessile organisms. Because such prey cannot be drawn into the mouth by suction, the IMJ provides a new mechanism that enables fish to obtain food that otherwise would be unavailable.

摘要

虽然大多数硬骨鱼的下颌(或颌骨)是融合的,但一些谱系在下颌中获得了一个二级关节,称为下颌内关节(IMJ)。IMJ是在已经异常复杂的硬骨鱼头内形成的一个新模块,下颌两个骨元件的脱臼可能会产生一个“双关节”颌。在不同谱系中这种新功能模块的明显独立获得引发了一系列问题。(1)有多少硬骨鱼谱系包含具有IMJ的物种?(2)IMJ在所有硬骨鱼中是否具有相同的功能?(3)IMJ是否与改变的摄食运动学相关?(4)具有IMJ的鱼类在摄食性能的其他方面是否经历权衡?(5)IMJ是否用于获取其他方式无法获得的猎物?IMJ可能未被充分报道,但已在硬骨鱼纲内至少10个谱系中得到记录。在各种具有IMJ的谱系中,下颌中的这个二级关节具有多种功能,包括:产生动态外杠杆,使鱼在颌关闭时能够对食物施加额外的力;使鱼能够用钳子状的颌“挑选”单个猎物;以及通过改变口裂的大小和方向促进与底物的接触。相对于其姐妹类群,具有IMJ的物种在摄食运动学上没有一致的变化;然而,一些具有IMJ的类群在捕获食物时会产生非常缓慢的运动,这可能会损害它们通过吸力将猎物移入口腔的能力。尽管行为存在差异,但所有具有IMJ的谱系都有能力去除附着在底物上的食物或从固着生物上咬下碎片。因为这种猎物不能通过吸力被吸入口腔,IMJ提供了一种新机制,使鱼能够获得其他方式无法获得的食物。

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