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神经网络在一个假定的退化特征中被发现:鲑鱼鳍的超微结构。

Neural network detected in a presumed vestigial trait: ultrastructure of the salmonid adipose fin.

机构信息

Department of Biology, St Francis Xavier University, Antigonish, Nova Scotia, Canada.

出版信息

Proc Biol Sci. 2012 Feb 7;279(1728):553-63. doi: 10.1098/rspb.2011.1009. Epub 2011 Jul 6.

Abstract

A wide variety of rudimentary and apparently non-functional traits have persisted over extended evolutionary time. Recent evidence has shown that some of these traits may be maintained as a result of developmental constraints or neutral energetic cost, but for others their true function was not recognized. The adipose fin is small, fleshy, non-rayed and located between the dorsal and caudal fins on eight orders of basal teleosts and has traditionally been regarded as vestigial without clear function. We describe here the ultrastructure of the adipose fin and for the first time, to our knowledge, present evidence of extensive nervous tissue, as well as an unusual subdermal complex of interconnected astrocyte-like cells equipped with primary cilia. The fin contains neither adipose tissue nor fin rays. Many fusiform actinotrichia, comprising dense striated macrofibrils, support the free edge and connect with collagen cables that link the two sides. These results are consistent with a recent hypothesis that the adipose fin may act as a precaudal flow sensor, where its removal can be detrimental to swimming efficiency in turbulent water. Our findings provide insight to the broader themes of function versus constraints in evolutionary biology and may have significance for fisheries science, as the adipose fin is routinely removed from millions of salmonids each year.

摘要

多种多样的原始且明显非功能性特征在漫长的进化过程中得以保留。最近的证据表明,其中一些特征可能是由于发育限制或中性能量成本而得以维持,但对于其他特征,其真正的功能尚未被识别。脂鳍小而肉质,无鳍条,位于背鳍和尾鳍之间,在八个基干硬骨鱼目中都有存在,传统上被认为是退化的,没有明确的功能。我们在这里描述了脂鳍的超微结构,据我们所知,这是第一次提供广泛的神经组织的证据,以及一个不寻常的皮下细胞连接的细胞复合物,这些细胞具有初级纤毛。鳍中既没有脂肪组织也没有鳍条。许多梭形肌动蛋白,由密集的条纹状微纤维组成,支撑自由边缘,并与连接两侧的胶原电缆相连。这些结果与最近的一个假设一致,即脂鳍可能充当一个前尾流传感器,其缺失可能对在湍流水中的游泳效率有害。我们的发现为进化生物学中功能与限制的更广泛主题提供了深入的了解,并且可能对渔业科学具有重要意义,因为每年都有数百万吨的鲑鱼被例行地切除脂鳍。

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