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信号变异及其在 Paramormyrops kingsleyae 中的形态关联为电鳗目电鱼的电信号多样性进化提供了深入了解。

Signal variation and its morphological correlates in Paramormyrops kingsleyae provide insight into the evolution of electrogenic signal diversity in mormyrid electric fish.

机构信息

Department of Neurobiology and Behavior, Cornell University, Ithaca, NY, USA.

出版信息

J Comp Physiol A Neuroethol Sens Neural Behav Physiol. 2011 Aug;197(8):799-817. doi: 10.1007/s00359-011-0643-8. Epub 2011 Apr 20.

Abstract

We describe patterns of geographic variation in electric signal waveforms among populations of the mormyrid electric fish species Paramormyrops kingsleyae. This analysis includes study of electric organs and electric organ discharge (EOD) signals from 553 specimens collected from 12 localities in Gabon, West-Central Africa from 1998 to 2009. We measured time, slope, and voltage values from nine defined EOD "landmarks" and determined peak spectral frequencies from each waveform; these data were subjected to principal components analysis. The majority of variation in EODs is explained by two factors: the first related to EOD duration, the second related to the magnitude of the weak head-negative pre-potential, P0. Both factors varied clinally across Gabon. EODs are shorter in eastern Gabon and longer in western Gabon. Peak P0 is slightly larger in northern Gabon and smaller in southern Gabon. P0 in the EOD is due to the presence of penetrating-stalked (Pa) electrocytes in the electric organ while absence is due to the presence of non-penetrating stalked electrocytes (NPp). Across Gabon, the majority of P. kingsleyae populations surveyed have only individuals with P0-present EODs and Pa electrocytes. We discovered two geographically distinct populations, isolated from others by barriers to migration, where all individuals have P0-absent EODs with NPp electrocytes. At two sites along a boundary between P0-absent and P0-present populations, P0-absent and P0-present individuals were found in sympatry; specimens collected there had electric organs of intermediate morphology. This pattern of geographic variation in EODs is considered in the context of current phylogenetic work. Multiple independent paedomorphic losses of penetrating stalked electrocytes have occurred within five Paramormyrops species and seven genera of mormyrids. We suggest that this key anatomical feature in EOD signal evolution may be under a simple mechanism of genetic control, and may be easily influenced by selection or drift throughout the evolutionary history of mormyrids.

摘要

我们描述了非洲中西部加蓬 12 个地区的 553 个标本的电鳗科电鱼物种 Paramormyrops kingsleyae 的电信号波形的地理变异模式。该分析包括对电器官和电器官放电(EOD)信号的研究,这些标本是 1998 年至 2009 年间采集的。我们从九个定义的 EOD“地标”测量时间、斜率和电压值,并从每个波形确定峰值光谱频率;这些数据经过主成分分析。EOD 的大部分变异由两个因素解释:第一个与 EOD 持续时间有关,第二个与弱头负前电位 P0 的幅度有关。这两个因素在加蓬呈临床性变化。EOD 在加蓬东部较短,在加蓬西部较长。北部加蓬的峰值 P0 略大,南部加蓬的峰值 P0 较小。EOD 中的 P0 是由于电器官中存在穿透茎(Pa)电细胞,而不存在非穿透茎电细胞(NPp)。在加蓬,调查的大多数 P. kingsleyae 种群只有具有 P0 存在 EOD 和 Pa 电细胞的个体。我们发现了两个地理上不同的种群,它们被迁移障碍与其他种群隔离,其中所有个体的 EOD 都没有 P0,并且具有 NPp 电细胞。在 P0 缺失和 P0 存在种群之间的边界的两个地点,发现了 P0 缺失和 P0 存在个体的同域性;在那里采集的标本具有中间形态的电器官。在当前的系统发育工作的背景下,我们考虑了这种 EOD 的地理变异模式。在五个 Paramormyrops 物种和七个 Mormyridae 属中,已经发生了多个独立的穿透茎电细胞的幼态发生缺失。我们认为,这种 EOD 信号进化中的关键解剖特征可能受到遗传控制的简单机制的影响,并且可能在 Mormyridae 的进化历史中很容易受到选择或漂移的影响。

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