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首页> 外文期刊>The Journal of Experimental Biology >Proximate and ultimate causes of signal diversity in the electric fish Gymnotus
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Proximate and ultimate causes of signal diversity in the electric fish Gymnotus

机译:电鱼金枪鱼信号多样性的近因和最终原因

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A complete understanding of animal signal evolution necessitates analyses of both the proximate (e.g. anatomical and physiological) mechanisms of signal generation and reception, and the ultimate (i.e. evolutionary) mechanisms underlying adaptation and diversification. Here we summarize the results of a synthetic study of electric diversity in the species-rich neotropical electric fish genus Gymnotus. Our study integrates two research directions. The first examines the proximate causes of diversity in the electric organ discharge (EOD) - which is the carrier of both the communication and electrolocation signal of electric fishes - via descriptions of the intrinsic properties of electrocytes, electrocyte innervation, electric organ anatomy and the neural coordination of the discharge (among other parameters). The second seeks to understand the ultimate causes of signal diversity - via a continent-wide survey of species diversity, species-level phylogenetic reconstructions and field-recorded head-to-tail EOD (ht-EOD) waveforms (a common procedure for characterizing the communication component of electric fish EODs). At the proximate level, a comparative morpho-functional survey of electric organ anatomy and the electromotive force pattern of the EODfor 11 species (representing most major clades) revealed four distinct groups of species, each corresponding to a discrete area of the phylogeny of the genus and to a distinct type of ht-EOD waveform. At the ultimate level, our analyses (which emphasizethe ht-EOD) allowed us to conclude that selective forces from the abiotic environment have had minimal impact on the communication component of the EOD. In contrast, selective forces of a biotic nature - imposed by electroreceptive predators, reproductive interference from heterospecific congeners, and sexual selection - may be important sources of diversifying selection on Gymnotus signals.
机译:对动物信号进化的全面理解需要对信号产生和接收的最接近(例如解剖和生理)机制以及适应和多样化背后的最终(即进化)机制进行分析。在这里,我们总结了物种丰富的新热带电鱼属Gymnotus中电多样​​性的综合研究结果。我们的研究整合了两个研究方向。第一部分通过描述细胞的固有特性,细胞的神经支配,器官的解剖结构和神经,研究了器官放电(EOD)的多样性的近因,EOD是鱼类的通信和电定位信号的载体。排放的协调(以及其他参数)。第二种方法旨在了解信号​​多样性的最终原因-通过全洲范围内的物种多样性调查,物种水平的系统发育重建以及现场记录的头对尾EOD(ht-EOD)波形(表征特征的通用程序)电鱼EOD的通讯组件)。在最接近的水平上,对11种物种(代表大多数主要进化枝)的EOD的电动器官解剖学和电动势模式进行了比较形态功能调查,发现了4种不同的物种,每组分别对应于该属的系统发育的不连续区域。以及不同类型的ht-EOD波形。在最终的水平上,我们的分析(强调ht-EOD)使我们可以得出结论,来自非生物环境的选择性力对EOD的交流成分的影响最小。相比之下,具有生物性质的选择性力(由电感受态掠食者施加,异种同源物的生殖干扰和性选择引起)可能是对Gymnotus信号进行多样化选择的重要来源。

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