鱼属内和属间杂交:电器官个体发生的生理和组织学研究

Frank Kirschbaum , Linh Nguyen , Stephanie Baumgartner , Hiu Wan Linda Chi , Rene Wolfart , Khouloud Elarbani , Hari Eppenstein , Yevheniia Korniienko , Lilian Guido-Böhm , Victor Mamonekene , Marianne Vater , Ralph Tiedemann
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引用次数: 13

摘要

非洲弱电鱼的电器官放电(EOD)在属间和属内均表现出高度的多样性。由于最近开发了一种人工繁殖技术,我们能够在不同属之间和一个属(Campylomormyrus)内进行杂交。属间杂交的杂种表现出不同程度的成活率降低,这与亲本种的系统发育距离有关:舌蝉与其姊妹属Gnathonemus杂交的杂种成活率和发育正常。C. rhynchophorus和Mormyrus (Campylomormyrus s相比是一个更基础的分支)之间的杂交物种存活了42天,并发育出许多畸形,例如在不成对的鳍的水平上。在胚胎发育过程中,C. numenius和pictus(一种衍生分支,与Campylomormyrus仅有远亲关系)之间的杂交只存活了两天。对5种弯曲菌(C. tamandua、C. compressirostris、C. tshokwe、C. rhynchophorus、C. numenius)进行了8种不同的杂交组合。杂交的目的是结合具有(1)支配电器官中电细胞的主茎的尾侧或吻侧位置的物种;(2)其EOD持续时间短、中或长。这些杂交种,虽然它们仍然是幼体,但在电细胞几何形状以及EOD形式和持续时间方面表现出非常有趣的特征:茎的尾端位置比吻端位置更占优势,茎的穿透性比非穿透性更占优势(在Campylomormyrus杂交种中);而舌骨螯虾与小齿螯虾的杂交则相反。当长、短od值的物种杂交时,杂种中表达的总是长od值。红绒螯蟹与扁绒螯蟹杂交f1 -杂种可育,人工繁殖可获得活鱼f2 -。
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Intragenus (Campylomormyrus) and intergenus hybrids in mormyrid fish: Physiological and histological investigations of the electric organ ontogeny

African weakly electric mormyrid fish show a high diversity of their electric organ discharge (EOD) both across and within genera. Thanks to a recently developed technique of artificial reproduction in mormyrid fish, we were able to perform hybridizations between different genera and within one genus (Campylomormyrus). The hybrids of intergenus hybridizations exhibited different degrees of reduced survival related to the phylogenetic distance of the parent species: hybrids of the crosses between C. rhynchophorus and its sister genus Gnathonemus survived and developed normally. Hybrids between C. rhynchophorus and a Mormyrus species (a more basal clade compared to Campylomormyrus s) survived up to 42 days and developed many malformations, e.g., at the level of the unpaired fins. Hybrids between C. numenius and Hippopotamyrus pictus (a derived clade, only distantly related to Campylomormyrus) only survived for two days during embryological development. Eight different hybrid combinations among five Campylomormyrus species (C. tamandua, C. compressirostris, C. tshokwe, C. rhynchophorus, C. numenius) were performed. The aim of the hybridizations was to combine species with (1) either caudal or rostral position of the main stalk innervating the electrocytes in the electric organ and (2) short, median or long duration of their EOD. The hybrids, though they are still juveniles, show very interesting features concerning electrocyte geometry as well as EOD form and duration: the caudal position of the stalk is prevailing over the rostral position, and the penetration of the stalk is dominant over the non-penetrating feature (in the Campylomormyrus hybrids); in the hybrid between C. rhynchophorus and Gnathonemus petersii it is the opposite. When crossing species with long and short EODs, it is always the long duration EOD that is expressed in the hybrids. The F1-Hybrids of the cross C. tamandua × C. compressirostris are fertile: viable F2-fish could be obtained with artificial reproduction.

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来源期刊
Journal of Physiology-Paris
Journal of Physiology-Paris 医学-神经科学
CiteScore
2.02
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0.00%
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0
审稿时长
>12 weeks
期刊介绍: Each issue of the Journal of Physiology (Paris) is specially commissioned, and provides an overview of one important area of neuroscience, delivering review and research papers from leading researchers in that field. The content will interest both those specializing in the experimental study of the brain and those working in interdisciplinary fields linking theory and biological data, including cellular neuroscience, mathematical analysis of brain function, computational neuroscience, biophysics of brain imaging and cognitive psychology.
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Editorial Automated detection of high-frequency oscillations in electrophysiological signals: Methodological advances Digital hardware implementation of a stochastic two-dimensional neuron model Recent progress in multi-electrode spike sorting methods Retrospectively supervised click decoder calibration for self-calibrating point-and-click brain–computer interfaces
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