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首页> 外文期刊>Journal of Comparative Physiology, A. Sensory, Neural, and Behavioral Physiology >Responses of round goby (Neogobius melanostomus) olfactory epithelium to steroids released by reproductive males
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Responses of round goby (Neogobius melanostomus) olfactory epithelium to steroids released by reproductive males

机译:圆虾虎鱼嗅上皮对生殖雄性释放的类固醇的反应

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摘要

The wild perciform teleost Neogobius melanostomus (the round goby) originated from the Ponto-Caspian region and is now a highly successful invasive species in the Laurentian Great Lakes. Males may attract females into their nests for spawning by releasing reproductive pheromones, and it has been previously shown that reproductive males synthesize and release the 5β-reduced and 3α-hydroxyl steroids 3α-hydroxy-5β-androstane-11,17-dione (11-oxo-etiocholanolone; 11-O-ETIO) and 3α-hydroxy-5β-androstane-11,17-dione 3-sulfate (11-oxo-etiocholanolone-3-sulfate; 11-O-ETIO-3-s) and 3α,17β-dihydroxy-5β-androstan-11-one 17-sulfate. In this study, we investigated properties of these released steroids by recording field potential responses from the olfactory epithelium (electro-olfactogram, EOG). The steroid 3α,17β-dihydroxy-5β-androstan-11-one 17-sulfate did not elicit olfactory responses while both 11-O-ETIO and 11-O-ETIO-3-s stimulated olfactory field potentials in the round goby, but not in the goldfish. Cross-adaptation analysis demonstrated that round gobies discriminated between11-O-ETIO and 11-O-ETIO-3-s (as well as etiocholanolone, ETIO) at the sensory level. Second messenger cascades depending on both cAMP and IP_3 were inferred for steroids from pharmacological inhibition studies, while the canonical teleost odors taurocholic acid (a bile acid) and l-alanine (an amino acid) used only cAMP and IP_3, respectively. The round goby presents itself as an excellent species for the study of olfactory function of fish in the wild, given its possible use of these released steroids as pheromones.
机译:野生的硬骨鱼类硬骨鱼类新近生黑螯虾(圆形虾虎鱼)起源于蓬图里海地区,现在是劳伦大湖中非常成功的入侵物种。雄性可能通过释放生殖信息素而吸引雌性进入其巢中产卵,并且先前已证明,生殖雄性合成并释放了5β-还原和3α-羟基类固醇3α-羟基-5β-雄甾烷11,17-二酮(11 -氧代-乙胆醇酮; 11-O-ETIO)和3α-羟基-5β-雄烷酮-11,17-二酮3-硫酸盐(11-氧代-乙胆醇酮-3-硫酸盐; 11-O-ETIO-3-s)和3α,17β-二羟基-5β-雄烷-11-一17硫酸盐。在这项研究中,我们通过记录嗅觉上皮的电场电位反应(电子嗅觉图,EOG)来研究这些释放的类固醇的性质。类固醇3α,17β-二羟基-5β-雄烷-11-一17硫酸盐未引起嗅觉反应,而11-O-ETIO和11-O-ETIO-3-s刺激了圆虾虎鱼的嗅觉场电位,但是不在金鱼中。交叉适应性分析表明,在感觉水平上,轮状虾虎鱼在11-O-ETIO和11-O-ETIO-3-s之间(以及依托胆醇,ETIO)进行区分。从药理学抑制研究中推断类固醇取决于cAMP和IP_3的第二信使级联,而典型的硬骨味牛磺胆酸(胆汁酸)和l-丙氨酸(氨基酸)分别仅使用cAMP和IP_3。由于有可能将这些释放的类固醇用作信息素,因此,这种虾虎鱼是研究野生鱼类嗅觉功能的极佳物种。

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