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首页> 外文期刊>The Journal of Experimental Biology >Olfactory sensitivity to changes in environmental [Ca2+] in the marine teleost Sparus aurata
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Olfactory sensitivity to changes in environmental [Ca2+] in the marine teleost Sparus aurata

机译:海洋硬骨鱼Sparus aurata对环境[Ca2 +]变化的嗅觉敏感性

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Estuarine and/or migratory teleosts may experience large and rapid changes in external [Ca2+]. Previous studies have largely centred on the physiological mechanisms that maintain a constant plasma [Ca2+] in the face of such external fluctuations, but little work has been directed to examining how these changes may originally be detected. We present evidence that the olfactory system of the gilthead seabream (Sparus aurata) is highly sensitive to reductions in environmental [Ca2+] and suggest a possible mechanism by which this may be mediated, Multi-unit extracellular recordings were made from the olfactory nerve of Sparus aurata while the [Ca2+] of artificial sea water flowing over the olfactory epithelium was varied from 10 to 0 mmol l(-1). Reductions in [Ca2+] caused a large, non-accommodating increase in the firing rate of the olfactory nerve (apparent IC50 = 1.67 +/- 0.26 mmol l(-1), apparent Hill coefficient = -1.22 +/- 0.14; means +/- S.E.M., N = 6), This response was not due to the concomitant reduction in osmolality and was specific for Ca2+, During continuous exposure of the olfactory epithelium to Ca2+-free sea water, the apparent IC50 and Hill coefficient in response to increases in [Ca2+] were 0.48 +/- 0.14 mmol l(-1) and -0.76 +/- 0.16 (means +/- S.E.M., N = 6), respectively, suggesting an adaptation of the Ca2+-sensing system to low-[Ca2+] environments. Ca2+ is intimately involved in signal transduction in the olfactory receptor neurones, but our data support a true olfactory response, rather than a non-specific effect to lowering of external [Ca2+]. The absence of Ca2+ from sea water only partially and temporarily blunted the olfactory response to the odorant L-serine; the response amplitude recovered to control levels within 20 min. This suggests that the olfactory system in general is able to adapt to low-[Ca2+] environments, We suggest that the Ca2+ sensitivity is mediated by an extracellular Ca2+-sensing receptor similar to the recently characterized mammalian Ca2+-sensing receptor. [References: 25]
机译:河口和/或迁徙硬骨可能经历外部[Ca2 +]的大量快速变化。先前的研究主要集中在面对此类外部波动时维持恒定血浆[Ca2 +]的生理机制,但很少有工作致力于检查最初如何检测到这些变化。我们目前的证据表明,金头鲷的嗅觉系统(Sparus aurata)对环境[Ca2 +]的减少高度敏感,并提出了一种可能的介导机制,从Sparus的嗅觉神经进行了多单元细胞外记录流过嗅上皮的人造海水的[Ca2 +]在10到0 mmol l(-1)之间变化。 [Ca2 +]的减少会引起嗅觉神经放电率的大幅度增加(表观IC50 = 1.67 +/- 0.26 mmol l(-1),表观Hill系数= -1.22 +/- 0.14;平均值+ /-SEM,N = 6),此响应不是由于重量克分子渗透压浓度降低,而且对Ca2 +具有特异性,在嗅觉上皮持续暴露于不含Ca2 +的海水中期间,表观IC50和希尔系数随响应增加而增加在[Ca2 +]中,分别为0.48 +/- 0.14 mmol l(-1)和-0.76 +/- 0.16(平均值+/- SEM,N = 6),表明Ca2 +传感系统对低-[ Ca2 +]环境。 Ca2 +与嗅觉受体神经元的信号转导密切相关,但我们的数据支持真正的嗅觉反应,而不是降低外部[Ca2 +]的非特异性作用。海水中Ca2 +的缺失仅部分且暂时减弱了对加味剂L-丝氨酸的嗅觉反应;响应幅度在20分钟内恢复到控制水平。这表明嗅觉系统通常能够适应低[Ca2 +]环境。我们建议,Ca2 +敏感性是由与最近表征的哺乳动物Ca2 +敏感受体相似的细胞外Ca2 +敏感受体介导的。 [参考:25]

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