首页> 外文期刊>The Journal of Experimental Biology >Molecular identification of candidate chemoreceptor genes and signal transduction components in the sensory epithelium of Aplysia.
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Molecular identification of candidate chemoreceptor genes and signal transduction components in the sensory epithelium of Aplysia.

机译:海Ap感官上皮中候选化学感受器基因和信号转导成分的分子鉴定。

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摘要

An ability to sense and respond to environmental cues is essential to the survival of most marine animals. How water-borne chemical cues are detected at the molecular level and processed by molluscs is currently unknown. In this study, we cloned two genes from the marine mollusk Aplysia dactylomela which encode multi-transmembrane proteins. We have performed in situ hybridization that reveals expression and spatial distribution within the long-distance chemosensory organs, the rhinophores. This finding suggests that they could be receptors involved in binding water-borne chemicals and coupling to an intracellular signal pathway. In support of this, we found expression of a phospholipase C and an inositol trisphosphate receptor in the rhinophore sensory epithelia and possibly distributed within outer dendrites of olfactory sensory neurons. In Aplysia, mate attraction and subsequent reproduction is initiated by responding to a cocktail of water-borne protein pheromones released by animal conspecifics. We show that the rhinophore contraction in response to pheromone stimulants is significantly altered following phospholipase C inhibition. Overall, these data provide insight into the molecular components of chemosensory detection in a mollusk. An important next step will be the elucidation of how these coordinate the detection of chemical cues present in the marine environment and activation of sensory neurons.
机译:感知和响应环境提示的能力对于大多数海洋动物的生存至关重要。目前尚不清楚如何在分子水平上检测水基化学线索并由软体动物处理。在这项研究中,我们从海洋软体动物Aplysia dactylomela中克隆了两个编码多跨膜蛋白的基因。我们进行了原位杂交,揭示了长距离化学感应器官,即犀牛体内的表达和空间分布。这一发现表明它们可能是参与结合水性化学物质并偶联至细胞内信号通路的受体。为了支持这一点,我们在鼻咽感觉上皮细胞中发现了磷脂酶C和肌醇三磷酸受体的表达,并可能分布在嗅觉感觉神经元的外部树突中。在Aplysia中,通过响应动物特定物种释放的水性蛋白质信息素的混合物,开始吸引伴侣并随后繁殖。我们显示,响应磷脂刺激物的犀牛收缩在磷脂酶C抑制后显着改变。总体而言,这些数据提供了对软体动物中化学感应检测的分子成分的深入了解。下一步的重要步骤是阐明如何协调检测海洋环境中存在的化学线索和激活感觉神经元。

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