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Characterization of TRPA channels in the starfish Patiria pectinifera: involvement of thermally activated TRPA1 in thermotaxis in marine planktonic larvae

机译:海星Patiria pectinifera中TRPA通道的表征:热激活的TRPA1参与海洋浮游幼虫的热趋向性

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摘要

The vast majority of marine invertebrates spend their larval period as pelagic plankton and are exposed to various environmental cues. Here we investigated the thermotaxis behaviors of the bipinnaria larvae of the starfish, Patiria pectinifera, in association with TRPA ion channels that serve as thermal receptors in various animal species. Using a newly developed thermotaxis assay system, we observed that P. pectinifera larvae displayed positive thermotaxis toward high temperatures, including toward temperatures high enough to cause death. In parallel, we identified two TRPA genes, termed PpTRPA1 and PpTRPA basal, from this species. We examined the phylogenetic position, spatial expression, and channel properties of each PpTRPA. Our results revealed the following: (1) The two genes diverged early in animal evolution; (2) PpTRPA1 and PpTRPA basal are expressed in the ciliary band and posterior digestive tract of the larval body, respectively; and (3) PpTRPA1 is activated by heat stimulation as well as by known TRPA1 agonists. Moreover, knockdown and rescue experiments demonstrated that PpTRPA1 is involved in positive thermotaxis in P. pectinifera larvae. This is the first report to reveal that TRPA1 channels regulate the behavioral response of a marine invertebrate to temperature changes during its planktonic larval period.
机译:绝大多数海洋无脊椎动物将其幼体作为浮游浮游生物度过,并受到各种环境因素的影响。在这里,我们研究了海星双歧小虫(Padiria pectinifera)的双pinnaria幼虫与在各种动物物种中用作热受体的TRPA离子通道相关的热出租车行为。使用新开发的热出租车化验系统,我们观察到果胶假单胞菌幼虫对高温(包括对足以引起死亡的高温)表现出正热出租车性。同时,我们从该物种中鉴定了两个TRPA基因,分别称为PpTRPA1和PpTRPA基础。我们检查了每个PpTRPA的系统发生位置,空间表达和通道特性。我们的研究结果表明:(1)这两个基因在动物进化的早期分化; (2)PpTRPA1和PpTRPA的基底表达分别在幼虫的睫状带和后消化道中表达; (3)通过热刺激以及已知的TRPA1激动剂激活PpTRPA1。此外,击倒和抢救实验表明,PpTRPA1参与了果胶假单胞菌幼虫的正热趋向性。这是第一个揭示TRPA1通道调节海洋无脊椎动物在其浮游幼虫期对温度变化的行为响应的报告。

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