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在褐藻 Mutimo cylindricus(Cutleriaceae,Tilopteridales)的雄配子趋化作用中,钙离子对两条鞭毛的调控作用不同。

Distinct regulation of two flagella by calcium during chemotaxis of male gametes in the brown alga Mutimo cylindricus (Cutleriaceae, Tilopteridales).

机构信息

Shimoda Marine Research Center, University of Tsukuba, Shizuoka, Japan.

Graduate School of Environmental Science, Hokkaido University, Sapporo, Hokkaido, Japan.

出版信息

J Phycol. 2024 Apr;60(2):409-417. doi: 10.1111/jpy.13422. Epub 2023 Dec 30.

Abstract

Brown algal male gametes show chemotaxis to the sex pheromone that is released from female gametes. The chemotactic behavior of the male gametes is controlled by the changes in the beating of two flagella known as the anterior and posterior flagellum. Our previous study using Mutimo cylindricus showed that the sex pheromone induced an increment in both the deflection angle of the anterior flagellum and sustained unilateral bend of the posterior flagellum, but the mechanisms regulating these two flagellar waveforms were not fully revealed. In this study, we analyzed the changes in swimming path and flagellar waveforms with a high-speed recording system under different calcium conditions. The extracellular Ca concentration at 10 M caused an increment in the deflection angle of the anterior flagellum only when ionomycin was absent. No sustained unilateral bend of the posterior flagellum was induced either in the absence or presence of ionomycin in extracellular Ca concentrations below 10 M. Real-time Ca imaging revealed that there is a spot near the basal part of anterior flagellum showing higher Ca than in the other parts of the cell. The intensity of the spot slightly decreased when male gametes were treated with the sex pheromone. These results suggest that Ca-dependent changes in the anterior and posterior flagellum are regulated by distinct mechanisms and that the increase in the anterior flagellar deflection angle and sustained unilateral bend of the posterior flagellum may not be primarily induced by the Ca concentration.

摘要

褐藻雄性配子对由雌性配子释放的性信息素表现出趋化性。雄性配子的趋化行为受两个被称为前鞭毛和后鞭毛的鞭毛拍打变化所控制。我们之前对 Mutimo cylindricus 的研究表明,性信息素诱导前鞭毛的偏转角和后鞭毛的持续单侧弯曲增加,但调节这两种鞭毛波形的机制并未完全揭示。在这项研究中,我们在不同的钙离子条件下使用高速记录系统分析了游动路径和鞭毛波形的变化。只有在没有离子霉素的情况下,细胞外 Ca 浓度为 10 μM 时才会引起前鞭毛偏转角的增加。当细胞外 Ca 浓度低于 10 μM 时,即使不存在离子霉素,也不会诱导后鞭毛的持续单侧弯曲。实时 Ca 成像显示,在前鞭毛基部附近有一个区域的 Ca 浓度高于细胞的其他部分。当雄性配子受到性信息素处理时,该斑点的强度略有下降。这些结果表明,前鞭毛和后鞭毛的 Ca 依赖性变化受不同机制的调节,前鞭毛偏转角的增加和后鞭毛的持续单侧弯曲可能不是主要由 Ca 浓度诱导的。

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