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Resting electrical network activity in traps of the aquatic carnivorous plants of the genera Aldrovanda and Utricularia

机译:在Aldrovanda和Utricularia属的水生食肉植物陷阱中的静止电网活动

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摘要

In this study the MEA (multielectrode array) system was used to record electrical responses of intact and halved traps, and other trap-free tissues of two aquatic carnivorous plants, Aldrovanda vesiculosa and Utricularia reflexa. They exhibit rapid trap movements and their traps contain numerous glands. Spontaneous generation of spikes with quite uniform shape, propagating across the recording area, has been observed for all types of sample. In the analysis of the electrical network, higher richer synchronous activity was observed relative to other plant species and organs previously described in the literature: indeed, the time intervals between the synchronized clusters (the inter-spike intervals) create organized patterns and the propagation times vary non-linearly with the distance due to this synchronization. Interestingly, more complex electrical activity was found in traps than in trap-free organs, supporting the hypothesis that the nature of the electrical activity may reflect the anatomical and functional complexity of different organs. Finally, the electrical activity of functionally different traps of Aldrovanda (snapping traps) and Utricularia (suction traps) was compared and some differences in the features of signal propagation were found. According to these results, a possible use of the MEA system for the study of different trap closure mechanisms is proposed.
机译:在这项研究中,MEA(多电极阵列)系统用于记录两个水生食肉植物Aldrovanda vesiculosa和Utricularia reflexa的完整和一半捕集阱以及其他无捕集组织的电响应。它们表现出快速的陷阱运动,并且它们的陷阱包含许多腺体。对于所有类型的样品,都观察到自发产生的尖峰形状非常均匀,并在记录区域中传播。在电网分析中,相对于先前文献中描述的其他植物物种和器官,观察到更高的同步活动:实际上,同步簇之间的时间间隔(峰间间隔)创建了有组织的模式和传播时间由于这种同步,距离随距离呈非线性变化。有趣的是,在诱捕装置中发现的电活动比在无陷阱的器官中更为复杂,这支持了电活动的性质可能反映不同器官的解剖和功能复杂性的假说。最后,比较了功能不同的Aldrovanda(捕食陷阱)和Utricularia(抽吸陷阱)陷阱的电活动,并发现了信号传播特征的一些差异。根据这些结果,建议将MEA系统用于研究不同的疏水阀关闭机制。

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