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植物对环境机械刺激的运动响应——理解防御捕食者

Plant Movement Response to Environmental Mechanical Stimulation Toward Understanding Predator Defense.

机构信息

Department of Mechanical Engineering, Carnegie Mellon University, Pittsburgh, PA, 15213, USA.

Department of Biological Sciences, Carnegie Mellon University, Pittsburgh, PA, 15213, USA.

出版信息

Adv Sci (Weinh). 2024 Oct;11(40):e2404578. doi: 10.1002/advs.202404578. Epub 2024 Aug 29.

Abstract

Plants are fascinating living systems, possessing starkly different morphology to mammals, yet they have still evolved ways to defend themselves, consume prey, communicate, and in the case of plants like Mimosa pudica even move in response to a variety of stimuli. The complex physiological pathways driving this are of great interest, though many questions remain. In this work, a known responsive plant, M. pudica is mechanically stimulated, in terms of wounding via removal of pinnae, nonwounding mechanical poking, and nonwounding pulses of air through a designed small nozzle approach. Removal of clusters called pinnae resulted in rapid, asymmetric response in the adjacent pinnae, while mechanical poking and air pulse responses are slower and more localized. Additionally, while the response from poking propagated across the plant, wind stimuli consistently resulted in the actuation of only the leaflets directly stimulated, suggesting unique sensing mechanisms. Mechanical damage may imply a potential predator, while mechanical stimulation from airflow may be processed as wind, which is of little danger. These findings demonstrate an intricate, stimulant-dependent mechanical sensing process, which is important in plant physiology, mechanobiology, and future biohybrid soft robotic designs.

摘要

植物是迷人的生命系统,与哺乳动物有着截然不同的形态,但它们仍然进化出了多种自我防御、捕食、交流的方式,甚至有些植物,如含羞草,还能对各种刺激做出反应。这些复杂的生理途径引起了人们的极大兴趣,但仍有许多问题尚未解决。在这项工作中,我们以一种已知的响应型植物含羞草为研究对象,通过去除小叶、非损伤性机械戳刺和通过设计的小喷嘴吹气等方式对其进行机械刺激。去除小叶簇会导致相邻小叶迅速、不对称地反应,而机械戳刺和空气脉冲的反应则较慢且更局限。此外,虽然戳刺引起的反应会在整株植物上传播,但风刺激始终只会引发直接受刺激的小叶的运动,这表明存在独特的传感机制。机械损伤可能意味着潜在的捕食者,而气流产生的机械刺激则可能被视为风,这对植物没有什么危险。这些发现表明存在一种复杂的、依赖于刺激的机械传感过程,这对于植物生理学、机械生物学和未来的生物混合软机器人设计都非常重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4e38/11516152/7666947f71d6/ADVS-11-2404578-g004.jpg

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