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捕蝇草陷阱关闭的能量和力。

Energetics and forces of the Dionaea muscipula trap closing.

机构信息

Department of Chemistry and Biochemistry, Oakwood University, Huntsville, 7000 Adventist Blvd., AL 35896, USA.

出版信息

J Plant Physiol. 2012 Jan 1;169(1):55-64. doi: 10.1016/j.jplph.2011.08.003. Epub 2011 Sep 9.

Abstract

The Venus flytrap is the most famous carnivorous plant. The electrical stimulus between a midrib and a lobe closes the Venus flytrap upper leaf in 0.3s without mechanical stimulation of trigger hairs. Here we present results for direct measurements of the closing force of the trap of Dionaea muscipula Ellis after mechanical or electrical stimulation of the trap using the piezoelectric thin film or Fuji Prescale indicating sensor film. The closing force was 0.14N and the corresponding pressure between rims of two lobes was 38 kPa. We evaluated theoretically using the Hydroelastic Curvature Model and compared with experimental data velocity, acceleration and kinetic energy from the time dependencies of distance between rims of lobes during the trap closing. The Charge Stimulation Method was used for trap electrostimulation between the midrib and lobes. From the dependence of voltage between two Ag/AgCl electrodes in the midrib and one of the lobes, we estimated electrical charge, current, resistance, electrical energy and electrical power dependencies on time during electrostimulation of the trap.

摘要

捕蝇草是最著名的肉食性植物。在没有触发毛机械刺激的情况下,中脉和裂片之间的电刺激会在 0.3s 内关闭捕蝇草的上叶片。在这里,我们使用压电薄膜或富士 Prescale 指示传感器薄膜对捕蝇草的陷阱进行机械或电刺激后,直接测量了捕蝇草的闭合力的结果。闭合力为 0.14N,相应的两个裂片之间边缘的压力为 38kPa。我们使用 Hydroelastic Curvature Model 进行了理论评估,并与实验数据进行了比较,实验数据是从触须关闭过程中两个裂片边缘之间的距离随时间的变化得出的速度、加速度和动能。使用电荷刺激方法对中脉和裂片之间的触须进行电刺激。从中脉和一个裂片之间的两个 Ag/AgCl 电极之间的电压依赖性,我们估计了触须电刺激过程中电荷、电流、电阻、电能和电功率随时间的变化。

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