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Influence of Electric Fields and Conductivity on Pollen Tube Growth assessed via Electrical Lab-on-Chip

机译:电场和电导率对通过电气实验室评估花粉管生长的影响

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Pollen tubes are polarly growing plant cells that are able to rapidly respond to a combination of chemical, mechanical, and electrical cues. This behavioural feature allows them to invade the flower pistil and deliver the sperm cells in highly targeted manner to receptive ovules in order to accomplish fertilization. How signals are perceived and processed in the pollen tube is still poorly understood. Evidence for electrical guidance in particular is vague and highly contradictory. To generate reproducible experimental conditions for the investigation of the effect of electric fields on pollen tube growth we developed an Electrical Lab-on-Chip (ELoC). Pollen from the species Camellia displayed differential sensitivity to electric fields depending on whether the entire cell or only its growing tip was exposed. The response to DC fields was dramatically higher than that to AC fields of the same strength. However, AC fields were found to restore and even promote pollen growth. Surprisingly, the pollen tube response correlated with the conductivity of the growth medium under different AC frequencies—consistent with the notion that the effect of the field on pollen tube growth may be mediated via its effect on the motion of ions.
机译:花粉管是极性生长的植物细胞,能够迅速响应化学,机械和电气线的组合。该行为特征允许它们侵入花雌蕊并以高靶向的方式递送精子细胞以实现施肥。如何在花粉管中被感知和加工信号仍然清晰。特别是电气指导的证据是模糊和高度矛盾的。为了为调查电场对花粉管生长效果的调查产生可重复的实验条件,我们开发了电气实验室(ELOC)。根据整个电池或仅暴露其生长尖端,山灰花的种类来自山灰叶的花粉显示对电场的差异敏感性。对DC字段的响应显着高于相同强度的交流场。然而,发现交流田恢复甚至促进花粉生长。令人惊讶的是,花粉管响应与在不同AC频率下的生长培养基的电导率相关 - 与该观念一致,即可以通过其对离子的运动介导的田间对花粉生长的影响。

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