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Maximal Force Characteristics of the Ca2+-Powered Actuator of Vorticella convallaria

机译:Ca2 +致动性涡虫的最大致动力特性

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摘要

The millisecond stalk contraction of the sessile ciliate Vorticella convallaria is powered by energy from Ca2+ binding to generate contractile forces of ∼10 nN. Its contractile organelle, the spasmoneme, generates higher contractile force under increased stall resistances. By applying viscous drag force to contracting V. convallaria in a microfluidic channel, we observed that the mechanical force and work of the spasmoneme depended on the stalk length, i.e., the maximum tension (150–350 nN) and work linearly depended on the stalk length (∼2.5 nN and ∼30 fJ per 1 μm of the stalk). This stalk-length dependency suggests that motor units of the spasmoneme may be organized in such a way that the mechanical force and work of each unit cumulate in series along the spasmoneme.
机译:无柄纤毛虫室性弧菌的毫秒级茎杆收缩由Ca 2 + 结合产生的能量驱动,产生约10 nN的收缩力。它的收缩细胞器,痉挛,在增加的失速阻力下产生更高的收缩力。通过将粘性阻力施加到微流体通道中的收缩性V.valvalia,我们观察到,痉挛的机械力和功取决于茎的长度,即最大张力(150-350 nN),并且线性地取决于茎长度(每1μm秸秆约2.5 nN和约30 fJ)。这种对茎长的依赖性表明,痉挛素的运动单元的组织方式应使每个单元的机械力和功沿着痉挛素堆积成串。

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