毛状体
屈曲
材料科学
不稳定性
拟南芥
模数
生物物理学
细胞壁
拟南芥
植物
复合材料
生物
物理
机械
生物化学
突变体
基因
作者
Han Li,Li Hong Zhou,Jiaojiao Jiao,Shaobao Liu,Zhan Ming Zhang,Tian Jian Lu,Feng Xu
标识
DOI:10.1021/acsami.6b02253
摘要
It has been reported that Arabidopsis thaliana leaf trichome can act as a mechanosensory switch, transducing mechanical stimuli into physiological signals, mainly through a buckling instability to focus external force (e.g., exerted by insects) on the base of trichome. The material and structural properties of trichomes remain largely unknown in this buckling instability. In this report, we mainly focused on material standpoint to explore the possible mechanism facilitating the buckling instability. We observed that the Young’s modulus of trichome cell wall decreased gradually from branch to the base region of trichome. Interestingly, we also found a corresponding decline of calcium concentration on the trichome cell wall. Results of finite element method (FEM) simulation suggested that such a gradient distribution of Young’s modulus significantly promotes force focusing and buckling instability on the base of trichome. It is indicated that Arabidopsis trichome has developed into an active mechanosensor benefiting from gradient cell wall mechanical properties.
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