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首页> 外文期刊>microsystems & nanoengineering >A magnetically enabled simulation of microgravity represses the auxin response during early seed germination on a microfluidic platform
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A magnetically enabled simulation of microgravity represses the auxin response during early seed germination on a microfluidic platform

机译:微重力的磁性模拟抑制了微流体平台上早期种子萌发过程中的生长素响应

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For plants on Earth, the phytohormone auxin is essential for gravitropism-regulated seedling establishment and plant growth. However, little is known about auxin responses under microgravity conditions due to the lack of a tool that can provide an alteration of gravity. In this paper, a microfluidic negative magnetophoretic platform is developed to levitate Arabidopsis seeds in an equilibrium plane where the applied magnetic force compensates for gravitational acceleration. With the benefit of the microfluidic platform to simulate a microgravity environment on-chip, it is found that the auxin response is significantly repressed in levitated seeds. Simulated microgravity statistically interrupts auxin responses in embryos, even after chemical-mediated auxin alterations, illustrating that auxin is a critical factor that mediates the plant response to gravity alteration. Furthermore, pretreatment with an auxin transportation inhibitor (N-1-naphthylphthalamic acid) enables a decrease in the auxin response, which is no longer affected by simulated microgravity, demonstrating that polar auxin transportation plays a vital role in gravity-regulated auxin responses. The presented microfluidic platform provides simulated microgravity conditions in an easy-to-implement manner, helping to study and elucidate how plants correspond to diverse gravity conditions; in the future, this may be developed into a versatile tool for biological study on a variety of samples.
机译:对于地球上的植物来说,植物激素生长素对于重力调节的幼苗建立和植物生长至关重要。然而,由于缺乏可以改变重力的工具,对微重力条件下的生长素反应知之甚少。本文开发了一种微流控负磁泳平台,将拟南芥种子悬浮在平衡平面上,其中施加的磁力补偿了重力加速度。利用微流控平台在芯片上模拟微重力环境的优势,发现悬浮种子的生长素响应受到显着抑制。模拟的微重力统计中断了胚胎中的生长素反应,即使在化学介导的生长素改变之后,说明生长素是介导植物对重力改变反应的关键因素。此外,用生长素运输抑制剂(N-1-萘基邻苯二甲酸)进行预处理可降低生长素反应,不再受模拟微重力的影响,这表明极性生长素运输在重力调节的生长素反应中起着至关重要的作用。所提出的微流控平台以易于实施的方式提供模拟微重力条件,有助于研究和阐明植物如何对应于不同的重力条件;将来,这可能会发展成为一种用于对各种样品进行生物学研究的多功能工具。

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