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Early characterization method of plant root adaptability to soil environments

机译:植物根系对土壤环境适应性的早期表征方法

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This paper reports an on-chip analytical method for studying physical mechanisms of plant root growth in soil environments. To quantitatively evaluate physical interaction between root and soil, we developed a silicon-based microchannel device integrated with force displacement sensor which mimics a barrier in soil. By using developed microsystem, we successfully characterized the driving forces of root growth in three kinds of plants including Arabidopsis thaliana, which is known as a model organism. This analytical method allows us to efficiently characterize potential adaptability of root system to soil environments at early growth stage. The gaining knowledge might contribute for breed improvement, in terms of increasing crop productivity and plant biomass.
机译:本文报告了一种芯片分析方法,用于研究土壤环境中植物根系生长的物理机制。为了定量评估根与土壤之间的物理相互作用,我们开发了一种与力位移传感器集成在一起的基于硅的微通道设备,该传感器模拟了土壤中的屏障。通过使用发达的微系统,我们成功地表征了包括拟南芥在内的三种植物拟南芥中根生长的驱动力。这种分析方法使我们能够有效地表征根系在生长早期对土壤环境的潜在适应性。在增加作物生产力和植物生物量方面,获得的知识可能有助于品种改良。

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