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首页> 外文期刊>Scientific reports. >Measuring the Electronic Properties of DNA-Specific Schottky Diodes Towards Detecting and Identifying Basidiomycetes DNA
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Measuring the Electronic Properties of DNA-Specific Schottky Diodes Towards Detecting and Identifying Basidiomycetes DNA

机译:测量特定于DNA的肖特基二极管的电子特性,以检测和鉴定担子菌DNA

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摘要

The discovery of semiconducting behavior of deoxyribonucleic acid (DNA) has resulted in a large number of literatures in the study of DNA electronics. Sequence-specific electronic response provides a platform towards understanding charge transfer mechanism and therefore the electronic properties of DNA. It is possible to utilize these characteristic properties to identify/detect DNA. In this current work, we demonstrate a novel method of DNA-based identification of basidiomycetes using current-voltage (I-V) profiles obtained from DNA-specific Schottky barrier diodes. Electronic properties such as ideality factor, barrier height, shunt resistance, series resistance, turn-on voltage, knee-voltage, breakdown voltage and breakdown current were calculated and used to quantify the identification process as compared to morphological and molecular characterization techniques. The use of these techniques is necessary in order to study biodiversity, but sometimes it can be misleading and unreliable and is not sufficiently useful for the identification of fungi genera. Many of these methods have failed when it comes to identification of closely related species of certain genus like Pleurotus. Our electronics profiles, both in the negative and positive bias regions were however found to be highly characteristic according to the base-pair sequences. We believe that this simple, low-cost and practical method could be useful towards identifying and detecting DNA in biotechnology and pathology.
机译:脱氧核糖核酸(DNA)的半导体行为的发现导致了DNA电子学研究的大量文献。特定于序列的电子响应为了解电荷转移机制以及DNA的电子特性提供了一个平台。可以利用这些特征来识别/检测DNA。在当前的工作中,我们演示了使用DNA特有的肖特基势垒二极管获得的电流-电压(I-V)谱,对担子菌进行基于DNA的鉴定的新方法。计算出电子特性,例如理想因子,势垒高度,分流电阻,串联电阻,导通电压,拐点电压,击穿电压和击穿电流,并与形态学和分子表征技术进行比较,以量化鉴定过程。为了研究生物多样性,必须使用这些技术,但是有时可能会产生误导和不可靠,并且对于鉴定真菌属还不够有用。这些方法中的许多方法在鉴定某些属(如侧耳属)的密切相关物种时都失败了。然而,根据碱基对序列,我们发现在负偏置区域和正偏置区域中的电子分布图都具有很高的特性。我们认为,这种简单,低成本和实用的方法可能有助于鉴定和检测生物技术和病理学中的DNA。

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