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Analysis and feasibility study of plant disease using e-nose

机译:e-鼻子的植物疾病分析与可行性研究

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Agriculture is one of the main sources that contribute to the economic development in the country. However, diseases that attack the crops have given a little impact to the agricultural production. Generally, plant pathologist has the difficulties to detect the symptoms that relate to the plant disease. The plant usually gets infected that are caused by different plant pathogens such as bacteria, fungus and virus that attack the plant. Therefore, some method of solution needs to be uncounted in order to provide faster solution in detecting this disease. In order to overcome this problem, the current study proposes detection of plant disease using an electronic nose (e-nose) called PEN3 e-nose. This type of e-nose will detect the volatile organic compounds that are produced by two types of plants which are chilies and papaya. The data that have been collected from PEN3 e-nose are processed using principal component analysis (PCA) and linear discriminant analysis (LDA) methods. In order to validate the detection result, the bacteria sample will be stained based on Gram staining procedure in order to observe the structure and colony of the bacteria cells using a digital microscope. Thus, this study shows that the PEN3 e-nose is able to detect the presence of plant pathogenic bacteria on both chilli and papaya plants.
机译:农业是有助于该国经济发展的主要来源之一。然而,攻击作物疾病已给农业生产的影响很小。一般来说,植物病理学家有困难,检测涉及植物病害的症状。该工厂通常被感染由不同的植物病原体如细菌,真菌和病毒攻击的植物引起的。因此,需要为了检测这种疾病提供更快的解决方案将被无数的解决方案的一些方法。为了克服这个问题,目前的研究提出了利用所谓PEN3电子鼻电子鼻(电子鼻)植物病害的检测。这种类型的电子鼻的将检测由两种类型的是辣椒和木瓜植物产生的挥发性有机化合物。已经从PEN3电子鼻收集的数据是使用主成分分析(PCA)和线性判别分析(LDA)的方法进行处理。为了验证该检测结果,细菌样品将基于革兰氏染色以观察使用数字显微镜细菌细胞的结构和集落过程染色。因此,本研究表明,PEN3电子鼻能够检测两个辣椒和木瓜植物植物病原细菌的存在。

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