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新兴的挥发性有机化合物监测方法在植物病虫害检测中的应用。

Emerging Methods of Monitoring Volatile Organic Compounds for Detection of Plant Pests and Disease.

机构信息

Faculty of Sustainable Design Engineering, University of Prince Edward Island, Charlottetown, PE C1A 4P3, Canada.

Department of Metallurgy and Materials Engineering, Iskenderun Technical University, Hatay TR-31200, Turkey.

出版信息

Biosensors (Basel). 2022 Apr 13;12(4):239. doi: 10.3390/bios12040239.

Abstract

Each year, unwanted plant pests and diseases, such as Hendel or potato soft rot, cause damage to crops and ecosystems all over the world. To continue to feed the growing population and protect the global ecosystems, the surveillance and management of the spread of these pests and diseases are crucial. Traditional methods of detection are often expensive, bulky and require expertise and training. Therefore, inexpensive, portable, and user-friendly methods are required. These include the use of different gas-sensing technologies to exploit volatile organic compounds released by plants under stress. These methods often meet these requirements, although they come with their own set of advantages and disadvantages, including the sheer number of variables that affect the profile of volatile organic compounds released, such as sensitivity to environmental factors and availability of soil nutrients or water, and sensor drift. Furthermore, most of these methods lack research on their use under field conditions. More research is needed to overcome these disadvantages and further understand the feasibility of the use of these methods under field conditions. This paper focuses on applications of different gas-sensing technologies from over the past decade to detect plant pests and diseases more efficiently.

摘要

每年,亨德尔病或马铃薯软腐病等不受欢迎的植物病虫害都会在世界各地的作物和生态系统中造成破坏。为了继续养活不断增长的人口并保护全球生态系统,对这些病虫害传播的监测和管理至关重要。传统的检测方法通常昂贵、笨重,并且需要专业知识和培训。因此,需要廉价、便携和用户友好的方法。其中包括利用不同的气体传感技术来利用植物在压力下释放的挥发性有机化合物。这些方法通常符合这些要求,尽管它们各自有一系列的优缺点,包括影响挥发性有机化合物释放特征的变量数量之多,例如对环境因素的敏感性以及土壤养分或水的可用性和传感器漂移。此外,这些方法中的大多数都缺乏对其在田间条件下使用的研究。需要进一步研究以克服这些缺点,并进一步了解在田间条件下使用这些方法的可行性。本文重点介绍了过去十年中不同气体传感技术在更有效地检测植物病虫害方面的应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9965/9025064/984a01d3c95c/biosensors-12-00239-g001.jpg

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