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Temporal Dynamics and Electronic Nose Detection of Stink Bug-Induced Volatile Emissions from Cotton Bolls

机译:棉铃虫臭虫诱导燃烧挥发排放的时间动态和电子鼻子检测

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摘要

Management decisions for stink bugs (Pentatomidae) in Bt cotton are complicated by time-consuming sampling methods, and there is a need for more efficient detection tools. Volatile compounds are released from cotton bolls in response to feeding by stink bugs, and electronic nose (E-nose) technology may be useful for detecting boll damage. In this study, we investigated the temporal dynamics of volatile emissions in response to feeding by stink bugs and tested the ability of E-nose to discriminate between odors from healthy and injured bolls. Feeding by stink bugs led to an approximate 2.4-fold increase in volatile organic compound (VOC) emissions. Principal components analysis of E-nose sensor data showed distinct (100%) separation between stink bug-injured and healthy bolls after two days of feeding. However, when E-nose was used to randomly identify samples, results were less accurate (80–90%). These results suggest that E-nose is a promising technology for rapid detection of stink bug injury to cotton.
机译:通过耗时的采样方法,BT棉中的臭臭虫(Pentatomidae)的管理决定是复杂的,并且需要更有效的检测工具。挥发性化合物从棉铃中释放,响应于臭虫进料,电子鼻子(电子鼻)技术可能用于检测吹摩损伤。在这项研究中,我们研究了响应臭虫喂养的挥发排放的时间动态,并测试了电子鼻子的能力,以区分健康和受伤的棉铃。通过臭虫喂养导致挥发性有机化合物(VOC)排放量的近似2.4倍。电子鼻传感器数据的主要成分分析显示出喂养两天后臭虫受伤和健康棉铃之间的明显(100%)分离。然而,当E-鼻子用于随机识别样品时,结果较低(80-90%)。这些结果表明,电子鼻是一种快速检测棉花臭虫伤害的有希望的技术。

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