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节肢动物害虫的早期侵扰会引起植物组成特征和叶片反射率的独特变化。

Early infestations by arthropod pests induce unique changes in plant compositional traits and leaf reflectance.

作者信息

Nansen Christian, Murdock Machiko, Purington Rachel, Marshall Stuart

机构信息

Department of Entomology and Nematology, University of California Davis, Davis, CA, USA.

出版信息

Pest Manag Sci. 2021 Nov;77(11):5158-5169. doi: 10.1002/ps.6556. Epub 2021 Jul 26.

Abstract

BACKGROUND

With steadily growing interest in the use of remote-sensing technologies to detect and diagnose pest infestations in crops, it is important to investigate and characterize possible associations between crop leaf reflectance and unique pest-induced changes in plant compositional traits. Accordingly, we compiled plant compositional traits from chrysanthemum and gerbera plants in four treatments: non-infested, or infested with mites, thrips or whiteflies, and we acquired hyperspectral leaf reflectance data from the same plants over time (0-14 days).

RESULTS

Plant compositional traits changed significantly in response to arthropod infestations, and individual chrysanthemum and gerbera plants were classified with 78% and 80% accuracy, respectively. Based on leaf reflectance, individual plants from the four treatments were classified with moderate accuracy levels of 76% (gerbera) and 73% (chrysanthemum) but with a clear distinction between non-infested and infested plants. Accurate and consistent diagnosis of biotic stressors was not achieved.

CONCLUSION

To our knowledge, this is the first study in which infestations by multiple economically important arthropod pests are directly compared and associated with leaf reflectance responses and changes in plant compositional traits. It is important to highlight that imposed stress levels were low, period of infestation was short, and hyperspectral remote-sensing data were acquired at four time points with analyses based on large data sets (3826 leaf reflectance profiles for chrysanthemum and 4041 for gerbera). This study provides novel insight into crop responses to different biotic stressors and into possible associations between plant compositional traits and hyperspectral leaf reflectance data acquired from crop leaves.

摘要

背景

随着人们对利用遥感技术检测和诊断作物虫害的兴趣不断增加,研究和描述作物叶片反射率与害虫诱导的植物成分特征独特变化之间的可能关联非常重要。因此,我们收集了四种处理下菊花和非洲菊植株的植物成分特征:未受虫害、受螨类、蓟马或粉虱侵害,并且随着时间推移(0 - 14天)获取了同一植株的高光谱叶片反射率数据。

结果

植物成分特征因节肢动物侵害而发生显著变化,单个菊花和非洲菊植株的分类准确率分别为78%和80%。基于叶片反射率,四种处理下的单个植株分类准确率中等,菊花为73%,非洲菊为76%,但未受虫害和受虫害植株之间有明显区分。未实现对生物胁迫源的准确和一致诊断。

结论

据我们所知,这是第一项直接比较多种具有经济重要性的节肢动物害虫侵害情况,并将其与叶片反射率响应及植物成分特征变化相关联的研究。需要强调的是,施加的胁迫水平较低,虫害持续时间较短,并且在四个时间点获取了高光谱遥感数据,并基于大数据集进行分析(菊花有3826个叶片反射率剖面,非洲菊有4041个)。这项研究为作物对不同生物胁迫源的响应以及植物成分特征与从作物叶片获取的高光谱叶片反射率数据之间的可能关联提供了新的见解。

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