Pathology Department, Southern Hardwoods Laboratory, Southern Research Station, USDA Forest Service, Stoneville, MS 38776, USA.
Arkansas Forest Resources Center, and College of Forestry, Agriculture and Natural Resources, University of Arkansas at Monticello, Monticello, AR 71656, USA.
Biosensors (Basel). 2019 Oct 13;9(4):123. doi: 10.3390/bios9040123.
The emerald ash borer (EAB) has been the most destructive and costly nonnative insect to threaten the health of ash () species in North America for at least the past 25 years. The development of methods for detecting visually-hidden EAB galleries at early stages of infestation would provide a useful tool to more effectively facilitate the planning and implementation of targeted EAB pest-suppression and management activities. We tested the efficacy of using a dual-technology electronic-nose (e-nose)/gas chromatograph device as a means for detection of EAB infestations in green ash trees in different EAB-decline classes by analysis of VOC emissions in sapwood. We found significant differences in VOC profiles for trees from the four decline classes. The VOC composition, quantities, and types of volatile metabolites present in headspace volatiles varied considerably across sample types, and resulted in distinct e-nose smellprint patterns that were characteristic of each unique chemical composition. In addition, specific VOC metabolites were identified as potential healthy and EAB-infestation biomarkers, indicative of the health states of individual trees. Few significant differences in major bark phenolic compounds were found between ash decline classes using LC-MS. The e-nose was effective in discriminating between uninfested and EAB-infested trees based on sapwood VOC emissions.
白杨透翅蛾(EAB)是过去 25 年来对北美灰树()物种健康最具破坏性和代价最高的非本地昆虫。开发在感染早期检测肉眼看不见的 EAB 虫道的方法将为更有效地规划和实施有针对性的 EAB 害虫防治和管理活动提供有用的工具。我们通过分析边材中的 VOC 排放,测试了使用双技术电子鼻(e-nose)/气相色谱设备检测不同 EAB 衰退等级的绿灰树中 EAB 感染的效果。我们发现,四个衰退等级的树木的 VOC 图谱存在显著差异。头空挥发物中存在的挥发性代谢物的组成、数量和类型变化很大,导致独特的电子鼻气味模式,这些模式与每种独特的化学成分特征相关。此外,特定的 VOC 代谢物被鉴定为潜在的健康和 EAB 感染生物标志物,表明了个体树木的健康状况。使用 LC-MS 在灰树衰退等级之间发现了很少的主要树皮酚类化合物的显著差异。电子鼻可以根据边材 VOC 排放有效地区分未感染和 EAB 感染的树木。