Department of Biological Systems Engineering, Washington State University, Pullman, WA 99164, USA.
Center for Precision and Automated Agricultural Systems, Washington State University, Prosser, WA 99350, USA.
Sensors (Basel). 2020 Dec 21;20(24):7350. doi: 10.3390/s20247350.
The study evaluates the suitability of a field asymmetric ion mobility spectrometry (FAIMS) system for early detection of the Pythium leak disease in potato tubers simulating bulk storage conditions. Tubers of Ranger Russet (RR) and Russet Burbank (RB) cultivars were inoculated with , the causal agent of Pythium leak (with negative control samples as well) and placed in glass jars. The headspace in sampling jars was scanned using the FAIMS system at regular intervals (in days up to 14 and 31 days for the tubers stored at 25 °C and 4 °C, respectively) to acquire ion mobility current profiles representing the volatile organic compounds (VOCs). Principal component analysis plots revealed that VOCs ion peak profiles specific to were detected for the cultivars as early as one day after inoculation (DAI) at room temperature storage condition, while delayed detection was observed for tubers stored at 4 °C (RR: 5th DAI and RB: 10th DAI), possibly due to a slower disease progression at a lower temperature. There was also some overlap between control and inoculated samples at a lower temperature, which could be because of the limited volatile release. Additionally, data suggested that the RB cultivar might be less susceptible to under reduced temperature storage conditions. Disease symptom-specific critical compensation voltage (CV) and dispersion field (DF) from FAIMS responses were in the ranges of -0.58 to -2.97 V and 30-84% for the tubers stored at room temperature, and -0.31 to -2.97 V and 28-90% for reduced temperature, respectively. The ion current intensities at -1.31 V CV and 74% DF showed distinctive temporal progression associated with healthy control and infected tuber samples.
该研究评估了现场不对称离子迁移谱(FAIMS)系统在模拟批量储存条件下早期检测马铃薯块茎中腐霉泄漏病的适用性。用 接种了 Ranger Russet(RR)和 Russet Burbank(RB)品种的块茎(也有阴性对照样品),并将其放置在玻璃罐中。用 FAIMS 系统定期扫描采样罐的顶空(在 25°C 和 4°C 下储存的块茎分别高达 14 天和 31 天),以获取代表挥发性有机化合物(VOC)的离子迁移电流谱。主成分分析图显示,在室温储存条件下,RR 品种早在接种后 1 天(DAI)就检测到了针对 的 VOCs 离子峰特征,而在 4°C 下储存的块茎则延迟检测到(RR:第 5 天 DAI,RB:第 10 天 DAI),这可能是由于低温下疾病进展较慢。在较低温度下,对照和接种样品之间也存在一些重叠,这可能是由于挥发性物质释放有限。此外,数据表明,在较低温度下储存时,RB 品种可能对 的敏感性较低。FAIMS 响应的病征特异性关键补偿电压(CV)和分散场(DF)分别在室温下储存的块茎中为-0.58 至-2.97 V 和 30-84%,在降低温度下为-0.31 至-2.97 V 和 28-90%。在-1.31 V CV 和 74% DF 处的离子电流强度显示出与健康对照和感染块茎样品相关的独特时间进展。