Department of Plant Medicine, National Pingtung University of Science and Technology, Pingtung 91201, Taiwan.
Bachelor Program in Scientific Agriculture, National Pingtung University of Science and Technology, Pingtung 91201, Taiwan.
Int J Mol Sci. 2024 May 14;25(10):5371. doi: 10.3390/ijms25105371.
Melon ( L.) is a global commercial crop that is sensitive to seed-borne wilt infections caused by f. sp. (Fom). To address the challenge of detecting Fom contamination, we designed a probe-based real-time PCR method, TDCP2, in combination with rapid or column-based DNA extraction protocols to develop reliable molecular detection methods. Utilizing TDCP2, the detection rate reached 100% for both artificially Fom-inoculated (0.25-25%) and pod-inoculated melon seeds in conjunction with DNA samples from either the rapid or column-based extraction protocol. We performed analyses of precision, recall, and F1 scores, achieving a maximum F1 score of 1 with TDCP2, which highlights the robustness of the method. Additionally, intraday and interday assays were performed, which revealed the high reproducibility and stability of column-based DNA extraction protocols combined with TDCP2. These metrics confirm the reliability of our developed protocols, setting a foundation for future enhancements in seed pathology diagnostics and potentially broadening their applicability across various Fom infection levels. In the future, we hope that these methods will reduce food loss by improving the control and management of melon diseases.
甜瓜(L.)是一种全球性商业作物,对由 f. sp. (Fom)引起的种子带菌枯萎病感染敏感。为了解决检测 Fom 污染的挑战,我们设计了一种基于探针的实时 PCR 方法 TDCP2,并结合快速或柱式 DNA 提取方案,开发了可靠的分子检测方法。利用 TDCP2,对于人工接种(0.25-25%)和荚果接种甜瓜种子,以及快速或柱式提取方案的 DNA 样本,检测率均达到 100%。我们进行了精度、召回率和 F1 分数的分析,TDCP2 的最大 F1 分数达到 1,这突出了该方法的稳健性。此外,还进行了日内和日间测定,结果显示,与 TDCP2 结合使用的柱式 DNA 提取方案具有很高的重现性和稳定性。这些指标证实了我们开发的方案的可靠性,为未来在种子病理学诊断方面的改进奠定了基础,并可能扩大其在各种 Fom 感染水平下的适用性。在未来,我们希望这些方法能够通过改善甜瓜疾病的控制和管理来减少食物损失。