Ph.D. (Plant Pathology)
Plant Virology, Cold Plasma for Plant Disease Control
Identification of plant viruses using simple and rapid detection techniques such as multiplex RT-PCR, RT-LAMP, and RT-RPA-LFD; virome analysis using next-generation sequencing (NGS) to explore virus populations in plants; virus resistance screening for disease management; and the application and scale-up of cold plasma for the control of seed-borne pathogens and postharvest diseases.
Office Location: Department of Plant Pathology, Faculty of Agriculture at Kamphaeng Saen, Kasetsart University, Kamphaeng Saen Campus.
I am passionate about conducting research to answer my own questions and to help solve farmers' problems. In the next five years, I envision myself continuing to grow both professionally and personally, with the goal of becoming an Associate Professor.
- ความหลากหลายทางชีวภาพและพันธุกรรมของ Pepper yellow leaf curl Thailand virus และ Pepper yellow leaf curl Indonesia virus ในพริกที่ปลูกในประเทศไทย
- การประยุกต์ใช้อาร์เอ็นเอสายคู่เพื่อควบคุม capsicum chlorosis virus (CaCV) ในพริก
- Collection of fresh plant viral herbaria and production of viral reference materials for PCR inspection
- การประยุกต์ใช้เทคโนโลยีพลาสมาอุณหภูมิต่ำในการกำจัดเชื้อรา Colletotrichum capsici บนเมล็ดพันธุ์พริก
- การทดสอบพันธุ์ต้านทานและทนทานต่อโรคใบด่างมันสำปะหลัง และขยายพันธุ์แก่ผู้ปลูกมันสำปะหลังในพื้นที่ระบาดของโรค
- Supakitthanakorn, S. 2025. Detection of turnip mosaic virus (TuMV) in brassicaceous plants through colorimetric one-step reverse transcription loop-mediated isothermal amplification (RT-LAMP) assay. International Journal of Agricultural Technology (Accepted and in press).
- Supakitthanakorn, S. and Reanwarakorn, K. 2025. Multiplex reverse transcription polymerase chain reaction for simultaneous detection and identification of multiple sunflower-infecting viruses. Journal of Plant Diseases and Protection 132.
- Supakitthanakorn, S., Sinhabandhu, S., Patarapuwadol S. and Oliva, R. 2024. Development of colorimetric one-step reverse transcription loop-mediated isothermal amplification for rapid and visualized detection of tomato necrotic ringspot virus. Physiological and Molecular Plant Pathology 134: 102472.
- Supakitthanakorn, S., Himananto, O. and Ruangwong, O.-U. 2024. Survey and detection of virus and viroid diseases from chrysanthemum in Thailand. Acta Horticulturae 1392: 15-24.
- Supakitthanakorn, S., Suksodkhiaw, T., Aupanun, S. and Auvuchanon, A. 2024. Detection of mixed infections among three begomoviruses in pumpkin through multiplex PCR technique. Agriculture and Natural Resources 58(4): 419 – 426.
- Supakitthanakorn, S., Ruangwong, O.-U. and Boonyawan, D. 2023. Inactivation of Cercospora lactucae-sativa through application of non-thermal atmospheric-pressure gliding arc, tesla coil and dielectric barrier discharge plasmas. Applied Sciences 13(11): 6643.
- Supakitthanakorn, S., Ruangwong, O.-U., Sawangrat, C., Srisuwan, W. and Boonyawan, D. 2023. Potential of nonthermal atmospheric-pressure dielectric barrier discharge plasma for inhibition of Athelia rolfsii causing southern blight disease in lettuce. Agriculture 13(1): 1–14.
- Supakitthanakorn, S., Vichitrakoonthaworn, K., Kunasakdakul, K. and Ruangwong, O.-U. 2023. Development of real-time polymerase chain reaction (qPCR) for quantitative detection of chrysanthemum chlorotic mottle viroid (CChMVd) and chrysanthemum stunt viroid (CSVd) from chrysanthemum. International Journal of Agricultural Technology 19(1): 243–256.
- Supakitthanakorn, S., Vichittragoontavorn, K., Kunasakdakul, K. and Ruangwong, O.-U. 2022. Phylogenetic analysis and molecular characterization of chrysanthemum chlorotic mottle viroid and chrysanthemum stunt viroid from chrysanthemum in Thailand. Journal of Phytopathology. 170(10): 700–710.
- Supakitthanakorn, S., Vichittragoontavorn, K., Sunpapao, A., Kunasakdakul, K., Thapanapongworakul, P. and Ruangwong, O.-U. 2022. Tobacco mosaic virus infection of chrysanthemums in Thailand: development of colorimetric reverse-transcription loop-mediated isothermal amplification (RT–LAMP) technique for sensitive and rapid detection. Plants 11(14): 1788.