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Thrips and TSWV Occurrence in Geographically Different Open Fields Cultivating Hot Peppers

상이한 지역별 노지 고추재배지의 총채벌레 연중 발생 및 토마토반점위조바이러스 발병

  • Eticha Abdisa (Department of Plant Medicals, Andong National University) ;
  • Jiyoon Kwon (Department of Plant Medicals, Andong National University) ;
  • Gahyeon Jin (Department of Plant Medicals, Andong National University) ;
  • Yonggyun Kim (Department of Plant Medicals, Andong National University)
  • Received : 2023.12.28
  • Accepted : 2024.02.19
  • Published : 2024.03.01

Abstract

Thrips infest hot peppers (Capsicum annuum) cultivating in open fields and give serious economic damages. This study reports their yearly occurrence from transplanting to harvest at three different places in Andong, an intense hot pepper-cultivating area. Two main occurrence peaks were detected in June and September. Two dominant thrips were the flower flowers, Frankliniella occidentalis and F. intonsa, which comprised of over 87% of the total occurring thrips. Other thrips did not follow the occurrence peaks of the two dominant species. Tomato spotted wilt virus (TSWV) was detected from the dominant two species, in which higher viruliferous rate was recorded in F. intonsa. Although the hot peppers were the resistant varieties against TSWV, some of them cultivating in the fields exhibited a characteristic disease symptom infected by the virus over the growing seasons. TSWV was isolated from the viruliferous thrips and assessed in NSs sequences encoded in S RNA segment of the virus. Compared to the known resistance breaking (RB) strains, the TSWV isolated from the viruliferous thrips in Andong did not show any RB mutations.

노지에서 재배되는 고추(Capsicum annuum)에 총채벌레가 발생하여 심각한 경제적 피해를 주고 있다. 본 연구는 고추 주산지인 안동을 중심으로 상이한 세 지역의 재배지에서 고추 정식에서 수확 시기까지 총채벌레의 연중 발생을 보고한다. 총채벌레의 최대 발생기는 6월과 9월을 중심으로 나타났다. 이 가운데 두 주요 총채벌레는 꽃노랑총채벌레(Frankliniella occidentalis)와 대만총채벌레(F. intonsa)였으며, 전체 총채벌레 발생의 87% 이상을 차지하였다. 기타 총채벌레는 이상의 두 우점종의 발생 패턴과는 상이하였다. 토마토반점위조바이러스(Tomato spotted wilt virus: TSWV)가 이들 우점종 개체들에서 검출되었으며, 바이러스 보독율은 대만총체벌레에서 높았다. 이들 지역에서 재배되는 고추가 TSWV에 내병성 품종들이지만, 일부 고추 개체들에서는 이 바이러스 감염에 따른 전형적인 병징을 보였다. 이에 보독충에서 TSWV를 분리하여 이 바이러스 S RNA 게놈에 존재하는 비구조단백질 일종을 암호화하는 NSs 유전자의 염기서열을 분석하였다. 기존에 알려진 저항성붕괴(resistance breaking: RB) 계통의 서열에 비해 안동에서 발생한 보독충에서 분리된 TSWV의 서열과는 상이하여, 이 지역에서는 RB 돌연변이체가 존재하지 않는 것으로 판명되었다.

Keywords

Acknowledgement

본 논문은 농촌진흥청 공동연구사업(과제번호: PJ01578901)의 지원에 의해 이루어졌다. 또한 2023년도 안동대학교 학술연구지원비에 의해 지원되었다.

References

  1. Ahn, S.B., Kim, I.S., Lee, M.R., Ku, D.S., Kwon, G.M., Park, Y.M., 1998. Distribution and kinds of pests on vegetables. in: Pest investigation reports on crops. NIAST, Suwon, Korea, pp. 435-485. 
  2. Almasi, A., Nemes, K., Csomor, Z., Tobias, I., Palkovics, L., Salanki, K., 2017. A single point mutation in Tomato spotted wilt virus NSs protein is sufficient to overcome Tsw-gene-mediated resistance in pepper. J. Gen. Virol. 98, 1521-1525.  https://doi.org/10.1099/jgv.0.000798
  3. Ghosh, A., Jangra, S., Dietzgen, R.G., Yeh, W.B., 2021. Frontiers approaches to the diagnosis of Thrips (Thysanoptera): how effective are the molecular and electronic detection platforms? Insects 12, 920. 
  4. Goldbach, R., Peters, D., 1994. Possible causes of the emergence of tospovirus diseases. Sem. Virol. 5, 113-120.  https://doi.org/10.1006/smvy.1994.1012
  5. Han, M.J., Kim, I.S., Ahn, S.B., Lee, M.L., Hong, K.J., Lee, G.H., Ku, D.S., 1998. Distribution and host plants of recently introduced western flower thrips, Frankliniella occidentalis (Pergande) (Thysanoptera: Thripidae) in Korea. RDA J. Crop Prot. 40, 83-88. 
  6. Jahn, M., Paran, I., Hoffmann, K., Radwanski, E.R., Livingstone, K.D. Grube, R.C., Aftergoot, E., Lapidot, M., Moyeret, J., 2000. Genetic mapping of the Tsw locus for resistance to the Tospovirus tomato spotted wilt virus in Capsicum spp. and its relationship to the Sw-5 gene for resistance to the same pathogen in tomato. Mol. Plant Microbe Interact. 13, 673-682.  https://doi.org/10.1094/MPMI.2000.13.6.673
  7. Katayama, H. 1997. Effect of temperature on development and oviposition of western flower thrips Frankliniella occidentalis (Pergande). Jpn. J. Appl. Entomol. Zool. 41, 225-231.  https://doi.org/10.1303/jjaez.41.225
  8. Katayama, H., Ikeda, F. 1995. Overwintering of western flower thrips Frankliniella occidentalis Pergande in the western region of Shizuoka Prefecture. B. Shizuoka Agric. Exp. Stn. 40, 63-73. 
  9. Kim, J.H., Choi, G.S., Kim, J.S., Choi, J.K., 2004. Characterization of Tomato spotted wilt virus from Paprika in Korea. Plant Pathol. J. 20, 297-301.  https://doi.org/10.5423/PPJ.2004.20.4.297
  10. Kim, C., Choi, D., Kang, J., Ahmed, S., Kil, E., Kwon, G., Lee, G., Kim, Y., 2021. Thrips infesting hot pepper cultured in greenhouses and variation in gene sequences encoded in TSWV. Korean. J. Appl. Entomol., 60, 387-401. 
  11. Kim, C., Choi, D., Lee, D., Khan, F., Kwon, G., Ham, E., Park, J., Kil, E.J., Kim, Y., 2022a. Yearly occurrence of thrips infesting hot pepper in greenhouses and differential damages of dominant thrips. Korean J. Appl. Entomol. 61, 319-330. 
  12. Kim, C., Choi, D., Khan, F., Hrithik, M.T.H., Hong, J., Kim, Y., 2022b. Comparative analysis of cold tolerance and overwintering site of two flower thrips, Frankliniella occidentalis and F. intonsa. Korean J. Appl. Entomol. 61, 409-422. 
  13. Kim, C., Abdisa E., Esmaeily, M., Khan, F., Lee, D.H., Kim, Y., 2023a. Detection of the TSWV-infected onion thrips, Thrips tabaci, and the viral multiplication in the insect vector. Korean J. Pestic. Sci. 27, 135-144.  https://doi.org/10.7585/kjps.2023.27.2.135
  14. Kim, C., Ahmed, S., Stanley, D., Kim, Y., 2023b. HMG-like DSP1 is a damage signal to mediate the western flower thrips, Frankliniella occidentalis, immune responses to tomato spotted wilt virus infection. Dev. Comp. Immunol. 144, 104706. 
  15. Kormelink, R., Garcia, M.L., Goodin, M., Sasaya, T., Haenni, A.L., 2011. Negative-strand RNA viruses: the plant-infecting counterparts. Virus Res. 162, 184-202.  https://doi.org/10.1016/j.virusres.2011.09.028
  16. KOSIS (Korean Statistical Information Service), 2020. Area of cultivation of outdoor vegetables. https://kosis.kr/statHtml/statHtml.do?orgId=101&tblId=DT_1ET0013&vw_cd=MT_ZTITLE&list_id=K1_15&seqNo=&lang_mode=ko&language=kor&obj_var_id=&itm_id=&conn_path=MT_ZTITLE. (Accessed 28 December, 2023). 
  17. Kwon, S.J., Cho, Y.E., Kwon, O.H., Kang, H.G., Seo, J.K., 2021. Resistance-breaking Tomato spotted wilt virus variant that recently occurred in pepper in South Korea is a genetic reassortant. Plant Dis. 105, 2771-2775.  https://doi.org/10.1094/PDIS-01-21-0205-SC
  18. Lee, G.S., Lee, J.H., Kang, S.H., Woo, K.S., 2001. Thrips species (Thysanoptera: Thripidae) in winter season and their vernal activities on Jeju island, Korea. J. Asia Pac. Entomol. 4, 115-122.  https://doi.org/10.1016/S1226-8615(08)60112-0
  19. Lee, S., Lee, J., Kim, S., Choi, H., Park, J., Lee, J., Lee, K., Moon, J., 2004. The incidence and distribution of viral diseases in pepper by cultivation types. Res. Plant Dis. 10, 231-240.  https://doi.org/10.5423/RPD.2004.10.4.231
  20. Moon, H.C., Cho, I.K., Im, J.R., Goh, B.R., Kim, D.H., Hwang, C.Y., 2006. Seasonal occurrence and damage by thrips on open red pepper in Jeonbuk Province. Korean J. Appl. Entomol. 45, 9-13. 
  21. Park, J.D., Kim, D.I., Kim, S.G., 2002. Seasonal occurrence and damaged aspects of Frankliniella occidentalis Pergande (Thysanoptera: Thripidae) by cultural environments and varieties of chrysanthemum. Korean J. Appl. Entomol. 41, 177-181. 
  22. Park, H.H., Kim, K.H., Park, C.G., Choi, B.R., Kim, J.J., Lee, S.W., Lee, S.G., 2009. Damage analysis and control threshold of Frankliniella occidentalis Pergande (Thysanoptera: Thripidae) on greenhouse eggplant and sweet pepper. Korean J. Appl. Entomol. 48, 229-236.  https://doi.org/10.5656/KSAE.2009.48.2.229
  23. Reitz, S.R., Gao. Y., Kirk, W.D.J., Hoddle, M.S., Leiss, K.A., Funderburk, J.E., 2020. Invasion biology, ecology, and management of western flower thrips. Annu. Rev. Entomol. 65, 17-37.  https://doi.org/10.1146/annurev-ento-011019-024947
  24. Rotenberg, D., Jacobson, A.L., Schneweis, D.J., Whitfield, A.E., 2015. Thrips transmission of tospoviruses. Curr. Opin. Virol. 15, 80-89.  https://doi.org/10.1016/j.coviro.2015.08.003
  25. SAS Institute, Inc., 1989. SAS/STAT user's guide. SAS Institute, Inc., Cary, NC. 
  26. Sharov, A.G., 1972. On phylogenetic relations of the order of thrips (Thysanoptera). Entomol. Rev. 54, 854-858. 
  27. Woo, K.S., Paik, W.H., 1971. Studies on the thrips (Thysanoptera) unrecorded in Korea (I). Korean J. Plant Prot. 10, 69-73. 
  28. Yoon, J.Y., Yoon, J.B., Seo, M.H., Choi, S.K., Cho, I.S., Chung, B.N., Yang C.Y., Gangireddygari, V.S.R., 2020. Application of multiplex RT-PCR for simultaneous identification of tomato spotted wilt virus and thrips species in an individual thrips on chrysanthemum. Res. Plant Dis. 26, 264-271.  https://doi.org/10.5423/RPD.2020.26.4.264
  29. Yoon, J.Y., Her, N.H., Cho, I.S., Chung, B.N., Choi, S.K., 2021. First report of a resistance-breaking strain of Tomato spotted wilt orthotospovirus infecting Capsicum annuum carrying the Tsw resistance gene in South Korea. Plant Dis. 105, 2259.