Soybean Seeds Damaged by Riptortus Clavatus (Thunberg) Reduce Seed Vigor and Quality of Bean Sprout Produce

  • Oh, Young-Jin (Department of Rice and Winter Cereal Crop, NICS, RDA) ;
  • Cho, Sang-Kyun (Department of Rice and Winter Cereal Crop, NICS, RDA) ;
  • Kim, Young-Jin (Department of Rice and Winter Cereal Crop, NICS, RDA) ;
  • Kim, Kyong-Ho (Department of Rice and Winter Cereal Crop, NICS, RDA) ;
  • Paik, Chae-Hoon (Department of Rice and Winter Cereal Crop, NICS, RDA) ;
  • Kim, Tae-Soo (Department of Rice and Winter Cereal Crop, NICS, RDA) ;
  • Kim, Jung-Gon (Department of Rice and Winter Cereal Crop, NICS, RDA) ;
  • Cho, Youngkoo (Department of Biology, Eastern New Mexico University)
  • 투고 : 2010.11.28
  • 발행 : 2010.12.31

초록

Riptortus clavatus, one of the many insects in major crops, damages pods and seeds, which reduces seed vigor and viability in soybeans. This study was conducted to examine the effect of diversely damaged seeds by R. clavatus on seed germination and seedling emergence and to determine the association of damaged seed with quality and yield of soybean sprouts. All seeds damaged by R. clavatus significantly (P<0.05) reduced seed vigor as measured by the rates of seed germination, germination speed, and seedling emergence. Mean seed germination rate of non-damaged seeds in sprout-soybean varieties was 97.8%, whereas the rates of seeds damaged at different levels, 31-50% and 51-80%, were 23.0 and 5.4%, respectively. The rates of seedling rot and abnormal, incomplete germination significantly (P<0.05) increased as the amount of seeds damaged by R. clavatus increased to 5, 10 and 15% against the total seeds for sprout production. Yield of soybean sprouts from seeds damaged at different levels decreased up to 13% as compared to that in normal seeds. In customer preferences on soybean sprout produce, 84% of customers participated in survey preferred to purchase sprouts from seeds with 5% of damaged seeds, but sprouts produced from seeds with 15% of damaged seeds were intended to purchase only by 22% of the customers. Areas of the seed damaged by R. clavatus were readily infected by pathogens as the seed germinated, resulted in deteriorated quality and reduced yield of sprout produce.

키워드

참고문헌

  1. Bae SD, Kim HJ, Park CG, Jung JK. 2004. Comparison of the nymphal development, adult longevity and oviposition of the bean bug, Riptortus clavatus Thunberg (Hemiptera: Alydidae) in fibrous nylon and glass-tube. Korean J. Appl. Entomol. 43:275-279.
  2. Bilyeu KD, Beuselinck PR. 2005. Genetic divergence between North American ancestral soybean lines and introductions with resistance to soybean cyst nematode revealed by chloroplast haplotype. J. Heredity 96:593-599. https://doi.org/10.1093/jhered/esi087
  3. Bowling CC. 1980. The stylet sheath as an indicator of feeding activity by the Southern green stink bug on soybeans. J. Econ. Entomol. 73:1-3. https://doi.org/10.1093/jee/73.1.1
  4. Cho Y, Njiti VN, Chen X, Triwatayakorn K, Kassem MA, Meksem K, Lightfoot DA, Wood AJ. 2002. Quantitative traits loci associated with foliar trigonelline accumulation in Glycine max L., J. Biomed. Biotechnol. 2:151-157. https://doi.org/10.1155/S1110724302204039
  5. Cho Y, Scott RA. 2000. Combining ability of seed vigor and seed yield in soybean. Euphytica 112: 145-150. https://doi.org/10.1023/A:1003827930786
  6. Conley SP, Gaska J. 2009. Delayed soybean emergence and cotyledon Loss. Wisconsin Crop Manager 16:52-53.
  7. Dhakal KH, Jeong YS, Lee JD, Baek IY, Ha TJ, Hwang YH. 2009. Fatty acid composition in each structural part of soybean seed and sprout. J. Crop Sci. Biotech. 12:97-101. https://doi.org/10.1007/s12892-009-0092-x
  8. Dhaubhadel S, Farhangkhoee M, Chapman R. 2008. Identification and characterization of isoflavonoid specific glycosyltransferase and malonyltransferase from soybean seeds. J. Exp. Bot. 59:981-994. https://doi.org/10.1093/jxb/ern046
  9. Dita MA, Rispail N, Prats E, Rubiales D, Singh KB. 2006. Biotechnology approaches to overcome biotic and abiotic stress constraints in legumes. Euphytica 147:1-24. https://doi.org/10.1007/s10681-006-6156-9
  10. Dixon RA. 2004. Phytoestrogens. Annu. Rev. Plant Biol. 55:225-261. https://doi.org/10.1146/annurev.arplant.55.031903.141729
  11. Dosdall LM, Clayton GW, Harker KN, O'Donovan JT, Stevenson FC. 2004. The effects of soil fertility and other agronomic factors on infestationsof root maggots in canola. Agron. J. 96:1306-1313. https://doi.org/10.2134/agronj2004.1306
  12. Fehr WR, Caviness CE. 1977. Stages of soybean development. Spec. Rep. 80. Iowa Agric. Home Econ. Exp. Stn., Ames, IA. 12 p.
  13. Hamman B, Egli DB, Koning G. 2002. Seed vigor, soilborne pathogens, preemergent growth, and soybean seedling emergence. Crop Sci. 42:451-457. https://doi.org/10.2135/cropsci2002.0451
  14. Han SC, Choi KM. 1988. Major insect pests on soybean and their control in Korea. RDA symposium 3:153-165.
  15. Jackson EW, Fenn P, Chen P. 2005. Inheritance of resistance to phomopsis seed decay in soybean PI 80837 and MO/PSD-0259 (PI 562694). Crop Sci 45:2400-2404. https://doi.org/10.2135/cropsci2004.0525
  16. Jensen RL, Newsom LD. 1972. Effect of stink bug-damaged soybean seeds on germination, emergence and yield. J. Econ. Entomol. 65:261-264. https://doi.org/10.1093/jee/65.1.261
  17. Jung JK, Youn JT, Im DJ, Park JH, Kim UH. 2005. Soybean seed injury by the bean bug, Riptortus clavatus (Thunberg) (Hemiptera: Alydidae) at reproductive stage of soybean (Glycine max Linnaeus). Korean J. Appl. Entomol. 44:299-306.
  18. Kang CH, Huh HS, Park CG. 2003. Review on true bugs infesting tree fruits, upland crops, and weeds on Korea. Korean J. Appl. Entomol. 42: 269-277.
  19. Kim GH, Ahn YJ, Cho KY. 1992. Effect of diflubenzuron on longevity and reproduction of adult bean bug (Hemiptera: Alydidae). J. Econ Entomol. 85:664-668. https://doi.org/10.1093/jee/85.3.664
  20. Kim HS, Kim KH, Kim HS, Lee YH, Jong SK. 2006. Difference of hypocotyl and growth characters of soybeansprouts by sowing date in sprout-soybean cultivar. Korean J. Crop Sci. 51:608-617.
  21. Kornegay J, Cardona C, Posso CE. 1993. Inheritance of resistance to Mexican bean weevil in common bean, determined by bioassay and biochemical tests. Crop Sci. 33:589-594. https://doi.org/10.2135/cropsci1993.0011183X003300030034x
  22. Lee GH, Paik CH, Choi MY, Oh YJ, Kim DH, Na SY. 2004. Seasonal occurrence, soybean damages and control efficacy of bean bug, Riptortus clavatus Thunberg (Hemiptera: Alydidae) at soybean field in Honam province. Korean J. Appl. Entomol. 43: 249-255.
  23. Li W, Van K, Zheng DH, Liu W, Lee YH, Lee JH, Lee SH. 2008. Identification of QTLs associated with resistance to Riptortus clavatus Thunberg (Heteroptera: Alydidae) in soybean (Glycine max L. Merr.). J. Crop Sci. Biotech. 11:243-248.
  24. Liu B, Fujita T, Yan ZH, Sakamoto S, Xu D, Abe AJ. 2007. QTL mapping of domestication-related traits in soybean (Glycine max). Ann. Bot. 100:1027-1038. https://doi.org/10.1093/aob/mcm149
  25. Maguire JD. 1962. Speed of germination - Aid in selection and evaluation for seedling emergence and vigor. Crop Sci. 2:176-177. https://doi.org/10.2135/cropsci1962.0011183X000200020033x
  26. Masuda T, Goldsmith PD. 2009. World soybean production: area harvested, yield, and long-term projections. Int. Food Agribusiness Manage. Rev. 12:143-162.
  27. Mateos-Aparicio I, Cuenca AR, Villanueva-Suárez MJ, Zapata-Revilla MA. 2008. Soybean, a promising health source. Nutr. Hosp. 23:305-312.
  28. Mississippi Soybean Promotion Board, the Mississippi Department of Agriculture & Commerce, the Mississippi State University Extension Service, the Mississippi Farm Bureau Federation, and the Delta Council. 2009. Mississippi soybean producer's field guide to soybean damage. pp 1-10.
  29. Murillo-Williams A, Pedersen P. 2008. Early incidence of soybean seedling pathogens in Iowa. Agron J. 100:1481- 1487. https://doi.org/10.2134/agronj2007.0346
  30. Oh YJ, Cho SK, Kim KH, Paik CH, Cho Y, Kim HS, Kim TS. 2009. Responses of growth characteristics of soybean [Glycine max (L.) Merr.] cultivars to Riptortus clavatus Thunberg (Hemiptera: Alydidae). Korean J. Breed. Sci. 41:488-495.
  31. Oh YJ, Kim KH, Suh SK, Kim SD, Park HK, Ryu JH, Kim JG, Wood AJ, Cho Y. 2007. Effects of stem lengths on seed yield and yield components of late planted soybeans. World J. Agric. Sci. 3:363-370.
  32. Phommalth S, Jeong YS, Kim YH, Hwang YH. 2008. Isoflavone composition within each structural part of soybean seeds and sprouts. J. Crop Sci. Biotech. 11:57-62.
  33. RDA. 2003. Rural development administration standard for research survey analysis. pp. 323-334.
  34. SAS Institute Inc. 2001. SAS/Stat software: Changes and enhancements through release 8.1. SAS Inst. Inc., Cary, NC.
  35. Son CK, Park SG, Hwang YH, Choi BS. 2000. Field occurrence of stink bug and its damage in soybean. Korean J. Crop Sci. 45:405-410.
  36. Tilden RL, West SH. 1985. Reversal of the effects of aging in soybean seeds. Plant Physiol. 77:584-586. https://doi.org/10.1104/pp.77.3.584
  37. Wallace SU. 1988. Soybean seedling emergence at high temperature. Plant Soil 109:139-140. https://doi.org/10.1007/BF02197594