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Growth and Yield in Direct Seeded Rice Cultivation with Iron Coated-Seeds

철분코팅 볍씨를 이용한 벼 직파재배의 생육 특성 및 수량

  • Park, K.H. (Korea National College of Agriculture and Fisheries) ;
  • Park, S.T. (Korea National College of Agriculture and Fisheries)
  • 박광호 (한국농수산대학 식량작물학과) ;
  • 박성태 (한국농수산대학 식량작물학과)
  • Published : 2018.06.30

Abstract

The field trial was performed to evaluate the rice growth and yield in direct seeding cultivation with iron-coated rice seeds. The required time for seed emergence was for 9~11days in the tested direct seeding methods. That was 1~2days earlier in direct seeding with pregerminated seeds than that of direct seeding with iron-coated seeds. The seedling establishment was highest in water seeding with iron-coated seeds but there was not significant difference in terms of statistical analysis. The rice plant height was taller in water seeding with broadcasting method than that of wet hill-seeding methods and in direct seeding with iron-coated seeds than that of direct seeding with pregerminated seeds. The tiller number in the rice plant was the highest in machine transplanting at 30days after direct seeding(June 17) and in water seeding with iron-coated seeds at 45days after seeding(DAS) and 60DAS. The tiller number of 75 and 90DAS in the tested rice cultivation methods being with 352~405/m2 was not significantly different in terms of statistical analysis. The heading time was not different in rice direct seeding methods but 2 day earlier in direct seeding with iron-coated seeds than that of direct seeding with pregerminated seeds. The culm length was the highest in water seeding with iron-coated seeds and the panicle length was the longest in wet hill-seeding with pregerminated seeds. The panicle number per m2 was highest in water seeding with iron-coated seeds but not significant difference among the tested rice cultivation methods. The water seeding with iron-coated seeds resulted in the highest spikelet number per m2 and the heaviest grain weight of brown rice. Percentage of ripened kernel was the highest in wet hill-seeding with iron-coated seeds. But there were not significant among the tested rice cultivation methods. The milled rice yield in direct seeding methods was 3~21% higher than that in machine transplanting. Water seeding with iron-coated seeds recorded the highest milled rice yield being with 6.86t/ha.The occurrence of sheath blight was high according to machine transplanting>wet hill-seeding>water seeding. Weed occurrence was the highest in water seeding with pregerminated seeds. Weedy rice occurred not in machine transplanting but occured 0.6~0.7% in direct seeding methods with pregerminated seeds and 0.1% in direct seeding with iron-coated seeds.

벼 직파재배 유형(담수산파, 무논점파) 및 사용 종자별 생육특성 및 수량 비교 시험 결과를 요약하면 다음과 같다. ① 출아일수는 9~11일이 소요되었고, 싹튼 볍씨 사용이 철분코팅볍씨 사용 직파보다 1~2일이 빨랐으며, m2당 입모 수는 103~147개로 담수산파의 철분코팅볍씨 사용에서 가장 많았으나, 벼 직파방법 간에 통계적 유의성은 없었다. 결주율(무논점파)은 2.7~3.7%이었다. ② 초장생육에서 직파는 기계이앙 보다는 짧았고, 벼 직파방법 간에는 담수산파가 무논점파보다 파종 후 60일까지는 길었으나, 파종 후 75일 이후는 비슷하였다. 사용 종자 간에는 철분코팅볍씨 사용이 싹튼 볍씨 사용보다 길었고, 담수산파에서는 통계적 유의성도 있었다. ③ m2당 경수는 6월 17일(파종후 30일)에는 기계이앙이, 파종 후 45일과 60일에는 담수산파의 철분코팅볍씨 사용에서 가장 많았고, 파종 후 75일과 90일 m2당 경수는 352~405개로 벼 재배방법 간에 통계적으로 유의한 차이는 없었다. ④ 출수기는 직파에서 8월 21~23일로 기계이앙(8월 13일)보다는 8~10일이 늦었고, 직파방법 간에는 차이가 없었으나, 사용종자 간에는 철분코팅 볍씨 사용이 싹튼 볍씨 사용보다 2일이 빨랐다. ⑤ 성숙기 벼 생육특성에서 간장은 기계이앙(72.4cm)보다 철분코팅볍씨 사용 담수산파 및 무논점파는 통계적으로 각각 유의하게 길고 짧았으며, 수장은 무논점파의 싹튼 볍씨 사용(24.3cm)에서 가장 길었고, 담수산파 및 기계이앙과 통계적 유의성이 있었다. 벼 직파방법별 사용종자 간에는 수장은 별 차이가 없었다. m2당 수수는 357~407개로 담수산파의 철분코팅볍씨 사용에서 가장 많았으나 벼 재배방법별로 통계적 유의성은 없었다. 수당입수는 102~106개로 거의 같았다. ⑥ 수량구성요소는 m2당 입수는 37,105~42,450개, 현미천립중은 21.9~22.8g으로 담수산파의 철분코팅볍씨 사용에서 가장 많았고 무거웠다. 등숙비율은 77.6~86.3%으로 무논점파의 철분코팅볍씨 사용에서 가장 높았으나, 수량구성요소 모두 벼 재배방법 간에 통계적 유의성은 없었다. ⑦ 쌀 수량은 10a당 568~686kg으로 담수산파의 철분코팅 볍씨 사용(686kg/10a)에서 가장 높았으며 기계이앙 및 그 외 직파방법과 통계적 유의성도 있었다. 그 외 직파방법은 기계이앙(568kg/10a) 대비 3~7% 높았으나, 통계적 유의성은 없었다. ⑧ 잎도열병은 벼 생육초기 기계이앙과 담수산파에서 약간 발병하였고, 잎집무늬마름병과 이삭누룩병은 기계이앙>무논점파≥담수산파 순으로 심하였다. ⑨ 잡초는 담수산파의 싹튼 볍씨 사용에서 발생이 심했고, 8월 16일 이후는 벼 재배방법 다같이 후발피가 발생하였다. 잡초성벼는 기계이앙은 발생되지 않았으나, 싹튼 볍씨 사용 직파는 0.6~0.7%, 철분코팅볍씨 사용 직파는 0.1%정도 발생하였다.

Keywords

Acknowledgement

본 연구결과는 농림수산식품기술기획평가원 주요 곡물 조사료 자급률 제고사업단 사업으로 추진되었음을 알려드립니다.

References

  1. 농촌진흥청, 농협, 한국직파농업협회. (2016). 벼 직파재배기술 매뉴얼(무논점파•건답점파): pp. 27
  2. 박광호, 박성태. (2016). 잡초성벼(앵미)와 잡초방제를 위한 모내기 같은 5가지 벼 직파 신기술. p.58.
  3. 박광호, 박성태. (2017). 벼 직파 유형별 생육 및 수량 비교 연구. 현장농수산연구지, 19(1):119~128
  4. Chung, M. J. (1998). Annual Report of National Crop Experiment Station. pp. 350.
  5. Diarra, A. R., J. Smith, Jr and R. E. Talbert. (1985). Red rice(Oryza sativa) control in drill-seeded rice (O. sativa). Weed Science. 33 : 703-707.
  6. Furuhata, M., T. Chosa, O. Matsumura and T. Yukawa. (2009). Effect of ironpowder coating versus calciumperoxide coating of seeds on seedling emergence and establishment of rice direct seeded in submerged paddy field. Jpn. J. Crop Sci. 78(2):170-179.
  7. Han, H. S., Y. H. Choi, K. S. Hwang, S. W. Ro, S. M. Yang, S. J. Park, C. Y. Seong, J. M. Lee and K. H. Park. (2014). The effect of iron-coated seeds on the germination enhancement of glutinous rice variety. In Proceeding of Korean Society of Crop Science Conference. 151pp.
  8. Hong. (1999). Studies on germination characteristics and occurrence cology of weedy rice and its control method. In Studies on technology for stable grain production in dry seeded rice. Rural Development Administration. pp. 34-66.
  9. Kim, S. S., W. Y. Choi, S. J. Seok, S. Y. Lee, J. H. Kim and D. S. Cho. (1995). Influence of midsummer drainage times on lodging and growth of rice in direct drill seeding culture on puddled soil. Kor. J. Crop Sci. 40(1) : 33-38.
  10. Kim, S. Y., Y. Son, W. G. Ha, S. T. Park and S. C. Kim. (1998). Occurrence of weedy rice as affected by cultural practices. Kor. J. Crop Sci. 43(2) : 124-127.
  11. Kim, S. Y. and S. T. Park. (2010). Introduction to direct seeding rice cultivation technology. Rural Development Administration. 201pp.
  12. Kim, Y. S. (2011). A study on improvement of rice direct sowing technology by coating methods. Ph.D. thesis of Kongju National University, Gongju. pp.118.
  13. Kim, Y. G., K. P. Hong and W. K. Joung. (2003). Effect of pellet material on seed germination in rice. In Proceeding of Annual Report of Gyeongsangnam-do Agricultural Research and Extension Services. pp.38-42.
  14. Kwon, S. L., R. J. Smith Jr. and R. E. Talbert. (1991b). Red rice(Oryza sativa) control and suppression in rice(O. sativa). Weed Technology. 5 : 811-816.
  15. Kwak, K. U., J. H. Lee, K. S. Park, H. S. Won, J. H. Kim and K. H. Park. (2014). The effect of iron-coated seeds on growth and yield of rice in wet hill direct seeding. In Proceeding of Korean Society of Crop Science Conference. pp.78.
  16. Lee C. W., Y. S. Ki and J. T. Lim. (1994). Optimum number of seedling stands of rice for high yield in direct water-seeded culture. Kor. J. Crop Sci. 39(5) : 405-411.
  17. Lee, S. S., J. H. Kim, S. B. Hong and S. H. Yun. (1998). Effect of humidification and hardening treatment on seed germination of rice. Korean J. Crop Sci. 43(3):157-160.
  18. Lee S. S. and Kim J. H. (1999). Morphological change, sugar content and α-amylase activity of rice seeds under various priming conditions. Korean J. Crop. Sci. 44, 138-142.
  19. Lee S. S. and Kim J. H. (2000). Total sugars, α-amylase activity and germination after priming of normal and aged rice seeds. Korean J. Crop. Sci. 45(2):108-111.
  20. Mori, S. H., S. Fujimoto, G. Watanabe, A. Ishioka, M. Okabe, Kamei and M. Yamauchi. (2012). Physiological performance of iron-coated primed rice seeds under submerged conditions and the stimulation of coleoptile elongation in primed rice seeds under anoxia. Soil Science and Plant Nutrition 58(4):469-478.
  21. Min, T. G. and B. M. Seo. (1999). The changes of biochemical and anatomic properties in tobacco(Nicotiana tabacum L.) seeds by priming. Proceeding of Korean J. Crop. Sci. pp.176-177.
  22. Nam H. B., S. S. Kim, H. G. Park, H. T. Shin, S. Y. Cho and S. Y. Lee. (1997). Influence of midsummer drainage times on growth and lodging of rice plant in direct seeding on flooded paddy surface. Kor. J. Crop Sci. 42(6) : 722-728.
  23. Park, C. Y. Seong, J. M. Lee and K. H. Park. (2014). The effect of iron-coated seeds on the germination enhancement of glutinous rice variety. Proceeding of Korean Society of Crop Science Conference. 151pp.
  24. Park, K. H. and M. Yamauchi. (2011). Evaluation of direct seeding method for rice using iron-coated seeds in Korea. Jpn. J. Crop Science. Vol. 80(Supplement 1). p. 502-503.
  25. Park, K. H., M. H. Lee, S. C. Kim and K. U. Kim. (1997). Growth habit of weedy rice and its possible chemical control. In Proceedings of the 16th Asian-Pacific Weed Science Society Conference, 8-12 Sep. 1997, Kuala Lumpur, Malaysia, pp. 238-242
  26. Park, S. T., J. E. Hill, A. C. Chang and S. K. Lee. (1993). Effects of different water depths on early growth of rice and barnyardgrass(Echinochloa crus-galli). Korean J. Crop Sci. 38(5) : 405-412
  27. Smith, R. J. Jr. (1981). Control of red rice (Oryza sativa) in water seeded rice (O.sativa). Weed Sci. 29 : 663-666.
  28. Shin, H. R., H. G. Park, O. D. Kwon, J. Y. Lee, S. W. Kim and T. D. Park. (1996). Seedling stand and yield of direct seeding on flooded paddy surface of rice as influenced by soil conditions before seeding and seeding methods. RDA. J. Agri. Sci. 38(1) : 41~48
  29. Son, Y. (1995). Annual Report of National Yeongnam Agricultural Experiment Station. pp. 287-300.
  30. Son, Y., S. Y. Kim, N. J. Chung, C. J. Lee, H. H. Y. K. Kim, S. Y. Kim, S. T. Park, J. H. Se1, C. D. Hwang, H. K. Bae and M. K. Oh. (2017). Seed germination and effect of water depths on seedling establishment of iron-coated rice seeds. Korean J. Crop Sci., 62(1): 9~15
  31. Watanabe, H., M. Azim and I. Md. Zuki. (1996). Ecology of weedy rice(Oryza sativa., locally called padi angin) and its control strategy. In H. Watanabe, M. Azim and I. Md. Zuki ed. Ecology of Major Weeds and Their Control in Direct Seeding Rice Culture of Malaysia. pp. 112-116.
  32. Won, J. G., C. D. Choi, W. H. Lee, S. C. Lee, C. R. Kim and B. S. Choi. (1997). Improvement of rice seedling emergence by seed coating materials in direct seeding into flooded paddy soil. Korean J. Crop Sci. 42(3):286-291.
  33. Yamauchi, M. (2002). Reducing floating rice seedling in wet direct sowing by increasing specific gravity of seeds with iron powder coating(In Japanese). Jpn. J. Crop Sci. 71(extra issue 1) :150-151.
  34. Yamauchi, M. (2004). Improved anchorage and bird protection with iron-coated seeds in wet direct seeding of rice crops. In Proceeding of the World Rice Research Conference held in Tokyo and Tsukuba, Japan, 4-7 November 2004. p209-211.
  35. 苗播機稻作硏究會. (1966). 移秧作の機械化苗播栽培法實用化に關する試驗硏究報告書. pp. 1~100.