DOI QR코드

DOI QR Code

동백나무의 발아 및 유묘 생장에 미치는 종자 무게 및 저장방법의 영향

Effect of Seed Weight and Storage Method on Germination and Seedling Growth of Camellia japonica

  • Kang, Hee-Kyoung (Department of Horticulture, Kongju National University) ;
  • Choi, Su-Ji (Department of Horticulture, Kongju National University) ;
  • Song, Hong-Seon (Department of Plant Resource, Kongju National University)
  • 투고 : 2019.11.18
  • 심사 : 2019.12.24
  • 발행 : 2020.02.01

초록

본 연구는 동백나무의 대량번식 및 양묘를 위한 기초 정보를 제공하기 위하여 종자 무게와 저장방법에 따른 발아특성과 유묘생장을 조사하였다. 실온저장과 4℃건조저장의 발아율은 종자 무게에 따라 일정한 경향이 없었다. 4℃ 습윤모래저장의 발아율은 종자무게가 무거울수록 높아졌으나 저장 120일에 매우 낮은 발아율을 나타내었다. 4℃ 습윤여과지저장의 발아율은 60일, 90일, 120일 저장 모두 80% 이상으로 높았고, 종자 무게에 따른 발아율의 차이도 거의 나타나지 않았다. 평균발아일수는 실온저장과 건조저장에서 30일 내외의 긴 시간이 요구되었지만 습윤저장(모래, 여과지)은 13일 내외로서 짧았다. 엽수, 엽건물 중, 줄기직경, 뿌리건물중은 종자 무게 1.21 g 이상부터 평균치를 상회하였고, 줄기길이는 종자 무게 1.01 g, 식물체건물중은 종자 무게 0.81 g, 줄기건물중은 종자 무게 0.61 g부터 유묘의 평균치를 상회하였다. 유묘 생장은 종자 무게가 무거울수록 양호하였으며, T/R율은 종자가 무거울수록 낮아지는 경향이었다. 동백나무 유묘의 대량생산을 위해서는 종자 무게 및 크기를 구체화할 필요성이 있고, 파종을 위한 종자저장은 4℃ 습윤여과지저장이 가장 효율적인 방법으로 평가되었다.

This study was carried out to provide basic information for mass breeding and cultivating the saplings of Camellia japonica. The germination rates did not show definite tendency according to the changes of seed weight at room temperature and 4℃ dry storage conditions. The germination rate of 4℃ wet sand storage was increased with seed weight, but showed very low germination rate for 120 days of storage. The germination rate was above 80% in 60 days, 90 days and 120 days, respectively, at 4℃ wet filter paper storage conditions. The average days taken for those germinations were about 30 days at room temperature and 4℃ dry storage conditions, but wet storage (sand, filter paper) condition took the shortly nearly 13 days for those germinations. Leaf number, leaf dry weight, stem diameter and root dry weight were higher than total average by more than 1.21 g for seed weight. Stem length was higher than the average by more than 1.01 g, plant dry weight was higher than the average by more than 0.81 g, and stem dry weight was higher than the average by more than 0.61 g. In the case of seed weight becoming heavier, seedling growth was good but T/R ratio tended to decrease. In order to increase the mass production of seedlings using Camellia japonica seeds, we need to specify the weight and size of those seeds. The 4℃ wet filter paper storage condition was evaluated as the most efficient method for the seed storage used for seeding.

키워드

참고문헌

  1. Bonfil, C. 1998. The effects of seed size, cotyledon reserves, and herbivory on seedling survival and growth in Quercus rugosa and Q. laurina. Am J Bot. 85(1):79-87. https://doi.org/10.2307/2446557
  2. Choi, C.H., W.S. Tak and T.S. Kim. 2006. Effects of several pre-treatments on seed germination or Sophora japonica L. Korean J. Plant Res. 19(5):580-585 (in Korean).
  3. Han, O.S. 2010. Characteristics and propagation of 'Bomul', a domestically cultivated camellia cultivar. Department of Horticulture, MS. Thesis, Jeju National University, Korea. pp. 1-41 (in Korean).
  4. Jung, K.Y., E.S. Yun, C.Y. Park, Y.D. Choi, J.B. Hwang and S.H. Jeon. 2012. Effects of seed size variation on germination and seeding vigour of sorghum(Sorghum bicolor L.) Korean J. Crop Sci. 57(3):219-225 (in Korean). https://doi.org/10.7740/kjcs.2012.57.3.219
  5. Kang, H.K., J.Y. Yi, S.K. Ahn and H.S. Song. 2014. Germination characteristics and shape of Indigofera amblyantha seed for slope revegetation. J. Korean Env. Res. Tech. 17(2):85-92 (in Korean).
  6. Kenji, S. and K. Kihachiro. 1991. Phenology of tree seedlings in relation to seed size. Can J Bot. 69:532-538. https://doi.org/10.1139/b91-072
  7. Kim, C.Y. 2010. Cultivating the seedlings in greenhouse for evergreen broad-leaved target species and artificial regeneration in warm-temperate forests. Department of Forestry, Ph.D. Thesis, Chonnam National University, Korea. pp. 1-117 (in Korean).
  8. Kim, J.J., S.H. Lee, K.S. Song, K.S. Jeon, J.Y. Choi, K.S. Choi, S.N. Lee and H.I. Sung. 2014. Growth and physiological responses of indeciduous Quercus L. in container by fertilizing treatment. Korean J. Environ. Agric. 33(4):372-380 (in Korean). https://doi.org/10.5338/KJEA.2014.33.4.372
  9. Kim, K.S., S.J. Hwang, B.S. Pyo and S.M. Kim. 2005. Adventitious bud induction and plant regeneration from cotyledon explants of Camellia japonica L. Korean J. Medicinal Crop Sci. 13(3):105-108 (in Korean).
  10. Kwon, O.J., K.K. Shim and Y.M. Ha. 1997. Seed propagation and softwood cutting of native Styrax japonicus for landscape tree uses. J. KILA 25(2):9-19 (in Korean).
  11. Lee, C.H., B.S. Seo and J.W. Park. 1998. Stimulation of seed germination and variations in seed components of Styrax japonica. J. Korean For. Soc. 87(4):503-509 (in Korean).
  12. Lim, H.I., G.N. Kim, K.H. Jang and W.G. Park. 2015. Effect of wet cold and gibberellin treatments on germination of dwarf stone pine seeds. Korean J. Plant Res. 28(2):253-258 (in Korean). https://doi.org/10.7732/kjpr.2015.28.2.253
  13. Lim, J.D., H.I. Park, T.J. An, J.J. Lim, S.H. Kim, B.R. Yoo, E.H. Kim and I.M. Chung. 2012. Effect of seed size on seed germination and growth characteristics in safflower (Carthamus tinctorius L.). Korean J. Medicinal Crop Sci. 20(6):415-420 (in Korean). https://doi.org/10.7783/KJMCS.2012.20.6.415
  14. Park, C.M., H.S. Choi and C.H. Choi. 2012. Effect of storage, temperature and pre-treatment on germination of Melia azedarach L. Seed. Korean J. Plant Res. 25(1):14-23 (in Korean). https://doi.org/10.7732/kjpr.2012.25.1.014
  15. Park, H.B., C.H. Ko, S.Y. Kim, K.C. Lee, J.H. Kim and J.M. Chung. 2019. Dormancy type and germination characteristics of seeds of Lonicera chrytsantha Turcz. Ex Ledeb (Caprifoliaceae). Korean J. Plant Res. 32(5):457-462 (in Korean).
  16. Seo, B.S., C.H. Choi and W.J. Park. 2009. Effect of priming treatments on seed germination and seedling growth of Sorbus alnifolia. Korean J. Plant Res. 22(1):5-12 (in Korean).
  17. Shin, J.H. and Y.H. You. 2011. Effects of seed size on the rate of germination, early growth and winter survival in four oaks species. Korean J. Environ. Biol. 29(4):274-279 (in Korean).
  18. Song, J.H., H.I. Lim and K.H. Jang. 2011. Germination behaviors and seed longevities of three Ulmus species in Korea. Korean J. Plant Res. 24(4):438-444 (in Korean). https://doi.org/10.7732/kjpr.2011.24.4.438
  19. Wulff, R.D. 1986. Seed size variation in Desmodium paniculatum, II. Effects on seedling growth and physiological performance. J. Ecol. 74:99-114. https://doi.org/10.2307/2260351