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Solid Matrix Priming with Hydrogels on Heteropappus arenarius Seeds

  • Lee, Chang Hee (Department of Horticulture, Hankyong National University)
  • Received : 2013.07.03
  • Accepted : 2013.08.13
  • Published : 2013.12.31

Abstract

This study was initiated to evaluate hydrophilic polymers (hydrogels) as a new solid matrix medium for seed-priming of Heteropappus arenarius Kitam. Solid matrix priming (SMP)-media were prepared with the combination of Na- and K-based hydrogels and hydrogels with three different dry levels (DC; 70%, 80%, and 90%). Priming was performed in the dark at 15 or $20^{\circ}C$ for 24 hours, and all primed seeds were incubated at $20^{\circ}C$ in the dark for the germination test. Non-primed seeds and seeds primed with distilled water (DW) were also included. To reach the germination rate of 50% ($T_{50}$), it took 4.0 days for non-primed seeds, and 3.6 and 3.9 days for DW-primed seeds at 15 and $20^{\circ}C$, respectively. Na-based hydrogel-primed seeds with 70% DC (Na 70%) showed the fastest germination, which respectively took and 1.9 and 1.8 days at 15 and $20^{\circ}C$ to $T_{50}$. K-based hydrogel-primed seeds with 70% DC showed the fastest germination among K-based hydrogels with various DC levels, but it took 0.6 days more to $T_{50}$ compared to Na 70%. The hydration rate (HR) of DW-primed seeds was 37% lower than that of Na 70%-primed seeds at $15^{\circ}C$ priming temperature, which indicates that Na 70% priming is the best solid matrix priming condition for promoting the germination of H. arenarius seeds.

Keywords

References

  1. Arin, L. and Y. Kiyak. 2003. The effects of pre-sowing treatments on emergence and seedling growth of tomato seed (Lycopersicon esculentum Mill.) under several stress conditions. Pakistan J. Biol. Sci. 6:990-994. https://doi.org/10.3923/pjbs.2003.990.994
  2. Bittencourt, M.L.C., D.C.F.S. Dias, L.A.S. Dias, and E.F. Araujo. 2004. Effects of priming on asparagus seed germination and vigour under water and temperature stress. Seed Sci. Technol. 32:607-616. https://doi.org/10.15258/sst.2004.32.2.29
  3. Blodgett, A.M., D.J. Beattie, J.W. White, and G.E. Elliott. 1993. Hydrophilic polymers and wetting agents affect absorption and evaporative water loss. HortScience 28:633-635.
  4. Bowman, D.C., R.Y. Evans, and J.L. Paul. 1990. Fertilizer salts reduce hydration of polyacrylamide gels and affect physical properties of gel-amended container media. J. Amer. Soc. Hort. Sci. 115:382-386.
  5. Evans, R.Y., I. Sisto, and D.C. Bowman. 1990. The effectiveness of hydrogels in container plant production is reduced by fertilizer salts. Foliage Dig. 3:3-5.
  6. Foster, W.J. and G.J. Keever. 1990. Water absorption of hydrophilic polymers (hydrogel) reduced by media amendments. J. Environ. Hort. 8:113-114.
  7. Gehring, J.M. and J.J. Lewis. 1980. Effect of hydrogel on wilting and moisture stress of bedding plants. J. Amer. Soc. Hort. Sci. 105:511-513.
  8. Hardegree, S.P. and W.E. Emmerich. 1992. Effect of matric-priming duration and primed water potential on germination of four grasses. J. Exp. Bot. 43:233-238. https://doi.org/10.1093/jxb/43.2.233
  9. James, E.A. and D. Richards. 1986. The influences or iron sources on the water holding properties of potting media amended with water absorbing polymers. Sci. Hort. 28:201-208. https://doi.org/10.1016/0304-4238(86)90001-4
  10. Johnson, M.S. 1984. Effect of soluble salts on water absorption by gel-forming soil conditioners. J. Sci. Food. Agr. 35:1063-1066. https://doi.org/10.1002/jsfa.2740351004
  11. Johnson, M.S. and C.J. Veltkamp. 1985. Structure and functioning of water-storing agricultural polyacrylamides. J. Sci. Food. Agr. 36:789-793. https://doi.org/10.1002/jsfa.2740360905
  12. Kang, N.J., Y.O. Jeoung, J.L. Cho, and S.M. Kang. 1997. Changes of seed proteins related to low temperature germinability of primed seeds of pepper (Capsicum annuum L.). J. Kor. Soc. Hort. Sci. 38:342-346.
  13. Kavak, S. and B. Eser. 2009. Influence of polymer coatings on water uptake and germination of onion (Allium cepa L. cv. Aki) seeds before and after storage. Sci. Hort. 121:7-11. https://doi.org/10.1016/j.scienta.2009.01.020
  14. Kim, H.J., H.H. Jung, and K.S. Kim. 2009. Effects of priming on seed germination of Gymnaster koraiensis under low temperature. Kor. J. Hort. Sci. Technol. 27:44-48.
  15. Lamont, G.P. and M.A. O'Conell. 1987. Shelf-life of bedding plants as influenced by potting media and hydrogels. Sci. Hort. 31:141-149. https://doi.org/10.1016/0304-4238(87)90116-6
  16. Lee, C.H. 2004. A taxonomic study on wild chrysanthemum native to Korea. J. Environment-Friendly Agri. Res. 6:159-176.
  17. Lee, C.H., S.Y. Kim, and Y.H. Kim. 2010. Seed priming of the California poppy (Eschscholzia californica). Hort. Environ. Biotechnol. 51:501-506.
  18. Lee, C.H. and K.W. Nam. 2009. Characteristics of seed germination in Heteropappus arenarius Kitam. native to Korea as influenced by temperature. Kor. J. Plant Res. 22:116-122.
  19. Orzolek, M.D. 1993. Use of hydrophilic polymers in horticulture. HortTechnology 3:41-44.
  20. Pill, W.G., C.K. Crossana, J.J. Fretta, and W.G. Smitha. 1994. Matric and osmotic priming of Echinacea purpurea (L.) Moench seeds. Sci. Hort. 59:37-44. https://doi.org/10.1016/0304-4238(94)90089-2
  21. Schneider, A. and P. Renault. 1997. Effects of coating on seed imbibition. I. Model estimates of water transport coefficient. Crop Sci. 37:1841-1849. https://doi.org/10.2135/cropsci1997.0011183X003700060030x
  22. Shim, K.B., S.K. Cho, J.D. Hwang, S.B. Pae, M.H. Lee, T.J. Ha, C.H. Park, K.Y. Park, and J.C. Byun. 2009. Effect of seed priming treatment on the germination of sesame. Kor. J. Crop Sci. 54:416-421.
  23. Shim, M.S. and S.Y. Choi. 2010. Growth of Ardisia pusilla as affected by starch or polyacrylate polymer mixed in the media. Hort. Environ. Biotechnol. 51:239-244.
  24. Shim, M.S., S.Y. Choi, and O.K. Kwon. 2008. Growth responses of Ardisia pusilla to the contents of various hydrophilic polymers in the media. Hort. Environ. Biotechnol. 49:365-370.
  25. Still, S.M. 1976. Growth of 'Sunny Mandalay' chrysanthemums in hardwood-bark-amended media affected by insolubilized poly (ethylene oxide). HortScience 11:483-484.
  26. Taylor, A.G., D.E. Klein, and T.H. Whitlow. 1988. SMP: Solid matrix priming of seeds. Sci. Hort. 37:1-11. https://doi.org/10.1016/0304-4238(88)90146-X
  27. Wang, Y.T. 1987. Driving your soil to drink. Greenhouse Manager 6:115-121.
  28. Wang, Y.T. and L.L. Gregg. 1990. Hydrophilic polymers- Their responses to soil amendments and effect on properties of soilless potting mix. J. Amer. Soc. Hort. Sci. 115:943-948.
  29. Zheng, G.H., R.W. Wilen, A.E. Slinkard, and L.V. Gusta. 1994. Enhancement of canola seed germination and seedling emergence at low temperature by priming. Crop Sci. 34:1589-1593. https://doi.org/10.2135/cropsci1994.0011183X003400060031x