DOI QR코드

DOI QR Code

호남지역 수확시기에 따른 밀 곡실 발효사료의 사료가치 및 발효품질

Feed Value and Fermentation Quality of Wheat Grain Silage with Respect to Days after Heading in Honam Region of Korea

  • 투고 : 2018.03.30
  • 심사 : 2018.06.21
  • 발행 : 2018.06.30

초록

출수 후 수확일수에 따라 수량 및 사료가치를 고려해 보면 밀 수량은 출수 후 30일부터 42일까지 유의적으로 증가하였으며(p<0.05), 최대 수량은 42일차에 5.57T/ha이었는데, 39일, 42일차와는 유의적 차이를 보이지 않았다. 사료가치의 경우 조단백, 조섬유, 조회분의 경우 유의적 차이를 보이나, 조지방, TDN의 경우 유의적 차이를 보이지 않았다(p<0.05). 발효에 영향을 주는 pH는 30일부터 39일까지는 pH 3.8-4.2까지 안정을 유지하다가 42일차부터는 pH4.5로 증가하여 일부 품종의 경우 발효에 적합하지 않았다(p<0.05). 따라서 밀의 곡실 발효사료 제조를 위한 최적 수확시기는 출수 후 39일차였다.

This study aimed to determine the optimal harvesting time for wheat to make grain silage, in Honam region of Korea. We harvested wheat grain every third day from 30 to 42 days after heading (DAH). The moisture content decreased from 61.6% at 30 DAH to 42.8% at 42 DAH. Yield of wheat grain significantly increased from 30 to 42 DAH (p< 0.05). Yield at 39 DAH (3.46T/ha) was not significantly different from that at 42 DAH (p< 0.05). With respect to the feed value of wheat grain silage, the amount of crude protein, crude fiber, and crude ash was different by harvesting time (p< 0.05). However, the amount of total digestible nutrients (TDN) from 30 and 42 DAH was not significantly different. The pH of wheat grain silage from 30 to 42 DAH was between 3.8 and 4.5 and it was stable until 39 DAH (p< 0.05). The lactic acid content of wheat grain silage from 30 to 42 DAH decreased from 3.08% to 1.10%. With respect to moisture content, yield, feed value, and fermentation, the optimal harvesting time for wheat grain silage was 39 DAH.

키워드

참고문헌

  1. AOAC. 1995. Official method of analysis (15th ed.) Association & Official Analytical Chemists, Washington DC.
  2. Chang, H.G., Kyung, K.H. and Kim, S.K. 1987. Changes in carbohydrate components of hard and soft wheat during kernel maturation. Korean Society of Food Science and Technology. 19:69-74.
  3. Cho, S.B., Kim, C.H., Hwang, O.H., Park, J.C., Kim, D.W., Sung, H.G., Yang, S.H., Park, K.H., Choi, D.Y. and Yoo, Y.H. 2011. The Effect of Fermented Diet with Whole Crop Barley Silage on Fecal Shape and Odorous Compound Concentration from Feces in Pregnant Sows. Journal of Housing and the Built Environment. 17:145-154.
  4. Food and Agriculture Organization. 2004. Animal production and health, protein sources for the animal feed industry. pp. 167-184.
  5. Food and Agriculture Organization. 2016. World food situation: FAO cereal supply and demand brief. p.1.
  6. Gill, D.R., Oldfield, J.E. and England, D.C. 1966. Comparative values of hulless barley, regular barley, corn and wheat for growing pigs. Journal of Animal Science. 25:34-36. https://doi.org/10.2527/jas1966.25134x
  7. Kim, K.H., Seo, J.H., Park, T.I., Han, O.K., Park, K.H., Song, T.H., Park, J.C., Park, C.S., Kang, C.S., Park, H.H., Park, N.G., Jeung, J.H., Ju, J.I., Kang, S.J., Hyun, J.N., and Kim, K.J. 2015. A high-yield wheat cultivar 'Cheongwoo' for whole crop forage. The Korean Journal of Breeding Science. 47:339-344. https://doi.org/10.9787/KJBS.2015.47.3.339
  8. Kim, K.J. and Chang, H.G. 1985. Changes in milling properties during maturation of wheat kernel. Journal of Korean Society of Crop Science. 30(4):381-387.
  9. Ministry of Agriculture, Food and Rural Affairs (MAFRA). 2011. Feed process guide book. p.28.
  10. Ministry of Agriculture, Food and Rural Affairs (MAFRA). 2016. Statistical Year Book of Agriculture and Food. p.287.
  11. Lee, H.W., Kim, Y.Y., and Chang, J.S., 2015. Feed science. KNOU press. Seoul. p.7.
  12. Owens, F.N., Secrist, D.S., Hill, W.J. and Gill, D.R. 1997. The effect of grain source and grain processing on performance of feedlot cattle: a review. Journal of Animal Science. 75:868-879. https://doi.org/10.2527/1997.753868x
  13. R Ver 3.2.3. 2015. The R Foundation for statistical computing platform.
  14. Park, J.H., Oh, Y.J., Cheong, Y.K., Song, T.H., Park, T.I., Lee, K.W., Kim, K.H. Kim, Y.K., Park, J.C. and Kim, B.K. 2017. Feed value and fermentation quality of covered barley grain silage with respect to days after heading in Honam region of Korea. Journal of Korean Society of Crop Science. 62:16-23. https://doi.org/10.7740/kjcs.2016.62.1.016
  15. Rural Development Administration (RDA). 2012. Agricultural science and technology of analysis based on research. pp. 315-374.
  16. Seo Kim, Lee, W.H., Lee, J.H., Park, T.I., and Choi, G.J. 2004. Honam. Grassland and Forage Science. 24:217-224. https://doi.org/10.5333/KGFS.2004.24.3.217
  17. Song, T.H., Oh, Y.J., Kang, H.J. Park, T.I., Chenong, Y.K., Kim, Y.K. and Kim, B.K., 2015. Effect of Feed Value and Fermentative Quality According to Harvesting Time of Barley and Wheat Grain Silage. The Korean Society of Crop Science. 60:174-179. https://doi.org/10.7740/kjcs.2015.60.2.174
  18. Woodman, H.E., and Engledow, F.L. 1924. A chemical study of the development of the wheat grain. The Journal of Agricultural Science. 14:563-586. https://doi.org/10.1017/S0021859600003993