Comparison of Productivity and Feed Value at Different Harvest Stages and Seeding Methods of Bermudagrass and Bahiagrass Cultivars
2018
Lee, W.S., Jeju National University, Jeju, Republic of Korea | Im, S.J., Jeju National University, Jeju, Republic of Korea | Kim, B.J., Jeju National University, Jeju, Republic of Korea | Kim, Y.J., Korea Racing Authority, Jeju, Republic of Korea | Kim, D.H., Korea Racing Authority, Jeju, Republic of Korea | Hwang, K.J., Korea Airport Service, Seogwipo, Republic of Korea | Kim, S.H., Hannong Bio Industry Corp., Jeju, Republic of Korea | Woo, J.H., National Institute of Animal Science, Jeonju, Republic of Korea | Park, N.G., National Institute of Animal Science, Jeonju, Republic of Korea
The southern type grasses announced for the test were the Bermudagrass cultivars (Giant, Cheyenne, Mohawk, Panchero Frio, Common and Tifton 85) and the Bahiagrass cultivars (TifQuik, Tifton 9), and the changes in the productivity and nutrient content were surveyed in Jeju area (450m altitude). The different cultivars were sowed by broadcasting or drill seeding method, and Tifton 85 was transplanted from sprigs. The fresh and dry matter yield showed varying significant differences for different cultivars (p less than 0.05). The fresh yields of Tifton 85, TifQuik and Tifton 9 were excellent, compared to the other cultivars, and for the dry matter yield, Tifton 85 and Tifton 9 were excellent when compared to the other cultivars. Crude protein content showed significant differences among different cultivars (p less than 0.05). Cheyenne, Mohawk, Panchero Frio, and Common showed differences in the crude protein content by sowing method and harvest time (p less than 0.05). The different cultivars showed differences in the crude fiber content (p less than 0.05), and Tifton 9 registered significantly high content and Mohawk and Tifton 85 showed significant crude fiber content by harvest time (p less than 0.05). According to these results, the southern type grass cultivars showed big differences in the regenerative capacity against damage from frost, productivity, and nutrient content, so they need to be chosen according to the purposes, and to increase their usage, their evaluation needs to be conducted at various altitudes.
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