Abstract

본 실험은 NDF 및 ADF 함량이 높은 버섯폐배지(버섯잔사)에 대한 볏짚 대체 가능성을 채식 행동 관점에서 검토할 목적으로 실시하였으며, 시험사료인 농후사료+볏짚(Control: 5.32kg+자유채식), 농후사료+버섯폐배지+볏짚(T1 : 5.32kg+0.82kg+자유채식) 및 농후사료+버섯폐배지+ 볏짚 (T2 : 5.32 kg+1.64 kg+자유채식)를 급여하여 채식 행동 조사를 하였다. 공시가축은 평균체중 357.0+2.9kg인 한우 18두를 이용하였으며, 사료급여에 있어서는 농후사료와 버섯페배지는 1일 2회로 반량씩 급여하였으며 볏짚은 자유채식토록 하였다. 볏짚 채식량은 Control구가 2.66kg으로서 가장 높게, T2구가 2.03 kg으로 가장 낮게 나타난 반면, 총채식량 및 NDF 채식량은 T2 > T1 > Control구 순으로 높게 나타났다. 채식시간은 Control구가 289.3분, T2구가 290.5로 비슷했고 T1구가 236.0분으로 가장 적었다(p<0.05). 반추시간에 있어서는 버섯폐배지 첨가량을 0%(0.0kg), 15%(0.82kg) 및 30%(1.64kg)로 증가 시켜줌에 따라 반추시간은 451.0분에서 359.5분으로 직선적으로 감소하였다(p<0.05). 이는 버섯폐배지의 사료입자 크기가 매우 작았던 것에 기인된 것으로 생각된다. 1일 저작시간, 식괴수, 저작회수와 식괴당 저작수 및 사료가치지수는 볏짚을 급여한 대조구에서 모두 높게 나타났다(p<0.05). 그러나 식괴당 반추시간은 T2(69.4분)에서, 분 당 식괴수는 T1구(1.07번)에서 높게 나타났다(p<0.05). 채식율, 반추효율 및 저작효율성에 있어서는 버섯폐배지 첨가 급여구(T1, T2)가 무첨가 급여구(Control)에 비하여 높게 나타났으며, 이는 높은 채식량과 버섯폐배지의 작은 입자도가 관여한 것으로 생각된다. 군 행동은 모든 구(Control, T1 및 T2)에서 농후사료 급여시에 통일된 행동을 보였고, 반추 및 휴식에 있어서 군 행동은 처리 간 큰 차이가 없는 것으로 나타났다. 이상의 결과 육성우 배합사료에 버섯폐배지 15% 및 30%를 첨가 급여함으로서 반추시간, 식괴수, 저작수 및 FVI치는 다소 낮은 결과치를 보였으나, 채식행동에 큰 문제가 될 정도는 아니며, 오히려 채식율, 반추효율 및 저작효율에 있어서 무첨가구에 비하여 첨가구가 높았던 점을 감안 할 때 한우 육성우 조사료원으로서 대체 가능성을 기대할 수 있다. This study was carried out to investigate the effects of dietary supplementation of spent mushroom substrates on eating time, ruminating and resting time of growing Hanwoo. A total of eighteen growing Hanwoo <TEX>$(357.0{\pm}2.9kg)$</TEX> were allocated into three feeding groups and assigned to three dietary treatments: Control (C : concentrate + rice straw; 5.32 kg + intake of free), T1 (concentrate + spent mushroom substrates + rice straw; 5.32 kg +0.82 kg + intake of free) and T2 (concentrate + spent mushroom substrates + rice straw; 5.32 kg + 1.64 kg + intake of free). Intake of rice straw was the highest at C (2.66 kg), while T2 (2.03 kg) was the lowest. But total intake and NDF intake were highly in order of T2 > T1 > C (p<0.05). Eating time was similar in C and T1 with 289.3 and 290.5 minutes, and that in T1 was the shortest with 236.0 minutes (p<0.05). When spent mushroom substrates were increased by 0 (0.0 kg), 15 (0.82 kg) and 30% (1.64 kg) of concentrate, chewing time was decreased linearly from 451.0 and 402.3 to 359.5 minutes (p<0.05), which was due to the particle size of very small feed. Number of bolus, number of chews, number of chews/bolus and FVI (chewing time/intake of feed 1kg) showed the highest to all in C. But ruminating time per bolus was the longest in T2 (69.4 min.), and number of bolus per minute was the highest at T1 (1.07 no.) Eating rate, ruminating efficiency and chewing efficiency were significantly higher (p<0.05) in T1 and T2 than in C, which was due to increased feed intake and the small particle size of spent mushroom substrates. When fed with concentrate, Hanwoo group did united behavior in the all treatment (C, T1 and T2). But group behavior in ruminating and resting was hardly influenced by feeding levels of roughage. Consequently, spent mushroom substrates could be used up to from 15 to 30% in growing Hanwoo roughage source without any harmful effect on eating behavior.

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