Abstract

63주령 ISA Brown 산란계 총 96수를 사용하여, 12일 동안 난황에서의 biological astaxanthin과 chemical astaxanthin 및 capxanthin의 축적을 통한 착색 효과를 비교하였다. 대조구 사료에는 착색제를 첨가하지 않았고, 효모 Phaffia rhodozyma 3%를 대조구 사료에 첨가하여 astaxanthin 함량이 22.5 mg/kg 되게 한 후, 화학적으로 합성한 astaxanthin을 대조구 사료에 45 mg/kg 첨가한 후 및 paprika로부터 추출한 capxanthin을 대조구 사료에 45 mg/kg 첨가구 모두 4개의 처리구들을 두었다. 처리당 6반복, 반복당 4수씩을 임의로 배치하였다. Astaxanthin은 생물학적 및 화학적 급원 모두 급여 9일째까지 축적이 이루어졌다. Capxanthin의 경우, 난황에서 축적되지는 않았고 이로부터 파생되어진 물질들이 급여 <TEX>$6{\sim}9$</TEX>일 후에 미미하게 검출되었다. 난황에서의 astaxanthin 축적 정도는 급여한 농도에 비례하였다. 난황의 색깔을 제외하면, 달걀의 다른 품질 요인들은 처리구들 간의 차이가 거의 없었다. A total of 96 ISA Brown layers, 63-wk-old, were used in a 12-day feeding trial to measure the effect of dietary astaxanthin and capxanthin on their accumulation in egg yolk. The hens were fed diets containing astaxanthin from the yeast, Phaffia rhodozyma, at 22.5 mg/kg feed, or synthetic compound at 45 mg/kg feed, and capxanthin from paprika extract at 45 mg/kg feed. The levels of yolk astaxanthin from the two pigments were saturated at <TEX>$9^{th}$</TEX> day of feeding. Capxanthin was not accumulated in egg yolk but its derivatives were slightly present after <TEX>$6{\sim}9$</TEX> days of feeding. The level of astaxanthin accumulated in egg yolk was proportional to the level of dietary astaxanthin. Except the color of egg yolk, other quality factors of eggs were not significantly different among the treatments.

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