• 제목/요약/키워드: mallard egg

검색결과 3건 처리시간 0.015초

난류(卵類)의 지질성분 및 지방산 조성 분석 - 달걀, 기러기알, 청둥오리알 - (Analysis of lipid composition and fatty acids in poultry eggs -cage system, open barn system's hen egg, moscovy duck's egg mallard's egg-)

  • 홍이진;윤혜경;구성자
    • 한국식품조리과학회지
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    • 제15권6호
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    • pp.645-651
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    • 1999
  • 일반란, 천연란, 고센란, 청둥오리알, 기러기알의 지질성분 및 지방산 조성 분석 결과는 다음과 같다. 가식부 100 g에 대한 지질 비율은 기러기알>고센란>청둥오리알>일반란>천연란 순으로 기러기알이 가장 높았고, 지질중 TG 비율은 일반란>고센란>천연란>청둥오리알>기러기알 순으로 일반란의 TG함량이 가장 높았다. Cholesterol함량은 난황 1 g당 일반란이 14.14mg로 가장 높았고, 청둥오리알과 13.30 mg으로 가장 낮았고, total lipid에 대한 cholesterol함량은 일반란이 4.5%로 가장 높았고, 청둥오리알과 기러기알이 3.3%로 가장 낮았다. 방사구란과 비방사구란을 중성지절, 당지질 및 인지질의 함량을 측정한 결과 중성지질은 방사구란에 비해 비방사구란이 더 높았고, 당지질과 인지질의 경우에는 반대로 비방사구란보다 방사구란에서 더 높게 나타났다. 특수란의 경우 중성지질 함량은 청둥오리알보다 기러기알이 더 낮았고, 두 종류 모두 달갈류보다 더 낮은 값이였다. 또한 당지질과 인지질은 청둥오리알보다 기러기알에서의 함량이 더 높았고, 두 종류 모두 달걀류보다 높게 측정되었다. 분획한 중성지질과 당지질, 인지질 모두 TLC에 의한 정성반응을 통해 성분 확인을 하였다. 필수 지방산 함량을 분석한 결과 linoleic acid 함량은 기러기알에서, linolenic acid 함량은 고센란에서 가장 높았다. Arachidonicacid와 EPA함량는 기러기알에서 가장 높게 나타났고, 달갈류에서는 EPA값이 측정되지 않았다. DHA함량은 기러기알>천연란>일반란>고센란>청둥오리알 순으로 기러기알에서 가장 높게 나타났다.

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PRODUCTION, EVOLUTION AND REPRODUCTIVE ENDOCRINOLOGY OF DUCKS

  • Tanabe, Y.
    • Asian-Australasian Journal of Animal Sciences
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    • 제5권1호
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    • pp.173-181
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    • 1992
  • Duck is an important domestic animal, especially in Asia. Eighty five percent of ducks in the world are kept in Asia, especially in the East and South Asia regions. The ancestor of domesticated ducks was mallard (Anas platylhynchos), which are still migrating between north and southern parts in Eurasia. Ducks have been domesticated in China for at least 3000 years ago. Phylogenetic studies on ducks, employing electrophoresis of blood proteins, indicate a marked difference of genetic constitution between duck breeds in southeast Asia and those in northeast Asia. Duck embryonic ovary is much more active in secretion of sex steroid hormones especially estradiol than the embryonic testes. Estradiol secreted by the embryonic left ovary has an important role in female sexual differentiation in ducks. In the female ducks, plasma LH, estradiol and testosterone levels increase and reach peaks shortly before the first egg, while progesterone level reach a peak shortly after the first egg. In laying ducks oviposition mostly occurs in the last 3 hr of darkness and first hr of light ranging 02:00-06:00 under 14 hr light (05:00-19:00) and 10 hr darkness photoperiodic condition. Measurements of plasma hormone levels reveal that onset of darkness is a major signal for LH release from the pituitary and the subsequent release of progesterone from ovary, and for induction of ovulation in the female duck.

Selection and Crossbreeding in Relation to Plumage Color Inheritance in Three Chinese Egg Type Duck Breeds (Anas Platyrhynchos)

  • Lin, R.L.;Chen, H.P.;Rouvier, R.;Poivey, J.P.
    • Asian-Australasian Journal of Animal Sciences
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    • 제27권8호
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    • pp.1069-1074
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    • 2014
  • In China and South East Asia, the duck (common duck) is important in egg production for human consumption. Plumage color is a breed characteristic and of economic importance, together with egg production. Our aim in this study was to investigate the inheritance of plumage color in three Chinese indigenous egg-type duck breeds, Shan Ma (S), Putian White (F) and Putian black (P), and some of their crossbreds. These three breeds have different plumage color and are used in crossbreeding. The crossbred laying ducks $F{\times}(P{\times}S)$ and $F{\times}(S{\times}P)$ showed highly improved laying ability but heterogeneous plumage color. Genotypes at four relevant loci were investigated by studying down color and pattern in ducklings after crossbreeding. $F_1$ ducklings from the matings $F{\times}S$ and $S{\times}F$, $P{\times}S$, and $S{\times}P$ were classified into four classes of plumage color (the Shan Ma plumage color, black, white, or multicolored) over three generations. Parents were selected for the Shan Ma plumage color of their progeny. In the fourth generation, P male and P female ducks were selected according to the frequency of the desired class of plumage color (Shan Ma) of their $F_1$ progeny to obtain the so-called "Brown Putian Ma duck". The Shan Ma duck genotype was identified as having the restricted mallard color pattern ($M^RM^R$), full expression of any of the patterns or colors (CC), no extended black (ee) and no brown dilution D (D). The Putian White genotype was recessive white (cc), no extended black (ee) and no brown dilution D (D). The Putian Black genotype exhibited full expression of extended black (E gene) and no brown dilution (CCEE D [D]). It was shown that $F{\times}S$ and $S{\times}F$ tests should be implemented to eliminate the recessive white c allele in the S line and the dominant extended black E allele in the F line. It was also shown that the Brown Putian Ma obtained from Putian Black, with no extended black genotype (ee), could be used to get rid of the black plumage (E gene) in the crossbred ducks. This could provide a solution for producing 3-way crossbred ducks Putian $White{\times}$(Putian-$Ma{\times}Shan$ Ma) and Putian $White{\times}$(Shan $Ma{\times}Putian$-Ma), with the desired Shan Ma feather color.