• 제목/요약/키워드: Lysine

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재래식 간장 및 된장 제조가 대두단백질의 영양가에 미치는 영향 -제3보 Lysine 가용도의 변화- (The Effect of Korean Soysauce and Soypaste Making on Soybean Proteion Quality -Part III. Changes in the Lysine Availability-)

  • 이철호
    • 한국식품과학회지
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    • 제8권2호
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    • pp.63-69
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    • 1976
  • 재래식 간장 및 된장 제조중에 일어나는 대두단백질 중의 lysine 가용도의 변화에 관하여 화학적 방법 및 생물학적 방법을 이용하여 측정하였으며 서로 다른 측정 방법에 의한 결과의 차이에 대하여 고찰 하였다. TLMI법에 의한 FDNB-reactive lysine의 동향을 보면 대두의 삶음과 메주 발효과정중 lysine의 가용도는 저하하나, 8개월간의 메주 장숙성과정에서 그 가용도가 다시 증가되어 원료대두 단백질중의 lysine가용도와 거의 같은 수준으로 되었다. 한편 백쥐의 사양시험에 의한 생물가 (BV), NPU, NER 및 상대적 lysine 가용율등에 의하면 메주 제조과정에서 뿐만 아니라 숙성과정중에도 lysine 가용도는 계속 저하되는 것으로 나타났다.

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Effects of Dietary Metabolizable Energy and Lysine on CarcassCharacteristics and Meat Quality in Arbor Acres Broilers

  • Tang, M.Y.;Ma, Q.G.;Chen, X.D.;Ji, C.
    • Asian-Australasian Journal of Animal Sciences
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    • 제20권12호
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    • pp.1865-1873
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    • 2007
  • An experiment was performed to evaluate the effects of dietary metabolizable energy (ME) and lysine on carcass characteristics and meat quality in Arbor Acres (AA) broilers from 1 to 56 days of age. A total of 2,970 1-d-old male broiler chicks were randomly allocated to nine dietary treatments (three ME levels in combination with three lysine levels), and dietary ME and lysine concentrations were formulated by varying corn, soybean meal, tallow, and L-lysine sulfate concentrations. Live body weight (BW), carcass weight (CW), dressing percent, breast muscle weight (BMW), yield of breast muscle, muscle color (CIE L*, a*, and b*), pH values 45 min and 24 h postmortem ($pH_{45}$, and $pH_{24}$), meat shear force value (SFV), and water loss rate (WLR) were evaluated. Results showed that live body weight and dressing percent increased (p<0.05) as dietary energy increased. Higher dietary lysine content improved breast muscle weight. Neither carcass weight nor yield of breast muscle was affected by dietary energy or lysine content. Higher ME increased the b* value (p = 0.067) and $pH_{24}$ value (p<0.05), whereas it decreased SFV (p<0.05) and WLR (p = 0.06). Only water loss rate was influenced (p<0.01) by dietary lysine, which was higher in broilers from the high lysine diet as compared to those from medium or low lysine diets. The $pH_{45}$ value and L* value of breast muscle were not affected by ME or lysine. Significant interaction of dietary ME and lysine was found on a* value of breast muscle. These results indicated that dietary ME and lysine had important effects on breast muscle growth and meat quality, however their effects were different. Different concentrations of dietary ME and lysine might be considered to improve meat quality.

EFFECTS OF LYSINE AND ENERGY LEVELS ON GROWTH PERFORMANCE THIGH MUSCLE COMPOSITION AND UTILIZATION OF NUTRIENTS IN BROILER CHICKS

  • Park, B.C.;Han, I.K.;Choi, Y.J.;Yun, C.H.
    • Asian-Australasian Journal of Animal Sciences
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    • 제5권1호
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    • pp.129-138
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    • 1992
  • The effects of dietary levels of lysine and energy on growth performance, the content of DNA, RNA and protein in liver, thigh muscle composition and nutrient utilization in broiler chicks were investigated in an experiment involvies with 2 levels of dietary energy : 3,200 (2900) 2,900 (2700) kcal ME/kg) and 6 levels of lysine : 0.6(0.5), 0.8(0.7), 1.0(0.9), 1.2(1.1), 1.4(1.3), and 1.6(1.5)% was carried out. A total number of 384 male broiler chicks was used for a period of 7 weeks. Body weight gain of 1.0(0.9)% lysine level group was significantly (p < 0.01) higher than that of any other groups. Interaction between lysine and energy in the feed intake was observed (p < 0.05). Present data indicate that the content of DNA in liver tissues was significantly (p < 0.05) different by the levels of lysine, namely, 1.0(0.9)% or 1.2(1.1)% lysine level groups showed higher content than other groups (p < 0.01). Dietary levels of 1.2(1.1)% or 1.6(1.5)% lysine groups showed the highest protein content in thigh muscle tissues than that of any other groups (p < 0.05). Interaction between energy and lysine in the content of protein of thigh muscle tissues was shown (p < 0.01). The level of 0.6% lysine group showed the highest fat content in thigh muscle tissues than any other groups. Interaction between lysine and energy in the content of crude ash and crude fat of thigh muscle tissues was observed (p < 0.01). Apparent amino acid availability of arginine, glycine and threonine (p < 0.01), phenylalanine (p < 0.05) were significantly affected by the levels of lysine and interaction between lysine and energy was found only in arginine (p < 0.01).

Brevibacterium lactofermentum에서 ddh 유전자의 Overexpression이 $_L-Lysine$ 생산에 미치는 영향 (Influence on Lysine Production by Overexpression of the ddh Gene in a Lysine-producing Brevibacterium lactofermentum)

  • 박선희;김옥미;김현정;배준태;장종선;이갑랑
    • 한국식품과학회지
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    • 제31권1호
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    • pp.224-230
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    • 1999
  • $_L-Lysine$ 발효산업에 이용되고 있는 B. lactofermentum의 L-lysine 생합성은 succinylase 경로와 dehydrogenase 경로를 통하여 일어난다. 특히 lysine 생산 균주에 부가적으로 존재하는 dehydrogenase 경로는 lysine 생합성에 있어서 필수적인 경로로 작용하며 이때 meso-DAP-dehydrogenase (DDH)를 암호화하는 ddh gene이 관여한다. 그러므로 B. lactofermentum의 lysine 발효에 있어서 ddh gene의 over expression에 의한 lysine 생성량을 비교 조사하기 위하여, shuttle vector pEB1 및 pJC1으로 ddh gene을 삽입하여 재조합 plasmid pRK1 및 pRK31을 구축하였고 이를 B. lactofermentum으로 도입시켜 DDH 활성을 측정한 결과 pRK1을 함유한 균주는 대조균주보다 7배 정도, pRK31을 함유한 균주는 14배 정도 증가하였다. 또한 Shuttle vector를 함유한 대조균주와 재조합 plasmid를 함유한 균주간의 성장 비교에서는 서로 비슷한 수준을 나타내었으며 플라스크 배양에서 lysine 생성량의 비교 분석에서는 재조합 plasmid를 함유한 균주의 경우 48시간 이후부터 대조균주보다 lysine 생성량이 증가하기 시작하여 72시간때에는 최대치를 나타내었으며 그 이후는 오히려 감소하였다. 최대치를 나타낸 72시간 때의 lysine 생성량은 대조균주가 4.38g/L를 나타내었으며 pRK1 및 pRK31을 함유한 균주는 각각 5.34g/L 및 5.21 g/L이었다. 이상의 결과로 미루어 볼 때 B. lactofermentum내에서 ddh gene의 증폭에 의한 lysine 생성량은 pRK1 및 pRK31에서 대조균주보다 각각 20% 및 19% 증가하였다. 또한 발효조 배양에서의 lysine 생성량도 재조합 균주가 대조균주보다 23% 정도 증가를 나타내어 B. lactofermentum에서 ddh gene의 증폭으로 lysine 생성량이 증가하였음을 확인하였다.

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Gene Amplification of aceA and aceB in Lysine-producing Corynebacterium glutamicum ssp. lactofermentum ATCC21799

  • Kim, Hyung-Joon;Kim, Youn-Hee;Lee, Heung-Shick
    • Journal of Microbiology and Biotechnology
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    • 제7권5호
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    • pp.287-292
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    • 1997
  • The role of glyoxylate bypass in lysine production by Corynebacterium glutamicum ssp. lactofermentum ATCC21799 was analyzed by using cloned aceA and aceB genes which encode enzymes catalyzing the bypass. Introduction of a plasmid carrying aceA and aceB to the strain increased enzyme activities of the bypass to approximately 5 fold on acetate minimal medium. The strain with amplified glyoxylate bypass excreted 25% more lysine to the growth medium than the parental strain, apparently due to the increased availability of intracellular oxaloacetate. The final cell yield was lower in the strain with amplified glyoxylate bypass. These changes were specific to the lysine-producing C. glutamicum ssp. lactofermentum ATCC21799, since the lysine-nonproducing wild type Corynebacterium glutamicum strain grew faster and achieved higher cell yield when the glyoxylate bypass was amplified. These findings suggest that the lysine producing C. glutamicum ssp. lactofermentum ATCC21799 has the ability to efficiently channel oxaloacetate, the TCA cycle intermediate, to the lysine biosynthesis pathway whereas lysine-nonproducing strains do not. Our results show that amplification of the glyoxylate bypass efficiently increases the intracellular oxaloacetate in lysine producing Corynebacterium species and thus results in increased lysine production.

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Brevibacterium lactofermentum 에서 meso-Diaminopimelate-dehydrogenase Gene (ddh)의 Site-specific Inactivation (Site-speci fic Inactivation o meso-Diaminopimelate-dehydrogenase Gene (ddh) in a Lysine-producing Brevibacterium lactofementum.)

  • 김옥미;박선희;이갑랑
    • 한국미생물·생명공학회지
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    • 제26권5호
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    • pp.387-392
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    • 1998
  • B. lactofermentum의 lysine 생합성에 있어서 DDH경로 및 ddh gene이 지닌 중요성을 조사하기 위하여, site-specific mutagenesis technique를 통하여 B. lactofermentum의 ddh gene을 disruption함으로서 DDH 경로를 차단시켰다. B. lactofermentum ddh mutant는 wild type 및 AEC내성 균주보다 성장이 매우 저조하였으며 lysine 생산량에서도 급격한 저하를 가져왔다. 이와 같이 B. lactofermentum이 DAP 경로만을 가졌을 때 세포의 성장 및 lysine 생산량에 있어서 극적인 저하를 가져왔기 때문에 B. lactofermentum에서의 DDH 경로는 meso-DAP 및 lysine 생합성에 있어 필수적인 경로로 작용한다는 것을 확인하였다. 그러므로 C. glutamicum과 B. lactofermentum과 같은 corynebacteria가 lysine을 많이 생산하는 것은 DDH 경로가 부가적으로 존재하기 때문이며, 이러한 DDH 경로는 metabolic flux가 증가되면 중간 대사물을 lysine으로 변화시키는 중요한 경로로 작용할 것이라 사료된다.

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Dietary Lysine Requirement of Juvenile Yellowtail Flounder Pleuronectes ferrugineus

  • Kim, Jeong-Dae;Lall, Santosh P.
    • Asian-Australasian Journal of Animal Sciences
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    • 제16권12호
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    • pp.1777-1781
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    • 2003
  • The lysine requirements of juvenile yellowtail flounder (Pleuronectes ferrugineus) having 19.5 g initial body weight were estimated by feeding six practical-type diets containing graded levels of lysine (1.21 to 2.69% of dry diet). Dietary amino acid profile simulated that of whole body of yellowtail flounder. Most of amino acids in the diets were provided by corn gluten meal, herring meal and gelatin. Protein efficiency ratio (PER) improved significantly until lysine level increased up to 2.1% (4.3% of protein). Same trend was observed in feed:gain ratio (FGR) which maintained constant in fish groups fed diets containing lysine above 2.1%. The highest nitrogen gain (0.34 g/fish) in whole body was found in fish fed 2.1% lysine, though the value was not different from those of fish fed above the level of lysine. Fish fed 2.1% lysine also showed the best nitrogen retention efficiency of 24.6%. The broken-line analysis of protein efficiency ratio and body nitrogen gain against dietary lysine level yielded an estimated lysine requirement of 2.2% (4.5% of protein) and 2.3% (4.7% of protein), respectively.

Partition of Amino Acids Requirement for Maintenance and Growth of Broilers I. Lysine

  • Kim, J.H.;Cho, W.T.;Yang, C.J.;Shin, I.S.;Han, In K.
    • Asian-Australasian Journal of Animal Sciences
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    • 제10권2호
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    • pp.178-184
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    • 1997
  • Purified diets containing five graded levels of lysine were fed to a total of 125 growing chicks (25 chicks per treatment) to evaluate lysine requirements for growth and maintenance. A model was developed to separate lysine requirement for maintenance from requirement for growth. Based on weight gain response, the daily lysine requirement for growth was 12.06 mg/g gain and the daily lysine requirement for maintenance was 0.332 times metabolic body size ($W^{0.75}$). Similarly, the lysine requirement for growth was 0.457 mg/mg nitrogen gain and the daily lysine requirement for maintenance was 0.344 times metabolic body size. The plateau of plasma lysine concentration was reached at 354.75 mg intake/day. The total lysine requirement was 414.27 mg/day or 1.0% of the diet, 420.11 mg/day or 1.01% of the diet based on weight gain response and N gain response, respectively. Previous lysine requirements for growing chicks of 1-28 days old were in close agreement with these estimates. As a percentage of protein, lysine requirement was calculated to be 7.3% and the reported lysine content of chick muscle crude protein of 7.46% was closely related.

Effects of Dietary Lysine and Microbial Phytase on Growth Performance and Nutrient Utilisation of Broiler Chickens

  • Selle, P.H.;Ravindran, V.;Ravindran, G.;Bryden, W.L.
    • Asian-Australasian Journal of Animal Sciences
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    • 제20권7호
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    • pp.1100-1107
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    • 2007
  • The effects of offering broilers phosphorus-adequate diets containing 10.0 and 11.8 g/kg lysine, without and with 500 FTU/kg exogenous phytase, on growth performance and nutrient utilisation were determined. Each of the four experimental diets was offered to 6 replicates of 10 birds from 7 to 28 days of age. Effects of treatment on performance, apparent metabolisable energy, apparent ileal digestibility of amino acids and bone mineralisation were examined. Both additional lysine and phytase supplementation improved (p<0.05) weight gain and feed efficiency, with interactions (p<0.05), as phytase responses were more pronounced in lysine-deficient diets. Phytase improved (p<0.05) apparent metabolisable energy, which was independent of the dietary lysine status. Bone mineralisation, as determined by percentage toe ash, was not affected by treatment, which confirms the phosphorus-adequate status of the diets. Phytase increased (p<0.05) the apparent ileal digestibility of the sixteen amino acids assessed. Unexpectedly, however, the dietary addition of 1.8 g/kg lysine, as lysine monohydrochloride, increased (p<0.05) the ileal digestibility of lysine per se and also that of isoleucine, methionine, phenylalanine, valine, aspartic acid, glutamic acid and tyrosine. In addition, there were significant interactions (p<0.05) between additional lysine and phytase supplementation for arginine, lysine, phenylalanine, aspartic acid, glutamic acid, glycine and serine digestibilities, with the effects of phytase being more pronounced in lysine-deficient diets. The possible mechanisms underlying the increases in amino acid digestibility in response to additional lysine and the interactions between lysine and microbial phytase in this regard are discussed. Also, consideration is given to the way in which phytate and phytase may influence ileal digestibility of amino acids.

Effects of L-Carnitine with Different Lysine Levels on Growth and Nutrient Digestibility in Pigs Weaned at 21 Days of Age

  • Cho, W.T.;Kim, J.H.;Han, In K.;Han, Y.K.;Heo, K.N.;Odle, J.
    • Asian-Australasian Journal of Animal Sciences
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    • 제12권5호
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    • pp.799-805
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    • 1999
  • This study was conducted to investigate the effects of L-carnitine with different levels of lysine on performance of pigs weaned at 21 days of age. A total of 120 pigs were allotted into a $3{\times}2$ factorial design with three different levels of lysine (1.40%, 1,60% and 1.80%) and two levels of L-carnitine (0 and 1,000 ppm). Each treatment had 4 replications with 5 pigs per replicate. Pigs of $22{\pm}1$ days (5.9 kg of body weight) were grouped into a completely randomized block design. Treatments were 1) 1.4-Crt; 1.40% of lysine with 1,000 ppm of L-carnitine, 2) 1.4-N; 1.40% of lysine without L-carnitine, 3) 1.6-Crt; 1.60% of lysine with 1,000 ppm of L-carnitine, 4) 1.6-N; 1.60% of lysine without L-carnitine, 5) 1.8-Crt; 1.80% of lysine with 1,000 ppm of L-carnitine and 6) 1.8-N; 1.80% of lysine without L-carnitine. Growth performance was optimized in pigs fed 1.6% lysine regardless of carnitine addition. For the first 7 days of the experimental period, the best ADG and F/G were found in pigs within the 1.6-Crt group. Carnitine significantly improved (p<0.05) ADG of pigs when the lysine level in the diet was 1.6%. Only in the third week carnitine had a significant influence on growth performance of pigs. A lysine-sparing effect of L-carnitine was not detected in this study. The 1.6-Crt group showed the best proximate nutrient digestibility, and the crude fat and gross energy digestibility were higher when the L-carnitine was added in the diet. Lysine level significantly affected the digestibilities of DM (p<0.001), GE (p<0.001), CP (p<0.01) and C.fat (p<0.05). Carnitine also significantly improved digestibility of nutrients. Lysine level as well as carnitine level affected the amino acids digestibility, however, in 1.8% lysine diet carnitine did not influence on amino acids digestibility. Plasma carnitine content was significant higher (p<0.05) in pigs fed L-carnitine. This indicates the increased biological availability of carnitine within the body. L-carnitine supplementation tended to improve feed utilization during the third week (p<0.10) and during the entire period (p=0.10). Lysine level significantly affected feed utilization of pigs during the third week and entire period (p<0.05). As pigs grew, the lysine requirement was reduced.