• 제목/요약/키워드: amino acid availability

검색결과 83건 처리시간 0.022초

Canola전지종실과 유박 및 기름의 대사에너지 함량과 아미노산 이용률 (Metabolizable Energy Contents and Amino Acid Availability values in the Full-Fat Seeds, Oil Meals and Oils of Canola)

  • 이규호;심정석
    • 한국가금학회지
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    • 제17권2호
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    • pp.101-107
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    • 1990
  • 본시험은 Canola 전지종실과 Canola 박 및 Canola 유의 유효에너지가(AM 및 TME)와 아미노산 이용을(TAAA)를 측정하기 위하여 실시하였다. 본시험에는 단관백색레그혼종(S.C.W.C.) 성계수탉이 실시되었으며, AME시험에서는 측정사료인Canola 전지증실, Canola 박 Canola 박+유(60:40)을 30% 그리고 Canola 유를 10% 배합한 4종의 시험사료와 기초사료를 각각 자유채식시켰고 예비시험기간은 3일 채분기간은 4일이었다. TME와 TAAA시험에서는 Canola 전지종실과 Canola 박은 단-사료로, Canola 박+유와 Canola 유는 각각 기초사료에 30%와 10%의 비율로 혼합하여 각각 1일 30g을 24시간의 절식기간 후에 강제투여(force feeding)하였고 48시간동안 전분을 채취하였다. 모든 에너지가는 질소정정 에너지가로 환산하였는데, Canola 전지종실, Canola 박, Canola 유 및 Canola +유의 AMEn가는 각각 4,485, 1,984. 8,275 및 5,655 kcal/kg이었고 TMEn가는 각각 4,577, 2,103, 8,487 및 5,630kcal/kg으로 측정되어 Canola 박+유는 Canola 전지종실보다 높은 에너지가를 나타냈으며(P<0.01), 전반적으로 Canola전지종실은 Canola 박보다 높은 TAAA가를 나타냈다.

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처리방법에 따른 불가사리의 이용율 및 사료적 가치 (Bioavailability and Feed Value of Starfish with Various Treatments)

  • 최호성;박재홍
    • 한국축산시설환경학회지
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    • 제13권1호
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    • pp.45-52
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    • 2007
  • 본 연구는 불가사리의 사료적 가치를 평가하기 위하여 불가사리 추출물의 항균효과, 영양소, 아미노산 조성 및 산란계에서 영양소 이용을 측정하였다. 불가사리 추출물은 열수추출법과 에테르추출법으로 추출하여 항균효과 측정에 이용하였다. 불가사리의 사료적 가치평가는 $60^{\circ}C$에서 3일간 건조하여 분쇄(Grinding starfish, GS) 및 extrusion 가공 (Extruded grinding starfish, EGS), 효소첨가발효(Enzyme fermented starfish, EFS) 및 효소미첨가 발효(Non-enzyme fermented starfish, NEFS)의 4개 sample에 대하여 영양성분 및 소화율을 측정하였다. 실험 결과, 불가사리 추출물 항균실험은 열수와 에테르추출물로 나누어 유산균과 병원성미생물에 대한 성장 및 억제실험을 실행 하였는데 항균효과가 낮게 나타났다. 불가사리의 사료적 가치 평가를 위하여 불가사리 가공방법에 따른 단백질 함량은 GS와 EGS에 비하여 EFS와 NEFS가 각각 62.86%와 52.82%로 유의적(p<0.05)으로 높았다. Ca 함량은 GS 및 EGS가 각각 17.26%와 18.26%로 EFS와 NEFS의 5.37%와 8.55%에 비하여 높았지만 그 원인은 EFS 및 NEFS는 발효 후 Ca을 제거하였기 때문으로 사료되었다. 불가사리의 가공방법에 따른 총아미노산 함량은 GS, EGS, EFS, NEFS에서 각각 17.17mg/g, 20.28mg/g, 36.30mg/g 및 29.96mg/g 으로 나타났다. 이 전체 아미노산 함량을 단백질 함량에 대한 비율(Total amino acid/CP, TC ratio)로 환산하면 GS, EGS, EFS, NEFS에서 각각 45.5%, 47.5%, 57.7% 및 56.7%로서 발효 처리시 전체 아미노산 함량이 높게 나타났다. 단백질 소화율은 발효 처리한 불가사리(EFS와 NEFS)에서 약 80%이었으며, Ca의 이용율도 80%를 상회하였다. 효소 처리한 EFS를 산란계에 급여시 영양소 이용율은 다른 처리구에 비하여 현저하게 높게 나타났다. 본 실험의 결과 적절하게 가공한 불가사리는 사료자원으로서 가치가 높게 평가되었다.

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국내산 콩 품종별 Rhizopus oligosporus 발효물의 단백질 소화율과 아미노산가 (In Vitro Digestibility and Amino Acid Score of Rhizopus oligosporus Fermented Productsby Domestic Soybean (Glycine max L.) Cultivars)

  • 박혜영;김현주;서정현;최혜선;박지영;심은영;김미정;김홍식
    • 한국식품영양학회지
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    • 제35권6호
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    • pp.435-444
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    • 2022
  • In vitro digestibility and protein digestibility corrected amino acid scores (PDCAAS) were investigated to verify the availability of protein in various Rhizopus oligosporus fermented products of domestic soybean (Glycine max L.) cultivars. Danbaegkong (DBK), Daepung (DP), Daewonkong (DWK), Saedanbaek (SDB), Seonyu (SY), and Cheongja4ho (CJ4) were used as raw samples, which were fermented using commercially available Rhizopus oligosporus for 48 h. All cultivars showed increased crude protein content after fermentation. The crude protein content of DBK and SDB was significantly higher than that of the other samples (55.12% in DBK and 54.22% in SDB) (p<0.001). CJ4 had the highest alanine content of 28.88 mg/g (p<0.001), and no significant difference in cysteine content was detected among the cultivars. In most of the fermented samples, the in vitro digestibility was 0.9 or higher, indicating high protein in the fermented samples. However, it is considered that restrictions on digestion are low. In DWK, the amino acid content and PDCAAS, which together indicate protein quality, were 0.917 and 0.855, respectively, confirming that it was the best cultivar to provide the raw material for fermentation. In conclusion Rhizopus oligosporus fermented soybean products can be considered a prospective source of protein with high utility value.

Effects of Alpha-galactosidase Supplementation to Corn-soybean Meal Diets on Nutrient Utilization, Performance, Serum Indices and Organ Weight in Broilers

  • Wang, C.L.;Lu, W.Q.;Li, Defa;Xing, J.J.
    • Asian-Australasian Journal of Animal Sciences
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    • 제18권12호
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    • pp.1761-1768
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    • 2005
  • Effects of alpha-galactosidase (GAL) on broiler corn-soybean meal diet was investigated. In experiment 1, sixty cockerels were allocated to five groups, including three enzyme treatments (GAL added at 0, 500, and 1,000 mg/kg diet), a nitrogen-free diet group and a fast group. The true nitrogen-corrected ME (TME$_n$) and true amino acid availability were determined. In experiment 2, 324 day-old chicks were used in a 2${\times}$3 factorial design consisting of two energy contents (high and low) and three GAL levels (0, 250, and 500 mg/kg). Three feeding phases, comprising 0-21 d, 22-35 d and 36-48 d, were involved. GAL addition improved TME$_n$ and the availability of methionine and cystine (p<0.05). The apparent ME (AME) or nitrogen-corrected AME (AME$_n$) and digestibility of dry matter, organic matter, calcium, and phosphorus were improved significantly on d 21, so was crude protein and an interaction of energy and GAL on AME$_n$ (p<0.05) was found on d 35. However, daily intake and daily gain were significantly improved with GAL addition (p<0.05) during 21 d. The small intestine relative weight decreased at 250 mg/kg GAL (p<0.05) on d 35, whereas presented an interaction between GAL and energy on d 21 (p<0.05). Likewise, this treatment increased breast muscle ratio (p<0.05). On d 21, triglycerides level of broilers showed interaction between energy and enzyme levels (p<0.05). Uric acid level in 500 mg/kg GAL declined linearly (p<0.05). On d 35, quadratic effects (p<0.05) were observed in total protein, albumin, globulin and cholesterol content for enzyme supplementation. And the interactive effects of energy and GAL on serum values showed more obviously. The study implies that GAL improved energy and nutrient availability of corn-soybean meal diet in broiler. The GAL supplementation to corn-soybean meal based diet can improve performance of broilers in early stages of growth.

The Wine Yeast Strain-Dependent Expression of Genes Implicated in Sulfide Production in Response to Nitrogen Availability

  • Mendes-Ferreira, A.;Barbosa, C.;Jimenez-Marti, E.;Del Olmo, M.;Mendes-Faia, A.
    • Journal of Microbiology and Biotechnology
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    • 제20권9호
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    • pp.1314-1321
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    • 2010
  • Sulfur metabolism in S. cerevisiae is well established, but the mechanisms underlying the formation of sulfide remain obscure. Here, we investigated by real-time RT-PCR the dependence of expression levels of MET3, MET5/ECM17, MET10, MET16, and MET17 along with SSU1 on nitrogen availability in two wine yeast strains that produce divergent sulfide profiles. MET3 was the most highly expressed of the genes studied in strain PYCC4072, and SSU1 in strain UCD522. The strains behaved differently according to the sampling times, with UCD522 and PYCC4072 showing the highest expression levels at 120 h and 72 h, respectively. In the presence of 267 mg assimilable N/l, the genes were more highly expressed in strain UCD522 than in PYCC4072. MET5/ECM17 and MET17 were only weakly expressed in both strains under any condition tested. MET10 and SSU1 in both strains, but MET16 only in PYCC4072, were consistently upregulated when sulfide production was inhibited. This study illustrates that strain genotype could be important in determining enzyme activities and therefore the rate of sulfide liberation. This linkage, for some yeast strains, of sulfide production to expression levels of genes associated with sulfate assimilation and sulfur amino acid biosynthesis could be relevant for defining new strategies for the genetic improvement of wine yeasts.

Effects of Non-protein Energy Intake on Whole Body Protein Synthesis, Nitrogen Retention and Glucose Turnover in Goats

  • Fujita, Tadahisa;Kajita, Masahiro;Sano, Hiroaki
    • Asian-Australasian Journal of Animal Sciences
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    • 제20권4호
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    • pp.536-542
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    • 2007
  • The responses of whole body protein and glucose kinetics and of nitrogen (N) metabolism to non-protein energy intake (NPEI) were determined using an isotope dilution approach and measurement of N balance in three adult male goats. The diets containing 1.0, 1.5 and 2.0 times ME maintenance requirement, with fixed intake of CP (1.5 times maintenance) and percentage of hay (33%), were fed twice daily for each 21 d experimental period. After an adaptation period of 11 d, N balance was determined over 3 d. On day 17, whole body protein synthesis (WBPS) and glucose irreversible loss rate (ILR) were determined during the absorptive state by a primed-continuous infusion of [$^2H_5$]phenylalanine, [$^2H_2$]tyrosine, [$^2H_4$]tyrosine and [$^{13}C_6$]glucose, with simultaneous measurements of plasma concentrations of metabolites and insulin. Ruminal characteristics were also measured at 6 h after feeding over 3 d. Nitrogen retention tended to increase (p<0.10) with increasing NPEI, although digestible N decreased linearly (p<0.05). Increasing NPEI decreased (p<0.01) ammonia N concentration, but increased acetate (p<0.05) and propionate (p<0.05) concentrations in the rumen. Despite decreased plasma urea N concentration (p<0.01), increased plasma tyrosine concentration (p<0.05), and trends toward increased plasma total amino N (p<0.10) and phenylalanine concentrations (p<0.10) were found in response to increasing NPEI. Increasing NPEI increased ILR of both glucose (p<0.01) and phenylalanine (p<0.05), but did not affect ($p{\geq}0.10$) that of tyrosine. Whole body protein synthesis increased (p<0.05) in response to increasing NPEI, resulting from increased utilization rate for protein synthesis (p<0.05) and unchanged hydroxylation rate of phenylalanine ($p{\geq}0.10$). These results suggest that increasing NPEI may enhance WBPS and glucose turnover at the absorptive state and improve the efficiency of digestible N retention in goats, with possibly decreased ammonia and increased amino acid absorption. In addition, simultaneous increases in WBPS and glucose ILR suggest stimulatory effect of glucose availability on WBPS, especially when sufficient amino acid is supplied.

Effect of Different Inclusion Level of Condensed Distillers Solubles Ratios and Oil Content on Amino Acid Digestibility of Corn Distillers Dried Grains with Solubles in Growing Pigs

  • Li, P.;Xu, X.;Zhang, Q.;Liu, J.D.;Li, Q.Y.;Zhang, S.;Ma, X.K.;Piao, X.S.
    • Asian-Australasian Journal of Animal Sciences
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    • 제28권1호
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    • pp.102-110
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    • 2015
  • The purpose of this experiment was to determine and compare the digestibility of crude protein (CP) and amino acids (AA) in full-oil (no oil extracted) and de-oiled (oil extracted) corn distillers dried grains with solubles (DDGS) with different condensed distillers solubles (CDS) ratios. Six barrows ($29.6{\pm}2.3kg$) fitted with ileal T-cannula were allotted into a $6{\times}6$ Latin square design. Each period was comprised of a 5-d adaption period followed by a 2-d collection of ileal digesta. The five test diets contained 62% DDGS as the sole source of AA. A nitrogen-free diet was used to measure the basal endogenous losses of CP and AA. Chromic oxide (0.3%) was used as an index in each diet. The results showed that CP and AA were very similar in 5 DDGS, but the standardized ileal digestibility (SID) of lysine (from 56.16% to 71.15%) and tryptophan (from 54.90% to 68.38%) had the lowest values and largest variation within the essential AA, which suggests reduced availability of AA and different levels of Maillard reactions in the five DDGS. The apparent ileal digestibility and SID of CP and most of AA in full-oil DDGS (sources 1 and 2) were greater (p<0.05) than de-oiled DDGS (sources 3, 4, and 5). Comparing the AA SID in the 5 DDGS, full-oil with low CDS ratio DDGS (source 1) had non-significantly higher values (p>0.05) than full-oil with high CDS ratio DDGS (source 2); however, the SID of most AA of de-oiled with low CDS ratios DDGS (source 3) were non-significantly lower (p>0.05) than de-oiled with high CDS ratio DDGS (source 4); and the de-oiled DDGS with middle CDS ratio (source 5) but with different drying processing had the lowest SID AA values. In conclusion, de-oiled DDGS had lower SID of CP and AA than full-oil DDGS; a higher CDS ratio tended to decrease the SID of AA in full-oil DDGS but not in de-oiled DDGS; and compared with CDS ratio, processing, especially drying, may have more of an effect on AA digestibility of DDGS.

Protein molecular structure, degradation and availability of canola, rapeseed and soybean meals in dairy cattle diets

  • Tian, Yujia;Zhang, Xuewei;Huang, Rongcai;Yu, Peiqiang
    • Asian-Australasian Journal of Animal Sciences
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    • 제32권9호
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    • pp.1381-1388
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    • 2019
  • Objective: The aims of this study were to reveal the magnitude of the differences in protein structures at a cellular level as well as protein utilization and availability among soybean meal (SBM), canola meal (CM), and rapeseed meal (RSM) as feedstocks in China. Methods: Experiments were designed to compare the three different types of feedstocks in terms of: i) protein chemical profiles; ii) protein fractions partitioned according to Cornell Net Carbohydrate and Protein System; iii) protein molecular structures and protein second structures; iv) special protein compounds-amino acid (AA); v) total digestible protein and energy values; vi) in situ rumen protein degradability and intestinal digestibility. The protein second structures were measured using FT/IR molecular spectroscopy technique. A summary chemical approach in National Research Council (NRC) model was applied to analyze truly digestible protein. Results: The results showed significant differences in both protein nutritional profiles and protein structure parameters in terms of ${\alpha}-helix$, ${\beta}-sheet$ spectral intensity and their ratio, and amide I, amide II spectral intensity and their ratio among SBM, CM, and RSM. SBM had higher crude protein (CP) and AA content than CM and RSM. For dry matter (DM), SBM, and CM had a higher DM content compared with RSM (p<0.05), whereas no statistical significance was found between SBM and CM (p = 0.28). Effective degradability of CP and DM did not demonstrate significant differences among the three groups (p>0.05). Intestinal digestibility of rumen undegradable protein measured by three-step in vitro method showed that there was significant difference (p = 0.05) among SBM, CM, and RSM, which SBM was the highest and RSM was the lowest with CM in between. NRC modeling results showed that digestible CP content in SBM was significantly higher than that of CM and RSM (p<0.05). Conclusion: This study suggested that SBM and CM contained similar protein value and availability for dairy cattle, while RSM had the lowest protein quality and utilization.

Cloning and Distribution of Facilitative Glucose Transporter 2 (SLC2A2) in Pigs

  • Zuo, Jianjun;Huang, Zhiyi;Zhi, Aimin;Zou, Shigeng;Zhou, Xiangyan;Dai, Fawen;Ye, Hui;Feng, Dingyuan
    • Asian-Australasian Journal of Animal Sciences
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    • 제23권9호
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    • pp.1159-1165
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    • 2010
  • Glucose is the main energy source for mammalian cells and its absorption is co-mediated by two different families of glucose transporters, sodium/glucose co-transporters (SGLTs) and facilitative glucose transporters (GLUTs). Here, we report the cloning and tissue distribution of porcine GLUT2. The GLUT2 was cloned by RACE and its cDNA was 2,051 bp long (GenBank accession no. EF140874). An AAATAA consensus sequence at nucleotide positions 1936-1941 was located upstream of the poly $(A)^+$ tail. Open reading frame analysis suggested that porcine GLUT2 contained 524 amino acids, with molecular weight of 57 kDa. The amino acid sequence of porcine GLUT2 was 87% and 79.4% identical with human and mouse GLUT2, respectively. GLUT2 mRNA was detected at highest level in porcine liver, at moderate levels in the small intestine and kidney, and at low levels in the brain, lung, muscle and heart. In the small intestine, the highest level was in the jejunum. In conclusion, the mRNA expression of GLUT2 was not only differentially regulated by age, but also differentially distributed along the small intestine of piglets, which may be related to availability of different intestinal luminal substrate concentrations resulting from different food sources and digestibility.

Lifting 기반 1D DWT 영역 상의 강인한 DNA 워터마킹 (A Robust DNA Watermarking in Lifting Based 1D DWT Domain)

  • 이석환;권기룡;권성근
    • 전자공학회논문지
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    • 제49권10호
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    • pp.91-101
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    • 2012
  • 개인 유전정보 또는 대용량 DNA 저장 정보의 보호와 GMO(Genetically Modified Organism) 저작권 보호를 위하여 DNA 서열 워터마킹 연구가 필요하다. 기존 멀티미디어 데이터 워터마킹에서는 강인성 및 비가시성에 대한 성능이 우수한 DCT, DWT, FMT(Fourer-Mellin transform) 등 주파수 기반으로 설계되어졌다. 그러나 부호 영역 서열의 주파수 기반 워터마킹은 아미노산 보존성을 유지하면서 변환 및 역변환을 수행하여야 하므로, 워터마크 삽입에 대한 상당한 제약을 가진다. 따라서 본 논문에서는 변이 강인성, 아미노산 보존성 및 보안성을 가지는 부호 영역 서열의 Lifting 기반 DWT 변환 계수를 이용한 워터마킹을 제안하며, 주파수 기반 DNA 서열 워터마킹에 대한 가능성을 제기한다. 실험 결과로부터 제안한 방법이 10%의 포인트 변이와 5%의 삽입 및 삭제 변이에 대한 강인성을 가지며, 아미노산 보존성 및 보안성을 가짐을 확인하였다.