• 제목/요약/키워드: acid adaptation

검색결과 185건 처리시간 0.029초

팽이버섯 부산물 발효에 따른 한우 거세우 반추위 성상 및 소화율에 미치는 영향 (Effects of Applying Microbial Additive Inoculants to Spent Mushroom Substrate (Flammulina velutipes) on Rumen Fermentation and Total-tract Nutrient Digestibility in Hanwoo Steers)

  • 백열창;정진영;오영균;김민석;이성대;이현정;도윤정;;최혁
    • 한국유기농업학회지
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    • 제25권3호
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    • pp.569-586
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    • 2017
  • We inoculated a spent mushroom substrate from Flammulina velutipes (SMSF) with a microbial additive and assessed the effects on chemical composition, ruminal fermentation parameters, and total-tract nutrient digestibility. In Exp. 1, three cannulated Hanwoo steers were used in an in situ trial to determine the degradation kinetics of dry matter (DM) and crude protein (CP). In Exp. 2, three Hanwoo steers were randomly assigned to experimental diets according to a $3{\times}3$ Latin square for a 3-week period (2 weeks for adaptation and 1 week for sample collection). Experimental diets included the control diet (3.75 kg/d formulated concentrate mixture + 1.25 kg/d rice straw), SMSF diet (3.19 kg/d formulated concentrate mixture + 1.25 kg/d rice straw + 0.56 kg/d SMSF), and inoculated SMSF (ISMSF) diet (3.19 kg/d formulated concentrate mixture + 1.25 kg/d rice straw + 0.56 kg/d ISMSF). The chemical composition of ISMSF did not differ from that of SMSF. Microbial additive inoculation decreased pH (P<0.05) and improved preservation for SMSF. The percentages of DM, neutral detergent fiber (NDF), and acid detergent fiber (ADF) in ISMSF were slightly lesser than those in SMSF. Ruminal fermentation characteristics and total-tract nutrient digestibility were not affected by diet. Overall, microbial additive inoculation improved preservation for SMSF and may allow improved digestion in the rumen; however, the total digestible nutrients (TDN) of SMSF and ISMSF diets were slightly lesser than the control diet. The ISMSF can be used as an alternative feedstuff to partially replace formulated concentrate feed.

식물의 앱시스산 신호 전달 기작: 앱시스산 수송, 인식, 신호 전달 및 번역 후 변형 과정에 관하여 (ABA Signal Transduction Pathway in Plants: ABA Transport, Perception, Signaling and Post-Translational Modification)

  • 이재훈
    • 생명과학회지
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    • 제24권2호
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    • pp.196-208
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    • 2014
  • 식물의 생활사 동안 물부족 스트레스는 식물의 생장과 발달에 해로운 영향을 끼치는 대표적인 스트레스이다. 유용 작물의 생산성을 증가시키기 위하여, 물부족 스트레스를 극복하는 일은 식물학 연구 분야에서 가장 중요한 이슈로 대두되어 왔다. 식물의 호르몬 중에서 앱시스산은 물부족 스트레스에 대해 식물이 저항성을 나타내는데 가장 중요한 호르몬으로서 역할을 수행하며, 씨앗의 발아, 기공의 개폐, 유묘의 성장과 같은 다양한 발달 과정에도 관여하고 있다. 그러므로, 앱시스산에 의해 매개되는 식물의 신호전달 기작을 명확히 이해하는 것은 물부족 스트레스에 대한 내성을 갖는 유용 식물을 생산해내기 위해 가장 효과적인 방법이 될 것이다. 한편, 인산화, 유비퀴틴화와 같은 번역 후 변형 과정은 식물이 다양한 환경적 스트레스 하에서 신속하게 적응을 하기 위해 가장 효율적인 기작으로 인식되어 왔는데, 이는 전사수준에서의 조절과 달리 이미 존재하는 신호전달 물질의 활성과 안정성을 직접적으로 빠르게 조절할 수 있기 때문이다. 본 총설에서는 앱시스산의 신호전달 과정과 관련된 최근 연구 동향을 업데이트하고자 하며, 특히 이러한 신호전달 과정을 앱시스산 수송, 인식, 신호전달 및 번역 후 변형 과정에 초점을 맞추어 알아보고자 한다. 또한 그러한 조절 기작이 농업분야에서 유용 작물을 생산하는데 어떻게 적용될 수 있는지에 대한 향후 전망에 대해서도 기술하고자 한다.

Function of Global Regulator CodY in Bacillus thuringiensis BMB171 by Comparative Proteomic Analysis

  • Qi, Mingxia;Mei, Fei;Wang, Hui;Sun, Ming;Wang, Gejiao;Yu, Ziniu;Je, Yeonho;Li, Mingshun
    • Journal of Microbiology and Biotechnology
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    • 제25권2호
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    • pp.152-161
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    • 2015
  • CodY is a highly conserved protein in low G+C gram-positive bacteria that regulates genes involved in sporulation and stationary-phase adaptation. Bacillus thuringiensis is a grampositive bacterium that forms spores and parasporal crystals during the stationary phase. To our knowledge, the regulatory mechanism of CodY in B. thuringiensis is unknown. To study the function of CodY protein in B. thuringiensis, BMB171codY- was constructed in a BMB171 strain. A shuttle vector containing the ORF of cry1Ac10 was transformed into BMB171 and BMB171codY-, named BMB171cry1Ac and BMB171codY-cry1Ac, respectively. Some morphological and physiological changes of codY mutant BMB171codY-cry1Ac were observed. A comparative proteomic analysis was conducted for both BMB171codY-cry1Ac and BMB171cry1Ac through two-dimensional gel electrophoresis and MALDI-TOF-MS/MS analysis. The results showed that the proteins regulated by CodY are involved in microbial metabolism, including branched-chain amino acid metabolism, carbohydrate metabolism, fatty acid metabolism, and energy metabolism. Furthermore, we found CodY to be involved in sporulation, biosynthesis of poly-β-hydroxybutyrate, growth, genetic competence, and translation. According to the analysis of differentially expressed proteins, and physiological characterization of the codY mutant, we performed bacterial one-hybrid and electrophoretic mobility shift assay experiments and confirmed the direct regulation of genes by CodY, specifically those involved in metabolism of branched-chain amino acids, ribosomal recycling factor FRR, and the late competence protein ComER. Our data establish the foundation for in-depth study of the regulation of CodY in B. thuringiensis, and also offer a potential biocatalyst for functions of CodY in other bacteria.

쎌러리(Apium graveolens L.)의 체세포배 발생 및 인공종자 발아에 있어서 앱시스산 및 저온처리에 의한 단백질 합성 (Protein Synthesis during Somatic Embryo Development and Artificial Seed Germination of Apium graveolens L. after Abscisic Acid or Cold Treatment)

  • 소웅영;여읍동;소상섭;조덕이
    • 식물조직배양학회지
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    • 제21권1호
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    • pp.15-22
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    • 1994
  • 쎌러리(Apium graveolens L.)의 체세포배 발생 및 인공종자 발아에 있어서 분자수준의 기작을 이해하기 위하여 ABA 및 저온처리에 의한 단백질합성변화에 관한 연구를 수행하였다. 단백질함량과 질산환원효소 활성도는 ABA 및 저온처리한 체세포배 및 유식물은 처리하지 아니한 것에 비하여 특히 유식물에서보다 체세포배 발생시에 더욱 높았다. 2차원 전기영동결과 ABA 및 저온처리에 의하여 심장 형배 시기에서는 30 KD, 32 KD, 171 KD 및 205 KD의 단백질과 자엽시기배에서는 29 KD, 33 KD, 37 KD, 38 KD, 41 KD, 55 KD, 66 KD, 및 110 KD 단백질이 합성되어졌다. 또한 심장형배에서는 42 KD, 44 KD, 59 KD, 64 KD, 101 KD, 104 KD, 및 190 KD의 단백질과 자엽시기에서는 29 KD 및 116 KD의 단백질이 억제되었다. 체세포배 발생 및 인공종자 발아에 있어서 ABA및 저온처리에 의해서 단백질이 합성되어지거나 억제되는 것이 동시에 일어났으며 주로 산성단백질에서 변화가 일어났다. 이와같은 결과는 체세포배 발생과정에서 그리고 체세포배 발아와 유식물의 생장과정에서 환경변화에 적응하기 위한 대사상의 변화가 일어나는 것으로 추정된다.

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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.

Effects of Persimmon (Diospros kaki L.) Vinegar as a Dietary Supplement on Feed Intake, Digestibility, and Ruminal Fermentation Indices in Sheep

  • Shin, J.H.;Ko, Y.D.;Kim, B.W.;Kim, S.C.
    • Asian-Australasian Journal of Animal Sciences
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    • 제23권12호
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    • pp.1578-1586
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    • 2010
  • This study estimated the effect of fermented persimmon (Diospros kaki L.) extract (FPE) supplement on feed intake, digestibility, nitrogen (N) balance, and rumen fermentation characteristics in sheep. Five male sheep (Corriedale${\times}$Polwarth) with average body weight of $48.6{\pm}1.3\;kg$ were housed in metabolism crates and assigned to a 5${\times}$5 Latin square design with five consecutive 20-d periods which consisted of 14-d adaptation and 6-d data collection. The sheep were fed ad libitum a diet containing concentrate and rice straw (3:7). The five treatments were FPE supplemented at 0 (Control), 5, 10, 20, and 30 g/kg of concentrate. Intakes of dry matter (DM, p<0.01), organic matter (OM, p<0.01), neutral detergent fiber (NDF, p<0.05), acid detergent fiber (ADF, p<0.05), and nitrogen-free extract (NFE, p<0.01) increased quadratically with increasing intake of FPE supplement and maximized (p<0.05) at 10 g/kg FPE. The digestibilities of DM (p<0.05), OM (p<0.05), crude protein (p<0.01), and NFE (p<0.01) increased quadratically with increasing amount of FPE supplement, and sheep fed 5 and 10 g/kg diets had greater (p<0.05) DM, OM, and NFE digestibilites than the Control treatment. By increasing FPE supplement concentration, N intake (p<0.01) and fecal N (p<0.05) increased linearly, whereas retained N (p<0.05) and retained N ratio (p<0.05) increased quadratically. The retained N was maximized (p<0.05) in sheep fed 5 and 10 g/kg diets. The mean rumen pH was not affected by FPE supplement, but there was a quadratic increase (p<0.05) of mean rumen ammonia N concentration and a linear increase (p<0.01) in mean rumen total volatile fatty acid (VFA) and acetate concentrations. The mean concentration of rumen propionate in sheep fed all FPE supplemented diets was greater (p<0.05) than the Control, but the mean ratios of rumen acetate to propionate in sheep fed 5 and 10 g/kg diets were lower (p<0.05) than that of Control sheep. In conclusion, FPE supplemented at 5-10 g/kg of concentrate improved feed intake, the digestibilites of OM and NFE, N metabolism, and rumen fermentation indices of sheep.

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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Breeding on High Lycopene and Beta Carotene with Multi-Disease Resistance in Tomato

  • Kim, Myung Kwon;Lee, Hee Bong
    • 한국육종학회지
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    • 제41권1호
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    • pp.1-8
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    • 2009
  • This study was carried out to breed and develop high quality and functional nutrient tomato with multi disease resistance as well as a stable growing adaptation for fresh market usage under protected plastic houses cultivation. The materials were used 5 inbred lines and their 6 hybrids of large tomato group, which have been bred and developed from 1999 to 2007 in Division of Plant Resource Department of Chungnam National University. Fruit weight showed hybrid vigor effect that $F_1$ hybrids weighed more than their parent lines, fruit shape formed three type of oblate, deep oblate and globe shape, in firmness and pericarp thickness have got a high significant correlation, inbred DN611 line was measured the most firm fruit with 6.04 mm pericarp thickness. In fruit color at maturity, pink color crossed to red color appeared all red fruit color in the $F_1$ hybrids, it means red skin color is a dominant gene compared to pink skin color is a recessive gene in tomato, while between fruit skin color and shoulder part color showed no any co-relationship. The sugar content and titratable acid of $F_1$ hybrids inherited an intermediate data of their parent lines, the flavor of KP543 inbred line and the hybrid (JB535 x KP543) revealed the better taste with high brix and proper titratable acid content$^{*}$. In beta carotene content DN611 line showed 2~3 times higher than other materials so that its 3 hybrids contained an increased level of beta carotene, lycopene content was not so much difference among inbred lines and $F_1$ hybrids, of them MD508 contained higher of 8.72 mg and hybrid (JB535 x JA517) had 8.05 mg lycopene content per 100 g fruit, overall pink skin color and red skin color measured a higher lycopene content than yellow and orange skin color at ripe stage. In disease resistance test by PCR marker for Fusarium race2 (I2), Nematode (Mi1), ToMV ($Tm2^2$), Cladosporium (Cf9), (JB535 x JA517) hybrid have got multi-resistance with homozygote band in Nematode, ToMV, Cladosporium and heterozygote band in Fusarium race2. Through this breeding program we could select high quality and functional nutrient with multi resistant $F_1$ hybrids and inbred lines in tomato which are two best hybrids (JB535 x MD508), (JB535 x JA517), additionally developed high beta carotene inbred line DN611 and increased the level of lycopene inbred line MD508. These results will be very useful to make a high quality tomato variety continuously.

사료 급여 방식에 따른 반추위액 내 휘발성지방산과 단당류 비교 분석과 대사산물 분석 (Comparison of Volatile Fatty Acids, Monosaccharide Analysis and Metabolic Profiling in Rumen Fluid According to Feeding Methods)

  • 엄준식;이신자;이유경;이성실
    • 한국산학기술학회논문지
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    • 제19권12호
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    • pp.814-824
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    • 2018
  • 거세한우 3두를 $3{\times}3$ Latin square design 시험방법에 적용하여 사료 적응 기간 10일 후 사료 급여 방식에 따른 반추위액 내 휘발성지방산과 단당류 비교 분석 및 대사산물 분석에 대한 연구를 수행하였다. 연구 결과 HPLC와 HPAEC에서 측정되지 않은 휘발성지방산과 단당류들은 $^1H-NMR$에서는 측정이 가능 한 것을 알 수 있었다. $^1H-NMR$에서 측정된 대사산물 중, carbohydrate 계열 대사산물 pyruvate는 사료 급여 전 반추위액에서만 측정 되었으며, succinate는 사료 급여 전 후에서 모두 측정 되었다. Amino acid 계열 대사산물은 총 9가지가 측정 되었다. Lipid 계열 대사산물 ethylene glycol는 사료 급여 전 Con구에서 유의적(P<0.05)으로 높게 측정 되었다. Aiphatic acylic compounds 계열 대사산물 trimethylamine N-oxide는 유의적인 차이는 보이지 않았다. 이번 연구를 통해 $^1H-NMR$를 이용하여 반추위액 내 많은 대사산물 측정이 가능한 것을 알 수 있었으며 사료 급여 전 후 급여 방식에 따라 대사산물의 변화가 나타나는 것을 확인 할 수 있었다.

저온 환경에서 Cronobacter sakazakii의 저항과 생존 (Resistance and Survival of Cronobacter sakazakii under Environmental Stress of Low Temperature)

  • 김세훈;장성란;정현정;방우석
    • 한국식품저장유통학회지
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    • 제18권4호
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    • pp.612-619
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    • 2011
  • C. sakazakii ATCC 12868, 29004, 29544를 이용하여 저온 저장 중의 변화를 살펴보고 저온과 냉/해동, 저온과 산, 저온에서 starvation한 것과 냉/해동의 교차저항에 대해 알아보았다. C. sakazakii를 $5^{\circ}C$에서 10일간 저장하였을 때 모든 균주들에서 1 log CFU/mL의 사멸을 보였다. C. sakazakii를 $13^{\circ}C$에서 배양한 결과, C. sakazakii ATCC 12868, 29004는 각각 7일째, 5일째에 $10^9$ CFU/mL을 나타냈고 C. sakazakii ATCC 29544는 5일 배양 후부터 30일 동안 $10^9$ CFU/mL에 도달하지 못하고 $10^8$ CFU/mL를 유지하였다. 저온과 냉/해동의 교차저항 결과, C. sakazakii ATCC 12868, 29004에서 대조구와 $5^{\circ}C$에서 2일간 저장한 것은 4 log CFU/mL의 사멸을 보였고 $13^{\circ}C$에서 배양한 것은 일정한 균수를 유지하였다. 저온과 산의 교차저항 실험에서 C. sakazakii ATCC 29544를 제외하고 다른 두 균주에서 대조구에 비해 $5^{\circ}C$ 에서 2일간 저장한 것, $13^{\circ}C$에서 배양한 것은 일정하게 높은 생존율을 보였다. C. sakazakii는 멸균된 $5^{\circ}C$ 0.1% 펩톤수에서 starvation한 것이 $5^{\circ}C$의 TSB배지와 멸균된 증류수에서 starvation한 것보다 냉/해동 환경에서 D값이 가장 높게 나타났다. C. sakazakii는 $5^{\circ}C$에서 균의 생장이 저해되었지만 $13^{\circ}C$에서 C. sakazakii의 생장이 가능하였다. 이 연구 결과는 저온에서 적응하거나 저온에서 배양된 C. sakazakii의 다른 환경에서 교차저항성을 알아보는데 유용한 기초 자료로 사용될 수 있을 것이다.