• Title/Summary/Keyword: cellular fatty acid composition

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Diversity of Leuconostocs on Garlic Surface, an Extreme Environment

  • KIM, MYUNG HEE;SUN TAEK SHIM;YOUN SOON KIM;KYU HANG KYUNG
    • Journal of Microbiology and Biotechnology
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    • v.12 no.3
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    • pp.497-502
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    • 2002
  • Thirty-nine strains of Leuconostocs found to be tolerant to $10\%$ or more garlic were selected for further identification, by comparing their whole-cell protein pattern, 16S rRNA gene (first 530 bases) sequence, cellular fatty acid composition, and carbon source metabolism. Two isolates were Identified as Leuconostoc mesenteroides and 32 others as Leuconostoc citreum. Five other strains belonging to a cluster could not be allocated to the existing species. 16S rRNA gene sequence and cellular fatty acid composition of the unidentified bacteria exhibited close similarity with Leuconostoc argentinum. The unidentified isolates were not allocated to L. argentinum, because they formed polysaccharide from sucrose, while L. argentinum strains do not. Leuconostocs tolerant to high concentration of garlic were found predominantly on garlic surface, an extreme environment which is unfit for most of other microorganisms.

Association of FASN and SCD genes with fatty acid composition in broilers

  • Maharani, Dyah;Seo, Dong-Won;Choi, Nu-Ri;Jin, Shil;Cahyadi, Muhammad;Jo, Cheorun;Lee, Jun-Heon
    • Korean Journal of Agricultural Science
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    • v.40 no.3
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    • pp.215-220
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    • 2013
  • Fatty acids (FAs) were considered in activating nuclear hormone receptors that play significant roles in the cellular lipid metabolism by the regulation of several genes. Previously, fatty acid synthase (FASN) and stearoyl-CoA desaturase (SCD) genes have been known to regulating the FA metabolism. In this study, associations of FASN and SCD genes with fatty acid (FA) composition in broilers were investigated. Tissue samples from 95 Cobb 500 broilers were used for DNA extraction. The g.1222 A>G SNP located in intron 42 of FASN gene and 2 SNPs in SCD gene, one in exon 2 (g.3728A>G) and the other in exon 4 (g.12903G>A), were subjected for genotyping using PCR-RFLP method. One of the SNPs in SCD gene, SNP g.3728A>G had significant association with myristoleic acid (C14:1; P<0.05), palmitic acid (C16:0; P<0.05), palmitoleic acid (C16:1; P<0.05) and saturated FA (SFA; P<0.05). However, the SNP g.1222A>G in FASN gene had only suggestive association with arachidic acid (C20:0; P=0.08). The findings in this study suggest that the SNP in exon 2 of SCD gene can be used as a molecular marker for selecting birds having desirable FA composition in broilers.

Changes in Cell Membrane Fatty Acid Composition of Streptococcus thermophilus in Response to Gradually Increasing Heat Temperature

  • Min, Bonggyu;Kim, Kkotnim;Li, Vladimir;Cho, Seoae;Kim, Heebal
    • Journal of Microbiology and Biotechnology
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    • v.30 no.5
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    • pp.739-748
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    • 2020
  • In this study, a method of heat adaptation was implemented in an attempt to increase the upper thermal threshold of two Streptococcus thermophilus found in South Korea and identified the alterations in membrane fatty acid composition to adaptive response to heat. In order to develop heat tolerant lactic acid bacteria, heat treatment was continuously applied to bacteria by increasing temperature from 60℃ until the point that no surviving cell was detected. Our results indicated significant increase in heat tolerance of heat-adapted strains compared to the wild type (WT) strains. In particular, the survival ratio of basically low heat-tolerant strain increased even more. In addition, the strains with improved heat tolerance acquired cross protection, which improved their survival ratio in acid, bile salts and osmotic conditions. A relation between heat tolerance and membrane fatty acid composition was identified. As a result of heat adaptation, the ratio of unsaturated to saturated fatty acids (UFA/SFA) and C18:1 relative concentration were decreased. C6:0 in only heat-adapted strains and C22:0 in only the naturally high heat tolerant strain were detected. These results support the hypothesis, that the consequent increase of SFA ratio is a cellular response to environmental stresses such as high temperatures, and it is able to protect the cells from acid, bile salts and osmotic conditions via cross protection. This study demonstrated that the increase in heat tolerance can be utilized as a mean to improve bacterial tolerance against various environmental stresses.

Effects of Antimicrobial of Leaf Mustard(Brassica juncea) Extract on Compositions and Leakage of Cellular Materials in Escherichia coli and Staphylococcus aureus (갓(Brassica juncea) 추출물의 항균물질이 Escherichia coli와 Staphylococcus aureus의 균체 성분의 조성 및 누출에 미치는 영향)

  • 강성구;김용두;박석규
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.24 no.2
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    • pp.280-285
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    • 1995
  • To develop natural food preservatives, antimicrobial effect of the ethanol extract of leaf mustard against E. coli and S. aureus were examined in terms of compositions and leakage of cellular materials in the microorganisms treated with the extract. No effect of the concentration of ethanol extract on the fatty acid composition of E. coli and S. aureus at logarithmic phase was showen, but the content of palmitic and palmitoleic acid of E. coli slightly increased and decreased, respectively, and the content of palmitic and margaric acid of S. aureus slightly increased, when compared to each control. Ethanol extract did not affect most of the amino acids E. coli and S. aureus at logarithmic phase ; however, some of them(proline, glycine, valine and histidine of E. coli and proline, methionine and histidine of s. aureus) were elevated and some other amino acid(aspartic acid, glutamic acid, tyrosine and arginine of E. coli and aspartic acid, glutamic acid, glycine, alanine and lysine of Staph. aureus) found to be decreased. The amount of cell body protein leaked from E. coli and S. aureus increased to 1.02 and 0.22mg/g cell weight, respectively, as compared to controls. Similarly, the substances with absorbance at 260 nm from E. coli and s. aureus increased to 0.12 and 0.06mg/g cell weight, respectively.

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Effect of Garlic Oil on Fatty Acid Accumulation and Glycerol-3-Phosphate Dehydrogenase Activity in Differentiating Adipocytes

  • He, M.L.;Yang, W.Z.;You, J.S.;Chaves, A.V.;Mir, P.S.;Benchaar, C.;McAllister, T.A.
    • Asian-Australasian Journal of Animal Sciences
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    • v.22 no.12
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    • pp.1686-1692
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    • 2009
  • Garlic oil (GAR, Allium sativum L.) has been studied as a feed additive to improve animal production performance and decrease methane emission in ruminants. The present study was designed to determine the possible effect of GAR on fatty acid composition and accumulation in animal fat tissue using a cell model. 3T3-L1 preadipocytes at $2{\times}10^{4}\;mL^{-1}$ were seeded to 24-well plates and allowed to proliferate to reach confluence. The cells were then treated with media containing 0, 2.5, 5, 10, 20 and 40 $\mu{g}$ $mL^{-1}$ of GAR during the differentiation period for 8 days. Media containing dexamethasone, methyl-isobutylxanthine and insulin was applied during the first 2 days of the early differentiation period. On day 8 sub-sets of the wells were stained with oil red-O and the remaining cells were harvested for determination of glycerol-3-phosphate dehydrogenase [EC 1.1.1.8] (GPDH) activity (n = 6) and cellular fatty acid concentration (n = 6). It was found that supplementation of GAR increased (p<0.05) the ratio of monounsaturated fatty acids/saturated fatty acids in the adipocytes and showed inhibitory effect (p<0.05) on the post-confluent proliferation. With relative low dosage, GAR (5-20 $\mu{g}$ $mL^{-1}$) increased (p<0.05) the GPDH activity without affecting the cellular fatty acid concentration, while a high dosage (40 $\mu{g}$ $mL^{-1}$) inhibited (p<0.05) fatty acid accumulation and decreased GPDH activity. Supplementation of GAR had an effect on cell post-confluent proliferation, differentiation and fatty acid accumulation. However, the effect may be diverse and depends on the dose applied.

Fatty Acid Composition of Different tissues of Spodoptera exigua Larvae and a Role of Cellular Phospholipase A2 (파밤나방 유충의 조직별 지방산 구성과 세포성 인지질분해효소의 역할)

  • Kim, Yonggyun;Lee, Seunghee;Seo, Seunghwan;Kim, Kunwoo
    • Korean journal of applied entomology
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    • v.55 no.2
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    • pp.129-138
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    • 2016
  • Eicosanoids are a group of C20 oxygenated polyunsaturated fatty acids (PUFAs). To monitor biosynthetic precursors of these PUFAs, this study extracted fatty acids from different tissues of the beet armyworm, Spodoptera exigua, and assessed their compositions using GC/MS. Fifth instar larvae were dissected to isolate different tissues of gut, fat body, hemocytes, and integument. From each tissue, total lipids were extracted and fractionated into neutral lipid (NL), glycolipid (GL), and phospholipid (PL). Most tissues contained palmitic acid (16:0), stearic acid (18:0), oleic acid (18:1), linoleic acid (18:2), and linolenic acid (18:3). However, their compositions were different among tissues and lipid types. Fat body and hemocytes possessed other type of fatty acids such as myristic acid (14:0) and three unknown fatty acids. Among lipid types, PL contained relatively high levels of linolenic acid than NL and GL, while it had lower saturated fatty acids. Total unsaturated fatty acid composition was varied among tissues and lipid types. PL was rich in unsaturated fatty acids in fat body, gut, and hemocytes. There was a significant influence of calcium-independent phospholipase $A_2$ ($iPLA_2$) on maintaining fatty acid composition because RNA interference of $iPLA_2$ expression significantly modified fatty acid compositions in NL and PL. However, this study did not detect arachidonic acid, a main eicosanoid biosynthesis precursor, in all tissues. This suggests an alternative biosynthesis of eicosanoids in insects, which is distinct from the biosynthetic pathway of mammals.

Heat Shock Causes Oxidative Stress and Induces a Variety of Cell Rescue Proteins in Saccharomyces cerevisiae KNU5377

  • Kim, Il-Sup;Moon, Hye-Youn;Yun, Hae-Sun;Jin, Ing-Nyol
    • Journal of Microbiology
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    • v.44 no.5
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    • pp.492-501
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    • 2006
  • In this study, we attempted to characterize the physiological response to oxidative stress by heat shock in Saccharomyces cerevisiae KNU5377 (KNU5377) that ferments at a temperature of $40^{\circ}C$. The KNU5377 strain evidenced a very similar growth rate at $40^{\circ}C$ as was recorded under normal conditions. Unlike the laboratory strains of S. cerevisiae, the cell viability of KNU5377 was affected slightly under 2 hours of heat stress conditions at $43^{\circ}C$. KNU5377 evidenced a time-dependent increase in hydroperoxide levels, carbonyl contents, and malondialdehyde (MDA), which increased in the expression of a variety of cell rescue proteins containing Hsp104p, Ssap, Hsp30p, Sod1p, catalase, glutathione reductase, G6PDH, thioredoxin, thioredoxin peroxidase (Tsa1p), Adhp, Aldp, trehalose and glycogen at high temperature. Pma1/2p, Hsp90p and $H^+$-ATPase expression levels were reduced as the result of exposure to heat shock. With regard to cellular fatty acid composition, levels of unsaturated fatty acids (USFAs) were increased significantly at high temperatures ($43^{\circ}C$), and this was particularly true of oleic acid (C18:1). The results of this study indicated that oxidative stress as the result of heat shock may induce a more profound stimulation of trehalose, antioxidant enzymes, and heat shock proteins, as well as an increase in the USFAs ratios. This might contribute to cellular protective functions for the maintenance of cellular homeostasis, and may also contribute to membrane fluidity.

Identification of Bacteriocin-producing Lactic Acid Bacteria from Kimchi and Partial Characterization of their Bacteriocin

  • Ha, Duk-Mo;Cha, Dong-Soo
    • Journal of Microbiology and Biotechnology
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    • v.4 no.4
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    • pp.305-315
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    • 1994
  • Nineteen strains of bacteriocin-producing lactic acid bacteria were isolated from 432 Kimchi samples, and identified by the comprehensive biochemical and morphological tests verifying their cellular fatty acid composition. Using partially purified bacteriocins from these isolates, their inhibitory activities against other lactic acid bacteria and some pathogens, and sensitivity to enzyme and heat treatments were tested. The isolates were identified as Lactobacillus plantarum (2 strains), L curvatus (2 starins), L brevis (2 strains), Enterococcus faecium (6 strains), Leuconostoc mesenteroides subsp. mesenteroides (1 strain) and Lactobacillus sp. (6 strains). The bacteriocins produced by E. faecium strains provided the broadest spectrum of inhibition, affecting against other Gram-positive bacteria including lactic acid bacteria and health-threatening bacteria such as Clostridium perfringens and Listeria monocytogenes. The bacteriocins of Lactobacillus sp., L plantarum and L brevis strains were capable of inhibiting many strains of the lactic acid bacteria, whereas those of L curvatus and L mesenteroides subsp. mesenteroides strains were only inhibitory to a few strains. Generally, the inhibitory activities of both E. faecium and Lactobacillus sp. strains were greater than those of other producer strains. The bacteriocins from the isolates were sensitive to several proteolytic enzymes, and those of L curvatus and L mesenteroides subsp. mesenteroides were also sensitive to lipase and $\alpha$-amylase as well as to proteolytic enzymes. The bacteriocins from the strains of Lactobacillus sp. and a strain of L. brevis were resistant to autoclaving.

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The study on isolation of fibrinolytic bacteria from soybean paste (된장으로 부터 fibrin 용해 세균의 분리에 관한 연구)

  • Heo, Seok;Joo, Hyun-Kyu;Song, Ki-Bang;Lee, Si-Kyung
    • Applied Biological Chemistry
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    • v.42 no.1
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    • pp.6-11
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    • 1999
  • The bacteria which could hydrolyze the fibrin produced through the blood coagulation mechanism in the human body, were isolated from soybean paste. The KDO-13 strain was selected among the isolated bacteria as the best strain for fibrinolytic activity. It was spore forming and Gram positive. $C_{15:0}$ anteiso fatty acid, $C_{15:0}$ iso fatty acid and $C_{15:0}$ anteiso fatty acid were 47.7, 13.5 and 13.6%, respectively as major component among its cellular fatty acid composition. It showed the similarity of 57.7%, compared with standard strain. It was thus identified to be Bacillus atrophaeus according to Bergey's manual of systematic bacteriology and its fatty acid profiles of gas chromatography. The optimum culture temperature and pH were $37^{\circ}$ and 6 for the production of fibrinolytic enzyme by Bacillus atrophaeus KDO-13.

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Characterization of Actinomyces Isolated from Freshwater Sponges in Lake Baikal (바이칼의 담수 스폰지에서 분리한 방선균의 특성 연구)

  • Jung, You-Jung;Joung, Yo-Chan;Ahn, Tae-Seok
    • Korean Journal of Microbiology
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    • v.47 no.2
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    • pp.130-136
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    • 2011
  • Five strains of Actinomyces were isolated from freshwater sponges, Baikalospongia and Lubomirskia, in Lake Baikal. By 16S rRNA sequencing, isolates were identified as Streptomyces griseoplanus, S. halstedii, S. violascens, S. flavovirens, and S. microflavus. Isolates had different characteristics of growth temperature, carbon utilization, enzyme activity, and cellular fatty acid composition. Optimum growth conditions of isolates were $30-37^{\circ}C$, pH 8-9, and 0-1.5% salt concentrations. Major fatty acid compositions were anteiso-$C_{15:0}$, iso-$C_{15:0}$, and iso-$C_{16:0}$. Strain ATS-BA-19 had DNase and chitinase activities and strain ATS-BA-16 had cellulase and protease activities. Colonies of strain ATS-BA-15 and ATS-BA-19 made inhibition zone of Pseudomonas aeruginosa.