• 제목/요약/키워드: $H_2O_2$ tolerance

검색결과 146건 처리시간 0.028초

수목(樹木)의 수분특성(水分特性)에 관한 생리(生理)·생태학적(生態學的) 해석(解析)(VI). P-V 곡선법(曲線法)에 의한 활엽수(闊葉樹) 20종(種)의 내건성(耐乾性) 진단(診斷) (Ecophysiological Interpretations on the Water Relations Parameters of Trees(VI). Diagnosis of Drought Tolerance by the P-V Curves of Twenty Broad-Leaved Species)

  • 한상섭
    • 한국산림과학회지
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    • 제80권2호
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    • pp.210-219
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    • 1991
  • P-V 곡선법(曲線法)을 적용(適用)하여 20종(種)의 낙엽활엽수(落葉闊葉樹)에 대한 내건성진단(耐乾性診斷)을 하였다. 엽(葉)의 수분특성인자(水分特性因子) 중 내건성판별(耐乾性判別)에 적합(適合)한 인자(因子)는 최대포수시(最大飽水時)의 삼투(滲透)포텐셜 (${\Psi}_0{^{sat}}$), 초기원형질분리점(初期原形質分離點)의 삼투(滲透)포텐셜(${\Psi}_0{^{tlp}}$), 세포막(細胞膜)의 최대탄성계수(最大彈性係數)($E_{max}$), 초기원형질분리점(初期原形質分離點)의 상대함수율(相對含水率)($RWC^{tlp}$)였으며, 그 밖에 상대함수율(相對含水率)(FWC)와 워터포텐셜(${\Psi}_L$)과의 관계, 팽압(膨壓)($P_{vat}$)과 ${\Psi}_L$과의 관계, H$\ddot{o}$fler diagram등의 그림을 내건성진단(耐乾性診斷)에 사용하였다. 이와같은 수분특성인자(水分特性因子)로 고찰(考察)할 때 물푸레나무, 상수리나무, 졸참나무, 갈참나무, 현사시등은 비교적 내건성(耐乾性)이 높은 수종(樹種)으로, 들메나무, 자작나무, 이태리포플러, 음나무, 서어나무, 까치박달, 산벚나무, 개벚나무, 층층나무등은 비교적 내건성(耐乾性)이 약(弱)한 수종(樹種)으로, 그리고 신갈나무, 고로쇠, 복자기, 당단풍, 느릅나무, 느티나무등은 중간(中間) 수종(樹種)으로 판별(判別)되었다.

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Polyamine 함량이 증가된 형질전환 담배 식물체에서의 스트레스 저항성에 관한 연구

  • 위수진;박기영
    • 한국생물공학회:학술대회논문집
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    • 한국생물공학회 2001년도 추계학술발표대회
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    • pp.189-192
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    • 2001
  • Polyamine 함량이 증가된 형질전환 식물체들은 $H_2O_2$ 처리에 의해서 야기된 산화적스트레스에 대해 야생형 식물체보다 조직 손상이 월등히 낮았으며 백화와 괴사되는 정도도 훨씬 낮았으며 chlorophyll 양의 손실도 비교적 적은 편이었다. 또한 고염분 스트레스를 처리하면서 야생형보다 비교적 높게 유지되었으며 4달 정도까지 생장이 지속되었지만 야생형 식물체에서는 생장이 거의 정지되어 식물체가 고사하였다. 그 외에 ABA를 처리하여 노화를 유도한 경우 야생형에서 훨씬 빠르게 노화가 일어났으며 형질전환 식물체 잎에서는 노화가 트게 지연되었다. 또한 pH3.0의 potassium phosphate를 처리한 경우에도 야생형의 잎보다 형질전환 식물체 잎에서 갈변등의 세포 손상이 크게 지연되었다. 곰팡이 감염에서도 높은 저항성을 보였으며 항산화효소임 GST와 CAT 유전자 발현이 증가하였다. Ethylene 발현 저해 식물체에서도 스트레스를 처리한 후 ethylene 생합성 효소의 발현이 억제되면서 스트레스 저항성을 나타내었다. 따라서 이러한 스트레스에 의하여 유도되는 노화의 지연현상이 야생형 식물체보다 형질전환 식물체 잎에서 두드러지게 나타나는데 그 기작은 mpolyamine이 이러한 스트레스를 완화시키는데 작용하였기 때문이라고 생각된다.

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Saccharomyces cerevisiae KNU5377 with Multiple Stress Tolerance and its Potential as a Worldwide On-site Industrial Strain for Alcohol Fermentation

  • Paik, Sang-Kyoo;Ingnyol Jin;Yun, Hae-Sun;Park, Sae-Hun;Shin, Seong-Chul;Kim, Jae-Wan;Shin, Ki-Sun;Lee, Jung-Sook;Park, Yong-Ha
    • 한국미생물·생명공학회지
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    • 제30권4호
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    • pp.425-429
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    • 2002
  • Saccharomyces cerevisiae KNU5377 was examined to assay the recovering capacity against heat and other stressors. Along with a particular fermentation ability that is able to produce ethanol even at high temperature such as $40^{\circ}C$ with a comparable rate to the fermentation at $33^{\circ}C$, this strain also exhibited higher viability than a reference strain owing to its own thermotolerance that conferred the survival after the severe heat shock at $60^{\circ}C$ for 30 minutes. Furthermore, this strain showed outstanding tolerances against $H_2O_2$, ethanol and some chemical compounds. But, especially due to the thermotolerance, this strain has been suspected of other species of yeast. However, ITS (internally transcribed spacer) 1 and 2 sequencing data confirmed this strain was a typical strain of S. cerevisiae. The outstanding tolerances to various environmental stressors Indicate this S. cerevisiae KNU5377 is enough to use both as an on-site potential strain for world-wide alcohol fermentation industry and as a model strain for researches into the routes to acquire the tolerance to various stressors.

Glutathione Reductase from Oryza sativa Increases Acquired Tolerance to Abiotic Stresses in a Genetically Modified Saccharomyces cerevisiae Strain

  • Kim, Il-Sup;Kim, Young-Saeng;Yoon, Ho-Sung
    • Journal of Microbiology and Biotechnology
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    • 제22권11호
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    • pp.1557-1567
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    • 2012
  • Glutathione reductase (GR, E.C. 1.6.4.2) is an important enzyme that reduces glutathione disulfide (GSSG) to a sulfydryl form (GSH) in the presence of an NADPH-dependent system. This is a critical antioxidant mechanism. Owing to the significance of GR, this enzyme has been examined in a number of animals, plants, and microbes. We performed a study to evaluate the molecular properties of GR (OsGR) from rice (Oryza sativa). To determine whether heterologous expression of OsGR can reduce the deleterious effects of unfavorable abiotic conditions, we constructed a transgenic Saccharomyces cerevisiae strain expressing the GR gene cloned into the yeast expression vector p426GPD. OsGR expression was confirmed by a semiquantitative reverse transcriptase polymerase chain reaction (semiquantitative RT-PCR) assay, Western-blotting, and a test for enzyme activity. OsGR expression increased the ability of the yeast cells to adapt and recover from $H_2O_2$-induced oxidative stress and various stimuli including heat shock and exposure to menadione, heavy metals (iron, zinc, copper, and cadmium), sodium dodecyl sulfate (SDS), ethanol, and sulfuric acid. However, augmented OsGR expression did not affect the yeast fermentation capacity owing to reduction of OsGR by multiple factors produced during the fermentation process. These results suggest that ectopic OsGR expression conferred acquired tolerance by improving cellular homeostasis and resistance against different stresses in the genetically modified yeast strain, but did not affect fermentation ability.

만성 폐질환 환자에서의 호흡재활치료의 효과 (The Effect of Pulmonary Rehabilitation in Patients with Chronic Lung Disease)

  • 최강현;박영주;조원경;임채만;이상도;고윤석;김우성;김동순;김원동
    • Tuberculosis and Respiratory Diseases
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    • 제43권5호
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    • pp.736-745
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    • 1996
  • 배경: 호흡재활치료는 만성 폐질환 환자들의 폐기능을 호전시키지는 못하나 운동허용능(exercise tolerance)을 호전시키는 것으로 알려져 있다. 그러나 이러한 운동허용능이 증가하는 것이 유산소운동 능력 (aerobic exercise capacity)이 중가하기 때문인지는 논란이 있으며, 아직 국내에서 는 호흡재활치료에 대한 보고가 없었다. 방법: 14명의 만성 폐질환 환자(만성폐쇄성폐질환 11명, 유육종증 1명, 기관지확장증 1명, 특발성 폐섬유화증 1명, 평균 연령 $57{\pm}4$세, 남자 12명, 여자 2명)를 대상으로 6 주간의 호흡재활치료를 시행하여 치료 전후의 폐기능과 운동허용능의 변화를 관찰하였다. 결과: 1) 대상 환자의 호흡재활치료 전 평균 노력성 폐활량(FVC), 1초간 노력성호기량($FEV_1$) 및 노력성 호기중간 기류량($FEF_{25-75%}$)은 각각 예측치의 $71.5{\pm}6.4%$, $40.6{\pm}3.4%$$19.3{\pm}3.8%$ 였으며, 총 폐용량(TLC), 기능적잔기용량(FRC) 및 잔기량(RV)은 각각 $130.3{\pm}9.3%$, $157.3{\pm}13.2%$$211.1{\pm}23.9%$이었고, 확산능(diffusing capacity) 및 최대 환기량(MVV)은 각각 $59.1{\pm}1.1%$$48.6{\pm}6.2%$이었다. 이들 각 폐기능의 지표들은 호흡재활치료 전후 유의한 변화는 없었다. 2) 자전거운동력측정계 (bicycle ergometer)를 이용한 운동부하 검사상 최대 운동량(maximum work rate)은 치료전 $57.7{\pm}4.9$ watts 에서 치료후 $64.8{\pm}6.0$ watts로(P=0.036), 최대산소섭취량($VO_2$ max)은 $0.81{\pm}0.07$ L/mm에서 $0.96{\mu}0.08$ L/mm로 (P=0.004), 무산소역치 (anaerobic threshold)는 $0.60{\pm}0.06$ L/mm 에서 $0.76{\mu}0.06$ L/min로(P=0.009) 호흡재활치료후 유의하게 증가하였다. 가스교환은 호흡재활치료 전후에 변화가 없었다. 3) 지구력시험 (endurance test)상 운동일(work)이 상지는 $4.5{\pm}0.7$ joule 에서 $14.8{\pm}2.4$ joule로 (P<0.001), 하지는 $25.4{\pm}5.7$ joule에서 $42.6{\pm}7.7$로 (P<0.001) 모두 재활치료 후 유의하게 증가하였다. 6분 보행거리는 $392{\pm}35$ 미터 에서 $459{\pm}33$ 미터로(P<0.001) 치료 후 연장되었고, 최대 흡기압도 $68.5{\pm}5.4$ $CmH_2O$에서 $80.4{\pm}6.4$ $CmH_2O$로 증가하였다(P<0.001). 결론: 만성 폐질환 환자에서 6주간의 호흡재활치료는 폐기능 및 가스교환을 호전시키지는 못하였지만 운동허용능(exercise tolerance)을 호전시키는 것으로 사료되었다.

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저산소환경에 의한 송사리(Oryzias dancena)의 Stanniocalcin-2와 Hypoxia-Inducible Factor-1α mRNA 발현의 변화 (Changes in Stanniocalcin-2 and Hypoxia-Inducible Factor-1α mRNA Expression in Medaka Oryzias dancena Exposed to Acute Hypoxia)

  • 신지혜;손영창
    • 한국수산과학회지
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    • 제46권1호
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    • pp.70-76
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    • 2013
  • Some fish live in aquatic environments with low or temporally changing $O_2$ availability. Variation in dissolved oxygen (DO) levels requires behavioral, physiological, and biochemical adaptations to ensure the uptake of sufficient $O_2$. Several species are relatively well adapted to tolerate low $O_2$ partial pressures (hypoxia). The medaka (Oryzias dancena ) is an important model organism for biomedical research that shows remarkable tolerance to hypoxia. We investigated the regulation and role of hypoxia-inducible factor-1 (HIF-$1{\alpha}$) as a general hypoxia-response gene and stanniocalcin-2 (STC2), which is one of the genes regulated by HIF-$1{\alpha}$ in mammals under hypoxia. We subjected adult male medaka to the following three acute hypoxia regimes: 1, 24, and 72 h at DO = $1.8{\pm}0.5$ ppm. The changes in STC2 and HIF-$1{\alpha}$ mRNA were monitored using quantitative real-time reverse-transcription PCR. We found strong upregulation of HIF-$1{\alpha}$ mRNA in the livers of fish exposed to hypoxia. Hypoxia rapidly upregulated STC-2 mRNA expression in muscle, but not in the brain, gills, liver, or intestine. Therefore, unlike in mammals, hypoxia might regulate O. dancena STC-2 expression in an HIF-$1{\alpha}$-independent manner.

S-Nitrosoglutathione (GSNO) Alleviates Lead Toxicity in Soybean by Modulating ROS, Antioxidants and Metal Related Transcripts

  • Methela Nusrat Jahan;Islam Mohammad Shafiqul;Da-Sol Lee;Youn-Ji Woo;Bong-Gyu Mun;Byung-Wook Yun
    • 한국작물학회:학술대회논문집
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    • 한국작물학회 2023년도 춘계학술대회
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    • pp.105-105
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    • 2023
  • Heavy metals, including lead (Pb) toxicity, are increasing in soil and are considered toxic in small amounts. Pb contamination is mainly caused by industrialization - smelting, mining. Agricultural practices - sewage sludge, pests and urban practices - lead paint. It can seriously damage and threaten crop growth. Pb can adversely affect plant growth and development by affecting the photosystem, cell membrane integrity, and excessive production of reactive oxygen species (ROS) such as hydrogen peroxide (H2O2)andsuperoxide(O2.-). NO is produced via enzymatic and non-enzymatic antioxidants to scavenge ROS and lipid peroxidation substrates in terms of protecting cells from oxidative damage. Thus, NO improves ion homeostasis and confers resistance to metal stress. Our results here suggest that exogenous NO may aid in better growth under lead stress. These enhancements may be aided by NO's ability in sensing, signaling and stress tolerance in plants under heavy metal stress in combination with lead stress. Our results show that GSNO has a positive effect on soybean seedling growth in response to axillary pressure and that NO supplementation helps to reduce chlorophyll maturation and relative water content in leaves and roots following strong burst under lead stress. GSNO supplementation (200 µM and 100 µM) reduced compaction and approximated oxidative damage of MDA, proline and H2O2. Under plant tension, a distorted appearance was found in the relief of oxidative damage by ROS scavenging by GSNO application. In summary, modulation of these NO, PCS and prolongation of metal past reversing GSNO application confirms the detoxification of ROS induced by toxic metal rates in soybean. In summary, these NO, PCS and metal traditionally sustained rates of reverse GSNO application confirm the detoxification of ROS induced by toxic metal rates in soybean.

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북극 동물플랑크톤 Calanus glacialis TCTP (Translationally Controlled Tumor Protein)가 산화적 스트레스 상태에서 E. coli 세포의 저항성에 미치는 효과 (The Effect of Translationally Controlled Tumor Protein (TCTP) of the Arctic Copepod Calanus glacialis on Protecting Escherichia coli Cells against Oxidative Stress)

  • 박유경;이창은;이형석;고혜연;김소진;이성구;김정은;임정한;홍주미;김려옥;한세종;김일찬
    • 생명과학회지
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    • 제30권11호
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    • pp.931-938
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    • 2020
  • TCTP는 다양한 진핵생물에서 풍부하게 존재하는 단백질 중에 하나이며, 암, 세포 증식, 유전자 조절 등과 관련된 세포의 생리학적 기작에서 중요한 역할을 담당하는 것으로 알려져 왔다. 더구나, TCTP는 dithiothreitol (DTT)나 hydrogen peroxide (H2O2)에 의해 유도되는 산화적 스트레스에 대한 저항성에 관여하는 중요한 단백질로 주목 받아 왔다. 한편, 극지역 서식 생물들은 강한 자외선에 의해 발생한 활성산소를 조절하기 위한 다양한 항산화 방어체계를 가지고 있다. 본 연구에서는 북극 동물플랑크톤 Calanus glacialis에서 분리된 TCTP가 산화적 스트레스 하에서 E. coli 세포의 저항성에 미치는 효과를 관찰하였다. C. glacialis에서 분리된 TCTP 유전자(ORF 522 bp) 서열을 분석하였고, 약 23 kDa의 재조합 단백질을 제작하였다. 관찰 결과, TCTP 재조합 단백질이 E. coli 세포에서 과발현 되었을 때, 세포들은 H2O2에 의해 유도된 산화적 스트레스에 대한 저항성이 증가하는 것을 확인하였다. 본 관찰을 통해, 북극 C. glacialis TCTP 단백질의 항산화 조절자로서의 역할에 대한 가능성을 처음으로 제시하였다.

잠재적 생균제로서 식물 젖산균의 분리 및 특성 (Isolation and Characterization of Plant-Derived Lactic Acid Bacteria as Potential Probiotic)

  • 김정도;박성보;이나리;정진하;이희섭;황대연;이종섭;정성윤;손홍주
    • 한국미생물·생명공학회지
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    • 제39권3호
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    • pp.308-312
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    • 2011
  • Plant lactic acid bacteria were isolated from plant-associated fermentative foods and crops, and their probiotic properties were investigated. Isolates K27 and O2 were isolated from Kimchi and onion, and identified as Lactobacillus plantarum on the basis of 16S rRNA gene analysis. The two strains were highly resistant to acid (an MRS broth at pH 2.5), where the survival rates of L. plantarum K27 and L. plantarum O2 were 90.2% and 97.3%, respectively. L. plantarum K27 and L. plantarum O2 also showed high bile resistance to 0.5% oxgall, with a more than 70% survival rate. They showed an inhibitory effect against pathogenic strains of Escherichia coli KCCM 40880 and Pseudomonas aeruginosa ATCC 10145. The antibacterial effect of the two strains was probably due to the presence of lactic acid. ACE inhibitory activities of the two strains ranged from 72.8% to 80.6% in MRS broth. Notably, the two strains showed high ACE inhibitory activity (89.2~98.2%) in MRS broth containing 10% skim milk. Antioxidant activity was tested by DPPH radical scavenging activity, with antioxidant activities of the strains being in the range of 56.8~61.5%. The results obtained in this study suggest that L. plantarum K27 and L. plantarum O2 may be potential probiotic starter cultures with applications with fermentative products.

Cellulose 생성 Acetobacter xylinum KI 균주의 분리 및 특성 (Isolation and characterization of Cellulose Producing Acetobacer xylinum KI Strain)

  • 차영주;박경진;김도경;전홍성;이병권;김근형;이숙영;김성준
    • 한국미생물·생명공학회지
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    • 제22권6호
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    • pp.571-576
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    • 1994
  • One strain of cellulose-producing Acetobacter was isolated from the traditionally fermen- ted grape vinegar in Korea. The isolated strain, designated as KI strain was identified as the Acetobacter xylinum with respect to physiological and biochemical characteristics. KI produced acetic acid from ethanol, and then decomposed acetate to CO$_{2}$ and H$_{2}$O. When the isolated strain was cultivated statically in broth culture, a thick cellulose pellicle was formed. KI was tolerance of 8% ethanol and 30% glucose, and the isolate was positive in ketogenesis from glycerol, $\gamma$-pyrone from glucose and fructose, and 2-ketogluconic acid from glucose. KI strain possessed straight-chain C$_{18:1}$, C$_{16:0}$, and C$_{14:0}$ fatty acid, and contained ubiquinone Q$_{9}$ and Q$_{10}$ as isoprenoid quinone. DNA base composition of KI strain was 57.6% G+C.

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