• 제목/요약/키워드: tolerance to cold

검색결과 323건 처리시간 0.022초

국내 자생종 및 도입종 만병초의 내한성과 관련된 형태 및 생리적변화 (Cold Tolerance of Native and Introduced Evergreen Rhododendron Species According to Morphological and Physiological Changes)

  • 이병철;김성민;정효정;심이성
    • 원예과학기술지
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    • 제29권6호
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    • pp.561-567
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    • 2011
  • 상록활엽관목으로서 꽃이 화려하고 관상가치가 높으나 멸종위기 수종인 자생만병초와 원예도입종 만병초 품종을 공시하여 내한성의 기작을 잎 운동과 광합성 활성 등의 생리적 반응을 조사하여 구명하고자 하였으며 다음과 같이 요약된다. 월동 후의 엽소 피해 정도로 측정한 내한성 정도는 자생종인 만병초와 홍만병초에서 도입종보다 크게 높았으며, 도입종 중에서도 'Nova Zembla'에서 가장 낮았고, 'Cynosure'와 'Parker's Pink'는 이보다 다소 높았다. 저온에 의한 엽각의 변화는 자생종과 'Parker's Pink' 품종에서 크게 일어났으며, 'Nova Zembla'와 'Cunningham's White'에서의 변화는 적었다. 저온에 의한 잎말림 현상도 자생종에서 크게 일어났고 도입종은 이들보다 작았으며, 도입종 중에서는 'Parker's Pink'가 다소 컸고 나머지 품종들은 작았다. 자생종의 내한성은 저온에 의한 엽각변화와 잎말림현상이 관여하는 것으로 판단되며, 내한성이 약한 'Parker's Pink'에 있어서는 잎운동 활성과의 관련성이 적어 다른 요인이 관여하고 있는 것으로 생각된다. 내한성이 강한 만병초에서 월동 전 광합성 활성이 높았고 월동 후 광합성활성의 회복이 자생종 및 도입종의 'Cynosure'에서 비교적 빨랐으며, 내한성이 가장 약했던 'Nova Zembla'에서 월동 전 광합성 활성과 월동 후 광합성활성의 회복속도가 가장 낮았다. 기공전도도는 광합성활성과 유사한 경향을 보였으며, 내한성이 강한 자생종에서 월동 후 뿌리로부터 잎으로의 수분이동이 원활하여 엽소현상이 적었고, 월동 후 기공전도도가 가장 낮았고 수분이동에 크게 제한을 받은 'Nova Zembla'에서 엽소현상이 크게 나타난 것으로 생각된다. 이상의 결과로부터 만병초 종에 있어서 월동중의 잎 운동과 월동후의 수분이동 및 광합성에 의해 축적되는 수분스트레스 관련 물질들이 종합적으로 관여하여 엽소현상으로서 나타나는 내한성을 결정하는 것으로 생각된다.

Effects of Ginseng Saponins in Energy Metabolism, Memory, and Anti-neurotoxicity

  • Wang Lawrence C.H.;Lee Tze-fun
    • 고려인삼학회:학술대회논문집
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    • 고려인삼학회 2002년도 학술대회지
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    • pp.55-65
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    • 2002
  • Ginseng has been used as a key constituent in traditional medicine prescriptions for centuries. Other than its well-known anti-stress and adaptogenic properties, ginseng has also been shown to be very effective in treating age-related deterioration in metabolic and memory functions. Although it is generally believed that the saponin (GS) fraction of the ginseng root accounts for the bioactivity of ginseng, a direct demonstration on which ginsenoside does what is still generally lacking. In the past decade, our laboratory has endeavored to identify the active GS components involved in energy metabolism, memory, and anti-neurotoxicity. To examine the ergogenic effects of GS in enhancing aerobic capacity, rats were subjected to either severe cold ($40^{\circ}C$ under helium-oxygen, two hours) or exercise workload $(70\%\;VO_{2}max,$ to exhaustion). Acute systemic injection (i.p.) of ginseng GS (5-20 mg/kg) significantly elevated both the total and maximum heat production in rats and improved their cold tolerance. However, pretreating the animal with the optimal dose (10 mg/kg) of GS devoid of $Rg_1\;and\;Rb_1$ failed to elicit any beneficial effects in improving cold tolerance. This indicates that either $Rb_1\;and/or\;Rg_1$ may be essential in exemplifying the thermogenic effect of GS. Further studies showed that only pretreating the animals with $Rb_1(2.5-5\;mg/kg),\;but\;not\;Rg_l,$ resulted in an increase in thermogenesis and cold tolerance. In contrast to the acute effect of GS on cold tolerance, enhancement of exercise performance in rats was only observed after chronic treatment (4 days). Further, we were able to demonstrate that both $Rb_1\;and\;Rg_1$ are effective in enhancing aerobic endurance by exercise. To illustrate the beneficial effects of GS in learning and memory, a passive avoidance paradigm (shock prod) was used. Our results indicated that the scopolamineinduced amnesia can be significantly reversed by chronically treating (4 days) the rats with either $Rb_1\;or\;Rg_1$ (1.25 - 2.5 mg/kg). To further examine its underlying mechanisms, the effects of various GS on ${\beta}-amyloid-modulated$ acetylcholine (ACh) release from the hippocampal slices were examined. It was found that inclusion of $Rb_1$ (0.1 ${\mu}M$), but not $Rg_1$, can attenuate ${\beta}-amyloid-suppressed$ ACh release from the hippocampal slices. Our results demonstrated that $Rb_1\;and\;Rg_1$ are the key components involved in various beneficial effects of GS but they may elicit their effects through different mechanisms.

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Effects of Two Plant Growth Regulators, Terpal-C and Cerone, on Freezing Tolerance and Winter Survival of Canola ( Brassica napus L.)

  • Song, Moon-Tae
    • Plant Resources
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    • 제1권1호
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    • pp.38-42
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    • 1998
  • One of the most attractive short-term possibilities for increasing freezing tolerance of winter crops may be the application of chemicals. This research was conducted to determine the effect of two plant growth regulators. Terpal-C and Cerone on freezing tolerance and winter survival of canola. Three cultivars were planted on the michigan state University Agronimy Farm at East Lansing. MI. on Sept. 10. 1992 and 1993 Chemicals were applied to one-month-old plants when they reached the 5 leaf stage. Ion leakage tests for freezing tolerance were conducted before and after chemical treatment. Winter survival was evaluated by counting the plant standing in the fall and spring. Neither of the chemicals. Terpal-C. inhibited natural cold hardening.

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저온 충격에 노출된 참돔 Pagrus major 치어의 임계 저 수온 및 행동 내성 반응 (Critical Low Temperature and Response of Behavioral Tolerance in Red Seabream Pagrus major fingerlings Exposed to Cold Shock)

  • 윤성진
    • 한국산학기술학회논문지
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    • 제22권1호
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    • pp.575-584
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    • 2021
  • 본 연구는 연속행동모니터링시스템(CBMS)을 사용하여 저온 충격에 노출된 참돔 Pagrus major 치어의 행동반응에 대한 임계 수온 및 행동 내성 반응을 규명하였다. 실험생물의 행동은 8.0~20.0℃ 수온구간에서 12시간과 24시간 마다 각각 2.0℃와 4.0℃씩 하강시키며 관찰하였다. 참돔 치어는 12.0℃ 이하로 수온이 하강한 경우 수온 노출시간과 변동 폭에 관계없이 유영활동이 감소하고 정지가 반복되는 불안정한 행동패턴이 관찰되었다. 또한 8.0~10.0℃ 수온에 노출된 생물의 유영능력은 급격히 저하되어 수조 바닥에서 머무르는 아치사 반응 행동을 보였다. 실험어류는 저 수온 스트레스 영향을 받아 생물의 50 %만 생존하였으며, 저온 충격(cold shock) 후 6시간 이내에 모든 개체가 사망하였다. 또한 행동지수(BI)는 급격히 감소하였으며 변이계수(CV)의 진폭변화는 타 수온보다 변동 폭이 큰 것으로 분석되었다(p<0.05). 참돔 치어의 저온 스트레스는 12.0℃를 경계로 촉진되며, 8.0~10.0℃의 저온 충격에 노출된 생물의 아치사 반응을 유발시키는 내성한계인 것으로 해석된다.

FTM과 RSM을 이용한 후방 압출 금형 설계 (Design of Backward Extrusion Die by using Flexible Tolerance Method and Response Surface Methodology)

  • 허관도;여홍태;최영
    • 한국정밀공학회지
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    • 제22권1호
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    • pp.167-174
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    • 2005
  • The design for cold extrusion dies is very important, because the die insert is subjected to very high radial and hoop stresses. The design of cold extrusion dies has many constrained conditions. In this paper, the used assumptions are such that the yield strength of each ring is selected according to the allowable tensile or compressive hoop stress in each ring and the maximum allowable inner pressure, when yielding occurs in one ring of the dies, is obtained by the proposed equation. In order to obtain design variables, such as diameter ratios and interferences, using the maximum inner pressure, the flexible tolerance method was used for shrink-fitted thick-walled cylinders. ANSYS APDL was used to perform the repeated analysis of deformation of the dies due to the variation of the design variables. The response surface methodology is utilized to analyze the relationship between the design variables and the maximum radial displacement of the die insert during extrusion. From the results, it is found that outer diameter of the die insert has the largest effect on the minimization of maximum radial displacement at the inner surface of the dies.

냉간 후방 압출 금형설계에 FTM과 RSM의 활용 (Application of FTM and RSM for the Design of Cold Backward Extrusion Dies)

  • 여홍태;최영;송요선;허관도
    • 한국소성가공학회:학술대회논문집
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    • 한국소성가공학회 2001년도 제4회 압출 및 인발가공 심포지엄
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    • pp.99-106
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    • 2001
  • The design for cold extrusion dies is very important, because the die insert is subjected to very high radial and hoop stresses. The design of cold extrusion dies has many constrained conditions. In this paper, the used assumptions are such that the yield strength of each ring is selected according to the allowable tensile or compressive hoop stress in each ring and the maximum allowable inner pressure, when yielding occurs in one ring of the dies, is obtained by the proposed equation. In order to obtain design variables, such as diameter ratios and interferences, using the maximum inner pressure, the flexible tolerance method was used for shrink-fitted thick-walled cylinders. ANSYS APDL was used to perform the repeated analysis of deformation of the dies due to the variation of the design variables. The response surface methodology is utilized to analyze the relationship between the design variables and the maximum radial displacement of the die insert during extrusion. From the results, it is found that outer diameter of the die Insert has the largest effect on the minimization of maximum radial displacement at the inner surface of the dies.

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Identification and functional analysis of COLD-signaling-related genes in Panax ginseng

  • Jeongeui Hong;Hojin Ryu
    • Journal of Plant Biotechnology
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    • 제50권
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    • pp.225-231
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    • 2023
  • Cold stress is one of the most vulnerable environmental stresses that affect plant growth and crop yields. With the recent advancements in genetic approaches using Arabidopsis and other model systems, genes involved in cold-stress response have been identified and the key cold signaling factors have been characterized. Exposure to low-temperature stress triggers the activation of a set of genes known as cold regulatory (COR) genes. This activation process plays a crucial role in enhancing the resistance of plants to cold and freezing stress. The inducer of the C-repeatbinding factor (CBF) expression 1-CBF module (ICE1-CBF module) is a key cold signaling pathway regulator that enhances the expression of downstream COR genes; however, this signaling module in Panax ginseng remains elusive. Here, we identified cold-signaling-related genes, PgCBF1, PgCBF3, and PgICE1 and conducted functional genomic analysis with a heterologous system. We confirmed that the overexpression of cold- PgCBF3 in the cbf1/2/3 triple Arabidopsis mutant compensated for the cold stress-induced deficiency of COR15A and salt-stress tolerance. In addition, nuclearlocalized PgICE1 has evolutionarily conserved phosphorylation sites that are modulated by brassinsteroid insensitive 2 (PgBIN2) and sucrose non-fermenting 1 (SNF1)-related protein kinase 3 (PgSnRK3), with which it physically interacted in a yeast two-hybrid assay. Overall, our data reveal that the regulators identified in our study, PgICE1 and PgCBFs, are evolutionarily conserved in the P. ginseng genome and are functionally involved in cold and abiotic stress responses.

계절별 착의량이 안정시 에너지 대사량에 미치는 영향 (The Effect of Seasonal Clothing Weight on Resting Metabolic Rate)

  • 황수정;최정화;성화경
    • 한국의류학회지
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    • 제23권3호
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    • pp.483-494
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    • 1999
  • This study investigated the relation between seasonal variation of clothing weight and its resting metabolic rate to determine the relation between proper living temperature and cold/heat tolerance. Thirty six subjects(18 males and females twenties) were composed to obtain the clothing weight(Total clothing weight) and resting metabolic rate for a year and grouped four seasons : spring (Mar-May) Summer(Jun-Aug) Fall(Sep-Nov) and Winter(Dec-Feb). The data of males and females were respectively divided into three groups by cluster analysis with clothing weight. 1. The resting metabolic rate of male(41.1kcal/m2/hr) was higher than that of female(33.2kcal/m2/hr). It is suggested there is gender difference in the resting metabolic rate(p<.001) 2. The resting metabolic rate of male and female was the highest in Winter. It is suggested there is seasonal variation in the resting metabolic rate(p<.001) 3. It was found that there was relation between clothing weight and resting metabolic rate. The difference of resting metabolic rate between Summer and Winter which is profitable to adaptation to living temperature was significant in light clothing weight in male as well as in female. 4. In comfortable sensation most subjects responded that he/she felt 'comfortable' except Winter. However the heavy clothing weight group felt 'a little uncomfortable' throughout all seasons. l In thermal sensation most subjects responded that he/she felt 'neutral' And then the heavy clothing weight group responded warmer in summer and cooler in winter than light clothing weight group. From the results it was confirmed that male and female showed seasonal variations in clothing weight and resting metabolic rate. Also the resting metabolic rate of male and female was influenced by the clothing weight. In short seasonal variation of resting metabolic rate was larger in light clothing weight group than in heavy clothing weight group. Therefore light clothing weight group is advantgeous in living temperature to improve cold/heat tolerance and it also shows that living with the light clothing weight may enhance the degree of adaptation to change of living environment

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Effect of Salicylic Acid on Growth and Chilling Tolerance of Cucumber Seedlings

  • Lee, Gui-Soon;Hong, Jung-Hee
    • 한국환경과학회지
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    • 제11권11호
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    • pp.1173-1181
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    • 2002
  • The present study was undertaken to investigate the effect of low temperature and salicylic acid(SA) on the chilling tolerance of acclimated and nonacclimated cucumber(Cucurmis sativus L.) seedlings. The acclimation phenomenon was characterized in chilling-sensitive cucumber seedlings and found to have a significant effect on the survival and shoot dry weights. The injuries experienced by the acclimated seedlings in the third leaf stage were on average smaller by half than those experienced by the nonacclimated seedlings. Chilling also caused a large increase in the free proline levels, regardless of the acclimation status. Exogenous treatment with SA(0.5mM) resulted in improved growth and survival of the nonacclimated chilled seedlings, indicating that SA induced chilling tolerance and SA and acclimation had common effects. The application of cycloheximide in the presence of SA restored the acclimation-induced chilling tolerance. The elevated proline level observed in the cold-treated and SA-treated plants was more pronounced in the light than in the dark at a chilled temperature, indicating that endogenous proline may play a role in chilling tolerance by stabilizing the water status in response to chilling. From these results it is suggested that SA provided protection against low-temperature stress by increasing the proline accumulation, and pre-treatment with SA may induce antioxidant enzymes leading to increased chilling tolerance.

Differentially Expressed Genes under Cold Acclimation in Physcomitrella patens

  • Sun, Ming-Ming;Li, Lin-Hui;Xie, Hua;Ma, Rong-Cai;He, Yi-Kun
    • BMB Reports
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    • 제40권6호
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    • pp.986-1001
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    • 2007
  • Cold acclimation improves freezing tolerance in plants. In higher plants, many advances have been made toward identifying the signaling and regulatory pathways that direct the low-temperature stress response; however, similar insights have not yet been gained for simple nonvascular plants, such as bryophytes. To elucidate the pathways that regulate cold acclimation in bryophytes, we used two PCR-based differential screening techniques, cDNA amplified fragment length polymorphism (cDNA-AFLP) and suppression subtractive hybridization (SSH), to isolate 510 ESTs that are differentially expressed during cold acclimation in Physcomitrella patens. We used realtime RT-PCR to further analyze expression of 29 of these transcripts during cold acclimation. Our results show that cold acclimation in the bryophyte Physcomitrella patens is not only largely similar to higher plants but also displays distinct differences, suggests significant alteration during the evolution of land plants.