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      과산화수소 처리가 수수의 발아 및 초기 생장에 미치는 효과 = Effects of Hydrogen Peroxide on Germination and Early Growth of Sorghum (Sorghum bicolor)

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      https://www.riss.kr/link?id=A105514747

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      다국어 초록 (Multilingual Abstract) kakao i 다국어 번역

      As the global warming causing desertification increase, there is growing concern about damage of crops. It was to investigate how the treatment with hydrogen peroxide before leaf development affects the growth and yield of sorghum for minimizing a damage of crops to drought. The germination experiment was conducted at alternating temperature of $25^{\circ}C/20^{\circ}C$(12 hr/12 hr) under water stress condition of 0 ~ -0.20 MPa adjusted with PEG solution containing 0 and 10 mM $H_2O_2$. In order to know the effect of foliar application of hydrogen peroxide on the growth of sorghum, 10 mM hydrogen peroxide was treated to leaves at 3-leaf stage of sorghum growing in greenhouse conditions. Seed germination rate was increased by 20% in hydrogen peroxide treatment as compared to the Control. under water stress conditions (-0.15 ~ -0.20 MPa). The length of seedlings was also on the rise by the hydrogen peroxide treatment. In the greenhouse pot experiment, the morphological characteristics (plant height, stem diameter, leaf length, and leaf number) and physiological characteristics (chlorophyll content, chlorophyll fluorescence (Fv/Fm), stomatal conductance) were higher in the plants treated with hydrogen peroxide under the drought stress condition than those of plants of $H_2O$ treatment. Experiment conducted with the soil moisture gradient system showed that the foliar application of hydrogen peroxide increased photosynthetic ability of sorghum plant with respect to SPAD value and stomatal conductance and rooting capacity (root weight and root length) under drought condition. Generally, hydrogen peroxide treatment in sorghum increased the tolerance to drought stress and maintained better growth due to ameliorating oxidative stress.
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      As the global warming causing desertification increase, there is growing concern about damage of crops. It was to investigate how the treatment with hydrogen peroxide before leaf development affects the growth and yield of sorghum for minimizing a dam...

      As the global warming causing desertification increase, there is growing concern about damage of crops. It was to investigate how the treatment with hydrogen peroxide before leaf development affects the growth and yield of sorghum for minimizing a damage of crops to drought. The germination experiment was conducted at alternating temperature of $25^{\circ}C/20^{\circ}C$(12 hr/12 hr) under water stress condition of 0 ~ -0.20 MPa adjusted with PEG solution containing 0 and 10 mM $H_2O_2$. In order to know the effect of foliar application of hydrogen peroxide on the growth of sorghum, 10 mM hydrogen peroxide was treated to leaves at 3-leaf stage of sorghum growing in greenhouse conditions. Seed germination rate was increased by 20% in hydrogen peroxide treatment as compared to the Control. under water stress conditions (-0.15 ~ -0.20 MPa). The length of seedlings was also on the rise by the hydrogen peroxide treatment. In the greenhouse pot experiment, the morphological characteristics (plant height, stem diameter, leaf length, and leaf number) and physiological characteristics (chlorophyll content, chlorophyll fluorescence (Fv/Fm), stomatal conductance) were higher in the plants treated with hydrogen peroxide under the drought stress condition than those of plants of $H_2O$ treatment. Experiment conducted with the soil moisture gradient system showed that the foliar application of hydrogen peroxide increased photosynthetic ability of sorghum plant with respect to SPAD value and stomatal conductance and rooting capacity (root weight and root length) under drought condition. Generally, hydrogen peroxide treatment in sorghum increased the tolerance to drought stress and maintained better growth due to ameliorating oxidative stress.

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      참고문헌 (Reference)

      1 장학길, "찰성 및 메성 수수가루의 첨가가 Sponge Cake의 품질에 미치는 영향" 한국산업식품공학회 9 (9): 199-207, 2005

      2 류혜숙, "수수 물 추출물이 마우스 면역세포와 항체 생성능에 미치는 영향" 대한영양사협회 12 (12): 82-88, 2006

      3 Michel B. E., "The osmotic potential of polyethylene glycol 6000" 51 : 914-916, 1973

      4 Park M. E., "The effect of soil moisture stress on the growth of barley and grain quality" 28 : 165-175, 1995

      5 Lu H., "The effect of hydrogen peroxide on the viability of tomato cells and of the fungal pathogen Cladosporium fulvum" 54 : 131-143, 1999

      6 Gregorio B. E., "Role of $H_2O_2$ in pea seed germination" 7 : 193-195, 2012

      7 Djanaguiraman M., "Rice can acclimate to lethal level of salinity by pretreatment with sublethal level of salinity through osmotic adjustment" 284 : 363-373, 2006

      8 Ali G. M., "Proteomic analysis of rice leaf sheath during drought stress" 5 : 396-403, 2006

      9 Wahid A., "Pretreatment of seed with $H_2O_2$ improves salt tolerance of wheat seedlings by alleviation of oxidative damage and expression of stress proteins" 164 : 283-294, 2007

      10 Yordanov I., "Plant responses to drought, acclimation, and stress tolerance" 38 : 171-186, 2000

      1 장학길, "찰성 및 메성 수수가루의 첨가가 Sponge Cake의 품질에 미치는 영향" 한국산업식품공학회 9 (9): 199-207, 2005

      2 류혜숙, "수수 물 추출물이 마우스 면역세포와 항체 생성능에 미치는 영향" 대한영양사협회 12 (12): 82-88, 2006

      3 Michel B. E., "The osmotic potential of polyethylene glycol 6000" 51 : 914-916, 1973

      4 Park M. E., "The effect of soil moisture stress on the growth of barley and grain quality" 28 : 165-175, 1995

      5 Lu H., "The effect of hydrogen peroxide on the viability of tomato cells and of the fungal pathogen Cladosporium fulvum" 54 : 131-143, 1999

      6 Gregorio B. E., "Role of $H_2O_2$ in pea seed germination" 7 : 193-195, 2012

      7 Djanaguiraman M., "Rice can acclimate to lethal level of salinity by pretreatment with sublethal level of salinity through osmotic adjustment" 284 : 363-373, 2006

      8 Ali G. M., "Proteomic analysis of rice leaf sheath during drought stress" 5 : 396-403, 2006

      9 Wahid A., "Pretreatment of seed with $H_2O_2$ improves salt tolerance of wheat seedlings by alleviation of oxidative damage and expression of stress proteins" 164 : 283-294, 2007

      10 Yordanov I., "Plant responses to drought, acclimation, and stress tolerance" 38 : 171-186, 2000

      11 Pandolfi C., "Physiology of acclimation to salinity stress in pea (Pisum sativum)" 84 : 44-51, 2012

      12 Chaves M. M., "Photosynthesis under drought and salt stress: Regulation mechanisms from whole plant to cell" 103 : 551-560, 2009

      13 Saglam A., "Leaf rolling reduces photosynthetic loss in maize under severe drought" 73 : 315-332, 2014

      14 Faize M., "Involvement of cytosolic ascorbate peroxidase and Cu/Zn-superoxide dismutase for improved tolerance against drought stress" 62 : 2599-2613, 2011

      15 Azevedo Neto A. D., "Hydrogen peroxide pre-treatment induces salt-stress acclimation in maize plants" 162 : 1114-1122, 2005

      16 우영회, "Hydrogen Peroxide 처리가 여름철 시설오이의 수분 스트레스, 광합성, 내서성에 미치는 영향" (사) 한국생물환경조절학회 15 (15): 39-45, 2006

      17 Choi W. Y., "Grain yield and physiological responses of water stress at reproductive stage in barley" 42 : 263-269, 1997

      18 Ejeta G., "Genomics-Assisted Crop Improvement" springer 187-205, 2007

      19 Uchida A., "Effects of hydrogen peroxide and nitric oxide on both salt and heat stress tolerance in rice" 63 : 515-523, 2002

      20 Woo Y. H., "Effect of high temperature adaptable improvement on cucumber (Cucumis sativus) of greenhouse according to hydrogen peroxide treatment at summer" 14 : 95-99, 2005

      21 Brestic M., "Does photorespiration protect the photosynthetic apparatus in French bean leaves from photoinhibition during drought stress" 196 : 450-457, 1995

      22 Bosabalidis A. M., "Comparative effects of drought stress on leaf anatomy of two olive cultivars" 163 : 375-379, 2002

      23 Beck C., "Characterizing global climate change by means of Koppen climate classification" 3 : 413-423, 2006

      24 Egamberdieva D., "Biochar-based Bradyrhizobium inoculum improves growth of lupin (Lupinus angustifolius L.) under drought stress" 78 : 38-42, 2016

      25 Abass S. M., "Alleviation of adverse effects of drought stress on common bean (Phaseolus vulgaris L.) by exogenous application of hydrogen peroxide" 41 : 75-83, 2011

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      학술지 이력

      학술지 이력
      연월일 이력구분 이력상세 등재구분
      2028 평가예정 재인증평가 신청대상 (재인증)
      2022-01-01 평가 등재학술지 유지 (재인증) KCI등재
      2019-01-01 평가 등재학술지 유지 (계속평가) KCI등재
      2016-01-01 평가 등재학술지 선정 (계속평가) KCI등재
      2015-12-01 평가 등재후보로 하락 (기타) KCI등재후보
      2011-01-01 평가 등재 1차 FAIL (등재유지) KCI등재
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      2002-01-01 평가 등재학술지 선정 (등재후보2차) KCI등재
      1999-07-01 평가 등재후보학술지 선정 (신규평가) KCI등재후보
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      학술지 인용정보

      학술지 인용정보
      기준연도 WOS-KCI 통합IF(2년) KCIF(2년) KCIF(3년)
      2016 0.46 0.46 0.42
      KCIF(4년) KCIF(5년) 중심성지수(3년) 즉시성지수
      0.49 0.49 0.91 0.08
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