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      KCI등재후보 SCOPUS

      Peace 포플러의 기내 배양시 발생하는 과수화 식물체의 조직적 특성 = Anatomical Characteristics of Hyperhydric Shoots Occuring in In Vitro Culture of Peace Poplar

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      https://www.riss.kr/link?id=A104107970

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      다국어 초록 (Multilingual Abstract)

      We investigated the anatomical aspects of vitrification in peace poplar. Comparisons were made with regard to characteristics occurring between hyperhydric and normal shoots in shoot proliferation cultures on MS medium containing 0.2 mg/L BA. Compared with normal plants, hyperhydric plants had thick, curled, and dark green leaves. Hyperhydric stems were thicker and shorter than those of normal stems. When examined under the microscopes, the mesophyll palisade cells of hyperhydric leaves were vacuolated, whereas those of normal leaves contained normal and enriched vacuole with cytoplasm. Generally, the hyperhydric leaves showed poorly developed palisade parenchyma, and revealed irregular and bigger sized intercellular structures in both palisade and spongy parenchyma as well as epidermis cells compare to those of normal leaves. In addition, the hyperhydric leaves had lower stomatal density and bigger sized cell. Vascular tissues of hyperhydic stems were less differentiated because of poorly lignified xylem tissue. The greatly expanded cortical cells and pith appeared to be the main cause of thick stems as compared with normal stems.
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      We investigated the anatomical aspects of vitrification in peace poplar. Comparisons were made with regard to characteristics occurring between hyperhydric and normal shoots in shoot proliferation cultures on MS medium containing 0.2 mg/L BA. Compared...

      We investigated the anatomical aspects of vitrification in peace poplar. Comparisons were made with regard to characteristics occurring between hyperhydric and normal shoots in shoot proliferation cultures on MS medium containing 0.2 mg/L BA. Compared with normal plants, hyperhydric plants had thick, curled, and dark green leaves. Hyperhydric stems were thicker and shorter than those of normal stems. When examined under the microscopes, the mesophyll palisade cells of hyperhydric leaves were vacuolated, whereas those of normal leaves contained normal and enriched vacuole with cytoplasm. Generally, the hyperhydric leaves showed poorly developed palisade parenchyma, and revealed irregular and bigger sized intercellular structures in both palisade and spongy parenchyma as well as epidermis cells compare to those of normal leaves. In addition, the hyperhydric leaves had lower stomatal density and bigger sized cell. Vascular tissues of hyperhydic stems were less differentiated because of poorly lignified xylem tissue. The greatly expanded cortical cells and pith appeared to be the main cause of thick stems as compared with normal stems.

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      국문 초록 (Abstract)

      목본류 생리학 연구에 있어서 중요한 수종인 Peace 포플러의 기초 연구자료를 얻고자 본 실험을 실시 하였다. 액아 마디를 BA 0.2 mg/L 처리된 MS 배지에 배양하여 shoot의 증식시 나타나는 과수화 된 shoot를 정상 shoot와 비교하였다. 과수화 된 shoot는 진한 녹색을 띠고, 잎은 두껍고 휘어져 있으며 투명하였다. 또 줄기는 정상적인 줄기보다 두껍고 길이가 짧았다. 조직학적 관찰 결과 과수화 된 잎은 책상조직의 발달이 부진하였으며 정상적인 잎에 비하여 책상조직과 해면조직 그리고 표피 세포 모두 불규칙하고 세포간극의 크기가 큰 것으로 나타났다. 또한 과수화 된 잎의 기공은 크기가 커서 단위면적 당 밀도가 낮았으며 공변세포와 그 주변 세포들이 변형되어 있었다. 과수화된 shoot의 직경은 정상적인 것보다 큰 것으로 나타났는데 이것은 피층과 수층 세포의 비대에 따른 것으로 관찰되었다. 한편 과수화 된 줄기는 정상 줄기에 비해 목질화 발달이 미약하여 형성층 구별이 어려웠다.
      번역하기

      목본류 생리학 연구에 있어서 중요한 수종인 Peace 포플러의 기초 연구자료를 얻고자 본 실험을 실시 하였다. 액아 마디를 BA 0.2 mg/L 처리된 MS 배지에 배양하여 shoot의 증식시 나타나는 과수화 ...

      목본류 생리학 연구에 있어서 중요한 수종인 Peace 포플러의 기초 연구자료를 얻고자 본 실험을 실시 하였다. 액아 마디를 BA 0.2 mg/L 처리된 MS 배지에 배양하여 shoot의 증식시 나타나는 과수화 된 shoot를 정상 shoot와 비교하였다. 과수화 된 shoot는 진한 녹색을 띠고, 잎은 두껍고 휘어져 있으며 투명하였다. 또 줄기는 정상적인 줄기보다 두껍고 길이가 짧았다. 조직학적 관찰 결과 과수화 된 잎은 책상조직의 발달이 부진하였으며 정상적인 잎에 비하여 책상조직과 해면조직 그리고 표피 세포 모두 불규칙하고 세포간극의 크기가 큰 것으로 나타났다. 또한 과수화 된 잎의 기공은 크기가 커서 단위면적 당 밀도가 낮았으며 공변세포와 그 주변 세포들이 변형되어 있었다. 과수화된 shoot의 직경은 정상적인 것보다 큰 것으로 나타났는데 이것은 피층과 수층 세포의 비대에 따른 것으로 관찰되었다. 한편 과수화 된 줄기는 정상 줄기에 비해 목질화 발달이 미약하여 형성층 구별이 어려웠다.

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      참고문헌 (Reference)

      1 Paek KY, "biochemical and morphological characteristics of vitrified shoots regenerated in vitro" 151-162, 1991

      2 Olmos E, "Ultrastructural difference of hyperhydric and normal leaves from regenerated carnation plants" 75 : 91-101, 1998

      3 Yeung EC, "The use of histology in the study of plant tissue culture systems - some practical comments" 35 : 137-143, 1999

      4 Olmos E, "The subcellular localization of peroxidase and the implication of oxidative stress in hyperhydrated leaves of regenerated carnation plants" 130 : 97-105, 1997

      5 Gribble K, "The influence of relative humidity on vitrification growth and morphology of Gypsophila paniculata L" 27 : 179-188, 1999

      6 Chen J, "The effect of ancymidol on hyperhydricity starch and antioxidant enzymatic activities in liquid-cultured Narcissus" 20 : 22-27, 2001

      7 Ridolfi M,, "Responses to water stress in an ABA-unresponsive hybrid poplar (Populus koreana X trichocarpa cv. Peace" 135 : 31-40, 1997

      8 Mayor ML, "Reduction of hyperhydricity in sunflower tissue culture" 72 : 99-103, 2003

      9 Ueno K,, "Reduced hyperhydricity and enhanced growth of tissue culture-generated raspberry (Rubus sp.) clonal lines by Pseudomonas sp. isolated from oregano" 33 : 441-445, 1998

      10 Cohen D, "Reconsideration of the term vitrification as used in micropropagation" 135-140, 1992

      1 Paek KY, "biochemical and morphological characteristics of vitrified shoots regenerated in vitro" 151-162, 1991

      2 Olmos E, "Ultrastructural difference of hyperhydric and normal leaves from regenerated carnation plants" 75 : 91-101, 1998

      3 Yeung EC, "The use of histology in the study of plant tissue culture systems - some practical comments" 35 : 137-143, 1999

      4 Olmos E, "The subcellular localization of peroxidase and the implication of oxidative stress in hyperhydrated leaves of regenerated carnation plants" 130 : 97-105, 1997

      5 Gribble K, "The influence of relative humidity on vitrification growth and morphology of Gypsophila paniculata L" 27 : 179-188, 1999

      6 Chen J, "The effect of ancymidol on hyperhydricity starch and antioxidant enzymatic activities in liquid-cultured Narcissus" 20 : 22-27, 2001

      7 Ridolfi M,, "Responses to water stress in an ABA-unresponsive hybrid poplar (Populus koreana X trichocarpa cv. Peace" 135 : 31-40, 1997

      8 Mayor ML, "Reduction of hyperhydricity in sunflower tissue culture" 72 : 99-103, 2003

      9 Ueno K,, "Reduced hyperhydricity and enhanced growth of tissue culture-generated raspberry (Rubus sp.) clonal lines by Pseudomonas sp. isolated from oregano" 33 : 441-445, 1998

      10 Cohen D, "Reconsideration of the term vitrification as used in micropropagation" 135-140, 1992

      11 Piqueras A, "Polyamines and hyperhydricity in micropropagated carnation plants" 162 : 671-678, 2002

      12 Majada JP, "Impact of culture vessel ventilation on the anatomy morphology of micropropagation carnation" 63 : 207-214, 2000

      13 Fontes MA,, "Hyperhydricity in peper plants regeneration in vitro: Involvement of BiP (Binding Protein) and ultrastructural aspects" 19 : 81-87, 1999

      14 Edgard ATP,, "Hyperhydric in in vitro eggplant regenerated plants: structural characteristics and involvement of BiP (Binding Protein)." 160 : 857-868, 2001

      15 Furukawa A, "Hybrid poplar stomata unresponsive to changes in environmental conditions" 4 : 191-197, 1990

      16 Thomas P,, "Explant, medium and vessel aeration affect the incidence hyperhydricity and recovery of normal plantlets in triploid watermelon" 75 : 19-25, 2000

      17 Kadota M, "Effects of cytokinin types and their concentration on shoot proliferation and hyperhydricity in in vitro pear cultivar shoots" 72 : 261-265, 2003

      18 Park SW, "Effect of sealed and vented gaseous micro environments on the hyperhydricity of potato shoots in vitro" 99 : 199-205, 2004

      19 Kang HD,, "Effect of TDZ on shoot proliferation of Peace poplar." 31 : 49-53, 2004

      20 Park SY, "Effect of CO2 enrichment on growth of two poplar clones, I-214 (Populus euramericana) and Peace (P. koreana X P. trichocarpa)." 18 : 255-263, 1995

      21 Kadota M, "Double-phase in vitro culture using sorbitol increases shoot proliferation and reduces hyperhydricity in Japanese pear" 89 : 207-215, 2001

      22 Whitehouse AB, "Control of hyperhydricity in Eucalyptus axillary shoot cultures grown in liquid medium" 71 : 245-252, 2002

      23 Apostolo NM,, "Anatomy of normal and hyperhydric leaves and shoots of in vitro grown Simmondsia chinensis (Link) Schn" 36 : 243-249, 2000

      24 Marga F, "Agar fractions could protect apple shoots cultured in liquid media against hyperhydrity" 49 : 1-5, 1997

      25 Miguens FC, "A scanning electron microscope study of normal and vitrified leaves from Datura insignis plantlets cultured in vitro" 32 : 109-113, 1993

      26 Murashige T, "A revised medium for rapid growth and bioassays with tobacco tissue culture" 15 : 473-497, 1962

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      학술지 이력

      학술지 이력
      연월일 이력구분 이력상세 등재구분
      2023 평가예정 해외DB학술지평가 신청대상 (해외등재 학술지 평가)
      2020-01-01 평가 등재학술지 유지 (해외등재 학술지 평가) KCI등재
      2016-03-01 평가 SCOPUS 등재 (기타) KCI등재
      2015-01-01 평가 등재후보학술지 유지 (계속평가) KCI등재후보
      2013-01-01 평가 등재후보로 하락 (기타) KCI등재후보
      2010-01-01 평가 등재 1차 FAIL (등재유지) KCI등재
      2008-04-30 학술지명변경 한글명 : 식물생명공학회지 -> Journal of Plant Biotechnology
      외국어명 : Korean Journal of Plant Biotechnology -> Journal of Plant Biotechnology
      KCI등재
      2008-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2005-10-31 학회명변경 영문명 : Korea Society Of Plant Biotechnology -> Korean Society for Plant Biotechnology KCI등재
      2005-01-01 평가 등재학술지 선정 (등재후보2차) KCI등재
      2004-01-01 평가 등재후보 1차 PASS (등재후보1차) KCI등재후보
      2002-01-01 평가 등재후보학술지 선정 (신규평가) KCI등재후보
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      기준연도 WOS-KCI 통합IF(2년) KCIF(2년) KCIF(3년)
      2016 0.23 0.23 0.21
      KCIF(4년) KCIF(5년) 중심성지수(3년) 즉시성지수
      0.2 0.18 0.351 0.1
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