• 제목/요약/키워드: mesophyll cells

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바위솔속 엽육조직 세포 내 액포의 미세구조 분화 양상 (Ultrastructural Differentiation of the Vacuole in Mesophyll Tissues of Orostachys)

  • 김인선
    • Applied Microscopy
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    • 제39권4호
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    • pp.333-340
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    • 2009
  • 다육질성 CAM 식물에서는 구조와 기능의 분화가 환경조건에 잘 적응된 합리적인 광합성을 수행하여 동일한 엽육세포에서 $CO_2$ 고정, 유기물 합성과 저장, 분해 및 활용하는 시간이 서로 다르게 나타난다. 이러한 유기산 대사는 CAM 식물의 가장 뚜렷한 대사적 특징으로 밤에 말산을 합성하여 액포에 저장하고 낮에 이용하므로 이들의 액포는 급격한 pH의 차이를 일주기성으로 조절해야 하는 매우 중요한 세포소기관이다. 본 연구에서는 식물체 내 생리적 건조가 지속되어 CAM 광합성을 수행하는 바위솔속 식물 3종의 다육질성 엽육조직 세포의 특성을 액포 구조분화에 초점을 두어 미세구조적으로 연구하였다. 바위솔속의 다육질성 엽육조직은 수분저장성 세포들로 구성되어 있으며, 액포융합 등의 액포화현상과 액포 내 다양한 2차 액포형성이 현저한 구조적 특징이었다. 이들 액포는 매우 역동적이어서 분열하여 다수의 소액포를 형성하거나 소액포들의 융합으로 큰 액포를 형성하였고, 일부는 전자밀도가 높은 저장성 액포로 발달하였다. 이러한 액포화는 세포의 크기를 경제적이고 에너지 효율적으로 증가시키는 방식으로 대부분의 다육질성 CAM 식물에서 발달하며, 낮과 밤에 일주기성으로 반복되는 세포 내 pH 농도의 급격한 변화를 대처할 수 있게 한다. 또한, 막 함입에 의한 다양한 크기의 수많은 2차 액포 형성은 단 기간 내에 액포막의 용적을 증가시켜 이러한 목적을 충족시켜 주는데 일주기적으로 사용되는 매우 중요한 세포 내 구획이 된다. 액포의 신장으로 세포질은 세포벽 주변부위로 밀려나 얇은 층으로 국한되었으나, 이들 세포질 내에서도 엽록체와 미토콘드리아는 액포와 밀접하게 연관되어 분포하고, 세포 간에는 원형질연락사가 잘 발달하였다. 이러한 미세구조들의 발달은 다육질성 엽육세포가 일주기성으로 급변하는 세포 내 유기산 대사과정에 적응하기 위해 액포에서의 신속하고 원활한 대사물질의 수송이 이루어져야 하기 때문일 것으로 추정된다.

GUS Expression by CaMV 35S and Rice Act1 Promoters in Transgenic Rice

  • Kwang-Woong Lee
    • Journal of Plant Biology
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    • 제37권3호
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    • pp.371-380
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    • 1994
  • To determine the patterns and the levels of expression of the cauliflower mosaic virus (CaMV 35S) promoter and the rice actin 1 (Act1) promoter in rice, transgenic rice plants containing CaMV 35S-$\beta$-glucuronidase (GUS) and Act1-GUS constructs were generated and examined by fluorometric and histochemical analyses. The fluorometric analysis of stably transformed calluses showed that the activity of the rice Act1 promoter was stronger than that of the CaMV 35S promoter in rice cells. In a histochemcial study of the transgenic rices, it was shown that the GUS activity directed by the CaMV 35S promoter was localized mainly in parenchymal cells of vascular tissues of leaves and roots and mesophyll cells of leaves. These results are similar to those of potato, a dicot plant. In contrast, rice plant transformed with Act1-GUS fusion construct revealed strong GUS activity in parenchymal cells of vascular tissue, mesophyll cells, epidermal cells, bulliform cells, guard subsidiary cells of leaves and most cells of the root, suggesting that the rice Act1 promoter is more constitutive than the CaMV 35S promoter. It was also confirmed that in both types of transgenic rice little or no staining was localized in metaxylen tracheary elements of vascular tissue from leaves or roots. These results indicate that the rice Act1 promoter can be utilized more successfully for expression of a variety of foreign gene in rice than the CaMV 35S promoter.

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식물세포의 부유밀도를 이용한 융합원형질체의 선발 (The Selection of Heterokaryon by the Use of Different Buoyant Density of Protoplasts.)

  • 김남원;박지창;김갑식;최광태
    • 한국연초학회지
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    • 제11권2호
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    • pp.233-240
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    • 1989
  • This experiment was carried out to select of heterokaryon based on the different buoyant densities of protoplasts. Protoplats were isolated from cultured cells (calli) of Nicotiana tobacum(cv. BY4) and from mesophyll cells of N. glauca. The two types of protoplats were fractionated by centrifugation in an iso-osmotic (770 mOs/kg. H2O) density gradients condition. Major difference in the buoyant density exists between two types of protoplasts isolated from different cells. The mesophyll protoplasts were fractionated in the higher gradient interphases than that of callus protoplasts. The two types of fractionated protoplasts were fused with 40% polyethylene glycol (PEG), and the protoplasts treated with PEG were separated by centrifugation in the same density gradients condition. The heterokaryons were fractionated in the intermediate density gradients.

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한국잔디(Zoysia japonica Steud.)의 분지 발달양상과 광합성기관의 전자 현미경적 구조에 관한 연구 (Studies on the Development of Branch Patterns and the Electronmicroscopic Structure of Photosynthetic organs in Zoysia japonica Steud.)

  • 장남기;김형기;유준희;김용진;임채성
    • 아시안잔디학회지
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    • 제1권1호
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    • pp.42-48
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    • 1987
  • This study was carried out to elucidate the physiological and ecological mechamism of the branch pattern and electronmicroscopic structure of photosynthetic organs in Zoysia japonica Steud. The angles between the internodes of rhizome and the branches of Z.iaponica were changed from 0 to 52 degrees. The rhizomes tended to branch from the 3th node to the 10th node. When the terminal bud was damaged by various environmental factors, the initial branching formation was appeared immediately to the 4th node. The internode growth of the rhizome started from the beginning of April and continued to the end of Octobor. It became evident that there is a division labor between two different kinds of photosynthetic cells of mesophyll and bundle sheath tissues in Z.japonica The thick-walled bundle sheath cells surrounds the leaf vascular bundles as the Kranz type and separates them from the mesophyll cells.

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Physical Changes in Satsuma Mandarin Leaf after Infection of Elsinoë fawcettii Causing Citrus Scab Disease

  • Paudyal, Dilli Prasad;Hyun, Jae-Wook
    • The Plant Pathology Journal
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    • 제31권4호
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    • pp.421-427
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    • 2015
  • Citrus scab disease is one of the destructive diseases that reduce the value of fruit for the fresh market. We analyzed the process of symptom development after infection with scab pathogen $Elsino{\ddot{e}}$ fawcettii in the susceptible satsuma mandarin leaves to observe the structural modification against pathogen. The cuticle and epidermal cells along with 3-5 layers of mesophyll tissue were degraded 1-2 days post inoculation. Surrounding peripheral cells of degraded tissues grew rapidly and then enveloped the necrotic area along with the growing conidia. Cross sections through the lesion revealed hyphal colonization in epidermis and mesophyll tissues. In response to the pathogen colonization, host cell walls were lignified, inner cells were rapidly compartmentalized and a semi-circular boundary was formed that separated the infected region from the non-infected region, and finally prevented the intercellular pathogen spread.

Photosynthesis of Guard Cell Chloroplast

  • Goh, Chang-Hyo
    • Journal of Photoscience
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    • 제6권1호
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    • pp.29-36
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    • 1999
  • Chlorophasts are a central structural feature of stomatal guard cells. Guard cell chloroplasts have both photosystems I and II (PS I and II), carry out O2 evoluation , cyclic and noncyclic photophosporylation, and possess the Calvin-Benson cycle enzymes involved in CO2 fixation. These imply that guard cell chloroplasts have a normal photosynthetic carbon reduction pathway just like their mesophyll counterparts, indicating similar fuctional organization of thylakoid membranes in both types of mesophyll and guard cell chloroplasts. It has been, however, found that guard cell chloroplasts have distinctive and comparative properties in their photosynthetic performance. In this article, I review the intrinsic features on the light reaction of and carbon reduction by guard cell chloroplasts.

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옥수수 엽육세포 및 유관속초세포의 엽록체막 지질성분의 비교

  • 조성호
    • Journal of Plant Biology
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    • 제36권1호
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    • pp.97-104
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    • 1993
  • The lipid composition of thylakoid membranes was compared between mesophyll and bundle sheath chloroplasts of maize. According to mild-denaturing gel electrophoresis, mesophyll thylakoids contained both PS I complex and PS II light-harvesting chlorophyll-protein complex(LHCP), while those of bundle sheath cells contained mainly PS I complex. The amount of lipids per mg chlorophyll was higher in bundle sheath thylakoids than in mesophyll. The major polar lipid classes were monogalactosyldiacylglycerol(MGDG), digalactosyldiacylglycreol, sulfolipid and phosphatidylglycerol (PG) in both tissues. Linolenic acid(18 : 3), linoleic acid(18 : 2) and palmitic acid(16 : 0) were the main fatty acyl components, with higher ratio of unsaturated to saturated fatty acids in bundle sheath thylakoids, suggesting these membranes are more fluid. The most striking difference in lipid composition between the two kinds of tissues was the practical absence of trans- 3-hexadecenoic acid(16 : 1t) in PG of bundle sheath thylakoids. This fatty acid is known to be involved in the association of LHCP as oligomeric form. More than 80% of MGDG molecular species was 18 : 3, 18 : 3, demonstrating that maize is a typical 18 : 3 plant. Therefore, the possibility of the functional relationships between the lamella structure, and thus the distribution of photosystems, and MGDG molecular species was excluded.

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닭의장풀과 자주달개비에서 적색광과 이산화탄소에 의해 유도된 공변세포의 전위차 변화에 미치는 엽육세포의 영향 (Influence of the Mesophyll on the Change of electrical Potential Difference of Guard Cells Induced by Red-light and CO2 in Commelina communis L. and Tradescantia virginiana L.)

  • 이준상
    • Journal of Plant Biology
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    • 제36권4호
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    • pp.383-389
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    • 1993
  • Intact leaf과 detached epidermis에 있는 공변세포의 전기 생리학적 특성에 대한 빛과 이산화탄소의 효과를 조사하였다. 빛을 intact leaf의 abaxial side에 처리하면 공변세포막이 과분극 (hyperpolarization)되었다. 닭의장풀의 intact leaf에 있는 공변세포들은 빛에 의해 최대 13 mV 그리고 이산화탄소에 의해 42 mV까지 membrane potential difference(MPD)가 negative하게 변했다. 자주달개비에서도 비슷한 결과를 얻었다. 그러나, 빛과 이산화탄소를 detached epidermis에 있는 공변세포에 처리할 경우에는 공변세포의 MPD가 변하지 않았다. 위의 결과로부터, 엽육세포가 공변세포의 MPD 변화에 영향을 주는 것으로 사료되어, 엽육세포들을 광합성 억제제들을 침윤시켜 엽육세포 광합성의 어느 기작이 공변세포 MPD 변화에 영향을 주는지 조사하였다. CCCP로 침윤한 잎의 공변세포막은 적색광에 의해 약간 탈분극(depolarization)되었고, 이산화탄소에 의해 과분극되었다. 반면에, DCCD와 DCMU로 침윤한 경우에는 대조구 잎과 마찬자기로 적색광과 이산화탄소에 의해 과분극되었다. Azide로 침윤한 잎에 적색광을 처리하면 공변세포의MPD는 변하지 않았고, 이산화탄소를 처리하면 다른 처리구들에 비해 훨씬 감소한 막의 과분극을 보였다. 이는 azide가 잎에 손상을 유도하며 세포내 대사활성을 감소시킨 결과 이산화탄소에 의한 MPD 변화가 작았고, 적색광은 아무 효과도 보이지 않은 것으로 사료된다. 따라서, 엽육세포가 적색광을 감지하며 빛에 의해 유도된 공변세포막 과분극은 순환적 광인산화 반응에 의해 생성된 에너지에 의존하나 이산화타소에 의해 유도된 공변세포막 과분극은 광합성가 무관하다고 볼 수 있다. 또한 이산화탄소를 intact leaf에 처리하면 공변세포 액포가 알칼리화되는 것을 관찰하였는데, 이는 막의 과분극이 양성자 이온의 방출에 의해 일어난다는 것을 의미한다.

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Cytokinin and Nitrogen-Mediated Gene Regulation for $C_4$ Photosynthesis

  • Sugiyama, Tatsuo;Takei, Kentaroch;Deji, Atsushi;Tanguichi, Mitsutaka;Sakakibara, Hitoshi
    • 한국식물학회:학술대회논문집
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    • 한국식물학회 1996년도 식물학심포지움 식물호르몬과 신호전달
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    • pp.50-63
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    • 1996
  • Nitrogen (N) is an important regulator of the expression of genes involved in carbon and N assimilation pathways in plants by selectively altering the levels of proteins and/or mRNAs. These in C4 plants include genes for such as phosphoenolpyruvate carboxylase, carbonic anhydrase, and pyruvate-Pi dikinase. The C4 genes are regulated in mesophyll cells by N availability both transcriptionally and posttranscriptionally through cytokinins and glutamine as signals. The level of both the signals is up-regulated by N availability: cytokinins in roots and glutamine in leaves. The level of glutamine is controlled by the differential expression by N of glutamine synthetase and ferrdoxin-dependent glutamate synthase genes which locate in the mesophyll cells of C4 plants. The results is discussed as molecular mechanism for the greater N use efficiency of the plants as well as N partitioning is the photosynthetic cells.

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Chromatin Structural Rearrangement during Dedifferentiation of Protoplasts of Cucumis sativus L.

  • Ondrej, Vladan;Kitner, Miloslav;Dolezalova, Ivana;Nadvornik, Petr;Navratilova, Bozena;Lebeda, Ales
    • Molecules and Cells
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    • 제27권4호
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    • pp.443-447
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    • 2009
  • This paper reports on the structural rearrangement of satellite DNA type I repeats and heterochromatin during the dedifferentiation and cell cycling of mesophyll protoplasts of cucumber (Cucumis sativus). These repeats were localized in the telomeric heterochromatin of cucumber chromosomes and in the chromocenters of interphase nuclei. The dramatic reduction of heterochromatin involves decondensation of subtelomeric repeats in freshly isolated protoplasts; however, there are not a great many remarkable changes in the expression profile. In spite of that, reformation of the chromocenters, occurring 48 h after protoplast isolation, is accompanied by recondensation of satellite DNA type I; however, only partial reassembly of these repeats was revealed. In this study, FISH and a flow cytometry assay show a correlation between the partial chromocenter and the repeats reassembly, and with the reentry of cultivated protoplasts into the cell cycle and first cell division. After that, divided cells displayed a higher variability in the expression profile than did leaves' mesophyll cells and protoplasts.