Activity of cell-wall degradation associated with differentiation of isolated mesophyll cells of Zinnia elegans into tracheary elements

被引:0
|
作者
Youichi Ohdaira
Koichi Kakegawa
Shin-ichi Amino
Munetaka Sugiyama
Hiroo Fukuda
机构
[1] Botanical Gardens,
[2] Graduate School of Science,undefined
[3] The University of Tokyo,undefined
[4] Tokyo 112-0001,undefined
[5] Japan,undefined
[6] Biological Institute,undefined
[7] Graduate School of Science,undefined
[8] Tohoku University,undefined
[9] Sendai 980-8578,undefined
[10] Japan,undefined
[11] Woody Plant Biochemistry Laboratory,undefined
[12] Department of Forest Chemistry,undefined
[13] Forestry and Forest Products Research Institute,undefined
[14] Ibaraki 305-8687,undefined
[15] Japan,undefined
[16] Department of Bioscience and Technology,undefined
[17] School of Engineering,undefined
[18] Hokkaido Tokai University,undefined
[19] Sapporo 005-8601,undefined
[20] Japan,undefined
[21] Department of Biological Sciences,undefined
[22] Graduate School of Science,undefined
[23] The University of Tokyo,undefined
[24] Tokyo 113-0033,undefined
[25] Japan,undefined
[26] Present address: Crop Eco-physiology Laboratory,undefined
[27] National Agricultural Research Center for Western Region,undefined
[28] Fukuyama 721-8514,undefined
[29] Japan,undefined
来源
Planta | 2002年 / 215卷
关键词
Autolysis Cell wall Pectin Tracheary element Zinnia (cell wall);
D O I
暂无
中图分类号
学科分类号
摘要
Cell walls were prepared from cultured mesophyll cells of Zinnia elegans L. that were transdifferentiating into tracheary elements and incubated in a buffer to undergo autolysis. The rate of autolysis of cell walls was determined by measuring the amount of carbohydrate released from the cell walls into the buffer during incubation. During the course of culture of mesophyll cells, the autolysis rate increased markedly at the time when thickenings of secondary cell walls characteristic of tracheary elements became visible (after 48–72 h of culture), and thereafter the rate remained at a high level. Comparative studies on the autolysis rate of cell walls using various control cultures, in which tracheary element differentiation did not take place, revealed a close relationship between the autolysis rate around the 60th hour of culture and differentiation. Sugar analysis by colorimetric assays and gas chromatography of carbohydrates released from the cell walls detected uronic acid, arabinose, galactose, glucose, xylose, rhamnose, fucose, and mannose. Among these sugars, uronic acid was the most abundant, and accounted for approximately half of the total released sugars. The decrease of acidic polysaccharides in the primary cell walls during tracheary element differentiation was visualized by staining cultured cells with alcian blue at pH 2.5. These results suggest that active degradation of components of primary cell walls, including pectin, is integrated into the program of tracheary element differentiation.
引用
收藏
页码:177 / 184
页数:7
相关论文
共 50 条
  • [41] POSSIBLE INVOLVEMENT OF DNA-REPAIR EVENTS IN THE TRANSDIFFERENTIATION OF MESOPHYLL-CELLS OF ZINNIA-ELEGANS INTO TRACHEARY ELEMENTS
    SUGIYAMA, M
    YEUNG, EC
    SHOJI, Y
    KOMAMINE, A
    JOURNAL OF PLANT RESEARCH, 1995, 108 (1091) : 351 - 361
  • [42] Ethylene stimulates tracheary element differentiation in Zinnia elegans cell cultures
    Pesquet, Edouard
    Tuominen, Hannele
    NEW PHYTOLOGIST, 2011, 190 (01) : 138 - 149
  • [43] Progress of lignification mediated by intercellular transportation of monolignols during tracheary element differentiation of isolated Zinnia mesophyll cells
    Hosokawa, M
    Suzuki, S
    Umezawa, T
    Sato, Y
    PLANT AND CELL PHYSIOLOGY, 2001, 42 (09) : 959 - 968
  • [44] GENE-EXPRESSION PATTERNS ASSOCIATED WITH IN-VITRO TRACHEARY ELEMENT FORMATION IN ISOLATED SINGLE MESOPHYLL-CELLS OF ZINNIA-ELEGANS
    YE, ZH
    VARNER, JE
    PLANT PHYSIOLOGY, 1993, 103 (03) : 805 - 813
  • [45] TRANSPORT OF ROSETTES FROM THE GOLGI-APPARATUS TO THE PLASMA-MEMBRANE IN ISOLATED MESOPHYLL-CELLS OF ZINNIA-ELEGANS DURING DIFFERENTIATION TO TRACHEARY ELEMENTS IN SUSPENSION-CULTURE
    HAIGLER, CH
    BROWN, RM
    PROTOPLASMA, 1986, 134 (2-3) : 111 - 120
  • [46] Caspase inhibitors affect the kinetics and dimensions of tracheary elements in xylogenic Zinnia (Zinnia elegans) cell cultures
    Twumasi, Peter
    Iakimova, Elena T.
    Qian, Tian
    van Ieperen, Wim
    Schel, Jan H. N.
    Emons, Anne Mie C.
    van Kooten, Olaf
    Woltering, Ernst J.
    BMC PLANT BIOLOGY, 2010, 10
  • [47] Non-Cell-Autonomous Postmortem Lignification of Tracheary Elements in Zinnia elegans
    Pesquet, Edouard
    Zhang, Bo
    Gorzsas, Andras
    Puhakainen, Tuula
    Serk, Henrik
    Escamez, Sacha
    Barbier, Odile
    Gerber, Lorenz
    Courtois-Moreau, Charleen
    Alatalo, Edward
    Paulin, Lars
    Kangasjarvi, Jaakko
    Sundberg, Bjorn
    Goffner, Deborah
    Tuominen, Hannele
    PLANT CELL, 2013, 25 (04): : 1314 - 1328
  • [48] Analysis of cell-cell interaction mediated by phytosulfokine during tracheary element differentiation of zinnia mesophyll cells.
    Motose, H
    Matsubayashi, Y
    Sakagami, Y
    Ozawa, N
    Demura, T
    Fukuda, H
    PLANT AND CELL PHYSIOLOGY, 2002, 43 : S94 - S94
  • [49] Caspase inhibitors affect the kinetics and dimensions of tracheary elements in xylogenic Zinnia (Zinnia elegans) cell cultures
    Peter Twumasi
    Elena T Iakimova
    Tian Qian
    Wim van Ieperen
    Jan HN Schel
    Anne MieC Emons
    Olaf van Kooten
    Ernst J Woltering
    BMC Plant Biology, 10
  • [50] EFFECTS OF NUTRIENT LIMITATION AND GAMMA-IRRADIATION ON TRACHEARY ELEMENT DIFFERENTIATION AND CELL-DIVISION IN SINGLE MESOPHYLL-CELLS OF ZINNIA-ELEGANS
    SUGIYAMA, M
    FUKUDA, H
    KOMAMINE, A
    PLANT AND CELL PHYSIOLOGY, 1986, 27 (04) : 601 - 606