The lipid bilayer and aquaporins: parallel pathways for water movement into plant cells

被引:16
作者
Carvajal, M
Cooke, DT
Clarkson, DT
机构
[1] CSIC, CEBAS, Murcia 30080, Spain
[2] Univ Bristol, Long Ashton Res Stn, Dept Agr Sci, IACR, Bristol BS18 9AF, Avon, England
关键词
aquaporins; plant-stress; plasma membrane; water-channels;
D O I
10.1023/A:1005918305552
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
The plant plasma membrane is the the major barrier to water flow between cells and their surroundings. Water movement across roots involves pathways comprising many cells and their walls. There are three possible pathways which water can follow, (i) a trans-cellular pathway, which involves serial movement into and out from radial files of cells, (ii) a symplasmic pathway through the plasmodesmata, which creates a cytoplasmic continuum and (iii) a tortuous, extracellular pathway through the cell walls, the apoplasmic pathway. In each of these pathways water movement across cell membranes occurs at some stage. The possible role of water-channels in membranes is discussed in relation to this movement. The molecular identity of water-channel proteins in plasma membranes of plants has been confirmed but there remain a number of unresolved questions about their role in cell and tissue water relations, their interaction with the lipid components of membranes and the relationship between water movement through membranes by diffusion in the bilayer.
引用
收藏
页码:89 / 95
页数:7
相关论文
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[21]   The function of water channels in Chara: The temperature dependence of water and solute flows provides evidence for composite membrane transport and for a slippage of small organic solutes across water channels [J].
Hertel, A ;
Steudle, E .
PLANTA, 1997, 202 (03) :324-335
[22]   THE EFFECTS OF PHOSPHOLIPID UNSATURATION AND ALCOHOL PERTURBATION AT THE PROTEIN-LIPID INTERFACE PROBED USING FLUOROPHORE LIFETIME HETEROGENEITY [J].
HO, CJ ;
KELLY, MB ;
STUBBS, CD .
BIOCHIMICA ET BIOPHYSICA ACTA-BIOMEMBRANES, 1994, 1193 (02) :307-315
[23]  
Hoarau J, 1996, PLANTA, V200, P405, DOI 10.1007/BF00231396
[24]   VEGETATIVE AND SEED-SPECIFIC FORMS OF TONOPLAST INTRINSIC PROTEIN IN THE VACUOLAR MEMBRANE OF ARABIDOPSIS-THALIANA [J].
HOFTE, H ;
HUBBARD, L ;
REIZER, J ;
LUDEVID, D ;
HERMAN, EM ;
CHRISPEELS, MJ .
PLANT PHYSIOLOGY, 1992, 99 (02) :561-570
[25]  
House CR, 1974, WATER TRANSPORT CELL
[26]   WATER CHANNELS IN THE PLANT PLASMA-MEMBRANE CLONED BY IMMUNOSELECTION FROM A MAMMALIAN EXPRESSION SYSTEM [J].
KAMMERLOHER, W ;
FISCHER, U ;
PIECHOTTKA, GP ;
SCHAFFNER, AR .
PLANT JOURNAL, 1994, 6 (02) :187-199
[27]  
KARMOKER JL, 1991, PLANTA, V185, P269, DOI 10.1007/BF00194070
[28]   Regulation of aquaporin-2 water channel trafficking by vasopressin [J].
Knepper, MA ;
Inoue, T .
CURRENT OPINION IN CELL BIOLOGY, 1997, 9 (04) :560-564
[29]   AMINO-ACID-SEQUENCE OF INVIVO PHOSPHORYLATION SITES IN THE MAIN INTRINSIC PROTEIN (MIP) OF LENS MEMBRANES [J].
LAMPE, PD ;
JOHNSON, RG .
EUROPEAN JOURNAL OF BIOCHEMISTRY, 1990, 194 (02) :541-547
[30]  
Leshem Y. Y., 1992, PLANT MEMBRANE BIOPH