Proton pumps and anion transport in Vitis vinifera:: The inorganic pyrophosphatase plays a predominant role in the energization of the tonoplast

被引:43
作者
Terrier, N
Deguilloux, C
Sauvage, FX
Martinoia, E
Romieu, C
机构
[1] INRA, Inst Prod Vigne, Lab Biochim Metab & Technol, F-34060 Montpellier 1, France
[2] Fac Sci Poitiers, Lab Physiol & Biochim Vegetales, F-86022 Poitiers, France
关键词
inorganic pyrophosphatase; V-ATPase; vacuole; anion transport; fruit; organic acids; Vitis vinifera;
D O I
10.1016/S0981-9428(98)80078-8
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
In order to gain insight into vacuolar changes that are associated with fruit specialization regarding the accumulation of organic acids, the properties of tonoplast vesicles extracted from grape cell culture and ripe berries were compared. The two primary pumps, PPase (Pyrophosphatase) and V-ATPase (V-Adenosine Triphosphatase), which were found on both fruit and cell culture tonoplast vesicles, exhibited classical behaviour for known inhibitors and activators. However, the 3-fold higher activity of the PPase in comparison to the V-ATPase was unexpected in a fruit exhibiting a vacuolar pH of 3.5. Surprisingly, the hydrolytic activities of both pumps were stimulated by temperatures up to 65 degrees C. Anion transport was studied by measuring simultaneously proton entry and membrane potential on the two types of tonoplast vesicles. Maximal acidification rates could be observed upon simultaneous energization by ATP and PPi, and were abolished by imidodiphosphate and bafilomycin, while vanadate had little effect. Comparison of the sequence of transport rates observed with mineral and organic anions on fruit or cultured cell tonoplast vesicles suggested that the fruit vacuole was more specialized in the transport of organic anions than the cultured cells. The transport of malate and tartrate was completely inhibited by 4,4'-diisothio-cyanato-stilbene-2,2'disulphonic acid while chloride transport was less affected. Km values for malate and tartrate transports were similar for vesicles extracted from cultured cell and fruits, around 14 mM. The transport rates of malate and tartrate were not additive, suggesting that a similar transporter was involved in the vacuolar uptake of the two major acids of grape berries. (C) Elsevier, Paris.
引用
收藏
页码:367 / 377
页数:11
相关论文
共 45 条
[1]  
Ames BN., 1966, Methods in Enzymology, P115, DOI DOI 10.1016/0076-6879(66)08014-5
[2]   Effects of salt stress on H+-ATPase and H+-PPase activities of tonoplast-enriched vesicles isolated from sunflower roots [J].
Ballesteros, E ;
Donaire, JP ;
Belver, A .
PHYSIOLOGIA PLANTARUM, 1996, 97 (02) :259-268
[3]   Physiology of ion transport across the tonoplast of higher plants [J].
Barkla, BJ ;
Pantoja, O .
ANNUAL REVIEW OF PLANT PHYSIOLOGY AND PLANT MOLECULAR BIOLOGY, 1996, 47 :159-184
[4]  
BLOMZANDSTRA M, 1990, PLANTA, V183, P10
[5]   A REVERSIBLE CARRIER MEDIATES THE TRANSPORT OF MALATE AT THE TONOPLAST OF CATHARANTHUS-ROSEUS CELLS [J].
BOUYSSOU, H ;
CANUT, H ;
MARIGO, G .
FEBS LETTERS, 1990, 275 (1-2) :73-76
[6]  
BRADFORD MM, 1976, ANAL BIOCHEM, V72, P248, DOI 10.1016/0003-2697(76)90527-3
[7]   SEPARATION AND PURIFICATION OF THE TONOPLAST ATPASE AND PYROPHOSPHATASE FROM PLANTS WITH CONSTITUTIVE AND INDUCIBLE CRASSULACEAN ACID METABOLISM [J].
BREMBERGER, C ;
HASCHKE, HP ;
LUTTGE, U .
PLANTA, 1988, 175 (04) :465-470
[8]   VACUOLAR H+-TRANSLOCATING PYROPHOSPHATASE IS INDUCED BY ANOXIA OR CHILLING IN SEEDLINGS OF RICE [J].
CARYSTINOS, GD ;
MACDONALD, HR ;
MONROY, AF ;
DHINDSA, RS ;
POOLE, RJ .
PLANT PHYSIOLOGY, 1995, 108 (02) :641-649
[9]   PYROPHOSPHATE-DRIVEN PROTON TRANSPORT BY MICROSOMAL-MEMBRANES OF CORN COLEOPTILES [J].
CHANSON, A ;
FICHMANN, J ;
SPEAR, D ;
TAIZ, L .
PLANT PHYSIOLOGY, 1985, 79 (01) :159-164
[10]   USE OF THE PYROPHOSPHATASE ACTIVITY AS A RELIABLE TONOPLAST MARKER IN MAIZE ROOTS [J].
CHANSON, A .
PLANT SCIENCE, 1990, 71 (02) :199-207