Molecular and functional characterization of a cDNA encoding fructan:fructan 6G-fructosyltransferase (6G-FFT)/fructan:fructan 1-fructosyltransferase (1-FFT) from perennial ryegrass (Lolium perenne L.)

被引:58
作者
Lasseur, Bertrand
Lothier, Jeremy
Djoumad, Abdelmadjid
De Coninck, Barbara
Smeekens, Sjef
Van Laere, Andre
Morvan-Bertrand, Annette
Van den Ende, Wim
Prud'homme, Marie-Pascale [1 ]
机构
[1] Univ Caen, CNRS, INRA, UMR 950,EVA Ecophysiol Vegetale Agron & Nutr NCS, F-14032 Caen, France
[2] Univ Sherbrooke, Fac Sci, Dept Biol, Sherbrooke, PQ J1K 2R1, Canada
[3] Univ Utrecht, Dept Mol Plant Physiol, NL-3584 CH Utrecht, Netherlands
[4] Katholieke Univ Leuven, Inst Bot, Lab Mol Plant Physiol, Dept Biol, B-3001 Heverlee, Belgium
关键词
fructan; fructan : fructan 6G-fructosyltransferase; gene expression; heterologous expression; Lolium perenne; Pichia pastoris; sucrose : sucrose 1-fructosyltransferase;
D O I
10.1093/jxb/erl034
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Fructans are the main storage compound in Lolium perenne. To account for the prevailing neokestose-based fructan synthesis in this species, a cDNA library of L. perenne was screened by using the onion (Allium cepa) fructan:fructan 6G-fructosyltransferase (6G-FFT) as a probe. A full length Lp6G-FFT clone was isolated with significant homologies to vacuolar type fructosyltransferases and invertases. The functionality of the cDNA was tested by heterologous expression in Pichia pastoris. The recombinant protein demonstrated both 6G-FFT and fructan:fructan 1-fructosyltransferase activities (1-FFT) with a maximum 6G-FFT/1-FFT ratio of two. The activity of 6G-FFT was investigated with respect to developmental stage, tissue distribution, and alterations in carbohydrate status expression and compared to sucrose:sucrose 1-fructosyltransferase (1-SST). Lp6G-FFT and Lp1-SST were predominantly expressed in the basal part of elongating leaves and leaf sheaths. Expression of both genes declined along the leaf axis, in parallel with the spatial occurrence of fructan and fructosyltransferase activities. Surprisingly, Lp6G-FFT was highly expressed in photosynthetically active tissues where very low extractable fructosyltransferase activity and fructan amounts were detected, suggesting a post-transcriptional regulation of expression. Lp6G-FFT gene expression increased only in elongating leaves following similar increases of sucrose content in blades, sheaths, and elongating leaf bases. Regulation of Lp6G-FFT gene expression depends on the tissue according to its sink-source status.
引用
收藏
页码:2719 / 2734
页数:16
相关论文
共 54 条
[41]   FRUCTAN METABOLISM IN LEAVES OF LOLIUM-RIGIDUM GAUDIN .1. SYNTHESIS OF FRUCTAN [J].
SMOUTER, H ;
SIMPSON, RJ .
NEW PHYTOLOGIST, 1991, 119 (04) :509-516
[42]   PURIFICATION, CLONING, AND FUNCTIONAL EXPRESSION OF SUCROSE-FRUCTAN 6-FRUCTOSYLTRANSFERASE, A KEY ENZYME OF FRUCTAN SYNTHESIS IN BARLEY [J].
SPRENGER, N ;
BORTLIK, K ;
BRANDT, A ;
BOLLER, T ;
WIEMKEN, A .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1995, 92 (25) :11652-11656
[43]   Identification of products formed by a fructan:fructan fructosyltransferase activity from Lolium rigidum [J].
StJohn, JA ;
Sims, IM ;
Bonnett, GD ;
Simpson, RJ .
NEW PHYTOLOGIST, 1997, 135 (02) :249-257
[44]   Molecular characterization and expression of a cDNA encoding fructan:fructan 6G-fructosyltransferase from asparagus (Asparagus officinalis) [J].
Ueno, K ;
Onodera, S ;
Kawakami, A ;
Yoshida, M ;
Shiomi, N .
NEW PHYTOLOGIST, 2005, 165 (03) :813-824
[45]   Defoliation induces fructan 1-exohydrolase II in witloof chicory roots. Cloning and purification of two isoforms, fructan 1-exohydrolase IIa and fructan 1-exohydrolase IIb. Mass fingerprint of the fructan 1-exohydrolase II enzymes [J].
Van den Ende, W ;
Michiels, A ;
Van Wonterghem, D ;
Clerens, SP ;
De Roover, J ;
Van Laere, AJ .
PLANT PHYSIOLOGY, 2001, 126 (03) :1186-1195
[46]   Fructan synthesizing and degrading activities in chicory roots (Cichorium intybus L) during field-growth, storage and forcing [J].
vandenEnde, W ;
vanLaere, A .
JOURNAL OF PLANT PHYSIOLOGY, 1996, 149 (1-2) :43-50
[47]   X-ray diffraction structure of a plant glycosyl hydrolase family 32 protein:: fructan 1-exohydrolase IIa of Cichorium intybus [J].
Verhaest, M ;
Van den Ende, W ;
Le Roy, K ;
De Ranter, CJ ;
Van Laere, A ;
Rabijns, A .
PLANT JOURNAL, 2005, 41 (03) :400-411
[48]   Crystallization and preliminary X-ray diffraction study of fructan 1-exohydrolase IIa from Cichorium intybus [J].
Verhaest, M ;
Van den Ende, W ;
Yoshida, M ;
Le Roy, K ;
Peeraer, Y ;
Sansen, S ;
De Ranter, CJ ;
Van Laere, A ;
Rabijns, A .
ACTA CRYSTALLOGRAPHICA SECTION D-STRUCTURAL BIOLOGY, 2004, 60 :553-554
[49]   Fructan of the inulin neoseries is synthesized in transgenic chicory plants (Cichorium intybus L) harbouring onion (Allium cepa L) fructan:fructan 6G-fructosyltransferase [J].
Vijn, I ;
vanDijken, A ;
Sprenger, N ;
vanDun, K ;
Weisbeek, P ;
Wiemken, A ;
Smeekens, S .
PLANT JOURNAL, 1997, 11 (03) :387-398
[50]   Characterization of fructan biosynthesis in big bluegrass (Poa secunda) [J].
Wei, JZ ;
Chatterton, NJ ;
Harrison, PA ;
Wang, RRC ;
Larson, SR .
JOURNAL OF PLANT PHYSIOLOGY, 2002, 159 (07) :705-715