Lasseur Bertrand, Lothier Jérémy, Djoumad Abdelmadjid, De Coninck Barbara, Smeekens Sjef, Van Laere André, Morvan-Bertrand Annette, Van den Ende Wim, Prud'homme Marie-Pascale
UMR INRA-UCN 950 EVA Ecophysiologie Végétale, Agronomie et Nutritions NCS, Université de Caen, Esplanade de la Paix, F-14032 Caen cedex, France.
J Exp Bot. 2006;57(11):2719-34. doi: 10.1093/jxb/erl034. Epub 2006 Jul 13.
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.
果聚糖是多年生黑麦草中的主要贮藏化合物。为了解释该物种中普遍存在的基于新蔗果三糖的果聚糖合成,以洋葱(葱属)果聚糖:果聚糖6G-果糖基转移酶(6G-FFT)为探针筛选了多年生黑麦草的cDNA文库。分离出一个全长Lp6G-FFT克隆,它与液泡型果糖基转移酶和转化酶具有显著同源性。通过在毕赤酵母中的异源表达测试了该cDNA的功能。重组蛋白表现出6G-FFT和果聚糖:果聚糖1-果糖基转移酶活性(1-FFT),最大6G-FFT/1-FFT比值为2。研究了6G-FFT活性在发育阶段、组织分布以及碳水化合物状态表达变化方面的情况,并与蔗糖:蔗糖1-果糖基转移酶(1-SST)进行了比较。Lp6G-FFT和Lp1-SST主要在伸长叶片和叶鞘的基部表达。这两个基因的表达沿叶轴下降,与果聚糖和果糖基转移酶活性的空间分布平行。令人惊讶的是,Lp6G-FFT在光合活性组织中高度表达,而在这些组织中检测到的可提取果糖基转移酶活性和果聚糖含量非常低,这表明存在转录后表达调控。仅在叶片、叶鞘和伸长叶基部的蔗糖含量类似增加后,Lp6G-FFT基因表达才在伸长叶片中增加。Lp6G-FFT基因表达的调控取决于组织的库源状态。