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多年生黑麦草中刈割和光照条件对两种蔗糖转运蛋白的差异调控。

Differential regulation of two sucrose transporters by defoliation and light conditions in perennial ryegrass.

机构信息

UMR INRA-UCBN 950, Ecophysiologie Végétale, Agronomie and nutritions NCS, IRBA, Esplanade de la Paix, Université de Caen, F-14032 Caen Cedex, France.

出版信息

Plant Physiol Biochem. 2012 Dec;61:88-96. doi: 10.1016/j.plaphy.2012.09.011. Epub 2012 Oct 3.

Abstract

Sucrose transport between source and sink tissues is supposed to be a key-step for an efficient regrowth of perennial rye-grass after defoliation and might be altered by light conditions. We assessed the effect of different light regimes (high vs low light applied before or after defoliation) on growth, fructans and sucrose mobilization, as well as on sucrose transporter expression during 14 days of regrowth. Our results reported that defoliation led to a mobilization of C reserves (first sucrose and then fructans), which was parallel to an induction of LpSUT1 sucrose transporter expression in source and sink tissues (i.e. leaf sheaths and elongating leaf bases, respectively) irrespective to light conditions. Light regime (high or low light) had little effects on regrowth and on C reserves mobilization during the first 48 h of regrowth after defoliation. Thereafter, low light conditions, delaying the recovery of photosynthetic capacities, had a negative effect on C reserves re-accumulation (especially sucrose). Surprisingly, high light did not enhance sucrose transporter expression. Indeed, while light conditions had no effect on LpSUT1 expression, LpSUT2 transcripts levels were enhanced for low light grown plants. These results indicate that two sucrose transporter currently identified in Lolium perenne L. are differentially regulated by light and sucrose.

摘要

蔗糖在源和汇组织之间的运输被认为是多年生黑麦草在刈割后有效再生的关键步骤,并且可能会受到光照条件的影响。我们评估了不同光照条件(刈割前或刈割后施加高光和低光)对生长、果聚糖和蔗糖动员以及蔗糖转运蛋白表达的影响,在 14 天的再生过程中进行了研究。我们的研究结果表明,刈割导致 C 储备的动员(首先是蔗糖,然后是果聚糖),这与源和汇组织(即叶鞘和伸长的叶基)中 LpSUT1 蔗糖转运蛋白表达的诱导平行,而与光照条件无关。光照条件(高光或低光)对刈割后再生的最初 48 小时内的再生和 C 储备动员影响不大。此后,低光照条件延迟了光合能力的恢复,对 C 储备的再积累(特别是蔗糖)产生了负面影响。令人惊讶的是,高光并没有增强蔗糖转运蛋白的表达。事实上,尽管光照条件对 LpSUT1 表达没有影响,但低光生长的植物中 LpSUT2 转录本水平增强。这些结果表明,在 Lolium perenne L. 中目前鉴定出的两种蔗糖转运蛋白受光和蔗糖的差异调节。

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