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甜菜叶柄中液泡转化酶表达的昼夜节律和发育调控。

Circadian and developmental regulation of vacuolar invertase expression in petioles of sugar beet plants.

作者信息

González María-Cruz, Roitsch Thomas, Cejudo Francisco Javier

机构信息

Instituto de Bioquímica Vegetal y Fotosíntesis, Centro de Investigaciones Científicas Isla de la Cartuja, Avda Américo Vespucio 49, 41092 Sevilla, Spain.

出版信息

Planta. 2005 Oct;222(2):386-95. doi: 10.1007/s00425-005-1542-4. Epub 2005 Jul 29.

Abstract

The expression pattern of the genes coding for vacuolar and extracellular invertase activity was analyzed in sugar beet (Beta vulgaris) and compared with the expression of sucrose synthase in this important sucrose-storing crop. Northern blot analysis revealed that sucrose synthase is the predominant sucrose-cleaving enzyme in tap roots, whereas vacuolar invertase was specifically expressed in petioles. Extracellular invertase transcripts showed low abundance in all the sugar beet organs and were not detected in northern blots. Relative RT-PCR analysis revealed differential expression of the two extracellular invertase genes: BVInv-CW1 was almost exclusively expressed in tap roots and BVInv-CW2 was widely expressed in all the organs analyzed. A remarkable result of this analysis was the high expression of vacuolar invertase (BVInv-V3) in petioles. Two factors had a clear influence on vacuolar invertase gene expression in petioles: light and the developmental stage, so that expression was higher in petioles from juvenile plants. BVInv-V3 transcripts showed circadian oscillation in petioles, with maximal accumulation during the light period. A similar pattern of diurnal oscillation was also observed for the vacuolar invertase activity, showing a delay with respect to the level of transcripts. The analysis of sugars in petioles revealed oscillation of the hexoses, with a remarkably higher content of glucose than fructose. In contrast, the level of sucrose in petioles was very low. This pattern of expression suggests an important role of petiole vacuolar invertase in plant development and photoassimilate partitioning.

摘要

对编码液泡和胞外转化酶活性的基因在甜菜(Beta vulgaris)中的表达模式进行了分析,并与这种重要的蔗糖储存作物中蔗糖合酶的表达进行了比较。Northern印迹分析表明,蔗糖合酶是主根中主要的蔗糖裂解酶,而液泡转化酶在叶柄中特异性表达。胞外转化酶转录本在所有甜菜器官中的丰度较低,在Northern印迹中未检测到。相对RT-PCR分析揭示了两个胞外转化酶基因的差异表达:BVInv-CW1几乎仅在主根中表达,而BVInv-CW2在所有分析的器官中广泛表达。该分析的一个显著结果是液泡转化酶(BVInv-V3)在叶柄中的高表达。有两个因素对叶柄中液泡转化酶基因的表达有明显影响:光照和发育阶段,因此幼龄植物叶柄中的表达更高。BVInv-V3转录本在叶柄中表现出昼夜振荡,在光照期积累最多。液泡转化酶活性也观察到类似的昼夜振荡模式,相对于转录本水平有延迟。叶柄中糖的分析揭示了己糖振荡,葡萄糖含量明显高于果糖。相比之下,叶柄中蔗糖水平非常低。这种表达模式表明叶柄液泡转化酶在植物发育和光合产物分配中起重要作用。

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