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Analysis of cDNA clones encoding sucrose-phosphate synthase in relation to sugar interconversions associated with dehydration in the resurrection plant Craterostigma plantagineum Hochst.

机译:分析与复活植物Craterostigma plantagineum Hochst中与脱水相关的糖互变有关的编码蔗糖-磷酸合酶的cDNA克隆。

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摘要

Sucrose-phosphate synthase (SPS) is a key enzyme in the regulation of sucrose metabolism, being responsible for the synthesis of sucrose 6-phosphate from fructose 6-phosphate and uridine 5'-diphosphate-glucose. We report on the isolation and characterization of cDNA clones encoding SPS from Craterostigma plantagineum Hochst., a resurrection plant in which the accumulation of sucrose is considered to play an important role in tolerance to severe protoplastic dehydration. Two distinct classes of cDNAs encoding SPS were isolated from C. plantagineum, and are represented by the clones Cpsps1 and Cpsps2. The transcripts corresponding to both cDNAs decrease to very low levels in dehydrating leaves of C. plantagineum. Only the Cpsps1 transcript occurs in the roots, where it is present at a higher level than in leaves and increases upon dehydration of the plant. Higher enzymatic activities have been determined in protein extracts of dehydrated tissues compared with untreated tissues, which correlates with an increase in protein levels. It is suggested that the overall regulation of SPS is strongly influenced by the changing composition of the cytoplasm in C. plantagineum leaves during the dehydration-rehydration cycle.
机译:蔗糖磷酸合酶(SPS)是调节蔗糖代谢的关键酶,负责由果糖6-磷酸和尿苷5'-二磷酸-葡萄糖合成蔗糖6-磷酸。我们报告了分离和表征从植物生长的Craterostigma plantagineum Hochst。编码SPS的cDNA克隆的表征,其中蔗糖的积累被认为在耐受严重的原生质体脱水中起重要作用。从植物假单胞菌中分离出两种不同的编码SPS的cDNA,分别由克隆Cpsps1和Cpsps2表示。在植物假单胞菌的脱水叶片中,与这两个cDNA相对应的转录本均降至非常低的水平。仅Cpsps1转录物出现在根中,其存在的水平高于叶片中的含量,并在植物脱水后增加。与未经处理的组织相比,已在脱水组织的蛋白质提取物中确定了更高的酶活性,这与蛋白质水平的提高相关。提示在脱水-脱水周期中,植物念珠菌叶片中细胞质组成的变化强烈影响着SPS的整体调控。

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