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Reduced neutral invertase activity in the culm tissues of transgenic sugarcane plants results in a decrease in respiration and sucrose cycling and an increase in the sucrose to hexose ratio

机译:转基因甘蔗植物茎秆组织中的中性转化酶活性降低,导致呼吸作用和蔗糖循环降低,蔗糖与己糖之比增加

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Transgenic sugarcane plants (Saccharum officinarum L. interspecific hybrids) were regenerated from previously described cell lines with reduced neutral invertase (NI) activity. The effects that were observed in the differentiated culm tissues at different stages of maturity paralleled those observed across the growth cycle of the suspension cultures. Reduced NI activity correlated with an increase in sucrose and a decrease in hexose levels. However, the magnitude of the reduction in enzyme activity and the accompanying changes in carbohydrate metabolism were not as pronounced as in the suspension cultures. Feeding experiments with radio-labelled fructose provided evidence that the cycling of sucrose as well as the total respiration rate correlated directly with NI activity. Sucrose synthase activity was upregulated in the transgenic plants, possibly to compensate for the reduction in invertase activity. Despite this partial compensation, the respiratory rates of the transgenic lines were still significantly lower than those of the untransformed control lines. This study clearly demonstrates the importance of NI in directing carbon towards respiratory processes in the sugarcane culm. In addition, this is the first report in which data obtained from genetically modified sugarcane suspension cell cultures and their regenerated, whole-plant counterparts are compared. The observed correlations support the use of cell cultures as a model system for sugarcane internodes, which could significantly accelerate reverse genetic studies on sugarcane carbohydrate metabolism in the future.
机译:从先前描述的具有降低的中性转化酶(NI)活性的细胞系中再生出转基因甘蔗植物(Saccharum officinarum L.种间杂种)。在成熟的不同阶段在分化的茎杆组织中观察到的效果与在悬浮培养物的生长周期中观察到的效果平行。 NI活性降低与蔗糖增加和己糖水平降低相关。但是,酶活性降低的幅度以及随之而来的碳水化合物代谢变化并不像悬浮培养物中那么明显。用放射性标记的果糖喂养实验提供了证据,证明蔗糖的循环以及总呼吸速率与NI活性直接相关。在转基因植物中蔗糖合酶活性被上调,可能是为了弥补蔗糖酶活性的降低。尽管有这种部分补偿,转基因品系的呼吸速率仍显着低于未转化的对照品系的呼吸速率。这项研究清楚地表明了NI在将碳引导至甘蔗茎的呼吸过程中的重要性。此外,这是第一份报告,其中比较了从转基因甘蔗悬浮细胞培养物及其再生的全植物对应物获得的数据。观察到的相关性支持将细胞培养物用作甘蔗节间的模型系统,这可能在未来极大地加速对甘蔗糖代谢的反向遗传研究。

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