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首页> 外文期刊>Plant Science: An International Journal of Experimental Plant Biology >Regulation of starch granule-bound starch synthase I gene expression bycircadian clock and sucrose in the source tissue of sweet potato
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Regulation of starch granule-bound starch synthase I gene expression bycircadian clock and sucrose in the source tissue of sweet potato

机译:昼夜节律和蔗糖对甘薯源组织中淀粉颗粒结合淀粉合酶I基因表达的调控

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摘要

Studies on regulations of transitory starch synthesis and degradation in the leaf tissue are important for understanding how carbons could be distributed effectively from the source to sink tissues. Therefore, expressions of starch granule-bound starch synthase I (GBSSI) gene in leaves of sweet potato were studied under different photoperiodic conditions and various sugar treatments. Results indicated that accumulations of GBSSI mRNA and its protein were controlled by an endogenous biological clock. Starch accumulations in leaves also showed a pattern characteristic of circadian rhythm. In addition to circadian clock, sucrose also played an important role in regulating GBSSI mRNA accumulations. Although sucrose stimulated the transcription of GBSSI, it had no effect on the rhythmic pattern of GBSSI gene expressions. Protein phosphorylation, dephosphorylation were involved in the sucrose-related signal transduction for GBSSI gene expressions. However. the sugar sensing for regulation of GBSSI was independent of the hexokinase-mediated pathway. In conclusion, the GBSSI gene expression in leaves of sweet potato appears to be regulated by two independent pathways. First, light is responsible for setting up biological clock(s) that control the circadian expression of GBSSI gene; and second, light plays an indirect signal to enhance GBSSI mRNA accumulations mediated by the photosynthetic product, sucrose.
机译:对叶片组织中瞬时淀粉合成和降解规律的研究对于了解碳如何从源头到下垂组织的有效分布非常重要。因此,研究了在不同光周期条件和不同糖处理条件下甘薯叶片中淀粉颗粒结合淀粉合酶I(GBSSI)基因的表达。结果表明,GBSSI mRNA及其蛋白的积累受内源性生物钟控制。叶片中的淀粉积累也显示出昼夜节律的模式特征。除了昼夜节律,蔗糖在调节GBSSI mRNA积累中也起着重要作用。尽管蔗糖刺激了GBSSI的转录,但它对GBSSI基因表达的节奏模式没有影响。蛋白质的磷酸化,去磷酸化参与了与蔗糖有关的GBSSI基因表达的信号转导。然而。用于调节GBSSI的糖感独立于己糖激酶介导的途径。总之,甘薯叶中GBSSI基因的表达似乎受两个独立途径的调控。首先,光负责建立控制GBSSI基因昼夜表达的生物钟。其次,光起到间接信号的作用,以增强由光合作用产物蔗糖介导的GBSSI mRNA的积累。

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