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首页> 外文期刊>Frontiers in Plant Science >MeSAUR1, Encoded by a Small Auxin-Up RNA Gene, Acts as a Transcription Regulator to Positively Regulate ADP-Glucose Pyrophosphorylase Small Subunit1a Gene in Cassava
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MeSAUR1, Encoded by a Small Auxin-Up RNA Gene, Acts as a Transcription Regulator to Positively Regulate ADP-Glucose Pyrophosphorylase Small Subunit1a Gene in Cassava

机译:MeSAUR1,由一个小的Auxin-up RNA基因编码,充当转录调节剂,正调控木薯中的 ADP-葡萄糖焦磷酸化酶小亚基1a 基因。

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摘要

Cassava, being one of the top three tuberous crops, features highly efficient starch accumulation in the storage root to adapt the tropical resources and environments. The molecular mechanism for the process, however, is still unclear. ADP-glucose pyrophosphorylase, the first and rate-limited enzyme in starch biosynthesis pathway, is a heterotetramer comprised of two small/catalytic and two large/modulatory subunits. To understand the regulation of MeAGPase , the promoter of a highly expressed small subunit, MeAGPs1a , was used as bait for a yeast one-hybrid assay to screen storage root cDNA library. One cDNA, coding for a small auxin-up RNA protein, named MeSAUR1 , was isolated from cassava. MeSAUR1 could bind to the promoter of MeAGPS1a in yeast one-hybrid test and in vitro , and was located in cell nucleus. MeSAUR1 displayed a higher transcript level in cassava root cortex, and its expression was induced by indole-3-acetic acid, gibberellin and ethylene, but repressed by abscisic acid. A dual-luciferase interaction test further convinced that MeSAUR1 could bind to the promoter of MeAGPS1a , and positively regulate the transcription of MeAGPS1a in cassava.
机译:木薯是三大块茎作物之一,在贮藏根部具有高效率的淀粉积累,以适应热带资源和环境。然而,该过程的分子机理仍不清楚。 ADP-葡萄糖焦磷酸化酶是淀粉生物合成途径中的第一个酶和限速酶,它是由两个小/催化亚基和两个大/调节亚基组成的异四聚体。为了了解MeAGPase的调控,一个高表达的小亚基MeAGPs1a的启动子被用作酵母一杂交试验的诱饵,以筛选存储根cDNA文库。从木薯中分离出一种编码小生长素上调RNA蛋白的cDNA,名为MeSAUR1。 MeSAUR1在酵母一杂交实验中和体外均可与MeAGPS1a启动子结合,并位于细胞核中。 MeSAUR1在木薯根皮层中表现出较高的转录水平,其表达被吲哚-3-乙酸,赤霉素和乙烯诱导,但被脱落酸抑制。双重荧光素酶相互作用测试进一步证明,MeSAUR1可以结合MeAGPS1a的启动子,并积极调节木薯中MeAGPS1a的转录。

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