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Overexpression of acetylcholinesterase gene in rice results in enhancement of shoot gravitropism

机译:水稻中乙酰胆碱酯酶基因的过表达导致地心引力增强

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Acetylcholine (ACh), a known neurotransmitter in animals and acetylcholinesterase (AChE) exists widely in plants, although its role in plant signal transduction is unclear. We previously reported AChE in Zen mays L. might be related to gravitropism based on pharmacological study using an AChE inhibitor. Here we clearly demonstrate plant AChE play an important role as a positive regulator in the gravity response of plants based on a genetic study. First, the gene encoding a second component of the ACh-mediated signal transduction system, AChE was cloned from rice, Oryza sativa L. ssp. Japonica cv. Nipponbare. The rice AChE shared high homology with maize, siratro and Salicornia AChEs. Similar to animal and other plant AChEs, the rice AChE hydrolyzed acetylthiocholine and propionylthiocholine, but not butyrylthiocholine. Thus, the rice AChE might be characterized as an AChE (E.C.3.1.1.7). Similar to maize and siratro AChEs, the rice AChE exhibited low sensitivity to the AChE inhibitor, neostigmine bromide, compared with the electric eel AChE. Next, the functionality of rice AChE was proved by overexpression in rice plants. The rice AChE was localized in extracellular spaces of rice plants. Further, the rice AChE mRNA and its activity were mainly detected during early developmental stages (2 d-10 d after sowing). Finally, by comparing AChE up-regulated plants with wild-type, we found that AChE overexpression causes an enhanced gravitropic response. This result clearly suggests that the function of the rice AChE relate to positive regulation of gravitropic response in rice seedlings. (C) 2015 Elsevier Inc. All rights reserved.
机译:乙酰胆碱(ACh)是动物中已知的神经递质,而乙酰胆碱酯酶(AChE)在植物中广泛存在,尽管其在植物信号转导中的作用尚不清楚。我们之前曾报道,基于使用AChE抑制剂的药理研究,Zen mays L.中的AChE可能与重力运动有关。在这里,我们根据基因研究清楚地证明了植物AChE在植物的重力反应中作为正调节剂发挥着重要作用。首先,从水稻(Oryza sativa L. ssp。)克隆了编码ACh介导的信号转导系统第二成分AChE的基因。粳稻Nipponbare。水稻AChE与玉米,siratro和Salicornia AChE具有高度同源性。与动物和其他植物的AChE相似,大米AChE水解了乙酰胆碱和丙酰胆碱,但不水解丁酰胆碱。因此,大米AChE可能被表征为AChE(E.C.3.1.1.7)。与玉米和siratro AChE相似,与电鳗AChE相比,大米AChE对AChE抑制剂溴化新斯的明表现出较低的敏感性。接下来,水稻AChE的功能通过在水稻植物中的过表达来证明。水稻AChE位于水稻植物的细胞外空间。此外,水稻AChE mRNA及其活性主要在发育早期(播种后2 d-10 d)检测到。最后,通过将AChE上调的植物与野生型进行比较,我们发现AChE的过表达会导致重力反应增强。该结果清楚地表明,水稻AChE的功能与水​​稻幼苗中重力反应的正调控有关。 (C)2015 Elsevier Inc.保留所有权利。

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