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Flowering-Related RING Protein 1 (FRRP1) Regulates Flowering Time and Yield Potential by Affecting Histone H2B Monoubiquitination in Rice (Oryza Sativa)

机译:与开花相关的RING蛋白1(FRRP1)通过影响组蛋白H2B单倍泛素化水稻(Oryza苜蓿)来调节开花时间和产量潜力。

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摘要

Flowering time is a critical trait for crops cultivated under various temperature/photoperiod conditions around the world. To understand better the flowering time of rice, we used the vector pTCK303 to produce several lines of RNAi knockdown transgenic rice and investigated their flowering times and other agronomic traits. Among them, the heading date of FRRP1-RNAi knockdown transgenic rice was 23–26 days earlier than that of wild-type plants. FRRP1 is a novel rice gene that encodes a C3HC4-type Really Interesting Novel Gene (RING) finger domain protein. In addition to the early flowering time, FRRP1-RNAi knockdown transgenic rice caused changes on an array of agronomic traits, including plant height, panicle length and grain length. We analyzed the expression of some key genes associated with the flowering time and other agronomic traits in the FRRP1-RNAi knockdown lines and compared with that in wild-type lines. The expression of Hd3a increased significantly, which was the key factor in the early flowering time. Further experiments showed that the level of histone H2B monoubiquitination (H2Bub1) was noticeably reduced in the FRRP1-RNAi knockdown transgenic rice lines compared with wild-type plants and MBP-FRRP1-F1 was capable of self-ubiquitination. The results indicate that Flowering Related RING Protein 1 (FRRP1) is involved in histone H2B monoubiquitination and suggest that FRRP1 functions as an E3 ligase in vivo and in vitro. In conclusion, FRRP1 probably regulates flowering time and yield potential in rice by affecting histone H2B monoubiquitination, which leads to changes in gene expression in multiple processes.
机译:开花时间是世界各地在不同温度/光周期条件下种植的农作物的关键特性。为了更好地了解水稻的开花时间,我们使用了载体pTCK303来生产几系RNAi敲低转基因水稻,并研究了它们的开花时间和其他农艺性状。其中,FRRP1-RNAi敲除转基因水稻的抽穗期比野生型植物早23-26天。 FRRP1是一个新颖的水稻基因,编码C3HC4型真正有趣的新颖基因(RING)指域蛋白。除早花期外,FRRP1-RNAi敲低转基因水稻还引起了一系列农艺性状的变化,包括植物高度,穗长和籽粒长。我们分析了与FRRP1-RNAi敲除系中开花时间和其他农艺性状相关的一些关键基因的表达,并与野生型系进行了比较。 Hd3a的表达显着增加,这是开花初期的关键因素。进一步的实验表明,与野生型植物相比,FRRP1-RNAi敲低转基因水稻品系中组蛋白H2B单泛素化水平(H2Bub1)明显降低,MBP-FRRP1-F1能够自泛素化。结果表明,开花相关的RING蛋白1(FRRP1)参与组蛋白H2B单泛素化,提示FRRP1在体内和体外均起E3连接酶的作用。总之,FRRP1可能通过影响组蛋白H2B单泛素化来调节水稻的开花时间和产量潜力,从而导致基因表达在多个过程中发生变化。

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