Graduate School of Life and Environfmental Sciences, Kyoto Prefectural University, Kyoto-shi, Kyoto, Japan.
Faculty of Agriculture, Setsunan University, Hirakata-shi, Osaka, Japan.
PLoS One. 2021 Jun 10;16(6):e0252674. doi: 10.1371/journal.pone.0252674. eCollection 2021.
The manner in which inserted foreign coding sequences become transcriptionally activated and fixed in the plant genome is poorly understood. To examine such processes of gene evolution, we performed an artificial evolutionary experiment in Arabidopsis thaliana. As a model of gene-birth events, we introduced a promoterless coding sequence of the firefly luciferase (LUC) gene and established 386 T2-generation transgenic lines. Among them, we determined the individual LUC insertion loci in 76 lines and found that one-third of them were transcribed de novo even in the intergenic or inherently unexpressed regions. In the transcribed lines, transcription-related chromatin marks were detected across the newly activated transcribed regions. These results agreed with our previous findings in A. thaliana cultured cells under a similar experimental scheme. A comparison of the results of the T2-plant and cultured cell experiments revealed that the de novo-activated transcription concomitant with local chromatin remodelling was inheritable. During one-generation inheritance, it seems likely that the transcription activities of the LUC inserts trapped by the endogenous genes/transcripts became stronger, while those of de novo transcription in the intergenic/untranscribed regions became weaker. These findings may offer a clue for the elucidation of the mechanism by which inserted foreign coding sequences become transcriptionally activated and fixed in the plant genome.
插入的外源编码序列在植物基因组中如何被转录激活并固定下来的机制还知之甚少。为了研究基因进化的这些过程,我们在拟南芥中进行了一个人工进化实验。作为基因产生事件的模型,我们引入了萤火虫荧光素酶(LUC)基因的无启动子编码序列,并建立了 386 株 T2 代转基因系。其中,我们在 76 株中确定了单个 LUC 插入位点,发现其中三分之一即使在基因间区或固有不表达区也能从头转录。在转录的株系中,在新激活的转录区域检测到与转录相关的染色质标记。这些结果与我们在类似实验方案下的拟南芥培养细胞中的先前发现一致。T2 植物和培养细胞实验结果的比较表明,与局部染色质重塑同时发生的从头激活转录是可遗传的。在一代遗传过程中,LUC 插入被内源性基因/转录物捕获的转录活性似乎变强,而在基因间区/未转录区的从头转录活性变弱。这些发现可能为阐明插入的外源编码序列在植物基因组中如何被转录激活和固定下来的机制提供线索。