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Systematic identification and expression pattern analysis of the Aux/IAA and ARF gene families in moso bamboo (Phyllostachys edulis)

机译:莫斯竹子(Phyllostachys Edulis)的Aux / IAA和ARF基因家族的系统鉴定和表达模式分析

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Auxin plays a central role in many aspects of plant growth and development. The auxin/indole-3-acetic acid (Aux/IAA) and auxin response transcription factor (ARF) genes are key components of plant auxin signaling. However, little is known about the Aux/IAA and ARF gene families in moso bamboo (Phyllostachys edulis). In this paper, we first identified 35 putative PeIAAs and 24 PeARFs in the moso bamboo genome. These genes were clustered into two major groups (A and B) and four groups (I-IV), respectively, based on phylogenetic analysis. Next, analyses of evolutionary patterns and divergence demonstrated that both the PeIAAs and PeARFs experienced a large-scale duplication event around 15 million years ago (MYA). The divergence times of the two gene families were 31 MYA between moso bamboo and rice, and 46 MYA between moso bamboo and maize. Furthermore, the expression profiling of PeIAA and PeARF genes in various tissues and developmental stages revealed tissue-specific expression. qRT-PCR analysis confirmed the differential expression patterns of selected PeIAA and PeARF genes. And then a comprehensive expression analysis of these genes was also performed under exogenous hormone treatment by qRT-PCR. Many PeIAAs and PeARFs showed differential expression in response to IAA treatment. Subcellular localization results show that PeIAA8 is a nuclear localization protein. Most importantly, we demonstrate that single moso bamboo ARF can interact with multiple Aux/IAA proteins and vice versa. Collectively, the detailed analyses presented here will help in understanding the roles of the PeIAA and PeARF gene families and contribute to further research on their biological functions during development in moso bamboo.
机译:在植物生长和发展的许多方面,植金病发挥着核心作用。蟾蜍蛋白/吲哚-3-乙酸(AUX / IAA)和植物蛋白响应转录因子(ARF)基因是植物植物引燃信号传导的关键组分。然而,关于莫斯竹(Phyllostachys Edulis)的Aux / IAA和ARF基因家族知之甚少。在本文中,我们首先在Moso Bamboo Genome中确定了35个推定的Peiaas和24个珍珠。基于系统发育分析,将这些基因分别聚集成两个主要基团(A和B)和四组(I-IV)。接下来,对进化模式和分歧的分析表明,培斯纳斯和珠宝均在1500万年前(MYA)约为大规模的重复事件。两种基因家族的分歧时间是摩尔竹和大米之间的31元,摩尔竹和玉米之间的46元。此外,在各种组织和发育阶段中Peiaa和Peaf基因的表达谱分析显示了组织特异性表达。 QRT-PCR分析证实了所选Peiaa和Pearf基因的差异表达模式。然后在通过QRT-PCR处理的外源激素处理下进行这些基因的综合表达分析。许多培斯和珍珠术呈差异表达,以应对IAA治疗。亚细胞定位结果表明,PEIAA8是核定位蛋白。最重要的是,我们证明单一摩托竹ARF可以与多个AUX / IAA蛋白相互作用,反之亦然。统称,这里提出的详细分析将有助于了解培斯和明珠基因家族的作用,并有助于进一步研究其在莫斯竹区开发过程中的生物学功能。

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