Department of Biotechnology, Indian Institute of Technology, Roorkee, Uttarakhand, India.
School of Computational and Integrative Sciences, Jawaharlal Nehru University, New Delhi, India.
Plant Cell Physiol. 2019 Oct 1;60(10):2343-2355. doi: 10.1093/pcp/pcz132.
Unlike dicots, the robust root system in grass species largely originates from stem base during postembryonic development. The mechanisms by which plant hormone signaling pathways control the architecture of adventitious root remain largely unknown. Here, we studied the modulations in global genes activity in developing rice adventitious root by genome-wide RNA sequencing in response to external auxin and cytokinin signaling cues. We further analyzed spatiotemporal regulations of key developmental regulators emerged from our global transcriptome analysis. Interestingly, some of the key cell fate determinants such as homeodomain transcription factor (TF), OsHOX12, no apical meristem protein, OsNAC39, APETALA2/ethylene response factor, OsAP2/ERF-40 and WUSCHEL-related homeobox, OsWOX6.1 and OsWOX6.2, specifically expressed in adventitious root primordia. Functional analysis of one of these regulators, an auxin-induced TF containing AP2/ERF domain, OsAP2/ERF-40, demonstrates its sufficiency to confer the adventitious root fate. The ability to trigger the root developmental program is largely attributed to OsAP2/ERF-40-mediated dose-dependent transcriptional activation of genes that can facilitate generating effective auxin response, and OsERF3-OsWOX11-OsRR2 pathway. Our studies reveal gene regulatory network operating in response to hormone signaling pathways and identify a novel TF regulating adventitious root developmental program, a key agronomically important quantitative trait, upstream of OsERF3-OsWOX11-OsRR2 pathway.
与双子叶植物不同,禾本科植物在胚胎后期发育过程中,其强壮的根系主要来源于茎基部。植物激素信号通路如何控制不定根的结构仍然知之甚少。在这里,我们通过全基因组 RNA 测序研究了在响应外部生长素和细胞分裂素信号时,发育中的水稻不定根中全局基因活性的变化。我们进一步分析了从我们的全局转录组分析中出现的关键发育调节剂的时空调控。有趣的是,一些关键的细胞命运决定因素,如同源域转录因子(TF)、OsHOX12、无顶芽蛋白、OsNAC39、APETALA2/乙烯反应因子、OsAP2/ERF-40 和 WUSCHEL 相关同源盒、OsWOX6.1 和 OsWOX6.2,在不定根原基中特异性表达。对这些调节剂之一,即含有 AP2/ERF 结构域的生长素诱导 TF、OsAP2/ERF-40 的功能分析表明,它足以赋予不定根命运。触发根发育程序的能力主要归因于 OsAP2/ERF-40 介导的基因剂量依赖性转录激活,这些基因可以促进有效生长素反应的产生,以及 OsERF3-OsWOX11-OsRR2 途径。我们的研究揭示了响应激素信号通路的基因调控网络,并确定了一种新的 TF,该 TF 调节不定根发育程序,这是一个关键的农艺重要数量性状,位于 OsERF3-OsWOX11-OsRR2 途径的上游。