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Temporal analysis of Arabidopsis genes activated by Eucalyptus grandis NAC transcription factors associated with xylem fibre and vessel development

机译:大桉树NAC转录因子激活的拟南芥基因的时间分析与木质部纤维和血管发育相关

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摘要

Secondary cell wall (SCW) deposition in Arabidopsis is regulated among others by NAC transcription factors, where SND1 chiefly initiates xylem fibre differentiation while VND6 controls metaxylem vessel SCW development, especially programmed cell death and wall patterning. The translational relevance of Arabidopsis SCW regulation theory and the utility of characterized transcription factors as modular synthetic biology tools for improving commercial fibre crops is unclear. We investigated inter-lineage gene activation dynamics for potential fibre and vessel differentiation regulators from the widely grown hardwood Eucalyptus grandis (Myrtales). EgrNAC26, a VND6 homolog, and EgrNAC61, an SND1 homolog, were transiently expressed in Arabidopsis mesophyll protoplasts in parallel to determine early and late (i.e. 7 and 14 hours post-transfection) gene targets. Surprisingly, across the time series EgrNAC26 activated only a subset of SCW-related transcription factors and biosynthetic genes activated by EgrNAC61, specializing instead in targeting vessel-specific wall pit and programmed cell death markers. Promoters of EgrNAC26 and EgrNAC61 both induced reporter gene expression in vessels of young Arabidopsis plants, with EgrNAC61 also conferring xylem- and cork cambium-preferential expression in Populus. Our results demonstrate partial conservation, with notable exceptions, of SND1 and VND6 homologs in Eucalyptus and a first report of cork cambium expression for EgrNAC61.
机译:NAC转录因子可调节拟南芥中次生细胞壁(SCW)的沉积,其中SND1主要启动木质部纤维的分化,而VND6控制后木质部血管SCW的发育,特别是程序性细胞死亡和壁形成。拟南芥SCW调控理论的翻译相关性以及特征化转录因子作为改良商业化纤维作物的模块化合成生物学工具的用途尚不清楚。我们调查了潜在的纤维和血管分化调节剂从广泛种植的硬木桉树(Myrtales)的谱系间基因激活动力学。在拟南芥叶肉原生质体中瞬时表达EgrNAC26(一个VND6同源物)和EgrNAC61(一个SND1同源物),以确定早期和晚期(即转染后7和14小时)的基因靶标。令人惊讶的是,在整个时间序列中,EgrNAC26仅激活了由SCr相关的转录因子和由EgrNAC61激活的生物合成基因的子集,而专门针对了血管特异性壁凹和程序性细胞死亡标记。 EgrNAC26和EgrNAC61的启动子均诱导了拟南芥年轻植物的血管中的报告基因表达,而EgrNAC61还赋予了胡杨中木质部和软木形成层的优先表达。我们的研究结果表明,除桉树皮中SND1和VND6同源物外,还有部分保留,并且首次报道了EgrNAC61的软木形成层表达。

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