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激素调控一个层级转录级联,调节茶嫩枝切段中 Al 诱导的从头再生根。

Hormone Orchestrates a Hierarchical Transcriptional Cascade That Regulates Al-Induced De Novo Root Regeneration in Tea Nodal Cutting.

机构信息

College of Horticulture, Northwest A&F University, Yangling, 712100 Shaanxi, China.

出版信息

J Agric Food Chem. 2021 Jun 2;69(21):5858-5870. doi: 10.1021/acs.jafc.1c01100. Epub 2021 May 21.

Abstract

The aluminum in acid soils is very rhizotoxic to most plant species, but it is essential for root growth and development in However, the molecular basis of Al-mediated signaling pathways in root regeneration of tea plants is largely unclear. In this study, we profiled the physiological phenotype, transcriptome, and phytohormones in the process using stems treated with Al (0.3 mM) and control (0.02 mM). The anatomical analysis showed that the 0.3 mM Al-treated stem began to develop adventitious root (AR) primordia within 7 days, ARs occurred after 21 days, while the control showed a significant delay. We further found that the expression patterns of many genes involved in the biosynthesis of ZT, ACC, and JA were stimulated by Al on day 3; also, the expression profiles of auxin transporter-related genes were markedly increased under Al during the whole rooting process. Moreover, the expression of these genes was strongly correlated with the accumulation of ZT, ACC, JA, and IAA. , , and transcription factor genes with possible crucial roles in regulating AR regeneration were also uncovered. Our findings suggest that multiple phytohormones and genes related to their biosynthesis form a hierarchical transcriptional cascade during Al-induced de novo root regeneration in tea nodal cuttings.

摘要

在酸性土壤中,铝对大多数植物物种具有很强的根毒性,但它对茶树根系的生长和发育是必需的。然而,铝介导的茶树根系再生信号通路的分子基础在很大程度上尚不清楚。在这项研究中,我们使用用 0.3 mM Al(处理)和对照(0.02 mM)处理的茎来描述其在过程中的生理表型、转录组和植物激素。解剖分析表明,0.3 mM Al 处理的茎在 7 天内开始发育不定根(AR)原基,21 天后出现 AR,而对照则明显延迟。我们进一步发现,许多参与 ZT、ACC 和 JA 生物合成的基因的表达模式在第 3 天被 Al 刺激;此外,在整个生根过程中,Al 处理下生长素转运相关基因的表达谱显著增加。此外,这些基因的表达与 ZT、ACC、JA 和 IAA 的积累强烈相关。还发现了与 AR 再生调节可能有重要作用的 、 和 转录因子基因。我们的研究结果表明,在茶树节间插条的铝诱导从头再生过程中,多种植物激素及其生物合成相关基因形成了一个层次转录级联。

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