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CmTCP20 在硝酸盐和生长素信号调控菊花侧根发育中发挥关键作用。

CmTCP20 Plays a Key Role in Nitrate and Auxin Signaling-Regulated Lateral Root Development in Chrysanthemum.

机构信息

Department of Ornamental Horticulture, National Key Laboratory of Crop Biology, College of Horticulture Science and Engineering, Shandong Agricultural University, Tai-An, Shandong, China.

Department of Plants, College of Life Sciences, Shandong University, Qingdao, Shandong, China.

出版信息

Plant Cell Physiol. 2019 Jul 1;60(7):1581-1594. doi: 10.1093/pcp/pcz061.

Abstract

Lateral root (LR) formation and development play a vital role in plant development by permitting the establishment of branched root systems. It is well known that nutrient availability controls LR development. Moreover, LR development is fine-tuned by a myriad of hormonal signals. Many transcription factors (TFs) participate in LR development. Here, we discuss the TFs involved in the nitrate and auxin signaling pathways and how these function in the regulation of LR formation and development in chrysanthemum. AtTCP20 is a plant-specific TF, which can modulate LR development in response to nitrate. The roles of CmTCP20 in LR development were identified by overexpression in chrysanthemum and heterologous expression in Arabidopsis. Overexpression of CmTCP20 significantly increased the number and average length of LRs compared with the wild type in chrysanthemum and Arabidopsis. We also found that CmTCP20 positively influenced auxin accumulation in the LRs at least partly by improving auxin biosynthesis, transport and response, thereby promoting LR development. Moreover, we found that CmTCP20 interacts with an auxin response factor, CmARF8, which also can be induced by nitrate and combined to proximal sites in the upstream promoter region of CmCYCB1;1 to positively regulate the cell cycle. The CmTCP20-CmARF8 heterodimer links nitrate and auxin signaling and converts cell-cycle signals to regulate LR initiation and growth.

摘要

侧根(LR)的形成和发育对植物的发育起着至关重要的作用,因为它允许建立分支的根系。众所周知,养分供应控制 LR 的发育。此外,LR 的发育还受到无数激素信号的精细调节。许多转录因子(TFs)参与 LR 的发育。在这里,我们讨论了参与硝酸盐和生长素信号通路的 TFs,以及这些 TFs 如何在菊花中调节 LR 的形成和发育。AtTCP20 是一种植物特异性的 TF,可以响应硝酸盐来调节 LR 的发育。通过在菊花中过表达和在拟南芥中异源表达,鉴定了 CmTCP20 在 LR 发育中的作用。与野生型相比,CmTCP20 的过表达显著增加了菊花和拟南芥中 LR 的数量和平均长度。我们还发现 CmTCP20 至少部分地通过改善生长素的生物合成、运输和响应来促进 LR 发育,从而正向影响 LR 中的生长素积累。此外,我们发现 CmTCP20 与生长素反应因子 CmARF8 相互作用,CmARF8 也可以被硝酸盐诱导,并与 CmCYCB1;1 的上游启动子区域中的近端位点结合,以正向调节细胞周期。CmTCP20-CmARF8 异源二聚体连接硝酸盐和生长素信号,并将细胞周期信号转化为调节 LR 的起始和生长。

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