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NIN-LIKE PROTEIN 7 转录因子调节生长素途径以调节拟南芥根冠发育。

The NIN-LIKE PROTEIN 7 transcription factor modulates auxin pathways to regulate root cap development in Arabidopsis.

机构信息

Department of Botany and Plant Pathology and Center for Plant Biology, Purdue University, 915 W. State Street, West Lafayette, IN 47907, USA.

出版信息

J Exp Bot. 2023 May 19;74(10):3047-3059. doi: 10.1093/jxb/erad058.

Abstract

The root cap is a small tissue located at the tip of the root with critical functions for root growth. Present in nearly all vascular plants, the root cap protects the root meristem, influences soil penetration, and perceives and transmits environmental signals that are critical for root branching patterns. To perform these functions, the root cap must remain relatively stable in size and must integrate endogenous developmental pathways with environmental signals, yet the mechanism is not clear. We previously showed that low pH conditions altered root cap development, and these changes are mediated by the NIN LIKE PROTEIN 7 (NLP7) transcription factor, a master regulator of nitrate signaling. Here we show that in Arabidopsis NLP7 integrates nitrate signaling with auxin pathways to regulate root cap development. We found that low nitrate conditions promote aberrant release of root cap cells. Nitrate deficiency impacts auxin pathways in the last layer of the root cap, and this is mediated in part by NLP7. Mutations in NLP7 abolish the auxin minimum in the last layer of the root cap and alter root cap expression of the auxin carriers PIN-LIKES 3 (PILS3) and PIN-FORMED 7 (PIN7) as well as transcription factors that regulate PIN expression. Together, our data reveal NLP7 as a link between endogenous auxin pathways and nitrate signaling in the root cap.

摘要

根冠是位于根顶端的一小部分组织,对于根的生长具有关键功能。几乎所有维管植物都有根冠,它保护根的顶端分生组织,影响土壤的穿透,感知和传递对根分枝模式至关重要的环境信号。为了执行这些功能,根冠必须保持相对稳定的大小,并将内源性发育途径与环境信号整合在一起,但目前尚不清楚其机制。我们之前曾表明,低 pH 条件会改变根冠的发育,而这些变化是由硝酸盐信号的主要调节因子 NIN LIKE PROTEIN 7(NLP7)转录因子介导的。在这里,我们表明在拟南芥中,NLP7 将硝酸盐信号与生长素途径整合在一起,以调节根冠的发育。我们发现,低硝酸盐条件会促进根冠细胞的异常释放。硝酸盐缺乏会影响根冠最后一层的生长素途径,而这在一定程度上是由 NLP7 介导的。NLP7 突变会消除根冠最后一层的生长素最小值,并改变根冠中生长素载体 PIN-LIKES 3(PILS3)和 PIN-FORMED 7(PIN7)以及调节 PIN 表达的转录因子的表达。总之,我们的数据揭示了 NLP7 作为根冠中内源性生长素途径和硝酸盐信号之间的联系。

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