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转录共抑制因子OsTPR1调控水稻的分蘖和侧根发育。

Transcriptional corepressor OsTPR1 regulates tillering and lateral root development in rice.

作者信息

Hou Yi Hsuan, Kuo Chia Ying, Lai Tin Yau Edwin, Xiao Ming Hong, Ho Shin Lon

机构信息

Institute of Biotechnology, National Taiwan University, Taipei, Taiwan.

Agriculture Biotechnology Research Center, Academia Sinica, Taipei, Taiwan.

出版信息

Sci Rep. 2025 Jul 21;15(1):26430. doi: 10.1038/s41598-025-10224-6.

Abstract

TOPLESS (TPL) and TOPLESS-Related (TPR) corepressors are key regulatory proteins that interact with a variety of transcription factors to form specific complexes, thereby modulating a wide range of signaling pathways and metabolic processes. This study explored the function of the rice TPR gene OsTPR1. Transgenic rice lines overexpressing OsTPR1 (OsTPR1-Ox) exhibited reduced lateral root density, whereas OsTPR1 RNA interference lines (OsTPR1-Ri) showed increased lateral root density. To gain further insight, these transgenic lines were crossed with the DR5::GUS auxin reporter line. In 7-day-old seedlings, lateral root formation occurred in the differentiation zone of seminal roots, with GUS staining prominently localized in the lateral root primordia of the DR5::GUS/OsTPR1-Ri line. Similar results were observed in 45-day-old seedlings, where the DR5::GUS/OsTPR1-Ri line exhibited stronger GUS staining and a higher number of lateral roots in the crown root differentiation zones. In contrast, the DR5::GUS/OsTPR1-Ox line showed weaker GUS signals and fewer lateral roots. Additionally, the expression levels of several auxin efflux transporter genes encoding PIN-FORMED (PIN) proteins, including OsPIN1a, OsPIN1b, OsPIN1c, OsPIN2, and OsPIN5a, were increased in the OsTPR1-Ri line but decreased in the OsTPR1-Ox line. These results suggest that OsTPR1 also modulates the expression of multiple OsPIN genes, thereby potentially influencing auxin responses and lateral root development. Beyond root development, OsTPR1 overexpression led to a significant increase in tiller angle and a delay in flowering time, whereas OsTPR1-Ri plants exhibited earlier flowering. These findings indicate that OsTPR1 acts as a negative regulator of the auxin response, with its overexpression leading to reduced auxin sensitivity and altered plant architecture. Our results show that OsTPR1 modulates lateral root development, tiller angle, and flowering time, contributing to the coordinated growth and development in rice.

摘要

无顶体(TPL)和无顶体相关(TPR)共抑制因子是关键的调节蛋白,它们与多种转录因子相互作用形成特定复合物,从而调节广泛的信号通路和代谢过程。本研究探究了水稻TPR基因OsTPR1的功能。过表达OsTPR1的转基因水稻株系(OsTPR1-Ox)侧根密度降低,而OsTPR1 RNA干扰株系(OsTPR1-Ri)侧根密度增加。为了进一步深入了解,将这些转基因株系与DR5::GUS生长素报告株系杂交。在7日龄幼苗中,初生根分化区出现侧根形成,GUS染色主要定位于DR5::GUS/OsTPR1-Ri株系的侧根原基。在45日龄幼苗中也观察到类似结果,DR5::GUS/OsTPR1-Ri株系在冠根分化区表现出更强的GUS染色和更多的侧根。相比之下,DR5::GUS/OsTPR1-Ox株系显示较弱的GUS信号和较少的侧根。此外,几个编码PIN形成(PIN)蛋白的生长素外流转运蛋白基因(包括OsPIN1a、OsPIN1b、OsPIN1c、OsPIN2和OsPIN5a)的表达水平在OsTPR1-Ri株系中升高,但在OsTPR1-Ox株系中降低。这些结果表明,OsTPR1也调节多个OsPIN基因的表达,从而可能影响生长素反应和侧根发育。除了根系发育外,OsTPR1过表达导致分蘖角度显著增加和开花时间延迟,而OsTPR1-Ri植株开花较早。这些发现表明,OsTPR1作为生长素反应的负调节因子,其过表达导致生长素敏感性降低和植物结构改变。我们的结果表明,OsTPR1调节侧根发育、分蘖角度和开花时间,有助于水稻的协调生长和发育。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6897/12280221/afacf998ee9f/41598_2025_10224_Fig1_HTML.jpg

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