Suppr超能文献

氮驱动的侧根发育调控:分子机制与系统整合

Nitrogen-Driven Orchestration of Lateral Root Development: Molecular Mechanisms and Systemic Integration.

作者信息

Sun Xichao, Gu Yingchen, Liu Yingqi, Liu Zheng, Wang Peng

机构信息

Agro-Environmental Protection Institute, Ministry of Agriculture and Rural Affairs, Tianjin 300191, China.

Key Laboratory of Tobacco Biology and Processing, Ministry of Agriculture and Rural Affairs, Tobacco Research Institute, Chinese Academy of Agricultural Sciences, Qingdao 266101, China.

出版信息

Biology (Basel). 2025 Aug 21;14(8):1099. doi: 10.3390/biology14081099.

Abstract

N, as plants' most essential nutrient, profoundly shapes root system architecture (RSA), with LRs being preferentially regulated. This review synthesizes the intricate molecular mechanisms underpinning N sensing, signaling, and its integration into developmental pathways governing LR initiation, primordium formation, emergence, and elongation. We delve deeply into the roles of specific transporters (NRT1.1, nitrate transporter 2.1 (NRT2.1)), transcription factors ( nitrate regulated 1 (ANR1), NLP7, TGACG motif-binding factor (TGA), squamosa promoter-binding protein-like 9 (SPL9)) and intricate hormone signaling networks (auxin, abscisic acid, cytokinins, ethylene) modulated by varying N availability (deficiency, sufficiency, excess) and chemical forms (NO, NH, organic N). Emphasis is placed on the systemic signaling pathways, including peptide-mediated long-distance communication (CEP-C-terminally encoded peptide receptor 1 (CEPR1)) and the critical role of the shoot in modulating root responses. Furthermore, we explore the emerging significance of carbon-nitrogen (C/N) balance, post-translational modifications (ubiquitination, phosphorylation), epigenetic regulation, and the complex interplay with other nutrients (phosphorus (P), sulfur (S)) and environmental factors in shaping N-dependent LR plasticity. Recent advances utilizing single-cell transcriptomics and advanced imaging reveal unprecedented cellular heterogeneity in LR responses to N. Understanding this sophisticated regulatory network is paramount for developing strategies to enhance nitrogen use efficiency (NUE) in crops. This synthesis underscores how N acts as a master regulator, dynamically rewiring developmental programs through molecular hubs that synchronize nutrient sensing with root morphogenesis-a key adaptive strategy for resource acquisition in heterogeneous soils.

摘要

氮作为植物最必需的养分,对根系结构(RSA)有着深远影响,其中侧根(LR)受到优先调控。本综述综合阐述了氮感知、信号传导及其整合到调控侧根起始、原基形成、出现和伸长的发育途径中的复杂分子机制。我们深入探讨了特定转运蛋白(NRT1.1、硝酸盐转运蛋白2.1(NRT2.1))、转录因子(硝酸盐调控1(ANR1)、NLP7、TGACG基序结合因子(TGA)、类鳞状花序启动子结合蛋白9(SPL9))以及由不同氮有效性(缺乏、充足、过量)和化学形态(NO、NH、有机氮)调节的复杂激素信号网络(生长素、脱落酸、细胞分裂素、乙烯)的作用。重点关注了系统信号通路,包括肽介导的长距离通讯(CEP - C末端编码肽受体1(CEPR1))以及地上部分在调节根系反应中的关键作用。此外,我们还探讨了碳氮(C/N)平衡、翻译后修饰(泛素化、磷酸化)、表观遗传调控以及与其他养分(磷(P)、硫(S))和环境因素在塑造氮依赖性侧根可塑性方面的复杂相互作用的新意义。利用单细胞转录组学和先进成像技术的最新进展揭示了侧根对氮反应中前所未有的细胞异质性。理解这一复杂的调控网络对于制定提高作物氮利用效率(NUE)的策略至关重要。本综述强调了氮如何作为主要调节因子,通过将养分感知与根系形态发生同步的分子枢纽动态重新连接发育程序,这是在异质土壤中获取资源的关键适应性策略。

相似文献

本文引用的文献

1
Hormonal regulation of primary root development.主根发育的激素调控
Cell Rep. 2025 Jun 24;44(6):115751. doi: 10.1016/j.celrep.2025.115751. Epub 2025 May 21.

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验