State Key Laboratory of Plant Physiology and Biochemistry, College of Agronomy and Biotechnology, China Agricultural University, Beijing, 100193, China.
Shandong Academy of Agricultural Sciences, Jinan, Shandong, China.
BMC Plant Biol. 2023 Feb 3;23(1):74. doi: 10.1186/s12870-023-04087-0.
Auxin plays a crucial role in nitrate (NO)-mediated root architecture, and it is still unclear that if NO supply modulates auxin reallocation for regulating root formation in maize (Zea mays L.). This study was conducted to investigate the role of auxin efflux carrier ZmPIN1a in the root formation in response to NO supply.
Low NO (LN) promoted primary root (PR) elongation, while repressed the development of lateral root primordia (LRP) and total root length. LN modulated auxin levels and polar transport and regulated the expression of auxin-responsive and -signaling genes in roots. Moreover, LN up-regulated the expression level of ZmPIN1a, and overexpression of ZmPIN1a enhanced IAA efflux and accumulation in PR tip, while repressed IAA accumulation in LRP initiation zone, which consequently induced LN-mediated PR elongation and LR inhibition. The inhibition rate of PR length, LRP density and number of ZmPIN1a-OE plants was higher than that of wild-type plants after auxin transport inhibitor NPA treatment under NN and LN conditions, and the degree of inhibition of root growth in ZmPIN1a-OE plants was more obvious under LN condition.
These findings suggest that ZmPIN1a was involved in modulating auxin levels and transport to alter NO-mediated root formation in maize.
生长素在硝酸盐(NO)介导的根构型中起着至关重要的作用,但目前尚不清楚NO 供应是否会调节生长素再分配,从而调节玉米(Zea mays L.)的根形成。本研究旨在探讨生长素外排载体 ZmPIN1a 在响应 NO 供应时在根形成中的作用。
低 NO(LN)促进了主根(PR)伸长,而抑制了侧根原基(LRP)和总根长的发育。LN 调节了生长素水平和极性运输,并调节了根中生长素反应和信号基因的表达。此外,LN 上调了 ZmPIN1a 的表达水平,过表达 ZmPIN1a 增强了 PR 顶端的 IAA 外排和积累,而抑制了 LRP 起始区的 IAA 积累,从而诱导了 LN 介导的 PR 伸长和 LR 抑制。在 NN 和 LN 条件下,生长素运输抑制剂 NPA 处理后,ZmPIN1a-OE 植物的 PR 长度、LRP 密度和数量的抑制率高于野生型植物,并且在 LN 条件下,ZmPIN1a-OE 植物的根生长抑制程度更为明显。
这些发现表明,ZmPIN1a 参与调节生长素水平和运输,以改变玉米中 NO 介导的根形成。