YUCCA9-Mediated Auxin Biosynthesis and Polar Auxin Transport Synergistically Regulate Regeneration of Root Systems Following Root Cutting

被引:39
作者
Xu, Dongyang [1 ]
Miao, Jiahang [1 ]
Yumoto, Emi [2 ]
Yokota, Takao [2 ]
Asahina, Masashi [2 ]
Watahiki, Masaaki [1 ,3 ]
机构
[1] Hokkaido Univ, Grad Sch Life Sci, Sapporo, Hokkaido 0600810, Japan
[2] Teikyo Univ, Dept Biosci, Utsunomiya, Tochigi 3208551, Japan
[3] Hokkaido Univ, Fac Sci, Sapporo, Hokkaido 0600810, Japan
关键词
Auxin biosynthesis; Lateral root; Polar auxin transport; Root pruning; Yucasin; YUCCA9; YUCCA FLAVIN MONOOXYGENASES; JASMONOYL-L-ISOLEUCINE; BOX PROTEIN TIR1; LATERAL ROOTS; ARABIDOPSIS-THALIANA; DIFFERENTIAL GROWTH; COMPLEX REGULATION; GENETIC-ANALYSIS; PIN PROTEINS; CELL-CYCLE;
D O I
10.1093/pcp/pcx107
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Recovery of the root system following physical damage is an essential issue for plant survival. An injured root system is able to regenerate by increases in lateral root (LR) number and acceleration of root growth. The horticultural technique of root pruning (root cutting) is an application of this response and is a common garden technique for controlling plant growth. Although root pruning is widely used, the molecular mechanisms underlying the subsequent changes in the root system are poorly understood. In this study, root pruning was employed as a model system to study the molecular mechanisms of root system regeneration. Notably, LR defects in wild-type plants treated with inhibitors of polar auxin transport (PAT) or in the auxin signaling mutant auxin/indole-3-acetic acid19/massugu2 were recovered by root pruning. Induction of IAA19 following root pruning indicates an enhancement of auxin signaling by root pruning. Endogenous levels of IAA increased after root pruning, and YUCCA9 was identified as the primary gene responsible. PAT-related genes were induced after root pruning, and the YUCCA inhibitor yucasin suppressed root regeneration in PAT-related mutants. Therefore, we demonstrate the crucial role of YUCCA9, along with other redundant YUCCA family genes, in the enhancement of auxin biosynthesis following root pruning. This further enhances auxin transport and activates downstream auxin signaling genes, and thus increases LR number.
引用
收藏
页码:1710 / 1723
页数:14
相关论文
共 36 条
[21]   The tomato MADS-box gene SlMBP9 negatively regulates lateral root formation and apical dominance by reducing auxin biosynthesis and transport [J].
Anzhou Li ;
Guoping Chen ;
Xiaohui Yu ;
Zhiguo Zhu ;
Lincheng Zhang ;
Shengen Zhou ;
Zongli Hu .
Plant Cell Reports, 2019, 38 :951-963
[22]   Timely removal of exogenous cytokinin and the prevention of auxin transport from the shoot to the root affect the regeneration potential of Arabidopsis roots [J].
Bernula, Dora ;
Benko, Peter ;
Kaszler, Nikolett ;
Domonkos, Ildiko ;
Valkai, Ildiko ;
Szollosi, Reka ;
Ferenc, Gyoergyi ;
Ayaydin, Ferhan ;
Feher, Attila ;
Gemes, Katalin .
PLANT CELL TISSUE AND ORGAN CULTURE, 2020, 140 (02) :327-339
[23]   ABI4 Mediates Abscisic Acid and Cytokinin Inhibition of Lateral Root Formation by Reducing Polar Auxin Transport in Arabidopsis [J].
Shkolnik-Inbar, Doron ;
Bar-Zvi, Dudy .
PLANT CELL, 2010, 22 (11) :3560-3573
[24]   Endophytic microbes Bacillus sp LZR216-regulated root development is dependent on polar auxin transport in Arabidopsis seedlings [J].
Wang, Jianfeng ;
Zhang, Yongqiang ;
Li, Ying ;
Wang, Xiaomin ;
Nan, Wenbin ;
Hu, Yanfeng ;
Zhang, Hong ;
Zhao, Chengzhou ;
Wang, Feng ;
Li, Ping ;
Shi, Hongyong ;
Bi, Yurong .
PLANT CELL REPORTS, 2015, 34 (06) :1075-1087
[25]   Endophytic microbes Bacillus sp. LZR216-regulated root development is dependent on polar auxin transport in Arabidopsis seedlings [J].
Jianfeng Wang ;
Yongqiang Zhang ;
Ying Li ;
Xiaomin Wang ;
Wenbin Nan ;
Yanfeng Hu ;
Hong Zhang ;
Chengzhou Zhao ;
Feng Wang ;
Ping Li ;
Hongyong Shi ;
Yurong Bi .
Plant Cell Reports, 2015, 34 :1075-1087
[26]   OsRPK1, a novel leucine-rich repeat receptor-like kinase, negatively regulates polar auxin transport and root development in rice [J].
Zou, Yu ;
Liu, Xiaoyu ;
Wang, Qing ;
Chen, Yu ;
Liu, Cheng ;
Qiu, Yang ;
Zhang, Wei .
BIOCHIMICA ET BIOPHYSICA ACTA-GENERAL SUBJECTS, 2014, 1840 (06) :1676-1685
[27]   The nitrate transporter NRT2.1 directly antagonizes PIN7-mediated auxin transport for root growth adaptation [J].
Wang, Yalu ;
Yuan, Zhi ;
Wang, Jinyi ;
Xiao, Huixin ;
Wan, Lu ;
Li, Lanxin ;
Guo, Yan ;
Gong, Zhizhong ;
Friml, Jiri ;
Zhang, Jing .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2023, 120 (25)
[28]   Local auxin synthesis mediated by YUCCA4 induced during root-knot nematode infection positively regulates gall growth and nematode development [J].
Suzuki, Reira ;
Kanno, Yuri ;
Abril-Urias, Patricia ;
Seo, Mitsunori ;
Escobar, Carolina ;
Tsai, Allen Yi-Lun ;
Sawa, Shinichiro .
FRONTIERS IN PLANT SCIENCE, 2022, 13
[29]   Mutations in exocyst complex subunit SEC6 gene impaired polar auxin transport and PIN protein recycling in Arabidopsis primary root [J].
Tan, Xiaoyun ;
Feng, Yihong ;
Liu, Yulong ;
Bao, Yiqun .
PLANT SCIENCE, 2016, 250 :97-104
[30]   Arabidopsis phosphatidylinositol monophosphate 5-kinase 2 is involved in root gravitropism through regulation of polar auxin transport by affecting the cycling of PIN proteins [J].
Mei, Yu ;
Jia, Wen-Jing ;
Chu, Yu-Jia ;
Xue, Hong-Wei .
CELL RESEARCH, 2012, 22 (03) :581-597