CEP3 levels affect starvation-related growth responses of the primary root

被引:34
作者
Delay, Christina [1 ]
Chapman, Kelly [1 ]
Taleski, Michael [1 ]
Wang, Yaowei [2 ,3 ]
Tyagi, Sonika [4 ,5 ]
Xiong, Yan [2 ]
Imin, Nijat [1 ,6 ]
Djordjevic, Michael A. [1 ]
机构
[1] Australian Natl Univ, Div Plant Sci, Res Sch Biol, Coll Med Biol & Environm, Canberra, ACT, Australia
[2] Chinese Acad Sci, Shanghai Ctr Plant Stress Biol, Chinese Acad Sci Ctr Excellence Mol Plant Sci, Shanghai 201602, Peoples R China
[3] Univ Chinese Acad Sci, Shanghai 201602, Peoples R China
[4] Walter & Eliza Hall Inst Med Res, Australian Genome Res Facil Ltd, Parkville, Vic, Australia
[5] Monash Univ, Bioinformat Res Grp, Clayton, Vic 3800, Australia
[6] Univ Auckland, Sch Biol Sci, Auckland, New Zealand
基金
澳大利亚研究理事会;
关键词
Amino acid catabolism; carbon limitation; cell cycle; CEP; CEPR1; nitrogen limitation; peptide hormone; primary root growth; TOR; GENOME-WIDE IDENTIFICATION; REGULATE LATERAL ROOT; ARTIFICIAL MICRORNA; SECRETED PEPTIDE; GENE-EXPRESSION; ARABIDOPSIS; SHOOT; TARGET; NORMALIZATION; TRANSITION;
D O I
10.1093/jxb/erz270
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
CEPs (C-TERMINALLY ENCODED PEPTIDEs) inhibit Arabidopsis primary root growth by unknown mechanisms. We investigated how CEP3 levels control primary root growth. CEP3 peptide application decreased cell division, S-phase cell number, root meristematic cell number, and meristem zone (MZ) size in a dose- and CEP RECEPTOR1-dependent manner. Grafting showed that CEP3-dependent growth inhibition requires root and shoot CEPR1. CEP3 induced mitotic quiescence in MZ cells significantly faster than that induced by nutrient limitation alone. CEP3 also inhibited the restoration of S-phase to mitotically quiescence cells by nutrient resupply without quantitatively reducing TARGET OF RAPAMYCIN (TOR) kinase activity. In contrast, cep3-1 had an increased meristem size and S-phase cell number under nitrogen (N)-limited conditions, but not under N-sufficient conditions. Furthermore, cep3-1 meristematic cells remained in S-phase longer than wild-type cells during a sustained carbon (C) and N limitation. RNA sequencing showed that CEP3 peptide down-regulated genes involved in S-phase entry, cell wall and ribosome biogenesis, DNA replication, and meristem expansion, and up-regulated genes involved in catabolic processes and proteins and peptides that negatively control meristem expansion and root growth. Many of these genes were reciprocally regulated in cep3-1. The results suggest that raising CEP3 induces starvation-related responses that curtail primary root growth under severe nutrient limitation.
引用
收藏
页码:4763 / 4773
页数:11
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