Division of Plant Sciences, Research School of Biology, The Australian National University, Canberra, ACT, Australia.
J Exp Bot. 2019 Aug 7;70(15):3955-3967. doi: 10.1093/jxb/erz207.
Lateral root (LR) proliferation is a major determinant of soil nutrient uptake. How resource allocation controls the extent of LR growth remains unresolved. We used genetic, physiological, transcriptomic, and grafting approaches to define a role for C-TERMINALLY ENCODED PEPTIDE RECEPTOR 1 (CEPR1) in controlling sucrose-dependent LR growth. CEPR1 inhibited LR growth in response to applied sucrose, other metabolizable sugars, and elevated light intensity. Pathways through CEPR1 restricted LR growth by reducing LR meristem size and the length of mature LR cells. RNA-sequencing of wild-type (WT) and cepr1-1 roots with or without sucrose treatment revealed an intersection of CEP-CEPR1 signalling with the sucrose transcriptional response. Sucrose up-regulated several CEP genes, supporting a specific role for CEP-CEPR1 in the response to sucrose. Moreover, genes with basally perturbed expression in cepr1-1 overlap with WT sucrose-responsive genes significantly. We found that exogenous CEP inhibited LR growth via CEPR1 by reducing LR meristem size and mature cell length. This result is consistent with CEP-CEPR1 acting to curtail the extent of sucrose-dependent LR growth. Reciprocal grafting indicates that LR growth inhibition requires CEPR1 in both the roots and shoots. Our results reveal a new role for CEP-CEPR1 signalling in controlling LR growth in response to sucrose.
侧根 (LR) 增殖是土壤养分吸收的主要决定因素。资源分配如何控制 LR 生长的程度仍未解决。我们使用遗传、生理、转录组和嫁接方法来定义 C-末端编码肽受体 1 (CEPR1) 在控制蔗糖依赖的 LR 生长中的作用。CEPR1 抑制了对施加的蔗糖、其他可代谢糖和升高的光强度的响应的 LR 生长。CEPR1 限制 LR 生长的途径是通过减小 LR 分生组织的大小和成熟 LR 细胞的长度。有或没有蔗糖处理的野生型 (WT) 和 cepr1-1 根的 RNA 测序揭示了 CEP-CEPR1 信号与蔗糖转录反应的交叉。蔗糖上调了几个 CEP 基因,支持 CEP-CEPR1 在响应蔗糖中的特定作用。此外,cep1-1 中表达基础受到干扰的基因与 WT 蔗糖响应基因显著重叠。我们发现,外源性 CEP 通过 CEPR1 抑制 LR 生长,从而减小 LR 分生组织的大小和成熟细胞的长度。这一结果与 CEP-CEPR1 作用于限制蔗糖依赖的 LR 生长的程度一致。互惠嫁接表明,LR 生长抑制需要 CEPR1 在根和茎中都存在。我们的结果揭示了 CEP-CEPR1 信号在控制蔗糖响应中的 LR 生长中的新作用。