发表论文

Jing Fu, Xinglin Zhang, Jiaming Liu, Xudong Gao, Juan Bai, Yueling Hao, Hongchang Cui, A mechanism coordinating root elongation, endodermal differentiation, redox homeostasis and stress response

作者:  来源:DOI:10.1111/tpj.15361  发布日期:2021-05-31  浏览次数:

A mechanism coordinating root elongation, endodermal differentiation, redox homeostasis and stress response

Jing Fu, Xinglin Zhang, Jiaming Liu, Xudong Gao, Juan Bai, Yueling Hao, Hongchang Cui

Plant Journal

DOI:10.1111/tpj.15361

Abstract

Root growth relies on both cell division and cell elongation, which occur in the meristem and elongation zones, respectively. SCARECROW (SCR) and SHORT-ROOT (SHR) are GRAS family genes essential for root growth and radial patterning in the Arabidopsis root. Previous studies showed that SCR and SHR promote root growth by suppressing cytokinin response in the meristem, but there is evidence that SCR expressed beyond the meristem is also required for root growth. Here we report a previously unknown role for SCR in promoting cell elongation. Consistent with this, we found that the scr mutant accumulated a higher level of reactive oxygen species (ROS) in the elongation zone, which is probably due to decreased expression of peroxidase gene 3, which consumes hydrogen peroxide in a reaction leading to Casparian strip formation. When the oxidative stress response was blocked in the scr mutant by mutation in ABSCISIC ACID 2 (ABA2) or when the redox status was ameliorated by the upbeat 1 (upb1) mutant, the root became significantly longer, with longer cells and a larger and more mitotically active meristem. Remarkably, however, the stem cell and radial patterning defects in the double mutants still persisted. Since ROS and peroxidases are essential for endodermal differentiation, these results suggest that SCR plays a role in coordinating cell elongation, endodermal differentiation, redox homeostasis and oxidative stress response in the root. We also provide evidence that this role of SCR is independent of SHR, even though they function similarly in other aspects of root growth and development.