分子生物学
IVD分子诊断
细胞培养与分析
蛋白研究
细胞因子
重组蛋白
抗体
高通量测序建库
病原检测UCF系列
生物医药
工具酶
抑制剂激活剂与常用试剂
仪器
耗材

CsiLAC4 modulates boron flow in Arabidopsis and Citrus via high-boron-dependent lignification of cell walls

Jing-Hao Huang, Ling-Yuan Zhang, Xiong-Jie Lin, Yuan Gao, Jiang Zhang, Wei-Lin Huang, Daqiu Zhao, Rhuanito Soranz Ferrarezi, Guo-Cheng Fan, Li-Song Chen

Journal:NEW PHYTOLOGIST

IF:10.15

DOI:10.1111/nph.17861

PMID:

Published:2021-11-14

research field:植物生理学分子生物学植物学进化生物学

Abstract

Summary The mechanisms underlying plant tolerance to boron (B) excess are far from fully understood. Here we characterized the role of the miR397‐CsiLAC4/CsiLAC17 (from Citrus sinensis) module in regulation of B flow. Live‐cell imaging techniques were used in localization studies. A tobacco transient expression system tested modulations of CsiLAC4 and CsiLAC17 by miR397. Transgenic Arabidopsis were generated to analyze the biological functions of CsiLAC4 and CsiLAC17. CsiLAC4’s role in xylem lignification was determined by mRNA hybridization and cytochemistry. In situ B distribution was analyzed by laser ablation inductively coupled plasma mass spectrometry. CsiLAC4 and CsiLAC17 are predominantly localized in the apoplast of tobacco epidermal cells. Overexpression of CsiLAC4 in Arabidopsis improves the plants’ tolerance to boric acid excess by triggering high‐B‐dependent lignification of the vascular system’s cell wall and reducing free B content in roots and shoots. In Citrus, CsiLAC4 is expressed explicitly in the xylem parenchyma and is modulated by B‐responsive miR397. Upregulation of CsiLAC4 in Citrus results in lignification of the xylem cell walls, restricting B flow from xylem vessels to the phloem. CsiLAC4 contributes to plant tolerance to boric acid excess via high‐B‐dependent lignification of cell walls, which set up a ‘physical barrier’ preventing B flow.

本文使用的Yeasen产品

购物车
客服
转染试用