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胱硫醚β-合酶对于胚胎模式形成和拟南芥根干细胞龛的维持至关重要。

Cystathionine beta-lyase is crucial for embryo patterning and the maintenance of root stem cell niche in Arabidopsis.

机构信息

State Key Laboratory for Conservation and Utilization of Subtropical Agro-bioresources, South China Agricultural University, Guangzhou, 510642, China.

Guangdong Provincial Key Laboratory of Protein Function and Regulation in Agricultural Organisms, College of Life Sciences, South China Agricultural University, Guangzhou, 510642, China.

出版信息

Plant J. 2019 Aug;99(3):536-555. doi: 10.1111/tpj.14343. Epub 2019 May 17.

Abstract

The growth and development of roots in plants depends on the specification and maintenance of the root apical meristem. Here, we report the identification of CBL, a gene required for embryo and root development in Arabidopsis, and encodes cystathionine beta-lyase (CBL), which catalyzes the penultimate step in methionine (Met) biosynthesis, and which also led to the discovery of a previous unknown, but crucial, metabolic contribution by the Met biosynthesis pathway. CBL is expressed in embryos and shows quiescent center (QC)-enriched expression pattern in the root. cbl mutant has impaired embryo patterning, defective root stem cell niche, stunted root growth, and reduces accumulation of the root master regulators PLETHORA1 (PLT1) and PLT2. Furthermore, mutation in CBL severely decreases abundance of several PIN-FORMED (PIN) proteins and impairs auxin-responsive gene expression in the root tip. cbl seedlings also exhibit global reduction in histone H3 Lys-4 trimethylation (H3K4me3) and DNA methylation. Importantly, mutation in CBL reduces the abundance of H3K4me3 modification in PLT1/2 genes and downregulates their expression. Overexpression of PLT2 partially rescues cbl root meristem defect, suggesting that CBL acts in part through PLT1/2. Moreover, exogenous supplementation of Met also restores the impaired QC activity and the root growth defects of cbl. Taken together, our results highlight the unique role of CBL to maintain the root stem cell niche by cooperative actions between Met biosynthesis and epigenetic modification of key developmental regulators.

摘要

植物根的生长和发育依赖于根顶端分生组织的特化和维持。在这里,我们报告了 CBL 的鉴定,CBL 是拟南芥胚胎和根发育所必需的基因,编码半胱氨酸β-裂合酶(CBL),该酶催化蛋氨酸(Met)生物合成的倒数第二步,也导致了 Met 生物合成途径以前未知但至关重要的代谢贡献的发现。CBL 在胚胎中表达,并在根中表现出静止中心(QC)富集的表达模式。cbl 突变体胚胎形态发生受损,根干细胞龛缺陷,根生长受阻,根主调控因子 PLETHORA1(PLT1)和 PLT2 的积累减少。此外,CBL 突变严重降低了几种 PIN 形成蛋白(PIN)的丰度,并损害了根尖的生长素反应基因表达。cbl 幼苗还表现出组蛋白 H3Lys-4 三甲基化(H3K4me3)和 DNA 甲基化的全局减少。重要的是,CBL 突变降低了 PLT1/2 基因中 H3K4me3 修饰的丰度,并下调了它们的表达。PLT2 的过表达部分挽救了 cbl 根分生组织缺陷,表明 CBL 通过部分作用于 PLT1/2。此外,Met 的外源补充也恢复了 cbl 受损的 QC 活性和根生长缺陷。总之,我们的研究结果强调了 CBL 通过 Met 生物合成和关键发育调节剂的表观遗传修饰之间的协同作用,维持根干细胞龛的独特作用。

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