Cytokinins regulate spatially-specific ethylene production to control root growth in Arabidopsis

拟南芥 乙烯 生产(经济) 植物生长 词根(语言学) 细胞生物学 生物 化学 植物 生物化学 基因 经济 催化作用 突变体 宏观经济学 哲学 语言学
作者
Amel Yamoune,Amel Yamoune,Amel Yamoune,Amel Yamoune,Amel Yamoune,Amel Yamoune,Dominique Van Der Straeten,Amel Yamoune,Virtudes Mira‐Rodado,Amel Yamoune,Dominique Van Der Straeten,Virtudes Mira‐Rodado,Amel Yamoune,Amel Yamoune,Amel Yamoune,Amel Yamoune,Virtudes Mira‐Rodado,Amel Yamoune,Virtudes Mira‐Rodado,Amel Yamoune,Virtudes Mira‐Rodado,Amel Yamoune,Amel Yamoune,Virtudes Mira‐Rodado
出处
期刊:Plant communications [Elsevier]
卷期号:: 101013-101013
标识
DOI:10.1016/j.xplc.2024.101013
摘要

The two principal growth regulators cytokinins and ethylene are known to interact in the regulation of plant growth. However, information about underlying molecular mechanism and positional specificity of the cytokinin/ethylene crosstalk in root growth control is scarce. We have identified spatial specificity of cytokinin-regulated root elongation and root apical meristem (RAM) size, both of which we demonstrate to be dependent on ethylene biosynthesis. Upregulation of the cytokinin biosynthetic gene ISOPENTENYLTRANSFERASE (IPT) in proximal and peripheral tissues leads to both root and RAM shortening. In contrast, IPT activation in distal and inner tissues reduces RAM size while leaving the root length comparable to mock-treated controls. We show that cytokinins regulate two steps specific to ethylene biosynthesis, the production of ethylene precursor 1-aminocyclopropane-1-carboxylate (ACC) by ACC SYNTHASEs (ACSs), and its conversion to ethylene by ACC OXIDASEs (ACOs). We describe cytokinin- and ethylene-specific regulation controlling the activity of ACSs and ACOs that are spatially discrete along both proximo/distal and radial root axes. Using direct ethylene measurements, we identify ACO2, ACO3 and ACO4 as being responsible for ethylene biosynthesis and the ethylene-regulated root and RAM shortening in cytokinin-treated Arabidopsis. Direct interaction between ARABIDOPSIS RESPONSE REGULATOR 2 (ARR2), a member of the multistep phosphorelay cascade and the C-terminal portion of ETHYLENE INSENSITIVE 2 (EIN2-C), a key regulator of canonical ethylene signaling is involved in the cytokinin-induced, ethylene-mediated control of ACO4. We propose tight cooperation between cytokinin and ethylene signaling in the spatial-specific regulation of ethylene biosynthesis as a key aspect of hormonal control over root growth.
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