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第一作者:Sören Werner
第一单位:柏林自由大学
第一通讯:Thomas Schmülling
Abstract
背景回顾:During vegetative growth plants pass from a juvenile to an adult phase causing changes in shoot morphology. This vegetative phase change is primarily regulated by the opposite actions of two microRNAs, the inhibitory miR156 and the promoting miR172 as well as their respective target genes, constituting the age pathway.
主要发现:Here we show that the phytohormone cytokinin promotes the juvenile-to-adult phase transition through regulating components of the age pathway.
结果1-CK信号减弱,转变延迟:Reduction of cytokinin signalling substantially delayed the transition to the adult stage.
结果2-tZ细胞分裂素: tZ-type cytokinin was particularly important as compared to iP- and the inactive cZ-type cytokinin, and root-derived tZ influenced the phase transition significantly.
结果3-SPL和miR172:Genetic and transcriptional analyses indicated the requirement of SQUAMOSA PROMOTER BINDING PROTEIN-LIKE (SPL) transcription factors and miR172 for cytokinin activity.
结果4-miR172靶基因:Two miR172 targets, TARGET OF EAT1 (TOE1) and TOE2 encoding transcriptional repressors were necessary and sufficient to mediate the influence of cytokinin on vegetative phase change.
结论:This cytokinin pathway regulating plant aging adds to the complexity of the regulatory network controlling the juvenile-to-adult phase transition and links cytokinin to miRNA action.
摘 要
在营养生长过程中,植物从幼年期进入到成年期,芽的形态会发生改变。这种营养阶段的变化主要是由两个microRNAs的相反作用来调控的,分别是机制性miR156和促进性miR172,以及其各自的靶基因,共同组成了年龄途径。本文中,作者发现植物激素细胞分裂素通过调控年龄途径的组分,从而促进幼年阶段向成年阶段的转变。细胞分裂素信号的减弱大大延迟了幼年向成年阶段的转变。相比于iP类细胞分裂素和非活性cZ类细胞分裂素,tZ类细胞分裂素尤其重要,并且源自于根组织的tZ类细胞分裂素显著响应植株的状态转变。遗传和转录分析显示,SPL转录因子和miR172对于细胞分裂素的活性是必须。miR172的两个靶基因TOE1和TOE2编码转录抑制子,对于细胞分裂素作用于植株营养生长阶段改变是充分且必要的。这种调节植物衰老的细胞分裂素途径增加了植物中控制幼年到成年阶段转变的调控网络的复杂性,并将细胞分裂素与miRNA作用联系起来。
通讯作者
** Thomas Schmülling **
个人简介:
1986年,科隆大学,学士;
1989年,科隆大学,博士。
研究方向:细胞分裂素代谢与功能;细胞分裂素信号转导。
doi: https://doi.org/10.1038/s41467-021-26088-z
Journal: Nature Communications
Published date: October 05, 2021
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