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通过上游保守非编码序列对无茎尖分生组织基因的调控协调叶片发育。

Regulation of SHOOT MERISTEMLESS genes via an upstream-conserved noncoding sequence coordinates leaf development.

作者信息

Uchida Naoyuki, Townsley Brad, Chung Kook-Hyun, Sinha Neelima

机构信息

Section of Plant Biology, University of California, Davis, CA 95616, USA.

出版信息

Proc Natl Acad Sci U S A. 2007 Oct 2;104(40):15953-8. doi: 10.1073/pnas.0707577104. Epub 2007 Sep 26.

Abstract

The indeterminate shoot apical meristem of plants is characterized by the expression of the Class 1 KNOTTED1-LIKE HOMEOBOX (KNOX1) genes. KNOX1 genes have been implicated in the acquisition and/or maintenance of meristematic fate. One of the earliest indicators of a switch in fate from indeterminate meristem to determinate leaf primordium is the down-regulation of KNOX1 genes orthologous to SHOOT MERISTEMLESS (STM) in Arabidopsis (hereafter called STM genes) in the initiating primordia. In simple leafed plants, this down-regulation persists during leaf formation. In compound leafed plants, however, KNOX1 gene expression is reestablished later in the developing primordia, creating an indeterminate environment for leaflet formation. Despite this knowledge, most aspects of how STM gene expression is regulated remain largely unknown. Here, we identify two evolutionarily conserved noncoding sequences within the 5' upstream region of STM genes in both simple and compound leafed species across monocots and dicots. We show that one of these elements is involved in the regulation of the persistent repression and/or the reestablishment of STM expression in the developing leaves but is not involved in the initial down-regulation in the initiating primordia. We also show evidence that this regulation is developmentally significant for leaf formation in the pathway involving ASYMMETRIC LEAVES1/2 (AS1/2) gene expression; these genes are known to function in leaf development. Together, these findings reveal a regulatory point of leaf development mediated through a conserved, noncoding sequence in STM genes.

摘要

植物的不定芽顶端分生组织的特征是1类KNOTTED1类同源异型盒(KNOX1)基因的表达。KNOX1基因与分生组织命运的获得和/或维持有关。命运从不定分生组织转变为确定的叶原基的最早指标之一是拟南芥中与无茎尖分生组织(STM)直系同源的KNOX1基因(以下称为STM基因)在起始原基中的下调。在单叶植物中,这种下调在叶片形成过程中持续存在。然而,在复叶植物中,KNOX1基因表达在发育中的原基后期重新建立,为小叶形成创造了一个不定环境。尽管有这些认识,但STM基因表达如何调控的大多数方面仍然很大程度上未知。在这里,我们在单子叶植物和双子叶植物的单叶和复叶物种的STM基因的5'上游区域内鉴定出两个进化上保守的非编码序列。我们表明,这些元件之一参与了发育叶片中STM表达的持续抑制和/或重新建立的调控,但不参与起始原基中的初始下调。我们还显示证据表明,这种调控在涉及不对称叶片1/2(AS1/2)基因表达的途径中对叶片形成具有发育意义;已知这些基因在叶片发育中起作用。总之,这些发现揭示了通过STM基因中的保守非编码序列介导的叶片发育调控点。

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