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番茄类 1 KNOTTED1 同源盒蛋白对叶片成熟的阶段特异性调控。

Stage-specific regulation of Solanum lycopersicum leaf maturation by class 1 KNOTTED1-LIKE HOMEOBOX proteins.

机构信息

Robert H. Smith Institute of Plant Sciences and Genetics in Agriculture, Otto Warburg Minerva Center for Agricultural Biotechnology, Hebrew University, Rehovot 76100, Israel.

出版信息

Plant Cell. 2009 Oct;21(10):3078-92. doi: 10.1105/tpc.109.068148. Epub 2009 Oct 9.

Abstract

Class 1 KNOTTED1-LIKE HOMEOBOX (KNOXI) genes encode transcription factors that are expressed in the shoot apical meristem (SAM) and are essential for SAM maintenance. In some species with compound leaves, including tomato (Solanum lycopersicum), KNOXI genes are also expressed during leaf development and affect leaf morphology. To dissect the role of KNOXI proteins in leaf patterning, we expressed in tomato leaves a fusion of the tomato KNOXI gene Tkn2 with a sequence encoding a repressor domain, expected to repress common targets of tomato KNOXI proteins. This resulted in the formation of small, narrow, and simple leaves due to accelerated differentiation. Overexpression of the wild-type form of Tkn1 or Tkn2 in young leaves also resulted in narrow and simple leaves, but in this case, leaf development was blocked at the initiation stage. Expression of Tkn1 or Tkn2 during a series of spatial and temporal windows in leaf development identified leaf initiation and primary morphogenesis as specific developmental contexts at which the tomato leaf is responsive to KNOXI activity. Arabidopsis thaliana leaves responded to overexpression of Arabidopsis or tomato KNOXI genes during the morphogenetic stage but were largely insensitive to their overexpression during leaf initiation. These results imply that KNOXI proteins act at specific stages within the compound-leaf development program to delay maturation and enable leaflet formation, rather than set the compound leaf route.

摘要

1 类结绳状同源盒(KNOXI)基因编码在茎尖分生组织(SAM)中表达的转录因子,对于 SAM 的维持是必不可少的。在一些具有复叶的物种中,包括番茄(Solanum lycopersicum),KNOXI 基因在叶片发育过程中也表达,并影响叶片形态。为了剖析 KNOXI 蛋白在叶片图案形成中的作用,我们在番茄叶片中表达了番茄 KNOXI 基因 Tkn2 与编码抑制结构域的序列的融合体,预计该融合体能抑制番茄 KNOXI 蛋白的常见靶标。这导致了小、窄、简单的叶片的形成,这是由于加速分化的结果。在幼叶中过表达野生型 Tkn1 或 Tkn2 也导致了狭窄和简单的叶片,但在这种情况下,叶片发育在起始阶段被阻断。在叶片发育的一系列时空窗口中表达 Tkn1 或 Tkn2 ,确定了叶片起始和初级形态发生是番茄叶片对 KNOXI 活性有反应的特定发育背景。拟南芥叶片对拟南芥或番茄 KNOXI 基因的过表达在形态发生阶段作出响应,但在叶片起始阶段对其过表达的响应性则很小。这些结果表明,KNOXI 蛋白在复叶发育程序的特定阶段起作用,以延缓成熟并促进小叶形成,而不是设定复叶的途径。

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