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对转录因子WUSCHEL及其在金鱼草中的功能同源物的分析揭示了它们在分生组织维持中发挥作用的潜在机制。

Analysis of the transcription factor WUSCHEL and its functional homologue in Antirrhinum reveals a potential mechanism for their roles in meristem maintenance.

作者信息

Kieffer Martin, Stern Yaniv, Cook Holly, Clerici Elena, Maulbetsch Christoph, Laux Thomas, Davies Brendan

机构信息

Centre for Plant Sciences, University of Leeds, Leeds LS2 9JT, United Kingdom.

出版信息

Plant Cell. 2006 Mar;18(3):560-73. doi: 10.1105/tpc.105.039107. Epub 2006 Feb 3.

Abstract

One of the most significant features of plant development is the way in which it can be elaborated and modulated throughout the life of the plant, an ability that is conferred by meristems. The Arabidopsis thaliana WUSCHEL gene (WUS), which encodes a homeodomain transcription factor, is required to maintain the stem cells in the shoot apical meristem in an undifferentiated state. The mechanism by which WUS prevents the differentiation of stem cells is unknown. We have characterized a meristem maintenance mutant in Antirrhinum majus and shown that it arises from a defect in the WUS orthologue ROSULATA (ROA). Detailed characterization of a semidominant roa allele revealed an essential role for the conserved C-terminal domain. Expression of either ROA or WUS lacking this domain causes a failure of meristem maintenance. The conserved domain mediates an interaction between WUS and two members of a small family of corepressor-like proteins in Arabidopsis. Our results suggest that WUS functions by recruiting transcriptional corepressors to repress target genes that promote differentiation, thereby ensuring stem cell maintenance.

摘要

植物发育最显著的特征之一是其在植物整个生命周期中能够被细化和调节的方式,这种能力是由分生组织赋予的。拟南芥中的WUSCHEL基因(WUS)编码一种同源异型域转录因子,它对于维持茎尖分生组织中的干细胞处于未分化状态是必需的。WUS阻止干细胞分化的机制尚不清楚。我们对金鱼草中的一个分生组织维持突变体进行了表征,并表明它是由WUS同源基因ROSLATA(ROA)的缺陷引起的。对一个半显性roa等位基因的详细表征揭示了保守的C末端结构域的重要作用。缺乏该结构域的ROA或WUS的表达都会导致分生组织维持失败。该保守结构域介导了WUS与拟南芥中一个小的类共抑制因子蛋白家族的两个成员之间的相互作用。我们的结果表明,WUS通过招募转录共抑制因子来抑制促进分化的靶基因,从而确保干细胞的维持。

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