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OBE3与WUS在茎尖分生组织干细胞调控中的相互作用。

OBE3 and WUS Interaction in Shoot Meristem Stem Cell Regulation.

作者信息

Lin Ta-Fang, Saiga Shunsuke, Abe Mitsutomo, Laux Thomas

机构信息

BIOSS Centre for Biological Signalling Studies, Faculty of Biology, University of Freiburg, Schaenzlestrasse 1, 79104, Freiburg, Germany.

Laboratory of Biochemistry, Wageningen University, Dreijenlaan 3, 6703 HA, Wageningen, The Netherlands.

出版信息

PLoS One. 2016 May 19;11(5):e0155657. doi: 10.1371/journal.pone.0155657. eCollection 2016.

Abstract

The stem cells in the shoot apical meristem (SAM) are the origin of all above ground tissues in plants. In Arabidopsis thaliana, shoot meristem stem cells are maintained by the homeobox transcription factor gene WUS (WUSCHEL) that is expressed in cells of the organizing center underneath the stem cells. In order to identify factors that operate together with WUS in stem cell maintenance, we performed an EMS mutant screen for modifiers of the hypomorphic wus-6 allele. We isolated the oberon3-2 (obe3-2) mutant that enhances stem cell defects in wus-6, but does not affect the putative null allele wus-1. The OBE3 gene encodes a PHD (Plant Homeo Domain) protein that is thought to function in chromatin regulation. Single mutants of OBE3 or its closest homolog OBE4 do not display any defects, whereas the obe3-2 obe4-2 double mutant displays broad growth defects and developmental arrest of seedlings. Transcript levels of WUS and its target gene in the stem cells, CLAVATA3, are reduced in obe3-2. On the other hand, OBE3 and OBE4 transcripts are both indirectly upregulated by ectopic WUS expression. Our results suggest a positive feedback regulation between WUS and OBE3 that contributes to shoot meristem homeostasis.

摘要

茎尖分生组织(SAM)中的干细胞是植物所有地上组织的起源。在拟南芥中,茎分生组织干细胞由同源异型框转录因子基因WUS(WUSCHEL)维持,该基因在干细胞下方的组织中心细胞中表达。为了鉴定在干细胞维持过程中与WUS共同作用的因子,我们对亚等位基因wus-6的修饰因子进行了EMS突变体筛选。我们分离出了oberon3-2(obe3-2)突变体,该突变体增强了wus-6中的干细胞缺陷,但不影响假定的无效等位基因wus-1。OBE3基因编码一种PHD(植物同源结构域)蛋白,该蛋白被认为在染色质调控中发挥作用。OBE3或其最接近的同源物OBE4的单突变体没有表现出任何缺陷,而obe3-2 obe4-2双突变体表现出广泛的生长缺陷和幼苗发育停滞。在obe3-2中,WUS及其在干细胞中的靶基因CLAVATA3的转录水平降低。另一方面,异位表达的WUS间接上调了OBE3和OBE4的转录本。我们的结果表明WUS和OBE3之间存在正反馈调节,这有助于茎分生组织的稳态。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6469/4873020/e91c37b761c6/pone.0155657.g001.jpg

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