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ZWILLE基因在拟南芥胚胎发生过程中对中央茎尖分生组织细胞命运调控中的作用。

Role of the ZWILLE gene in the regulation of central shoot meristem cell fate during Arabidopsis embryogenesis.

作者信息

Moussian B, Schoof H, Haecker A, Jürgens G, Laux T

机构信息

Lehrstuhl für Entwicklungsgenetik, Auf der Morgenstelle 1, D-72076 Tübingen, Germany.

出版信息

EMBO J. 1998 Mar 16;17(6):1799-809. doi: 10.1093/emboj/17.6.1799.

Abstract

Postembryonic development in higher plants is marked by repetitive organ formation via a self-perpetuating stem cell system, the shoot meristem. Organs are initiated at the shoot meristem periphery, while a central zone harbors the stem cells. Here we show by genetic and molecular analyses that the ZWILLE (ZLL) gene is specifically required to establish the central-peripheral organization of the embryo apex and that this step is critical for shoot meristem self-perpetuation. zll mutants correctly initiate expression of the shoot meristem-specific gene SHOOT MERISTEMLESS in early embryos, but fail to regulate its spatial expression pattern at later embryo stages and initiate differentiated structures in place of stem cells. We isolated the ZLL gene by map-based cloning. It encodes a novel protein, and related sequences are highly conserved in multicellular plants and animals but are absent from bacteria and yeast. We propose that ZLL relays positional information required to maintain stem cells of the developing shoot meristem in an undifferentiated state during the transition from embryonic development to repetitive postembryonic organ formation.

摘要

高等植物的胚后发育以通过一个自我维持的干细胞系统——茎尖分生组织进行重复的器官形成为特征。器官在茎尖分生组织的周边起始,而中央区域则容纳干细胞。在这里,我们通过遗传和分子分析表明,ZWILLE(ZLL)基因对于建立胚胎顶端的中央-周边组织是特异性必需的,并且这一步骤对于茎尖分生组织的自我维持至关重要。zll突变体在早期胚胎中正确起始茎尖分生组织特异性基因SHOOT MERISTEMLESS的表达,但在后期胚胎阶段未能调节其空间表达模式,并在干细胞的位置起始分化结构。我们通过图位克隆分离出了ZLL基因。它编码一种新型蛋白质,相关序列在多细胞植物和动物中高度保守,但在细菌和酵母中不存在。我们提出,ZLL在从胚胎发育向重复的胚后器官形成的转变过程中传递维持发育中的茎尖分生组织干细胞处于未分化状态所需的位置信息。

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本文引用的文献

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Organ Formation at the Vegetative Shoot Meristem.营养茎尖分生组织处的器官形成。
Plant Cell. 1997 Jul;9(7):1067-1076. doi: 10.1105/tpc.9.7.1067.
2
Embryogenesis: A New Start in Life.胚胎发生:生命的新起点。
Plant Cell. 1997 Jul;9(7):989-1000. doi: 10.1105/tpc.9.7.989.

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