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编码26S蛋白酶体亚基RPT2a的HALTED ROOT基因对于拟南芥分生组织的维持至关重要。

The HALTED ROOT gene encoding the 26S proteasome subunit RPT2a is essential for the maintenance of Arabidopsis meristems.

作者信息

Ueda Minako, Matsui Keisuke, Ishiguro Sumie, Sano Ryosuke, Wada Takuji, Paponov Ivan, Palme Klaus, Okada Kiyotaka

机构信息

Department of Botany, Graduate School of Science, Kyoto University, Kitashirakawa Oiwake-cho, Sakyo-ku, Kyoto 606-8502, Japan.

出版信息

Development. 2004 May;131(9):2101-11. doi: 10.1242/dev.01096. Epub 2004 Apr 8.

Abstract

In higher plants, post-embryonic development is dependent on the activity of the root and shoot apical meristem (RAM and SAM). The quiescent center (QC) in the RAM and the organizing center (OC) in the SAM are known to be essential for the maintenance of meristematic activity. To understand the mechanism that maintains post-embryonic meristems, we isolated an Arabidopsis mutant, halted root (hlr). In this mutant, the cellular organization was disrupted in post-embryonic meristems both in the root and in the shoot, and their meristematic activity was reduced or became abnormal. We showed that the mutant RAM lost its QC identity after germination, which was specified during embryogenesis, whereas the identity of differentiated tissues was maintained. In the post-embryonic SAM, the expression pattern of a typical OC marker gene, WUSCHEL, was disturbed in the mutant. These observations indicate that the HLR gene is essential to maintain the cellular organization and normal nature of the RAM and SAM. The HLR gene encodes RPT2a, which is a subunit of the 26S proteasome that degrades key proteins in diverse cellular processes. We showed that the HLR gene was expressed both in the RAM and in the SAM, including in the QC and the OC, respectively, and that the activity of proteasomes were reduced in the mutant. We propose that proteasome-dependent programmed proteolysis is required to maintain the meristem integrity both in the shoot and in the root.

摘要

在高等植物中,胚后发育依赖于根和茎顶端分生组织(RAM和SAM)的活性。已知RAM中的静止中心(QC)和SAM中的组织中心(OC)对于维持分生组织活性至关重要。为了理解维持胚后分生组织的机制,我们分离出了拟南芥突变体——停止生长根(hlr)。在这个突变体中,胚后分生组织在根和茎中的细胞组织都被破坏,其分生组织活性降低或变得异常。我们发现,突变体的RAM在萌发后失去了其在胚胎发育期间确定的QC特性,而分化组织的特性得以维持。在胚后SAM中,典型的OC标记基因WUSCHEL的表达模式在突变体中受到干扰。这些观察结果表明,HLR基因对于维持RAM和SAM的细胞组织及正常特性至关重要。HLR基因编码RPT2a,它是26S蛋白酶体的一个亚基,在多种细胞过程中降解关键蛋白质。我们发现,HLR基因在RAM和SAM中均有表达,分别包括在QC和OC中,并且突变体中蛋白酶体的活性降低。我们提出,蛋白酶体依赖性程序性蛋白水解对于维持茎和根中的分生组织完整性是必需的。

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