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拟南芥中一种RNA解旋酶/RNase III基因的破坏导致花分生组织中细胞分裂失控。

Disruption of an RNA helicase/RNAse III gene in Arabidopsis causes unregulated cell division in floral meristems.

作者信息

Jacobsen S E, Running M P, Meyerowitz E M

机构信息

Division of Biology 156-29, California Institute of Technology, Pasadena, CA 91125, USA.

出版信息

Development. 1999 Dec;126(23):5231-43. doi: 10.1242/dev.126.23.5231.

Abstract

Arabidopsis thaliana floral meristems are determinate structures that produce a defined number of organs, after which cell division ceases. A new recessive mutant, carpel factory (caf), converts the floral meristems to an indeterminate state. They produce extra whorls of stamens, and an indefinite number of carpels. Thus, CAF appears to suppress cell division in floral meristems. The function of CAF is partially redundant with the function of the CLAVATA (CLV) and SUPERMAN (SUP) genes, as caf clv and caf sup double mutants show dramatically enhanced floral meristem over-proliferation. caf mutant plants also show other defects, including absence of axillary inflorescence meristems, and abnormally shaped leaves and floral organs. The CAF gene was cloned and found to encode a putative protein of 1909 amino acids containing an N-terminal DExH/DEAD-box type RNA helicase domain attached to a C-terminal RNaseIII-like domain. A very similar protein of unknown function is encoded by a fungal and an animal genome. Helicase proteins are involved in a number of processes, including specific mRNA localization and mRNA splicing. RNase III proteins are involved in the processing of rRNA and some mRNA molecules. Thus CAF may act through some type of RNA processing event(s). CAF gives rise to two major transcripts of 2.5 and 6.2 kb. In situ hybridization experiments show that CAF RNA is expressed throughout all shoot tissues.

摘要

拟南芥花分生组织是确定的结构,能产生一定数量的器官,之后细胞分裂停止。一个新的隐性突变体,心皮工厂(caf),将花分生组织转变为不确定状态。它们产生额外轮次的雄蕊和数量不定的心皮。因此,CAF似乎抑制花分生组织中的细胞分裂。CAF的功能与CLAVATA(CLV)和SUPERMAN(SUP)基因的功能部分冗余,因为caf clv和caf sup双突变体显示出花分生组织过度增殖显著增强。caf突变体植株还表现出其他缺陷,包括没有腋生花序分生组织,以及叶片和花器官形状异常。CAF基因被克隆,发现其编码一个推定的含1909个氨基酸的蛋白质,该蛋白质含有一个N端DExH/DEAD盒型RNA解旋酶结构域,与一个C端RNaseIII样结构域相连。一种功能未知的非常相似的蛋白质由真菌和动物基因组编码。解旋酶蛋白参与许多过程,包括特定mRNA定位和mRNA剪接。RNase III蛋白参与rRNA和一些mRNA分子的加工。因此,CAF可能通过某种类型的RNA加工事件起作用。CAF产生2.5和6.2 kb的两种主要转录本。原位杂交实验表明,CAF RNA在所有地上组织中都有表达。

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