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与拟南芥开花时间基因LUMINIDEPENDENS相关的玉米基因的特征分析

Characterization of a gene from Zea mays related to the Arabidopsis flowering-time gene LUMINIDEPENDENS.

作者信息

van Nocke S, Muszynski M, Briggs K, Amasino R M

机构信息

Department of Horticulture, Michigan State University, East Lansing 48824, USA.

出版信息

Plant Mol Biol. 2000 Sep;44(1):107-22. doi: 10.1023/a:1006472929800.

Abstract

The molecular biology of flowering has been most extensively studied in the quantitative long-day plant Arabidopsis thaliana. The Arabidopsis LUMINIDEPENDENS (LD) gene encodes a potential transcriptional regulator that acts as a positive effector of flowering, at least in part through suppression of the floral inhibitor gene FLC. As an initial step to explore the conservation of the molecular mechanisms of flowering among plants of various flowering habits, and to further investigate the molecular action(s) of LD, we have identified a gene from maize (Zea mays) that is closely related to Arabidopsis LD. The major product of this gene, which we have designated ZmLD for Zea mays LUMINIDEPENDENS, contains four conserved regions that may constitute functionally important components of the LD proteins. One of these regions closely resembles the canonical homeodomain. The ZmLD gene exists as a single copy in the maize genome, and generates a major ca. 4.0 kb transcript, and a minor ca. 2.6 kb transcript that results from alternative transcriptional termination. The 4.0 kb ZmLD alpha transcript accumulated to highest levels in proliferative tissues, including the shoot apex and developing inflorescences. Expression of ZnLD alpha under control of the Arabidopsis LD promoter in transgenic Arabidopsis caused developmental defects similar to those conferred by loss-of-function mutations in a class of genes involved in maintaining the proliferative nature of the shoot, inflorescence, and floral meristems. These effects were not influenced markedly by the activities of the Arabidopsis LD or FLC genes. We consider the implications for the conservation of LD function between maize and Arabidopsis.

摘要

开花的分子生物学在定量长日照植物拟南芥中得到了最为广泛的研究。拟南芥的LUMINIDEPENDENS(LD)基因编码一种潜在的转录调节因子,它作为开花的正向效应因子发挥作用,至少部分是通过抑制开花抑制基因FLC来实现的。作为探索不同开花习性植物间开花分子机制保守性的第一步,以及进一步研究LD的分子作用,我们从玉米(Zea mays)中鉴定出了一个与拟南芥LD密切相关的基因。该基因的主要产物,我们将其命名为ZmLD(玉米的LUMINIDEPENDENS),包含四个保守区域,这些区域可能构成LD蛋白功能上的重要组成部分。其中一个区域与典型的同源异型域非常相似。ZmLD基因在玉米基因组中以单拷贝形式存在,并产生一个主要的约4.0 kb转录本,以及一个由可变转录终止产生的较小的约2.6 kb转录本。4.0 kb的ZmLDα转录本在增殖组织中积累到最高水平,包括茎尖和发育中的花序。在转基因拟南芥中,ZmLDα在拟南芥LD启动子的控制下表达,导致发育缺陷,类似于一类参与维持茎、花序和花分生组织增殖特性的基因功能丧失突变所导致的缺陷。这些效应并未受到拟南芥LD或FLC基因活性的显著影响。我们考虑了玉米和拟南芥之间LD功能保守性的意义。

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