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拟南芥WUSCHEL基因的突变导致了无幼叶茎的发育。

Mutations in the WUSCHEL gene of Arabidopsis thaliana result in the development of shoots without juvenile leaves.

作者信息

Hamada S, Onouchi H, Tanaka H, Kudo M, Liu Y G, Shibata D, MacHida C, Machida Y

机构信息

Division of Biological Science, Graduate School of Science, Nagoya University, Chikusa-ku, Nagoya 464-8602, Japan.

出版信息

Plant J. 2000 Oct;24(1):91-101. doi: 10.1046/j.1365-313x.2000.00858.x.

Abstract

The vegetative growth of Arabidopsis thaliana can be divided into two phases. The transition from the juvenile (early) phase to the adult (later) phase is associated with changes in several morphological features of leaves, such as the shape of leaf blades, the number of trichomes and patterns of venation. In a screening of mutants with altered morphological identities of leaves, we found one which we named juvenile leafless and misshapen shoot apical meristem (jam). The mutation represented a new allele of the WUSCHEL (WUS) gene, and, in its presence, plants produced no juvenile leaves. Analysis of the morphology of mutant plants revealed that all the rosette leaves had characteristics of adult leaves. The formation of the first rosette leaf in the wus(jam) mutant was markedly delayed, and occurred at the almost same time as formation of the third or fourth leaf in wild-type plants. In the wild-type, these leaves correspond to the first adult leaves. Analysis by RT-PCR showed that transcripts of WUS accumulated in shoot apices and roots, but not in cotyledons and leaves. The present results suggest that the WUS gene controls the morphological traits of rosette leaves either directly or indirectly. In view of the predicted function of the WUS gene, namely maintenance of stem cells within the shoot apical meristem, we suggest that the lack of juvenile leaves in the mutant might have been caused by interruption of leaf initiation during the juvenile phase or by halting of an entire process of formation of juvenile leaves.

摘要

拟南芥的营养生长可分为两个阶段。从幼年期(早期)到成年期(后期)的转变与叶片的几个形态特征变化有关,例如叶片形状、毛状体数量和叶脉模式。在对叶片形态特征改变的突变体进行筛选时,我们发现了一个突变体,我们将其命名为幼叶缺失和茎尖分生组织畸形(jam)。该突变代表了WUSCHEL(WUS)基因的一个新等位基因,在其存在的情况下,植株不产生幼叶。对突变体植株形态的分析表明,所有莲座叶都具有成年叶的特征。wus(jam)突变体中第一片莲座叶的形成明显延迟,几乎与野生型植株第三或第四片叶的形成同时发生。在野生型中,这些叶片相当于第一片成年叶。RT-PCR分析表明,WUS转录本在茎尖和根中积累,但在子叶和叶片中不积累。目前的结果表明,WUS基因直接或间接地控制莲座叶的形态特征。鉴于WUS基因的预测功能,即维持茎尖分生组织内的干细胞,我们认为突变体中幼叶的缺失可能是由于幼年期叶片起始的中断或整个幼叶形成过程的停止所致。

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