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表达同源异型框基因liguleless3的区域表明,沿着玉米叶片的近远轴获得细胞命运存在一种时间依赖性机制。

Sectors expressing the homeobox gene liguleless3 implicate a time-dependent mechanism for cell fate acquisition along the proximal-distal axis of the maize leaf.

作者信息

Muehlbauer G J, Fowler J E, Freeling M

机构信息

Department of Plant Biology, University of California, Berkeley, 94720, USA.

出版信息

Development. 1997 Dec;124(24):5097-106. doi: 10.1242/dev.124.24.5097.

Abstract

The longitudinal axis of the maize leaf is composed of, in proximal to distal order, sheath, ligule, auricle and blade. The semidominant Liguleless3-O (Lg3-O) mutation disrupts leaf development at the ligular region of the leaf midrib by transforming blade to sheath. In a previous study, we showed that leaf sectors of Lg3 mutant activity are cell nonautonomous in the transverse dimension and can confer several alternative developmental fates (Fowler, Muehlbauer and Freeling (1996) Genetics 143, 489-503). In our present study we identify five Lg3 sector types in the leaf: sheath-like with displaced ligule (sheath-like), sheath-like with ectopic ligule (ectopic ligule), auricle-like, macro-hairless blade and wild-type blade. The acquisition of a specific sector fate depends on the timing of Lg3 expression. Early Lg3 expression results in adoption of the sheath-like phenotype at the ligule position (a proximal cell fate), whereas later Lg3 expression at the same position results in one of the more distal cell fates. Furthermore, sheath-like Lg3 sectors exhibit a graded continuum of phenotypes in the transformed blade region from the most proximal (sheath) to the most distal (wild-type blade), suggesting that cell fate acquisition is a gradual process. We propose a model for leaf cell fate acquisition based on a timing mechanism whereby cells of the leaf primordium progress through a maturation schedule of competency stages which eventually specify the cell types along the proximal to distal axis of the leaf. In addition, the lateral borders between Lg3 'on' sectors and wild-type leaf sometimes provide evidence of no spreading of the transformed phenotype. In these cases, competency stages are inherited somatically.

摘要

玉米叶片的纵轴由近轴端到远轴端依次为叶鞘、叶舌、叶耳和叶片。半显性的无叶舌3 - O(Lg3 - O)突变通过将叶片转化为叶鞘,破坏了叶片中脉叶舌区域的叶片发育。在先前的一项研究中,我们表明Lg3突变体活性的叶片区域在横向维度上是细胞非自主的,并且可以赋予几种不同的发育命运(Fowler,Muehlbauer和Freeling(1996年)《遗传学》143卷,489 - 503页)。在本研究中,我们在叶片中鉴定出五种Lg3区域类型:带有移位叶舌的鞘状(鞘状)、带有异位叶舌的鞘状(异位叶舌)、耳状、无毛大叶和野生型叶片。特定区域命运的获得取决于Lg3表达的时间。早期Lg3表达导致在叶舌位置采用鞘状表型(近轴细胞命运),而在同一位置较晚的Lg3表达导致更靠远轴的细胞命运之一。此外,鞘状Lg3区域在从最近端(叶鞘)到最远端(野生型叶片)的转化叶片区域表现出一系列渐变的表型,这表明细胞命运的获得是一个渐进的过程。我们基于一种时间机制提出了一个叶片细胞命运获得的模型,即叶原基的细胞通过一个能力阶段的成熟时间表进行发育,最终确定沿叶片近轴到远轴的细胞类型。此外,Lg3“开启”区域与野生型叶片之间的侧向边界有时提供了转化表型不扩散的证据。在这些情况下,能力阶段是体细胞遗传的。

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