首页> 外文OA文献 >Identification of a meristem L1 layer-specific gene in Arabidopsis that is expressed during embryonic pattern formation and defines a new class of homeobox genes.
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Identification of a meristem L1 layer-specific gene in Arabidopsis that is expressed during embryonic pattern formation and defines a new class of homeobox genes.

机译:鉴定拟南芥中分生组织L1层特异性基因,该基因在胚胎模式形成过程中表达,并定义了一类新的同源盒基因。

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摘要

Homeobox genes are master regulatory genes that specify the body plan and control development of many eukaryotic organisms, including plants. We isolated and characterized a cDNA designated ATML1 (for Arabidopsis thaliana meristem L1 layer) that encodes a novel homeodomain protein. The ATML1 protein shares high sequence homology inside and outside of the homeodomain with both the Phalaenopsis O39 and the Arabidopsis GLABRA2 (GL2) homeodomain proteins, which together define a new class of plant homeodomain-containing proteins, designated HD-GL2. The ATML1 gene was first expressed in the apical cell after the first asymmetric division of the zygote and continued to be expressed in all proembryo cells until the eight-cell stage. In the 16-cell proembryo, the ATML1 gene showed a distinct pattern of expression, with its mRNA becoming restricted to the protoderm. In the torpedo stage of embryo development, ATML1 mRNA disappeared altogether but reappeared later only in the L1 layer of the shoot apical meristem in the mature embryo. After germination, this L1 layer-specific pattern of expression was maintained in the vegetative shoot apical meristem, inflorescence, and floral meristems, as well as in the young floral organ primordia. Finally, ATML1 mRNA accumulated in the protoderm of the ovule primordia and integuments and gradually became restricted in its expression to the endothelium surrounding the embryo sac. We propose that ATML1 may be involved in setting up morphogenetic boundaries of positional information necessary for controlling cell specification and pattern formation. In addition, ATML1 provides an early molecular marker for the establishment of both apical-basal and radial patterns during plant embryogenesis.
机译:同源异型框基因是主要的调控基因,可指定人体计划并控制包括植物在内的许多真核生物的发育。我们分离并表征了一个名为ATML1(拟南芥分生组织L1层)的cDNA,它编码一种新型的同源域蛋白。 ATML1蛋白与蝴蝶兰O39和拟南芥GLABRA2(GL2)同源域蛋白在同源域内部和外部具有较高的序列同源性,它们共同定义了一类新的含有植物同源域的蛋白,称为HD-GL2。在合子第一次不对称分裂后,ATML1基因首先在顶细胞中表达,并一直在所有前胚细胞中表达直至八细胞期。在16细胞原胚中,ATML1基因表现出独特的表达模式,其mRNA仅限于原皮。在胚胎发育的鱼雷阶段,ATML1 mRNA完全消失,但后来仅在成熟胚胎的茎尖分生组织的L1层中重新出现。萌发后,这种L1层特异的表达模式在营养性茎尖分生组织,花序和花分生组织以及年轻花器官原基中得以维持。最终,ATML1 mRNA积聚在胚珠原基和外被膜的原皮中,并逐渐在其表达局限于胚囊周围的内皮细胞中表达。我们建议ATML1可能参与建立位置信息的形态发生边界,这些边界是控制细胞规格和模式形成所必需的。此外,ATML1为植物胚胎发生过程中根尖基部和放射状模式的建立提供了早期的分子标记。

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