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Leafbladeless1基因对于玉米侧生器官的背腹性是必需的。

Leafbladeless1 is required for dorsoventrality of lateral organs in maize.

作者信息

Timmermans M C, Schultes N P, Jankovsky J P, Nelson T

机构信息

Department of Molecular, Cellular and Developmental Biology, Yale University, PO Box 208104, New Haven, CT 06520-8104, USA.

出版信息

Development. 1998 Aug;125(15):2813-23. doi: 10.1242/dev.125.15.2813.

Abstract

The maize leafbladeless1 (lbl1) mutant displays a variety of leaf and plant phenotypes. The most extreme manifestation in the leaf is the formation of radially symmetric, abaxialized leaves due to a complete loss of adaxial cell types. Less severe phenotypes, resulting from a partial loss of adaxial cell identity, include the formation of ectopic laminae at the boundary between abaxialized, mutant sectors on the adaxial leaf surface and the bifurcation of leaves. Ectopic laminae and bifurcations arise early in leaf development and result in an altered patterning of the leaf along the proximodistal axis, or in complete duplication of the developing organ. Leaf-like lateral organs of the inflorescences and flowers show similar phenotypes. These observations suggest that Lbl1 is required for the specification of adaxial cell identity within leaves and leaf-like lateral organs. Lbl1 is also required for the lateral propagation of leaf founder cell recruitment, and plays a direct or indirect role in the downregulation of the homeobox gene, knotted1, during leaf development. Our results suggest that adaxial/abaxial asymmetry of lateral organs is specified in the shoot apical meristem, and that formation of this axis is essential for marginal, lateral growth and for the specification of points of proximodistal growth. Parallels between early patterning events during lateral organ development in plants and animals are discussed.

摘要

玉米叶片无叶舌1(lbl1)突变体表现出多种叶片和植株表型。叶片中最极端的表现是由于近轴细胞类型完全丧失而形成径向对称、远轴化的叶片。近轴细胞身份部分丧失导致的不太严重的表型包括在近轴叶片表面远轴化的突变区域边界形成异位叶片以及叶片分叉。异位叶片和分叉在叶片发育早期出现,并导致叶片沿近远轴的模式改变,或发育器官的完全重复。花序和花的叶状侧器官表现出类似的表型。这些观察结果表明,Lbl1是叶片和叶状侧器官中近轴细胞身份特化所必需的。Lbl1也是叶片起始细胞招募横向传播所必需的,并且在叶片发育过程中对同源异型盒基因knotted1的下调起直接或间接作用。我们的结果表明,侧器官的近轴/远轴不对称在茎尖分生组织中确定,并且该轴的形成对于边缘、横向生长以及近远生长点的特化至关重要。本文还讨论了植物和动物侧器官发育早期模式形成事件之间的相似之处。

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