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玉米无序糊粉层1和2(dil1、dil2)突变体在发育中的胚乳糊粉层中缺乏对有丝分裂分裂面的控制。

The maize disorganized aleurone layer 1 and 2 ( dil1, dil2) mutants lack control of the mitotic division plane in the aleurone layer of developing endosperm.

作者信息

Lid Stein Erik, Al Ronald H, Krekling Trygve, Meeley Robert B, Ranch Jerry, Opsahl-Ferstad Hilde-Gunn, Olsen Odd-Arne

机构信息

Department of Chemistry and Biotechnology, Agricultural University of Norway, PO Box 5040, 1432, As, Norway.

出版信息

Planta. 2004 Jan;218(3):370-8. doi: 10.1007/s00425-003-1116-2. Epub 2003 Oct 14.

Abstract

The maize ( Zea mays L.) endosperm consists of an epidermal like layer of isodiametric aleurone cells surrounding a central body of starchy endosperm cells. In disorgal1 ( dil1) and disorgal2 ( dil2) mutants the control of the mitotic division plane is relaxed or missing, resulting in mature grains with disorganized aleurone layers. In addition to orientation of the division plane, both the shape and size of the aleurone cells are affected, and often more than one layer of aleurone cells is present. Homozygous dil1 and dil2 grains are shrunken due to reduced accumulation of starchy endosperm and premature developmental arrest of the embryo, and mature mutant grains germinate at a very low rate and fail to develop into plants. However, homozygous mutant plants can be obtained through embryo rescue, revealing that both mutants have an irregular leaf epidermis as well as roots with a strongly reduced number of root hairs and aberrant root hair morphology. Our results suggest the presence of common regulatory mechanisms for the control of cell division orientation in the aleurone and plant epidermis.

摘要

玉米(Zea mays L.)胚乳由一层类似表皮的等径糊粉层细胞组成,围绕着中央的淀粉胚乳细胞体。在disorgal1(dil1)和disorgal2(dil2)突变体中,有丝分裂分裂平面的控制被放松或缺失,导致成熟籽粒的糊粉层紊乱。除了分裂平面的定向外,糊粉层细胞的形状和大小也受到影响,并且通常会出现不止一层糊粉层细胞。纯合的dil1和dil2籽粒由于淀粉胚乳积累减少和胚胎过早发育停滞而皱缩,成熟的突变籽粒发芽率极低,无法发育成植株。然而,通过胚拯救可以获得纯合突变体植株,这表明两个突变体都有不规则的叶片表皮以及根毛数量大幅减少和根毛形态异常。我们的结果表明,在糊粉层和植物表皮中存在控制细胞分裂定向的共同调控机制。

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