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生长素与乙烯的相互作用调控玉米静止中心的有丝分裂活性、根冠大小以及根冠细胞分化模式。

Auxin and ethylene interactions control mitotic activity of the quiescent centre, root cap size, and pattern of cap cell differentiation in maize.

作者信息

Ponce Georgina, Barlow Peter W, Feldman Lewis J, Cassab Gladys I

机构信息

Departamento de Biología Molecular de Plantas, Instituto de Biotecnología, Cuernavaca, México.

出版信息

Plant Cell Environ. 2005 Jun;28(6):719-32. doi: 10.1111/j.1365-3040.2005.01318.x.

Abstract

Root caps (RCs) are the terminal tissues of higher plant roots. In the present study the factors controlling RC size, shape and structure were examined. It was found that this control involves interactions between the RC and an adjacent population of slowly dividing cells, the quiescent centre, QC. Using the polar auxin transport inhibitor 1-N-naphthylphthalamic acid (NPA), the effects of QC activation on RC gene expression and border cell release was characterized. Ethylene was found to regulate RC size and cell differentiation, since its addition, or the inhibition of its synthesis, affected RC development. The stimulation of cell division in the QC following NPA treatment was reversed by ethylene, and quiescence was re-established. Moreover, inhibition of both ethylene synthesis and auxin polar transport triggered a new pattern of cell division in the root epidermis and led to the appearance of supernumerary epidermal cell files with cap-like characteristics. The data suggest that the QC ensures an ordered internal distribution of auxin, and thereby regulates not only the planes of growth and division in both the root apex proper and the RC meristem, but also regulates cell fate in the RC. Ethylene appears to regulate the auxin redistribution system that resides in the RC. Experiments with Arabidopsis roots also reveal that ethylene plays an important role in regulating the auxin sink, and consequently cell fate in the RC.

摘要

根冠(RCs)是高等植物根的末端组织。在本研究中,对控制根冠大小、形状和结构的因素进行了研究。结果发现,这种控制涉及根冠与相邻一群分裂缓慢的细胞——静止中心(QC)之间的相互作用。使用极性生长素运输抑制剂1-萘基邻苯二甲酸(NPA),对静止中心激活对根冠基因表达和边缘细胞释放的影响进行了表征。发现乙烯可调节根冠大小和细胞分化,因为添加乙烯或抑制其合成都会影响根冠发育。乙烯可逆转NPA处理后静止中心细胞分裂的刺激,并重新建立静止状态。此外,抑制乙烯合成和生长素极性运输会引发根表皮细胞分裂的新模式,并导致出现具有帽状特征的多余表皮细胞列。数据表明,静止中心确保生长素在内部有序分布,从而不仅调节根尖本身和根冠分生组织的生长和分裂平面,还调节根冠中的细胞命运。乙烯似乎调节根冠中的生长素重新分布系统。对拟南芥根的实验还表明,乙烯在调节生长素库以及因此在根冠中的细胞命运方面起着重要作用。

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