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拟南芥中环境诱导的根毛发育可塑性

Environmentally induced plasticity of root hair development in Arabidopsis.

作者信息

Müller Margarete, Schmidt Wolfgang

机构信息

Institute of Biology, Humboldt University Berlin, Invalidenstrasse 42, 10115 Berlin, Germany.

出版信息

Plant Physiol. 2004 Jan;134(1):409-19. doi: 10.1104/pp.103.029066.

Abstract

Postembryonic development of plants is dependent on both intrinsic genetic programs and environmental factors. The plasticity of root hair patterning in response to environmental signals was investigated in the Columbia-0 wild type and 19 Arabidopsis mutants carrying lesions in various parts of the root hair developmental pathway by withholding phosphate or iron (Fe) from the nutrient medium. In the aging primary root and in laterals of the wild type, the number of root hairs increased in response to phosphate and Fe deficiency in a manner typical of each growth type. Although an increase in root hair density in -phosphorus plants was mainly achieved by the formation of extra hairs over both tangential and radial wall of underlying cortical cells, roots of -Fe plants were characterized by a high percentage of extra hairs with two tips. Root hair patterning and hair length was differentially affected by the presence or absence of phosphate and Fe among the genotypes under investigation, pointing to separate cascades of gene activation under all three growth conditions. Divergence in root hair patterning was most pronounced among mutants with defects in genes that affect the first stages of differentiation, suggesting that nutritional signals are perceived at an early stage of epidermal cell development. During elongation of the root hairs, no differences in the requirement of gene products between the growth types were obvious. The role of genes involved in root hair development in the aging primary root of Arabidopsis under the various growth conditions is discussed.

摘要

植物胚后发育依赖于内在遗传程序和环境因素。通过从营养培养基中去除磷酸盐或铁(Fe),研究了哥伦比亚-0野生型和19个在根毛发育途径不同部位携带损伤的拟南芥突变体中根毛模式对环境信号的可塑性。在野生型的衰老主根和侧根中,根毛数量响应磷酸盐和铁缺乏而增加,其方式是每种生长类型特有的。虽然缺磷植物中根毛密度的增加主要是通过在下层皮层细胞的切向壁和径向壁上形成额外的根毛来实现的,但缺铁植物的根具有高比例的双尖额外根毛。在所研究的基因型中,根毛模式和根毛长度受磷酸盐和铁的存在或缺失的影响不同,这表明在所有三种生长条件下基因激活的级联是分开的。在影响分化第一阶段的基因有缺陷的突变体中,根毛模式的差异最为明显,这表明营养信号在表皮细胞发育的早期就被感知到。在根毛伸长过程中,不同生长类型之间对基因产物的需求没有明显差异。讨论了在各种生长条件下,参与拟南芥衰老主根根毛发育的基因的作用。

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本文引用的文献

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Annu Rev Plant Physiol Plant Mol Biol. 1999 Jun;50:665-693. doi: 10.1146/annurev.arplant.50.1.665.
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