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J 蛋白 AtDjC17 参与拟南芥根发育。

The involvement of J-protein AtDjC17 in root development in Arabidopsis.

机构信息

Department of Horticulture, University of Kentucky Lexington, KY, USA.

出版信息

Front Plant Sci. 2014 Oct 8;5:532. doi: 10.3389/fpls.2014.00532. eCollection 2014.

Abstract

In a screen for root hair morphogenesis mutants in Arabidopsis thaliana L. we identified a T-DNA insertion within a type III J-protein AtDjC17 caused altered root hair development and reduced hair length. Root hairs were observed to develop from trichoblast and atrichoblast cell files in both Atdjc17 and 35S::AtDJC17. Localization of gene expression in the root using transgenic plants expressing proAtDjC17::GUS revealed constitutive expression in stele cells. No AtDJC17 expression was observed in epidermal, endodermal, or cortical layers. To explore the contrast between gene expression in the stele and epidermal phenotype, hand cut transverse sections of Atdjc17 roots were examined showing that the endodermal and cortical cell layers displayed increased anticlinal cell divisions. Aberrant cortical cell division in Atdjc17 is proposed as causal in ectopic root hair formation via the positional cue requirement that exists between cortical and epidermal cell in hair cell fate determination. Results indicate a requirement for AtDJC17 in position-dependent cell fate determination and illustrate an intriguing requirement for molecular co-chaperone activity during root development.

摘要

在拟南芥根毛形态发生突变体的筛选中,我们发现 T-DNA 插入到 III 型 J 蛋白 AtDjC17 中,导致根毛发育异常和长度缩短。在 Atdjc17 和 35S::AtDJC17 中,根毛均从毛原基和表皮毛原基细胞中发育而来。利用在根中表达 proAtDjC17::GUS 的转基因植物进行基因表达的定位,发现其在中柱细胞中组成型表达。在表皮、内皮层或皮层中均未观察到 AtDJC17 的表达。为了探究中柱和表皮表型之间基因表达的差异,我们对 Atdjc17 根的横切手工切片进行了检查,结果显示内皮层和皮层细胞层的垂周分裂增加。在 Atdjc17 中,异常的皮层细胞分裂被认为是通过皮层和表皮细胞之间存在的位置线索要求导致异位根毛形成的原因,这是毛细胞命运决定所必需的。结果表明 AtDJC17 在位置依赖性细胞命运决定中是必需的,并说明了在根发育过程中对分子伴侣活性的有趣需求。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0a4b/4189540/34c7ab97961d/fpls-05-00532-g001.jpg

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