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一个编码生长素输出载体组分的芥菜基因的分离与功能分析

Isolation and functional analysis of a Brassica juncea gene encoding a component of auxin efflux carrier.

作者信息

Ni Wei Min, Chen Xiao Ya, Xu Zhi Hong, Xue Hong Wei

机构信息

National Laboratory of Plant Molecular Genetics, Shanghai Institutes for Biological Sciences, Chinese Academy of Sciences.

出版信息

Cell Res. 2002 Sep;12(3-4):235-45. doi: 10.1038/sj.cr.7290130.

Abstract

Polar auxin transport plays a divergent role in plant growth and developmental processes including root and embryo development, vascular pattern formation and cell elongation. Recently isolated Arabidopsis pin gene family was believed to encode a component of auxin efflux carrier (Gälweiler et al, 1998). Based on the Arabidopsis pin1 sequence we have isolated a Brassica juncea cDNA (designated Bjpinl), which encoded a 70-kDa putative auxin efflux carrier. Deduced BjPIN1 shared 65% identities at protein level with AtPIN1 and was highly homologous to other putative PIN proteins of Arabidopsis (with highest homology to AtPIN3). Hydrophobic analysis showed similar structures between BjPIN1 and AtPIN proteins. Presence of 6 exons (varying in size between 65 bp and 1229 bp) and 5 introns (sizes between 89 bp and 463 bp) in the genomic fragment was revealed by comparing the genomic and cDNA sequences. Northern blot analysis indicated that Bjpinl was expressed in most of the tissues tested, with a relatively higher level of transcript in flowers and a lower level in root tissues. Promoter-reporter gene fusion studies further revealed the expression of Bjpinl in the mature pollen grains, young seeds, root tip, leaf vascular tissue and trace bundle, stem epidermis, cortex and vascular cells. BjPIN1 was localized on the plasma membrane as demonstrated through fusion expression of green fluorescent protein (GFP). Auxin efflux carrier activity was elevated in transgenic Arabidopsis expressing BjPIN1.

摘要

极性生长素运输在植物生长和发育过程中发挥着不同的作用,这些过程包括根和胚胎发育、维管模式形成以及细胞伸长。最近分离出的拟南芥pin基因家族被认为编码生长素输出载体的一个组分(盖尔韦勒等人,1998年)。基于拟南芥pin1序列,我们分离出了一个芥菜型油菜cDNA(命名为Bjpin1),它编码一个70 kDa的假定生长素输出载体。推导的BjPIN1在蛋白质水平上与AtPIN1有65%的同一性,并且与拟南芥的其他假定PIN蛋白高度同源(与AtPIN3的同源性最高)。疏水分析表明BjPIN1和AtPIN蛋白之间结构相似。通过比较基因组和cDNA序列,揭示了基因组片段中存在6个外显子(大小在65 bp至1229 bp之间)和5个内含子(大小在89 bp至463 bp之间)。Northern杂交分析表明Bjpin1在大多数测试组织中表达,在花中的转录水平相对较高,而在根组织中的水平较低。启动子-报告基因融合研究进一步揭示了Bjpin1在成熟花粉粒、幼嫩种子、根尖、叶维管组织和微量维管束、茎表皮、皮层和维管细胞中的表达。如通过绿色荧光蛋白(GFP)融合表达所证明的,BjPIN1定位于质膜上。在表达BjPIN1的转基因拟南芥中,生长素输出载体活性升高。

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