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首页> 外文期刊>Plant Molecular Biology >Developmental and Cell-Specific Expression of ZWICHEL is Regulated by the Intron and Exon Sequences of its Upstream Protein-Coding Gene
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Developmental and Cell-Specific Expression of ZWICHEL is Regulated by the Intron and Exon Sequences of its Upstream Protein-Coding Gene

机译:ZWICHEL的发育和细胞特异性表达受其上游蛋白质编码基因的内含子和外显子序列调控

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Functional studies with ZWICHEL(ZWI), which encodes a Ca2+-calmodulin-regulated kinesin, have shown its involvement in trichome morphogenesis and cell division. To identify regulatory regions that control the ZWI expression pattern, we generated transgenic Arabidopsis plants with a GUS reporter driven by different lengths of the ZWI gene 5′ region alone or 5′ and 3′ regions together. The 5′ fusions contain varying lengths of the coding and non-coding regions of β-HYDROXYISOBUTYRYL-CoA HYDROLASE 1(CHY1), which is upstream of ZWI, and a 162 bp intergenic region. In transgenic plants with 5′ 460::GUS, GUS activity was observed primarily in the root hairs whereas transgenic plants with an additional 5′ 266 bp region from the CHY1 gene (5′ 726::GUS) showed strong GUS accumulation in the entire root including root hairs and root tip, calli and at various developmental stages in trichomes and pollen. However, very little GUS accumulation was detected in roots of dark-grown or root tips of cold-treated seedlings with 5′ZWI constructs. These results were further confirmed by quantifying GUS enzyme activity and transcripts in these seedlings. Calli and pollen transformed with the 5′ distal 268 bp fused in antisense orientation to the proximal 460 bp did not show GUS expression. Further, IAA-treated dark-grown seedlings with 726::GUS, but not with 460::GUS, showed high GUS expression in specific regions (outer layer 2a cells) at the base of the lateral roots. The ZWI 3′ region (3 kb) did not influence the GUS expression pattern driven by the 5′ 726 bp. The absence of CHY1 transcripts in the chy1-2 mutant did not alter either ZWI expression or ZWI-mediated trichome morphogenesis. Thus, our data suggest that the 3′ part of the CHY1 gene contains regulatory elements that control ZWI gene expression in dividing cells and other cells that exhibit polarized growth such as root hairs, pollen and trichomes. This is the first evidence that the regulatory regions conferring developmental and cell-specific expression of a gene reside in the introns and exons of its upstream protein-coding gene.
机译:ZWICHEL(ZWI)编码Ca2 +-钙调蛋白调节的驱动蛋白的功能研究表明,它参与了毛状体形态发生和细胞分裂。为了鉴定控制ZWI表达模式的调控区域,我们生成了具有GUS报告基因的转基因拟南芥植物,该报告基因由不同长度的ZWI基因单独5'区或5'和3'区共同驱动。 5'融合体包含不同长度的ZWI上游的β-羟基异丁烯酰-CoA水解酶1(CHY1)的编码区和非编码区以及一个162 bp的基因间区。在具有5'460 :: GUS的转基因植物中,主要在根毛中观察到GUS活性,而从CHY1基因(5'726 :: GUS)带有5'266 bp区域的转基因植物在整个植株中均表现出强大的GUS积累根,包括根毛和根尖,愈伤组织以及毛状体和花粉中处于不同发育阶段的根。然而,在用5'ZWI构建物冷处理的幼苗的深色生长或根尖的根中检测到极少的GUS积累。通过定量这些幼苗中的GUS酶活性和转录本,进一步证实了这些结果。以反义方向融合到近端460 bp的5'远端268 bp转化的愈伤组织和花粉未显示GUS表达。此外,用726 :: GUS而不用460 :: GUS进行IAA处理的深色幼苗在侧根基部的特定区域(外层2a细胞)中显示高GUS表达。 ZWI 3'区域(3 kb)不会影响5'726 bp驱动的GUS表达模式。 chy1-2突变体中不存在CHY1转录本不会改变ZWI表达或ZWI介导的毛状体形态发生。因此,我们的数据表明,CHY1基因的3'部分包含调控ZWI基因在分裂细胞和其他表现出极化生长的细胞(如根毛,花粉和毛状体)中表达的调控元件。这是第一个证据,证明赋予基因发育和细胞特异性表达的调控区位于其上游蛋白质编码基因的内含子和外显子中。

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