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菜豆GRP 1.8基因的血管特异性表达受到负调控。

Vascular-specific expression of the bean GRP 1.8 gene is negatively regulated.

作者信息

Keller B, Baumgartner C

机构信息

Department of Plant Breeding, Swiss Federal Research Station for Agronomy, Zürich.

出版信息

Plant Cell. 1991 Oct;3(10):1051-61. doi: 10.1105/tpc.3.10.1051.

Abstract

In French bean, the glycine-rich cell wall protein GRP 1.8 is specifically synthesized in the vascular tissue. To identify cis-acting sequences required for cell type-specific synthesis of GRP 1.8, expression patterns of fusion gene constructs were analyzed in transgenic tobacco. In these constructs, the uidA (beta-glucuronidase) gene was placed under control of 5' upstream deletions as well as internal deletions of the GRP 1.8 promoter. Four different cis-acting regulatory regions, SE1 and SE2 (stem elements), a negative regulatory element, and a root-specific element, were found to control the tissue-specific expression. Deletion of the negative regulatory element resulted in expression of the uidA gene in cell types other than vascular cells. The SE1 region was essential for expression in several cell types in the absence of further upstream regulatory sequences. Full-length promoters having insertions between the negative regulatory element and SE1 strongly expressed the gene in nonvascular cell types in stems and leaves. Thus, vascular-specific expression of the GRP 1.8 promoter is controlled by a complex set of positive and negative interactions between cis-acting regulatory regions. The disturbance of these interactions results in expression in additional cell types.

摘要

在菜豆中,富含甘氨酸的细胞壁蛋白GRP 1.8在维管组织中特异性合成。为了鉴定GRP 1.8细胞类型特异性合成所需的顺式作用序列,在转基因烟草中分析了融合基因构建体的表达模式。在这些构建体中,uidA(β-葡萄糖醛酸酶)基因置于GRP 1.8启动子的5'上游缺失以及内部缺失的控制之下。发现四个不同的顺式作用调节区域,即SE1和SE2(茎元件)、一个负调节元件和一个根特异性元件,控制组织特异性表达。负调节元件的缺失导致uidA基因在维管细胞以外的细胞类型中表达。在没有进一步上游调节序列的情况下,SE1区域对于在几种细胞类型中的表达至关重要。在负调节元件和SE1之间有插入序列的全长启动子在茎和叶的非维管细胞类型中强烈表达该基因。因此,GRP 1.8启动子的维管特异性表达受顺式作用调节区域之间一组复杂的正负相互作用控制。这些相互作用受到干扰会导致在其他细胞类型中表达。

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本文引用的文献

1
Regulated genes in transgenic plants.转基因植物中的调控基因。
Science. 1989 Apr 14;244(4901):174-81. doi: 10.1126/science.244.4901.174.
2
Inheritance of functional foreign genes in plants.植物中外源基因的功能遗传。
Science. 1984 Feb 3;223(4635):496-8. doi: 10.1126/science.223.4635.496.
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