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豌豆查尔酮合酶基因家族成员(PsChs1)激活过程中涉及的顺式调控元件分析。

Analysis of cis-regulatory elements involved in the activation of a member of chalcone synthase gene family (PsChs1) in pea.

作者信息

Seki H, Ichinose Y, Kato H, Shiraishi T, Yamada T

机构信息

Làboratory of Plant Pathology & Genetic Engineering, College of Agriculture, Okayama University, Japan.

出版信息

Plant Mol Biol. 1996 Jun;31(3):479-91. doi: 10.1007/BF00042222.

Abstract

Cis-regulatory elements involved in the activation of the plant defense-related gene encoding chalcone synthase 1 (PsChs1) in pea (Pisum sativum L.) were examined by transient transfection, gel mobility shift assay and in vitro DNase I-footprinting analysis. Transient transfection assay revealed that a 61 bp DNA fragment spanning from -242 to -182 of PsChs1 was required for the maximal promoter activity and possibly involved in the enhancement of elicitor-mediated activation. Nuclear isolate from elicitor-treated pea epicotyl tissues contained some factor(s) that specifically bound to this DNA fragment to form a complex with low mobility (LMC, low mobility complex) in gel mobility shift assay. DNase I-footprinting analysis of LMC revealed that among three protected regions detected in a 61 bp DNA fragment, two regions contained identical AT-rich sequence, TAAAATACT. Site directed mutation in either or both identical sequences, TAAAATACT to TGGAATACT, resulted in the reduction or loss in the ability to form LMC. Detailed analysis of 61 bp DNA fragment demonstrated that the region from -242 to -226 containing promoter-distal TAAAATACT motif was imperative for the maximal elicitor-mediated activation of PsChs1.

摘要

通过瞬时转染、凝胶迁移率变动分析和体外DNase I足迹分析,研究了豌豆(Pisum sativum L.)中参与激活编码查尔酮合酶1(PsChs1)的植物防御相关基因的顺式调控元件。瞬时转染试验表明,PsChs1从-242到-182的61 bp DNA片段是最大启动子活性所必需的,并且可能参与诱导子介导的激活增强。在凝胶迁移率变动分析中,来自诱导子处理的豌豆上胚轴组织的核提取物含有一些因子,这些因子与该DNA片段特异性结合,形成迁移率低的复合物(LMC,低迁移率复合物)。对LMC的DNase I足迹分析表明,在61 bp DNA片段中检测到的三个保护区域中,有两个区域含有相同的富含AT的序列TAAAATACT。将任一或两个相同序列TAAAATACT定向突变为TGGAATACT,导致形成LMC的能力降低或丧失。对61 bp DNA片段的详细分析表明,含有启动子远端TAAAATACT基序的-242至-226区域对于诱导子介导的PsChs1最大激活至关重要。

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