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茉莉酸诱导的马铃薯组织蛋白酶D抑制剂-GUS基因融合在烟草细胞中的表达

Jasmonate-inducible expression of a potato cathepsin D inhibitor-GUS gene fusion in tobacco cells.

作者信息

Ishikawa A, Yoshihara T, Nakamura K

机构信息

Laboratory of Biochemistry, School of Agriculture, Nagoya University, Japan.

出版信息

Plant Mol Biol. 1994 Oct;26(1):403-14. doi: 10.1007/BF00039549.

Abstract

A potato gene encoding cathepsin D inhibitor (CDI) is expressed constitutively in tubers and flower buds and it is inducible in leaves upon wounding of the tissue or by treatment with methyl jasmonate (MJA). A fusion gene (CDI:GUS) in which the 2.4 kb long promoter of the CDI gene was translationaly fused with the coding sequence for beta-glucuronidase (GUS) showed MJA-inducible expression in transformed tobacco cells in suspension. The maximum level of induction by MJA was obtained in the absence of auxin and repression of MJA-inducible expression of the fusion gene by auxin was released by aphidicolin, the results suggesting that MJA-inducible expression is repressed during active cell division. JA and MJA showed similar activities in inducing the expression of the fusion gene, while other JA-related compounds such as cucurbic acid, tuberonic acid and dihydrojasmonic acid neither induced expression of the fusion gene nor inhibited the MJA-inducible expression of the fusion gene. Methyl dihydrojasmonate specifically stimulated the MJA-inducible expression of the fusion gene. The MJA-inducible expression of the fusion gene was observed even with a 100 bp long promoter of the CDI gene albeit with significantly decreased level of expression compared to the 2.4 kb long promoter. The 100 bp long CDI promoter did not contain a G-box or hexamer motif that had been implicated in the MJA-responsive expression of several other plant genes. Further mutagenesis of the 100 bp long promoter by deletion or oligonucleotide insertion suggested that although a sequence between -100 and -82 is required for the MJA-responsive expression, the presence of this sequence alone does not confer the MJA-responsive expression.

摘要

一个编码组织蛋白酶D抑制剂(CDI)的马铃薯基因在块茎和花芽中组成性表达,并且在叶片受到组织损伤或用茉莉酸甲酯(MJA)处理时可被诱导表达。一个融合基因(CDI:GUS),其中CDI基因2.4 kb长的启动子与β-葡萄糖醛酸酶(GUS)的编码序列翻译融合,在悬浮培养的转化烟草细胞中显示出MJA诱导型表达。在没有生长素的情况下获得了MJA诱导的最大水平,并且生长素对融合基因MJA诱导型表达的抑制作用被阿非科林解除,结果表明MJA诱导型表达在活跃细胞分裂期间受到抑制。茉莉酸(JA)和茉莉酸甲酯(MJA)在诱导融合基因表达方面表现出相似的活性,而其他与JA相关的化合物,如葫芦酸、块茎酸和二氢茉莉酸,既不诱导融合基因的表达,也不抑制融合基因的MJA诱导型表达。二氢茉莉酸甲酯特异性地刺激融合基因的MJA诱导型表达。即使使用CDI基因100 bp长的启动子,也观察到了融合基因的MJA诱导型表达,尽管与2.4 kb长的启动子相比,表达水平显著降低。100 bp长的CDI启动子不包含与其他几个植物基因的MJA应答表达相关的G盒或六聚体基序。通过缺失或寡核苷酸插入对100 bp长的启动子进行进一步诱变表明,尽管-100至-82之间的序列是MJA应答表达所必需的,但仅该序列的存在并不能赋予MJA应答表达。

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