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拟南芥中烟草凝集素启动子的茉莉酸反应。

Jasmonate response of the Nicotiana tabacum agglutinin promoter in Arabidopsis thaliana.

机构信息

Ghent University, Department of Molecular Biotechnology, Lab of Biochemistry and Glycobiology, Coupure Links 653, 9000 Ghent, Belgium.

出版信息

Plant Physiol Biochem. 2011 Aug;49(8):843-51. doi: 10.1016/j.plaphy.2011.04.011. Epub 2011 May 1.

Abstract

NICTABA is a carbohydrate-binding protein (also called lectin) that is expressed in several Nicotiana species after treatment with jasmonates and insect herbivory. Analyses with tobacco lines overexpressing the NICTABA gene as well as lines with reduced lectin expression have shown the entomotoxic effect of NICTABA against Lepidopteran larvae, suggesting a role of the lectin in plant defense. Until now, little is known with respect to the upstream regulatory mechanisms that are controlling the expression of inducible plant lectins. Using Arabidopsis thaliana plants stably expressing a promoter-β-glucuronidase (GUS) fusion construct, it was shown that jasmonate treatment influenced the NICTABA promoter activity. A strong GUS staining pattern was detected in very young tissues (the apical and root meristems, the cotyledons and the first true leaves), but the promoter activity decreased when plants were getting older. NICTABA was also expressed at low concentrations in tobacco roots and expression levels increased after cold treatment. The data presented confirm a jasmonate-dependent response of the promoter sequence of the tobacco lectin gene in Arabidopsis. These new jasmonate-responsive tobacco promoter sequences can be used as new tools in the study of jasmonate signalling related to plant development and defense.

摘要

NICTABA 是一种碳水化合物结合蛋白(也称为凝集素),在茉莉酸和昆虫取食后,几种烟草物种中都会表达。对过表达 NICTABA 基因的烟草系以及凝集素表达减少的系进行分析表明,NICTABA 对鳞翅目幼虫具有杀虫作用,提示该凝集素在植物防御中起作用。到目前为止,对于控制诱导型植物凝集素表达的上游调控机制知之甚少。利用稳定表达启动子-β-葡萄糖醛酸酶(GUS)融合构建体的拟南芥植物,表明茉莉酸处理影响了 NICTABA 启动子活性。在非常年轻的组织(顶端和根分生组织、子叶和第一真叶)中检测到强烈的 GUS 染色模式,但当植物变老时,启动子活性降低。NICTABA 在烟草根中也以低浓度表达,并且在冷处理后表达水平增加。所呈现的数据证实了烟草凝集素基因启动子序列在拟南芥中对茉莉酸的依赖反应。这些新的茉莉酸反应型烟草启动子序列可作为研究与植物发育和防御相关的茉莉酸信号的新工具。

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