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脱落酸调节发育亚麻(Linum usitatissimum L.)种子中松脂醇二葡萄糖苷-落叶松脂醇还原酶基因的表达和开环异落叶松脂醇的积累。

Abscisic acid regulates pinoresinol-lariciresinol reductase gene expression and secoisolariciresinol accumulation in developing flax (Linum usitatissimum L.) seeds.

机构信息

Laboratoire de Biologie des Ligneux et des Grandes Cultures (LBLGC), UPRES EA 1207, Antenne Scientifique Universitaire de Chartres (ASUC), Université d'Orléans, 21 rue de Loigny la Bataille, 28000, Chartres, France.

出版信息

Planta. 2012 Jan;235(1):85-98. doi: 10.1007/s00425-011-1492-y. Epub 2011 Aug 12.

Abstract

Secoisolariciresinol diglucoside (SDG), the main phytoestrogenic lignan of Linum usitatissimum, is accumulated in the seed coat of flax during its development and pinoresinol-lariciresinol reductase (PLR) is a key enzyme in flax for its synthesis. The promoter of LuPLR1, a flax gene encoding a pinoresinol lariciresinol reductase, contains putative regulatory boxes related to transcription activation by abscisic acid (ABA). Gel mobility shift experiments evidenced an interaction of nuclear proteins extracted from immature flax seed coat with a putative cis-acting element involved in ABA response. As ABA regulates a number of physiological events during seed development and maturation we have investigated its involvement in the regulation of this lignan synthesis by different means. ABA and SDG accumulation time courses in the seed as well as LuPLR1 expression were first determined in natural conditions. These results showed that ABA timing and localization of accumulation in the flax seed coat could be correlated with the LuPLR1 gene expression and SDG biosynthesis. Experimental modulations of ABA levels were performed by exogenous application of ABA or fluridone, an inhibitor of ABA synthesis. When submitted to exogenous ABA, immature seeds synthesized 3-times more SDG, whereas synthesis of SDG was reduced in immature seeds treated with fluridone. Similarly, the expression of LuPLR1 gene in the seed coat was up-regulated by exogenous ABA and down-regulated when fluridone was applied. These results demonstrate that SDG biosynthesis in the flax seed coat is positively controlled by ABA through the transcriptional regulation of LuPLR1 gene.

摘要

亚麻木脂素(SDG)是植物雌激素木脂素的主要成分,在亚麻的发育过程中积累在种皮中,而松柏醇-落叶松脂醇还原酶(PLR)是亚麻合成SDG 的关键酶。编码松柏醇-落叶松脂醇还原酶的亚麻基因 LuPLR1 的启动子包含与脱落酸(ABA)转录激活相关的假定调节框。凝胶迁移率变动实验证明,从不成熟的亚麻种皮中提取的核蛋白与参与 ABA 反应的假定顺式作用元件相互作用。由于 ABA 调节种子发育和成熟过程中的许多生理事件,我们已经通过不同的方法研究了它在调节这种木质素合成中的作用。首先在自然条件下确定了种子中 ABA 和 SDG 的积累时间以及 LuPLR1 表达的时间过程。这些结果表明,ABA 在亚麻种皮中的时间和定位积累可以与 LuPLR1 基因表达和 SDG 生物合成相关联。通过外源施加 ABA 或 ABA 合成抑制剂 fluridone 来调节 ABA 水平。当外源施加 ABA 时,不成熟的种子合成的 SDG 增加了 3 倍,而用 fluridone 处理的不成熟种子中 SDG 的合成减少。同样,LuPLR1 基因在种皮中的表达在外源施加 ABA 时上调,而在施加 fluridone 时下调。这些结果表明,SDG 生物合成在亚麻种皮中是通过 LuPLR1 基因的转录调控被 ABA 正向调控的。

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