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Temporal regulation of terpene synthase gene expression in Eucalyptus globulus leaves upon ozone and wounding stresses: relationships with stomatal ozone uptake and emission responses

机译:桉树叶片叶片中萜烯合酶基因表达的时间调节臭氧和伤口应力:与气孔臭氧吸收和排放反应的关系

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摘要

Ozone and wounding are key abiotic factors but, their interactive effects on temporal changes in terpene synthase gene expression and emission responses are poorly understood. Here, we applied combined acute ozone and wounding stresses to the constitutive isoprenoid-emitter Eucalyptus globulus and studied how isoprene, 1,8-cineole, and isoledene synthase genes were regulated, and how the gene expression was associated with temporal changes in photosynthetic characteristics, product emission rates, and stomatal ozone uptake through recovery phase. Photosynthetic characteristics and emission rate of isoprene, 1,8-cineole, and isoledene were synergistically altered, while three TPS gene expressions were antagonistically altered by combined stress applications. A time-delay analysis indicated that the best correspondences between gene expression and product emission rates were observed for 0 h time-shift for wounding and 0-2 h time-shifts for separate ozone, and combined ozone and wounding treatments. The best correspondence between ozone uptake and gene expression was observed for 0-4 h time-shifts for separate ozone and combined ozone and wounding treatments. Overall, this study demonstrated that expression profiles of isoprene, the monoterpene 1,8-cineole, and the sesquiterpene isoledene synthase genes differentially influenced their corresponding product emissions for separate and combined ozone and wounding treatments through recovery.
机译:臭氧和伤口是关键的非生物因子,但它们对萜烯合酶基因表达和排放反应的时间变化的互动影响很差。在此,我们将急性臭氧和伤口伤害施加到组成等异戊二烯 - 发射器桉树菌斑,研究了异戊二烯,1,8-桉树铅和分离丁烯合酶基因的调节,以及基因表达如何与光合特性的时间变化有关,产品排放率和气孔臭氧通过回收阶段吸收。异戊二烯的光合特性和排放率,1,8-桉树吲哚和分离液的协同改变,而三种TPS基因表达通过组合应力应用拮抗改变。时间延迟分析表明,观察到基因表达和产物排放率之间的最佳对应物0小时的伤害时间转移和分离臭氧的0-2小时,以及组合臭氧和伤口处理。观察到臭氧摄取和基因表达之间的最佳对应物0-4小时,用于单独臭氧和组合臭氧和伤口处理。总体而言,该研究表明异戊二烯,单萜1,8-鞘酮和倍二萜烯二烯合酶基因的表达谱差异地影响了它们的相应产品排放,用于通过回收分离和组合臭氧和伤口处理。

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