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Divergent Regulation of Terpenoid Metabolism in the Trichomes of Wild and Cultivated Tomato Species

机译:野生和栽培番茄物种的毛状体中萜类化合物代谢的发散规律

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摘要

The diversification of chemical production in glandular trichomes is important in the development of resistance against pathogens and pests in two species of tomato. We have used genetic and genomic approaches to uncover some of the biochemical and molecular mechanisms that underlie the divergence in trichome metabolism between the wild species Solanum habrochaites LA1777 and its cultivated relative, Solanum lycopersicum. LA1777 produces high amounts of insecticidal sesquiterpene carboxylic acids (SCAs), whereas cultivated tomatoes lack SCAs and are more susceptible to pests. We show that trichomes of the two species have nearly opposite terpenoid profiles, consisting mainly of monoterpenes and low levels of sesquiterpenes in S. lycopersicum and mainly of SCAs and very low monoterpene levels in LA1777. The accumulation patterns of these terpenoids are different during development, in contrast to the developmental expression profiles of terpenoid pathway genes, which are similar in the two species, but they do not correlate in either case with terpenoid accumulation. However, our data suggest that the accumulation of monoterpenes in S. lycopersicum and major sesquiterpenes in LA1777 are linked both genetically and biochemically. Metabolite analyses after targeted gene silencing, inhibitor treatments, and precursor feeding all show that sesquiterpene biosynthesis relies mainly on products from the plastidic 2-C-methyl-d-erythritol-4-phosphate pathway in LA1777 but less so in the cultivated species. Furthermore, two classes of sesquiterpenes produced by the wild species may be synthesized from distinct pools of precursors via cytosolic and plastidial cyclases. However, highly trichome-expressed sesquiterpene cyclase-like enzymes were ruled out as being involved in the production of major LA1777 sesquiterpenes.
机译:腺毛的化学生产的多样化对于发展对两种番茄的病原体和害虫的抵抗力很重要。我们已经使用遗传和基因组学方法揭示了一些野生生物茄属LA1777与其栽培亲缘种茄属之间的毛状体代谢差异的生化和分子机制。 LA1777产生大量的杀虫倍半萜烯羧酸(SCAs),而栽培番茄缺少SCAs,更容易受到害虫的侵害。我们显示,这两个物种的毛状体具有几乎相反的萜类特征,主要由单萜和低水平的倍半萜组成,在lycopersicum中主要由SCA和在LA1777中的单萜水平非常低组成。这些萜类化合物的积累模式在发育过程中是不同的,这与萜类途径基因的发育表达谱相反,后者在两个物种中相似,但是在任一种情况下它们都不与萜类化合物积累相关。但是,我们的数据表明,单萜在番茄中的积累和LA1777中的主要倍半萜在遗传和生化上都有联系。靶向基因沉默,抑制剂处理和前体喂养后的代谢物分析均显示,倍半萜生物合成主要依赖于LA1777中质体2-C-甲基-d-赤藓糖醇-4-磷酸途径的产物,而在栽培物种中则较少。此外,由野生物种产生的两类倍半萜可以通过胞质和质体环化酶从不同的前体库中合成。但是,排除了高度毛状体表达的倍半萜环化酶样酶与主要LA1777倍半萜的生产有关。

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