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类黄酮生物合成酶查尔酮异构酶调节番茄腺毛中的萜类化合物生成。

The flavonoid biosynthetic enzyme chalcone isomerase modulates terpenoid production in glandular trichomes of tomato.

作者信息

Kang Jin-Ho, McRoberts John, Shi Feng, Moreno Javier E, Jones A Daniel, Howe Gregg A

机构信息

Department of Energy-Plant Research Laboratory , Michigan State University, East Lansing, Michigan 48824.

出版信息

Plant Physiol. 2014 Mar;164(3):1161-74. doi: 10.1104/pp.113.233395. Epub 2014 Jan 14.

Abstract

Flavonoids and terpenoids are derived from distinct metabolic pathways but nevertheless serve complementary roles in mediating plant interactions with the environment. Here, we show that glandular trichomes of the anthocyanin free (af) mutant of cultivated tomato (Solanum lycopersicum) fail to accumulate both flavonoids and terpenoids. This pleiotropic metabolic deficiency was associated with loss of resistance to native populations of coleopteran herbivores under field conditions. We demonstrate that Af encodes an isoform (SlCHI1) of the flavonoid biosynthetic enzyme chalcone isomerase (CHI), which catalyzes the conversion of naringenin chalcone to naringenin and is strictly required for flavonoid production in multiple tissues of tomato. Expression of the wild-type SlCHI1 gene from its native promoter complemented the anthocyanin deficiency in af. Unexpectedly, the SlCHI1 transgene also complemented the defect in terpenoid production in glandular trichomes. Our results establish a key role for SlCHI1 in flavonoid production in tomato and reveal a link between CHI1 and terpenoid production. Metabolic coordination of the flavonoid and terpenoid pathways may serve to optimize the function of trichome glands in dynamic environments.

摘要

黄酮类化合物和萜类化合物源自不同的代谢途径,但在介导植物与环境的相互作用中发挥着互补作用。在此,我们表明栽培番茄(Solanum lycopersicum)花青素缺失(af)突变体的腺毛无法积累黄酮类化合物和萜类化合物。这种多效性代谢缺陷与田间条件下对鞘翅目食草动物本地种群的抗性丧失有关。我们证明Af编码黄酮类生物合成酶查尔酮异构酶(CHI)的一种同工型(SlCHI1),该酶催化柚皮素查尔酮向柚皮素的转化,并且是番茄多个组织中黄酮类化合物产生所严格必需的。来自其天然启动子的野生型SlCHI1基因的表达弥补了af中的花青素缺陷。出乎意料的是,SlCHI1转基因也弥补了腺毛中萜类化合物产生的缺陷。我们的结果确立了SlCHI1在番茄黄酮类化合物产生中的关键作用,并揭示了CHI1与萜类化合物产生之间的联系。黄酮类化合物和萜类化合物途径的代谢协调可能有助于在动态环境中优化毛状体腺的功能。

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