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Frontiers of torenia research: innovative ornamental traits and study of ecological interaction networks through genetic engineering

机译:托勒尼亚研究的前沿:创新的观赏性状和通过基因工程研究生态相互作用网络

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摘要

Advances in research in the past few years on the ornamental plant torenia (Torenia spps.) have made it notable as a model plant on the frontier of genetic engineering aimed at studying ornamental characteristics and pest control in horticultural ecosystems. The remarkable advantage of torenia over other ornamental plant species is the availability of an easy and high-efficiency transformation system for it. Unfortunately, most of the current torenia research is still not very widespread, because this species has not become prominent as an alternative to other successful model plants such as Arabidopsis, snapdragon and petunia. However, nowadays, a more global view using not only a few selected models but also several additional species are required for creating innovative ornamental traits and studying horticultural ecosystems. We therefore introduce and discuss recent research on torenia, the family Scrophulariaceae, for secondary metabolite bioengineering, in which global insights into horticulture, agriculture and ecology have been advanced. Floral traits, in torenia particularly floral color, have been extensively studied by manipulating the flavonoid biosynthetic pathways in flower organs. Plant aroma, including volatile terpenoids, has also been genetically modulated in order to understand the complicated nature of multi-trophic interactions that affect the behavior of predators and pollinators in the ecosystem. Torenia would accordingly be of great use for investigating both the variation in ornamental plants and the infochemical-mediated interactions with arthropods.
机译:过去几年中,观赏植物Torenia(Torenia spps。)的研究进展使其成为基因工程领域的典范植物,旨在研究园艺生态系统中的观赏特性和害虫防治。与其他观赏植物物种相比,to草的显着优势是可以使用一种简单高效的转化系统。不幸的是,当前的大多数对甲苯二酚的研究还不是很广泛,因为作为其他成功的示范植物,如拟南芥,金鱼草和矮牵牛的替代品,该物种尚未引起人们的重视。但是,如今,不仅需要使用一些选定的模型,还要使用几个其他物种的更广泛视野,以创造创新的装饰性特征和研究园艺生态系统。因此,我们介绍并讨论了对鸟眼(玄参科)进行次生代谢产物生物工程的最新研究,其中对园艺,农业和生态学的全球见解得到了发展。通过操纵花器官中的类黄酮生物合成途径,已广泛研究了藤本植物的花性状,特别是花色。植物的香气,包括挥发性的萜类化合物,也已经过基因调控,以了解多营养相互作用的复杂性质,这些相互作用会影响生态系统中捕食者和传粉者的行为。因此,Torenia对于调查观赏植物的变异以及信息化学介导的与节肢动物的相互作用将有很大的用处。

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