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The terpene synthase gene family in Gossypium hirsutum harbors a linalool synthase GhTPS12 implicated in direct defense responses against herbivores

机译:陆地棉中的萜烯合成酶基因家族含有一种芳樟醇合成酶GhTps12,涉及对食草动物的直接防御反应

摘要

Herbivore-induced terpenes have been reported to function as ecological signals in plant–insect interactions. Here, we showed that insect-induced cotton volatile blends contained 16 terpenoid compounds with a relatively high level of linalool. The high diversity of terpene production is derived from a large terpene synthase (TPS) gene family. The TPS gene family of Gossypium hirsutum and Gossypium raimondii consist of 46 and 41 members, respectively. Twelve TPS genes (GhTPS4–15) could be isolated, and protein expression in Escherichia coli revealed catalytic activity for eight GhTPS. The upregulation of the majority of these eight genes additionally supports the function of these genes in herbivore-induced volatile biosynthesis. Furthermore, transgenic Nicotiana tabacum plants overexpressing GhTPS12 were generated, which produced relatively large amounts of (3S)-linalool. In choice tests, female adults of Helicoverpa armigera laid fewer eggs on transgenic plants compared with non-transformed controls. Meanwhile, Myzus persicae preferred feeding on wild-type leaves over leaves of transgenic plants. Our findings demonstrate that transcript accumulation of multiple TPS genes is mainly responsible for the production and diversity of herbivore-induced volatile terpenes in cotton. Also, these genes might play roles in plant defence, in particular, direct defence responses against herbivores.
机译:据报道,草食动物诱发的萜烯在植物与昆虫的相互作用中起着生态信号的作用。在这里,我们表明,昆虫诱导的棉花挥发混纺物中含有16种萜类化合物,其中芳樟醇含量较高。萜烯生产的高度多样性源自大的萜烯合酶(TPS)基因家族。陆地棉和雷蒙氏棉的TPS基因家族分别由46和41个成员组成。可以分离出12个TPS基因(GhTPS4-15),并且大肠杆菌中的蛋白质表达显示出对8个GhTPS的催化活性。这八个基因中大多数的上调另外支持了这些基因在草食动物诱导的挥发性生物合成中的功能。此外,产生了过表达GhTPS12的转基因烟草植物,其产生相对大量的(3S)-芳樟醇。在选择测试中,棉铃虫的成年雌性与未转化的对照相比,在转基因植物上产卵的数量更少。同时,桃蚜(Myzus persicae)更喜欢以野生型叶片为食,而不是转基因植物的叶片。我们的发现表明,多个TPS基因的转录本积累主要负责草食动物诱导的棉花挥发性萜烯的产生和多样性。同样,这些基因可能在植物防御中发挥作用,特别是对草食动物的直接防御反应。

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