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首页> 外文期刊>Plant Science: An International Journal of Experimental Plant Biology >Type VI glandular trichome density and their derived volatiles are differently induced by jasmonic acid in developing and fully developed tomato leaves: Implications for thrips resistance
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Type VI glandular trichome density and their derived volatiles are differently induced by jasmonic acid in developing and fully developed tomato leaves: Implications for thrips resistance

机译:茉莉酸型茉莉酸型型腺体胎儿密度及其衍生的挥发物在开发和完全发育的番茄叶中不同诱导:对蓟马的影响

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摘要

Variation in the induction of plant defenses along the plant canopy can determine distribution and colonization of arthropod herbivores within the plant. In tomato, type VI glandular trichomes, which are epidermal defensive structures, and their derived volatiles are induced by the phytohormone jasmonic acid (JA). How JA-mediated induction of these trichome-associated chemical defenses depends on the leaf developmental stage and correlates with resistance against herbivory is unknown. We showed that application of JA reduced thrips-associated damage, however the amplitude of this response was reduced in the fully developed leaves compared to those still developing. Although JA increased type-VI trichome densities in all leaf developmental stages, as well as JA-inducible defensive proteins, these increases were stronger in developing leaves. Remarkably, the concentration of trichome-derived volatiles was induced by JA to a larger degree in developing leaves than in fully developed leaves. In fully developed leaves, the increase in trichome-derived volatiles was explained by an enhanced production per trichome, while in developing leaves this was mainly caused by increases in type-VI trichome densities. Together, we showed that JA-mediated induction of trichome density and chemistry depends on leaf development stage, and it might explain the degree of thrips-associated leaf damage in tomato.
机译:植物冠层植物防御诱导的变异可以确定植物内节肢动物草本病变的分布和定殖。在番茄中,植物激素茉莉酸(JA)诱导了培养型腺体胎儿和它们的衍生挥发物。 JA介导的诱导这些胎儿相关的化学防御诱导取决于叶片发育阶段,与抗草药的抗性相关是未知的。我们表明,与仍在开发的人相比,JA的应用降低了蓟马相关损伤,然而,与那些仍然有关的叶片,这种反应的幅度降低。虽然JA增加了所有叶片发育阶段的VI毛细血管型密度,但JA诱导的防御蛋白质,这些增加在显影叶中较强。值得注意的是,JA在显影叶中诱导滴毛体衍生的挥发物的浓度而不是完全发育的叶子。在完全发育的叶片中,通过每滴毛体的增强的产生,培养型挥发物的增加,而在显影叶中,这主要是由培养型毛细管密度的增加引起的。我们展示JA介导的胎儿培养基和化学诱导取决于叶片开发阶段,它可能解释番茄中蓟马相关叶片损伤的程度。

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