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紫外线辐射时间和强度通过激活茉莉酸信号调节番茄对食草性的抗性。

Ultraviolet radiation exposure time and intensity modulate tomato resistance to herbivory through activation of jasmonic acid signaling.

机构信息

Plant Science and Natural Products, Institute of Biology Leiden (IBL), Leiden University, Leiden, The Netherlands.

Molecular Interaction Ecology, German Center for Integrative Biodiversity Research (iDiv), Leipzig, Germany.

出版信息

J Exp Bot. 2019 Jan 1;70(1):315-327. doi: 10.1093/jxb/ery347.

Abstract

Ultraviolet (UV) radiation can modulate plant defenses against herbivorous arthropods. We investigated how different UV exposure times and irradiance intensities affected tomato (Solanum lycopersicum) resistance to thrips (Frankliniella occidentalis) by assessing UV effects on thrips-associated damage and host-selection, selected metabolite and phytohormone contents, expression of defense-related genes, and trichome density and chemistry, the latter having dual roles in defense and UV protection. Short UV daily exposure times increased thrips resistance in the cultivar 'Moneymaker' but this could not be explained by changes in the contents of selected leaf polyphenols or terpenes, nor by trichome-associated defenses. UV irradiance intensity also affected resistance to thrips. Further analyses using the tomato mutants def-1, impaired in jasmonic acid (JA) biosynthesis, od-2, defective in the production of functional type-VI trichomes, and their wild-type, 'Castlemart', showed that UV enhanced thrips resistance in Moneymaker and od-2, but not in def-1 and Castlemart. UV increased salicylic acid (SA) and JA-isoleucine concentrations, and increased expression of SA- and JA-associated genes in Moneymaker, while inducing expression of JA-defensive genes in od-2. Our results demonstrate that UV-mediated enhancement of tomato resistance to thrips is probably associated with the activation of JA-associated signaling, but not with plant secondary metabolism or trichome-related traits.

摘要

紫外线 (UV) 辐射可以调节植物对草食性节肢动物的防御能力。我们研究了不同的 UV 暴露时间和辐照度强度如何影响番茄 (Solanum lycopersicum) 对蓟马 (Frankliniella occidentalis) 的抗性,方法是评估 UV 对与蓟马相关的损伤和寄主选择、选定代谢物和植物激素含量、防御相关基因的表达以及毛状体密度和化学性质的影响,后者在防御和 UV 保护中具有双重作用。短期每日 UV 暴露时间增加了 'Moneymaker' 品种的蓟马抗性,但这不能用选定叶片多酚或萜烯含量的变化来解释,也不能用毛状体相关防御来解释。UV 辐照度强度也影响了对蓟马的抗性。使用番茄突变体 def-1(茉莉酸 (JA) 生物合成受损)、od-2(功能性 VI 型毛状体产生缺陷)及其野生型 'Castlemart' 进一步分析表明,UV 增强了 Moneymaker 和 od-2 对蓟马的抗性,但对 def-1 和 Castlemart 则没有。UV 增加了水杨酸 (SA) 和 JA-异亮氨酸的浓度,并增加了 Moneymaker 中与 SA 和 JA 相关的基因表达,同时诱导了 od-2 中与 JA 防御相关的基因表达。我们的结果表明,UV 介导的增强番茄对蓟马的抗性可能与 JA 相关信号通路的激活有关,而与植物次生代谢或毛状体相关性状无关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6d22/6305188/fbc843c6c6c3/ery34701.jpg

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