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番茄种皮通透性的品种差异是茉莉酸引发的对西花蓟马防御反应的重要决定因素。

Cultivar Variation in Tomato Seed Coat Permeability Is an Important Determinant of Jasmonic Acid Elicited Defenses Against Western Flower Thrips.

作者信息

Mouden Sanae, Kappers Iris F, Klinkhamer Peter G L, Leiss Kirsten A

机构信息

Plant Science and Natural Products, Institute of Biology, Leiden University, Leiden, Netherlands.

Business Unit Horticulture, Wageningen University and Research, Bleiswijk, Netherlands.

出版信息

Front Plant Sci. 2020 Nov 11;11:576505. doi: 10.3389/fpls.2020.576505. eCollection 2020.

Abstract

Induction of defenses is one of the most widely accepted eco-friendly approaches for management of pests and diseases. Seeds are receptive to resistance-inducing chemicals and could offer broad-spectrum protection at the early stages of development. However, seed treatment with elicitors has previously been shown to differentially influence induced defense responses among cultivars and thus, could hamper commercial exploitation. In this context, the objective of the present study was to evaluate the genotype-dependent ability of jasmonic acid (JA) to induce resistance against western flower thrips (WFT) at the seed stage. We examined the variation in inducibility of resistance in eight commercial tomato cultivars. Causal factors accounting for discrepancies in JA-induced responses at the seed stage were phenotypically and biochemically evaluated. Seed receptivity to exogenous JA appeared to be cultivar dependent. Thrips associated silver damage was only reduced in JA seed-treated plants of cultivar Carousel. Enhancement of resistance, was not associated with activation of defense-related traits such as polyphenol oxidase activity (PPO), trichomes or volatiles. Sulfuric acid scarification, prior to JA seed incubation, significantly augmented the embryonic responsiveness to JA in cv. Moneymaker without an adverse effect on growth. Hence, these results support the hypothesis that seed coat permeability is a key factor for successfully inducing JA mediated thrips defenses. The outcome of our study is of translational value as it creates opportunities for the seed industry to perform pre-treatments on non-responsive cultivars as well as for tomato breeding programs to select for genetic traits that affect seed permeability.

摘要

诱导防御是病虫害管理中最广泛接受的环保方法之一。种子对诱导抗性的化学物质敏感,并且可以在发育早期提供广谱保护。然而,先前已证明用诱导子进行种子处理会对不同品种间的诱导防御反应产生不同影响,因此可能会阻碍商业开发。在此背景下,本研究的目的是评估茉莉酸(JA)在种子阶段诱导对西花蓟马(WFT)抗性的基因型依赖性能力。我们研究了八个商业番茄品种抗性诱导性的差异。对种子阶段JA诱导反应差异的因果因素进行了表型和生化评估。种子对外源JA的接受性似乎因品种而异。仅在品种“ carousel”的JA种子处理植株中,蓟马相关的银色损伤有所减少。抗性增强与防御相关性状(如多酚氧化酶活性(PPO)、毛状体或挥发物)的激活无关。在JA种子培养前进行硫酸划痕处理,可显著增强“Moneymaker”品种胚胎对JA的反应性,且对生长无不利影响。因此,这些结果支持了种皮通透性是成功诱导JA介导的蓟马防御的关键因素这一假设。我们的研究结果具有转化价值,因为它为种子行业对无反应品种进行预处理以及番茄育种计划选择影响种子通透性的遗传性状创造了机会。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8213/7686761/c288ad524dbd/fpls-11-576505-g001.jpg

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