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茉莉酸甲酯诱导羽扇豆对小菜蛾(双翅目:草蛉科)的抗性。

Methyl jasmonate-induced resistance to Delia platura (Diptera: Anthomyiidae) in Lupinus mutabilis.

机构信息

Laboratorio de Biotecnología Agrícola y de Alimentos, Colegio de Ciencias e Ingenierías-Ing. en Agronomía, Universidad San Francisco de Quito, Quito, Ecuador.

Laboratorio de Entomología, Departamento de Protección Vegetal, Estación Experimental Santa Catalina, Instituto Nacional de Investigaciones Agropecuarias, Quito, Ecuador.

出版信息

Pest Manag Sci. 2021 Dec;77(12):5382-5395. doi: 10.1002/ps.6578. Epub 2021 Aug 6.

Abstract

BACKGROUND

Andean lupin (Lupinus mutabilis Sweet) is an important leguminous crop from South America with a high protein content. In Ecuador, lupin yields are severely affected by the infestation of Delia platura larvae on germinating seeds. The application of elicitor molecules with activity against herbivorous insects to control D. platura infestation constitutes an unexplored and promising alternative for chemical insecticides. In this study, methyl jasmonate (MeJA), hexanoic acid, menadione sodium bisulfite, and DL-β-aminobutyric acid were evaluated for their ability to induce resistance against D. platura in three commercial lupin cultivars.

RESULTS

Only seeds pretreated with MeJA significantly impaired insect performance during choice and no-choice assays. Additionally, fitness indicators such as seed germination and growth were not affected by MeJA treatment. To investigate the molecular mechanisms behind the MeJA-mediated resistance, RT-qPCR assays were performed. First, RT-qPCR reference genes were validated, showing that LmUBC was the most stable reference gene. Next, expression analysis over time revealed that MeJA application up-regulated the activity of the jasmonic acid biosynthetic genes LmLOX2 and LmAOS, together with other jasmonate-related defense genes, such as LmTPS1, LmTPS4, LmPI2, LmMBL, LmL/ODC, LmCSD1, and LmPOD.

CONCLUSION

This study indicates that MeJA can be used as an environmentally friendly elicitor molecule to protect Andean lupin from D. platura attack without fitness cost. MeJA application induces plant defense responses to insects in Andean lupin that may be modulated by the onset of terpenoid biosynthesis, proteinase inhibitors, lectins, polyamines, and antioxidative enzymes. © 2021 Society of Chemical Industry.

摘要

背景

安第斯羽扇豆(Lupinus mutabilis Sweet)是一种来自南美洲的重要豆科作物,蛋白质含量高。在厄瓜多尔,羽扇豆的产量受到 Delia platura 幼虫在发芽种子上的侵害的严重影响。应用具有抗食草昆虫活性的诱导子分子来控制 D. platura 的侵害,是替代化学杀虫剂的一种未被探索但很有前途的选择。在这项研究中,评估了茉莉酸甲酯(MeJA)、己酸、亚硫酸氢钠甲萘醌和 DL-β-氨基丁酸在三种商业羽扇豆品种中诱导抗 D. platura 的能力。

结果

只有用 MeJA 预处理的种子在选择和非选择试验中显著损害了昆虫的表现。此外,MeJA 处理对种子发芽和生长等适应指标没有影响。为了研究 MeJA 介导的抗性背后的分子机制,进行了 RT-qPCR 分析。首先,验证了 RT-qPCR 参考基因,结果表明 LmUBC 是最稳定的参考基因。接下来,随着时间的表达分析表明,MeJA 处理上调了茉莉酸生物合成基因 LmLOX2 和 LmAOS 的活性,以及其他与茉莉酸相关的防御基因,如 LmTPS1、LmTPS4、LmPI2、LmMBL、LmL/ODC、LmCSD1 和 LmPOD。

结论

这项研究表明,MeJA 可用作一种环保的诱导子分子,在不影响适应性的情况下保护安第斯羽扇豆免受 D. platura 的侵害。MeJA 处理诱导安第斯羽扇豆对昆虫的防御反应,可能通过萜类生物合成、蛋白酶抑制剂、凝集素、多胺和抗氧化酶的启动来调节。© 2021 化学工业协会。

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