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两面作战:水淹玉米中升高的昆虫抗性。

Fighting on two fronts: Elevated insect resistance in flooded maize.

机构信息

Chemistry Research Unit, Center for Medical, Agricultural and Veterinary Entomology, U.S. Department of Agriculture-Agricultural Research Service, Gainesville, FL, 32608, USA.

Wheat, Sorghum, and Forage Research Unit, U.S. Department of Agriculture-Agricultural Research Service, Lincoln, NE, 68583, USA.

出版信息

Plant Cell Environ. 2020 Jan;43(1):223-234. doi: 10.1111/pce.13642. Epub 2019 Aug 22.

Abstract

To grow and thrive plants must be able to adapt to both adverse environmental conditions and attack by a variety of pests. Elucidating the sophisticated mechanisms plants have developed to achieve this has been the focus of many studies. What is less well understood is how plants respond when faced with multiple stressors simultaneously. In this study, we assess the response of Zea mays (maize) to the combinatorial stress of flooding and infestation with the insect pest Spodoptera frugiperda (fall armyworm). This combined stress leads to elevated production of the defence hormone salicylic acid, which does not occur in the individual stresses, and the resultant salicylic acid-dependent increase in S. frugiperda resistance. Remodelling of phenylpropanoid pathways also occurs in response to this combinatorial stress leading to increased production of the anti-insect C-glycosyl flavones (maysins) and the herbivore-induced volatile phenolics, benzyl acetate, and phenethyl acetate. Furthermore, changes in cellular redox status also occur, as indicated by reductions in peroxidase and polyphenol oxidase activity. These data suggest that metabolite changes important for flooding tolerance and anti-insect defence may act both additively and synergistically to provide extra protection to the plant.

摘要

为了生长和繁荣,植物必须能够适应不利的环境条件和各种害虫的侵袭。阐明植物为实现这一目标而发展的复杂机制一直是许多研究的重点。然而,人们对植物在同时面临多种胁迫时的反应了解甚少。在这项研究中,我们评估了玉米(玉米)对洪水和昆虫害虫草地贪夜蛾(秋粘虫)同时侵袭的组合胁迫的反应。这种组合胁迫会导致防御激素水杨酸的产量升高,而在单独的胁迫中不会发生这种情况,并且由此产生的水杨酸依赖性增加了对 S. frugiperda 的抗性。苯丙烷途径的重塑也会发生,以响应这种组合胁迫,导致抗虫 C-糖苷类黄酮(玉米素)和草食性诱导的挥发性酚类、苯乙酸酯和乙酸苯乙酯的产量增加。此外,细胞氧化还原状态的变化也会发生,如过氧化物酶和多酚氧化酶活性的降低所表明的那样。这些数据表明,对耐水淹和抗虫防御很重要的代谢物变化可能会以附加和协同的方式对植物提供额外的保护。

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