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分离麦蛾取食使薏苡系统叶产生抗性。

Mythimna separata herbivory primes Coix resistance in systemic leaves.

机构信息

School of Food and Pharmacy, Yunnan Light and Textile Industry Vocational College, Kunming, China.

School of Biology and Chemistry, Minzu Normal University of Xingyi, Xingyi, China.

出版信息

PLoS One. 2024 Nov 4;19(11):e0313015. doi: 10.1371/journal.pone.0313015. eCollection 2024.

Abstract

Coix lacryma-jobi L. belongs to family Poaceae, is widely cultivated in tropical Asian countries for its nutritional and medicinal values. Coix is often threatened by lepidopteran such as Mythimna separata during its life cycle, resulting in severe yield reduction. Insect feeding can trigger defense signaling and increased defense responses in many other crops, yet little is known about whether simulated armyworm feeding on Coix leaves could induce anti-herbivory responses and whether armyworm feeding could activate priming in systemic leaves. In this study, Mythimna separata simulated herbivory elicited increased jasmonic acid (JA) level, JA-Ile (JA-isoleucine conjugate) and altered transcriptome in the Coix leaves. Meanwhile, M. separata simulated herbivory in local leaves primed the systemic leaves for increased accumulation of jasmonic acid and enhanced resistance to M. separata. Consistently, transcriptome analysis showed the systemic leaves were primed, which were up- or down-regulated comparing with the non-primed systemic leaves. In this study, we first reported Mythimna separata simulated herbivory induced increased defense response in leaves of Coix, also Mythimna separata herbivory primed Coix resistance in systemic leaves. This study provides new insight into the regulation of defense responses of Coix against M. separata and the ecological function of priming in Coix.

摘要

薏苡属于禾本科植物,因其营养价值和药用价值在热带亚洲国家广泛种植。薏苡在其生命周期中经常受到鳞翅目昆虫如粘虫的威胁,导致严重的产量下降。昆虫取食会在许多其他作物中引发防御信号和增强防御反应,但目前尚不清楚模拟粘虫取食薏苡叶片是否会诱导抗虫反应,以及粘虫取食是否会激活系统叶片的启动。在这项研究中,粘虫模拟取食引发了薏苡叶片中茉莉酸(JA)水平、JA-Ile(JA-异亮氨酸结合物)的增加和转录组的改变。同时,局部叶片中的粘虫模拟取食使系统叶片对茉莉酸的积累和对粘虫的抗性增强进行了预启动。同样,转录组分析表明系统叶片被启动,与未启动的系统叶片相比,这些叶片的表达水平上调或下调。在这项研究中,我们首次报道了粘虫模拟取食诱导了薏苡叶片中防御反应的增加,也报道了粘虫取食在系统叶片中启动了薏苡的抗性。这项研究为薏苡对粘虫的防御反应的调节以及启动在薏苡中的生态功能提供了新的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5511/11534230/52c983bda4cd/pone.0313015.g001.jpg

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