首页> 外文期刊>AoB PLANTS >The impact of Spodoptera exigua herbivory on Meloidogyne incognita-induced root responses depends on the nematodes’ life cycle stages
【24h】

The impact of Spodoptera exigua herbivory on Meloidogyne incognita-induced root responses depends on the nematodes’ life cycle stages

机译:Spodoptera exigua草食物对Meloidogyne的影响隐式诱导的根反应取决于线虫的生命周期阶段

获取原文
       

摘要

Induced responses to above-ground and below-ground herbivores may interact via systemic signalling in plants. We investigated whether the impact of above-ground herbivory on root-knot nematode-induced responses depends on the nematode’s life cycle stages. Tomato plants were infected with the nematode (Meloidogyne incognita) for 5, 15 or 30 days before receiving Spodoptera exigua caterpillars above-ground. We collected root materials after 24 h of caterpillar feeding. We investigated phytohormones and α-tomatine levels, and the expression of defence and glycoalkaloid metabolism (GAME) marker genes in tomato roots. Nematode infection alone increased the endogenous root levels of jasmonic acid (JA), salicylic acid (SA), abscisic acid (ABA), α-tomatine and the expression of the GLYCOALKALOID METABOLISM 1 (GAME1) gene mostly at 30 days post-nematode inoculation. Caterpillar feeding alone upregulated Lipoxygenase D and downregulated Basic-β-1-glucanase and GAME1 expression in roots. On nematode-infected plants, caterpillar feeding decreased JA levels, but it increased the expression of Leucine aminopeptidase A. The induction patterns of ABA and SA suggest that caterpillars cause cross-talk between the JA-signalling pathway and the SA and ABA pathways. Our results show that caterpillar feeding attenuated the induction of the JA pathway triggered by nematodes, mostly in the nematodes’ reproduction stage. These results generate a better understanding of the molecular and chemical mechanisms underlying frequent nematode–plant–caterpillar interactions in natural and agricultural ecosystems.
机译:诱导对地上和地下草食物的反应可以通过植物中的系统信号传导相互作用。我们调查了地面草食管是否对根结线虫诱导的响应的影响取决于线虫的生命周期阶段。在接受地上的Spodoptera exigua毛毛虫之前,番茄植物感染了Nematode(Meloidogyne Incognita)5,15或30天。在毛毛虫24小时后,我们收集了根材料。我们研究了植物激素和α-西米地素水平,以及在番茄根中的防御和甘氨酸族代谢(游戏)标志物基因的表达。单独的线虫感染增加了茉莉酸(Ja),水杨酸(Sa),脱落酸(Aba),α-西红柿,α-西红柿和糖碱代谢1(Game1)基因的表达的内源性根系大部分在9天后接种。毛虫喂养单独上调的脂氧基酶D和下调的碱性β-1-葡聚糖酶和Game1在根中的表达。在Nematode感染植物上,毛虫饲养降低Ja水平,但增加了亮氨酸氨基肽酶A的表达。ABA和SA的诱导模式表明,毛虫在JA信号通路和SA和ABA途径之间引起串扰。我们的结果表明,毛毛虫喂养衰减了线虫触发的JA途径的诱导,主要是在线虫的再现阶段。这些结果产生了更好地理解自然和农业生态系统中频繁的线虫植物毛虫相互作用的分子和化学机制。

著录项

获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号