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Belowground ABA boosts aboveground production of DIMBOA and primes induction of chlorogenic acid in maize

机译:地下ABA促进了DIMBOA的地下生产并引发了玉米中绿原酸的诱导

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Plants are important mediators between above- and below-ground herbivores. Consequently, interactions between root and shoot defenses can have far-reaching impacts on entire food webs. We recently reported that infestation of maize roots by larvae ofthe beetle Diabrotica virgifera virgifera induced shoot resistance against herbivores and pathogens. Root herbivory also enhanced aboveground DIMBOA and primed for enhanced induction of chlorogenic acid, two secondary metabolites that have been associated with plant stress resistance. Interestingly, the plant hormone abscisic acid (ABA) emerged as a putative long-distance signal in the regulation of these systemic defenses. In this addendum, we have investigated the role of root-derived ABA in aboveground regulation of DIMBOA and the phenolic compounds chlorogenic acid, caffeic and ferulic acid. Furthermore, we discuss the relevance of ABA in relation to defense against the leaf herbivore Spodoptera littoralis. Soil-drench treatment with ABA mimicked root herbivore-induced accumulation of DIMBOA in the leaves. Similarly, ABA mimicked aboveground priming of chlorogenic acid production, causing augmented induction of this compound after subsequent shoot attack by 5". littoralis caterpillars. These findings confirm our notion that ABA acts as an important signal in the regulation of aboveground defenses during below-ground herbivory. However, based on our previous finding that ABA alone is not sufficient to trigger aboveground resistance against S. littoralis caterpillars, our results also suggest that the ABA-inducible effects on DIMBOA and chlorogenic acid are not solely responsible for root herbivore-induced resistance against S. littoralis.
机译:植物是地上和地下食草动物之间的重要媒介。因此,根与芽防御之间的相互作用可能对整个食物网产生深远的影响。我们最近报道,甲虫Diabrotica virgifera virgifera的幼虫侵染玉米根诱导了对食草动物和病原体的抗性。根食草还增强了地上的DIMBOA,并为增强绿原酸(与植物抗逆性有关的两种次生代谢产物)的诱导做好了准备。有趣的是,植物激素脱落酸(ABA)作为调节这些系统防御的一种长途信号而出现。在本附录中,我们研究了根源ABA在地上调节DIMBOA和酚类化合物绿原酸,咖啡酸和阿魏酸中的作用。此外,我们讨论了ABA与防御叶食草动物斜纹夜蛾的相关性。 ABA在土壤淋水处理中模拟了根食草动物引起的DIMBOA在叶片中的积累。同样,ABA模仿了绿原酸产生的地上引发作用,在随后的5''。立冬虫毛虫侵袭后引起了该化合物的增强诱导作用。这些发现证实了我们的观点,即ABA在调控地下防御过程中起着重要信号的作用然而,基于我们先前的发现,仅ABA不足以引发对地上链球菌毛虫的地上抗性,我们的研究结果还表明,ABA对DIMBOA和绿原酸的诱导作用并不完全是由根食草动物引起的抗性对滨海链球菌。

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