Division of Plant Sciences, University of Missouri, 205 Curtis Hall, Columbia, MO 65211-7020, USA
FARCE laboratory, University of Neuchâtel, Emile-Argand 11, 2000 Neuchâtel, Switzerland.
J Exp Bot. 2015 Feb;66(2):603-11. doi: 10.1093/jxb/eru345. Epub 2014 Aug 27.
To defend themselves against herbivores and pathogens, plants produce numerous secondary metabolites, either constitutively or de novo in response to attacks. An intriguing constitutive example is the exudate produced by certain root-cap cells that can induce a state of reversible quiescence in plant-parasitic nematodes, thereby providing protection against these antagonists. The effect of such root exudates on beneficial entomopathogenic nematodes (EPNs) remains unclear, but could potentially impair their use in pest management programmes. We therefore tested how the exudates secreted by green pea (Pisum sativum) root caps affect four commercial EPN species. The exudates induced reversible quiescence in all EPN species tested. Quiescence levels varied with the green pea cultivars tested. Notably, after storage in root exudate, EPN performance traits were maintained over time, whereas performances of EPNs stored in water rapidly declined. In sharp contrast to high concentrations, lower concentrations of the exudate resulted in a significant increase in EPN activity and infectiousness, but still reduced the activity of two plant-parasitic nematode species. Our study suggests a finely tuned dual bioactivity of the exudate from green pea root caps. Appropriately formulated, it can favour long-term storage of EPNs and boost their infectiousness, while it may also be used to protect plants from plant-parasitic nematodes.
为了防御草食动物和病原体,植物会产生大量的次生代谢物,这些代谢物或是持续产生,或是在受到攻击时新合成。有一种有趣的组成型次生代谢物,即某些根冠细胞分泌的渗出物,它可以诱导寄生植物线虫进入可逆的静止状态,从而为植物提供保护,免受这些天敌的侵害。这种根渗出物对有益的昆虫病原线虫(EPN)的影响尚不清楚,但可能会损害它们在害虫管理计划中的应用。因此,我们测试了豌豆(Pisum sativum)根冠分泌的渗出物对四种商业 EPN 物种的影响。结果发现,渗出物可诱导所有测试的 EPN 物种进入可逆的静止状态。静止水平因测试的豌豆品种而异。值得注意的是,在根渗出物中储存后,EPN 的性能特征随着时间的推移得以保持,而储存在水中的 EPN 性能则迅速下降。与高浓度形成鲜明对比的是,较低浓度的渗出物会显著增加 EPN 的活性和感染力,但仍会降低两种寄生植物线虫的活性。我们的研究表明,豌豆根冠渗出物具有精细调节的双重生物活性。经过适当的配方设计,它可以促进 EPN 的长期储存和感染力的提高,同时也可以用于保护植物免受寄生植物线虫的侵害。