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首页> 外文期刊>Physiological and Molecular Plant Pathology >Priming for plant defense in barley provides benefits only under high disease pressure
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Priming for plant defense in barley provides benefits only under high disease pressure

机译:大麦中植物防御的启动仅在高病害压力下提供益处

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When plants resist pathogen attack, resources must be diverted from growth and reproduction towards defense. Induced resistance in plants provides protection against a broad spectrum of pathogens, and defenses can be activated directly, or following pathogen attack, a phenomenon known as priming. Direct induction of resistance incurs costs in Arabidopsis and wheat, while the benefits of priming have been shown to outweigh costs in Arabidopsis, particularly in the presence of disease. What is not known however, is whether costs are affected by changes in disease pressure. In this research, we have examined the costs and benefits of priming in barley under low and high disease pressures. We used saccharin to prime barley for augmented defense expression following infection by the hemibiotrophic fungus Rhynchosporium secalis. In the absence of pathogen infection, saccharin priming had no significant effect on plant growth rate and grain yield (fitness). Effects on plant growth rate and grain yield were dependent on inoculum pressure, with significant increases in these parameters only observed in plants under high disease pressure. In field experiments involving one or two applications of saccharin at different crop growth stages, most saccharin treatments increased grain yield slightly compared to untreated controls, but not significantly. Collectively, these data suggest that priming-induced resistance using saccharin does not incur significant allocation costs in barley and indeed, provides significant benefits under high disease pressure.
机译:当植物抵抗病原体侵袭时,必须将资源从生长和繁殖转向防御。植物中诱导的抗性提供了针对多种病原体的保护,防御能力可以直接激活,也可以在病原体侵袭后激活,这种现象称为启动。直接诱导抗性会增加拟南芥和小麦的成本,而已证明引发的好处超过了拟南芥的成本,尤其是在有病害的情况下。然而,未知的是费用是否受到疾病压力变化的影响。在这项研究中,我们研究了在疾病高低压力下大麦引发的成本和收益。我们用糖精来引发大麦,以增强被抗半营养性真菌Rhynchosporium secalis感染后的防御表达。在没有病原体感染的情况下,糖精引发对植物生长速率和谷物产量(健康)没有显着影响。对植物生长速率和谷物产量的影响取决于接种压力,只有在高病害压力的植物中才能观察到这些参数的显着增加。在涉及在不同作物生长阶段进行一两次糖精施用的田间试验中,与未处理的对照相比,大多数糖精处理的谷物单产略有提高,但幅度不明显。总体而言,这些数据表明,使用糖精引发的抗药性不会在大麦中引起大量的分配成本,并且确实在疾病高压力下具有明显的益处。

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