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首页> 外文期刊>Frontiers in Plant Science >When a Plant Resistance Inducer Leaves the Lab for the Field: Integrating ASM into Routine Apple Protection Practices
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When a Plant Resistance Inducer Leaves the Lab for the Field: Integrating ASM into Routine Apple Protection Practices

机译:当植物抗性诱导剂离开实地实验室时:将ASM纳入常规的苹果保护措施

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Plant resistance inducers, also called elicitors, could be useful to reduce the use of pesticides. However, their performance in controlling diseases in the field remains unsatisfactory due to lack of specific knowledge of how they can integrate crop protection practices. In this work, we focused on apple crop and acibenzolar- S -methyl (ASM), a well-known SAR (systemic acquired resistance) inducer of numerous plant species. We provide a protocol for orchard-effective control of apple scab due to the ascomycete fungus Venturia inaequalis , by applying ASM in combination with a light integrated pest management program. Besides we pave the way for future optimization levers by demonstrating in controlled conditions (i) the high influence of apple genotypes, (ii) the ability of ASM to prime defenses in newly formed leaves, (iii) the positive effect of repeated elicitor applications, (iv) the additive effect of a thinning fruit agent.
机译:植物抗性诱导剂,也称为引发剂,可用于减少农药的使用。但是,由于缺乏有关如何结合作物保护措施的专门知识,它们在田间控制疾病方面的表现仍不令人满意。在这项工作中,我们专注于苹果作物和苯并呋喃-S-甲基(ASM),这是一种广为人知的多种植物的SAR(系统获得性抗性)诱导剂。通过将ASM与轻型害虫综合治理程序结合使用,我们提供了一种协议,可用于果园有效控制子囊菌真菌Venturia inaequalis造成的苹果黑星病。此外,我们还通过在受控条件下展示(i)苹果基因型的高影响力,(ii)ASM能够在新形成的叶片中引发防御作用的能力,(iii)重复诱导剂应用的积极作用,为未来的优化手段铺平了道路。 (iv)疏果剂的加和作用。

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