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Mycorrhiza-Induced Resistance against Foliar Pathogens Is Uncoupled of Nutritional Effects under Different Light Intensities

机译:肌菌诱导对叶面病原体的抗性是不同光强度下的营养效应的抵消

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摘要

The use of microbial inoculants, particularly arbuscular mycorrhizal fungi, has great potential for sustainable crop management, which aims to reduce the use of chemical fertilizers and pesticides. However, one of the major challenges of their use in agriculture is the variability of the inoculation effects in the field, partly because of the varying environmental conditions. Light intensity and quality affect plant growth and defense, but little is known about their impacts on the benefits of mycorrhizal symbioses. We tested the effects of five different light intensities on plant nutrition and resistance to the necrotrophic foliar pathogen Botrytis cinerea in mycorrhizal and non-mycorrhizal lettuce plants. Our results evidence that mycorrhiza establishment is strongly influenced by light intensity, both regarding the extension of root colonization and the abundance of fungal vesicles within the roots. Light intensity also had significant effects on plant growth, nutrient content, and resistance to the pathogen. The effect of the mycorrhizal symbiosis on plant growth and nutrient content depended on the light intensity, and mycorrhiza efficiently reduced disease incidence and severity under all light intensities. Thus, mycorrhiza-induced resistance can be uncoupled from mycorrhizal effects on plant nutrition. Therefore, mycorrhizal symbioses can be beneficial by providing biotic stress protection even in the absence of nutritional or growth benefits.
机译:使用微生物接种剂,特别是丛生的菌根真菌,对可持续作物管理有很大的潜力,旨在减少化肥和杀虫剂的使用。然而,他们在农业中使用的主要挑战之一是该领域的接种效应的可变性,部分原因是环境条件不同。光强度和质量影响植物的生长和防御,但对其对菌根菌类的益处的影响很少。我们测试了五种不同光强度对植物营养和抗病性植物病理到菌根菌根和非菌根莴苣植物的植物营养和抗性的影响。我们的结果证明,Mycorrhiza的建立受到光强度的强烈影响,无论是对根部定植的延伸和根部内的真菌囊泡的丰富。光强度对植物生长,营养含量和对病原体抗性产生显着影响。菌根共生对植物生长和营养含量的影响依赖于光强度,菌根有效地降低了所有光强度下的疾病发病率和严重程度。因此,菌根诱导的抗性可以从菌根对植物营养的影响中脱节。因此,即使在没有营养或生长效益的情况下,肌病患者也可以通过提供生物应激保护来有益。

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