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Combined Field Inoculations of Pseudomonas Bacteria Arbuscular Mycorrhizal Fungi and Entomopathogenic Nematodes and their Effects on Wheat Performance

机译:假单胞菌细菌丛枝菌根真菌和昆虫病原线虫的联合田间接种及其对小麦性能的影响

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摘要

In agricultural ecosystems, pest insects, pathogens, and reduced soil fertility pose major challenges to crop productivity and are responsible for significant yield losses worldwide. Management of belowground pests and diseases remains particularly challenging due to the complex nature of the soil and the limited reach of conventional agrochemicals. Boosting the presence of beneficial rhizosphere organisms is a potentially sustainable alternative and may help to optimize crop health and productivity. Field application of single beneficial soil organisms has shown satisfactory results under optimal conditions. This might be further enhanced by combining multiple beneficial soil organisms, but this remains poorly investigated. Here, we inoculated wheat plots with combinations of three beneficial soil organisms that have different rhizosphere functions and studied their effects on crop performance. Plant beneficial Pseudomonas bacteria, arbuscular mycorrhizal fungi (AMF), and entomopathogenic nematodes (EPN), were inoculated individually or in combinations at seeding, and their effects on plant performance were evaluated throughout the season. We used traditional and molecular identification tools to monitor their persistence over the cropping season in augmented and control treatments, and to estimate the possible displacement of native populations. In three separate trials, beneficial soil organisms were successfully introduced into the native populations and readily survived the field conditions. Various Pseudomonas, mycorrhiza, and nematode treatments improved plant health and productivity, while their combinations provided no significant additive or synergistic benefits compared to when applied alone. EPN application temporarily displaced some of the native EPN, but had no significant long-term effect on the associated food web. The strongest positive effect on wheat survival was observed for Pseudomonas and AMF during a season with heavy natural infestation by the frit fly, Oscinella frit, a major pest of cereals. Hence, beneficial impacts differed between the beneficial soil organisms and were most evident for plants under biotic stress. Overall, our findings indicate that in wheat production under the test conditions the three beneficial soil organisms can establish nicely and are compatible, but their combined application provides no additional benefits. Further studies are required, also in other cropping systems, to fine-tune the functional interactions among beneficial soil organisms, crops, and the environment.
机译:在农业生态系统中,害虫,病原体和土壤肥力降低对作物生产力构成了重大挑战,并导致全球范围内的重大产量损失。由于土壤的复杂性和常规农用化学品的使用范围有限,地下害虫和疾病的管理仍然特别具有挑战性。增加有益的根际生物的存在是潜在的可持续选择,并可能有助于优化作物的健康和生产力。在最佳条件下,单一有益土壤生物的野外施用已显示出令人满意的结果。通过结合多种有益的土壤生物,可能会进一步增强这一效果,但对此研究仍很少。在这里,我们用具有不同根际功能的三种有益土壤生物的组合接种了小麦田,并研究了它们对作物生长的影响。在播种时单独或组合接种植物有益的假单胞菌细菌,丛枝菌根真菌(AMF)和昆虫病原线虫(EPN),并在整个季节评估它们对植物性能的影响。我们使用传统的分子识别工具来监测它们在增收和控制处理下整个作物季节的持久性,并估计当地人口的可能流离失所。在三个单独的试验中,将有益的土壤生物成功地引入了本地种群,并在野外条件下很容易存活。各种假单胞菌,菌根和线虫治疗均改善了植物的健康和生产力,而与单独施用相比,它们的组合没有提供明显的累加或协同效益。 EPN的应用暂时取代了一些本地EPN,但对相关食物网没有明显的长期影响。在玻璃粉蝇,Oscinella玻璃粉(一种谷物的主要害虫)遭受大量自然侵染的季节,对假单胞菌和AMF观察到了对小麦存活的最强积极作用。因此,有益的土壤生物之间的有益影响是不同的,并且对于处于生物胁迫下的植物最为明显。总体而言,我们的发现表明,在测试条件下的小麦生产中,三种有益的土壤生物可以很好地建立并兼容,但是它们的组合应用不会带来额外的好处。在其他种植系统中,也需要进一步研究,以微调有益土壤生物,作物和环境之间的功能相互作用。

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