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Above- and below-ground herbivory effects on below-ground plant–fungus interactions and plant–soil feedback responses

机译:地下和地下食草对地下植物-真菌相互作用和植物-土壤反馈响应的影响

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摘要

Summary Feeding by insect herbivores can affect plant growth and the concentration of defense compounds in plant tissues. Since plants provide resources for soil organisms, herbivory can also influence the composition of the soil community via its effects on the plant. Soil organisms, in turn, are important for plant growth. We tested whether insect herbivores, via their effects on the soil microbial community, can influence plant-soil feedbacks. We first examined the effects of above-ground (AG) and below-ground (B) insect herbivory on the composition of pyrrolizidine alkaloids (PAs) in roots and on soil fungi in roots and rhizosphere soil of ragwort (Jacobaea vulgaris). The composition of fungal communities in roots and rhizosphere soil was affected by both AG and BG herbivory, but fungal composition also differed considerably between roots and rhizosphere soil. The composition of PAs in roots was affected only by BG herbivory. Thirteen different fungal species were detected in roots and rhizosphere soil. The presence of the potentially pathogenic fungus Fusarium oxysporum decreased and that of Phoma exigua increased in presence of BG herbivory, but only in soil samples. We then grew new plants in the soils conditioned by plants exposed to the herbivore treatments and in unconditioned soil. A subset of the new plants was exposed to foliar insect herbivory. Plant-soil feedback was strongly negative, but the feedback effect was least negative in soil conditioned by plants that had been exposed to BG herbivory. There was a negative direct effect of foliar herbivory on plant biomass during the feedback phase, but this effect was far less strong when the soil was conditioned by plants exposed to AG herbivory. AG herbivory during the conditioning phase also caused a soil feedback effect on the PA concentration in the foliage of ragwort. Synthesis. Our results illustrate how insect herbivory can affect interactions between plants and soil organisms, and via these effects how herbivory can alter the performance of late-growing plants. Plant-soil feedback is emerging as an important theme in ecology and these results highlight that plant-soil feedback should be considered from a multitrophic AG and BG perspective.
机译:小结昆虫食草动物的进食会影响植物的生长以及植物组织中防御化合物的浓度。由于植物为土壤生物提供资源,因此食草也可以通过其对植物的影响来影响土壤群落的组成。反过来,土壤生物对于植物生长很重要。我们测试了昆虫食草动物是否会通过其对土壤微生物群落的影响而影响植物-土壤的反馈。我们首先研究了地上(AG)和地下(B)食草植物对根中吡咯烷核生物碱(PAs)以及豚草(Jacobaea vulgaris)根和根际土壤中土壤真菌的影响。根和根际土壤的真菌群落组成均受AG和BG食草动物的影响,但根与根际土壤之间的真菌组成也存在很大差异。根中PA的组成仅受BG草食动物的影响。在根和根际土壤中检测到13种不同的真菌物种。在存在BG食草动物的情况下,潜在致病性真菌尖孢镰刀菌的存在减少了,而在白色土壤中存在的Phi exigua的真菌增加了,但仅在土壤样品中存在。然后,我们在暴露于草食动物处理的植物条件下的土壤中和非条件土壤中生长了新植物。新植物的一部分被暴露于叶面昆虫食草。植物-土壤反馈强烈为负,但是在暴露于BG食草动物的植物条件下的土壤中,反馈效应最小。在反馈阶段,叶面食草对植物生物量有直接的负面影响,但是当土壤受到暴露于AG食草的植物调节后,这种作用远没有那么强烈。调理阶段的AG草食动物也对土参叶中的PA浓度产生了土壤反馈效应。合成。我们的研究结果说明了昆虫食草如何影响植物与土壤生物之间的相互作用,并通过这些作用使食草改变了晚生植物的性能。植物-土壤反馈正在成为生态学中的一个重要主题,这些结果表明,应该从多营养的AG和BG角度考虑植物-土壤反馈。

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