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Community structure of soil fungi in a novel perennial crop monoculture, annual agriculture, and native prairie reconstruction

机译:新型多年生作物单一栽培,年农业和土着大草原重建土壤真菌的社区结构

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The use of perennial crop species in agricultural systems may increase ecosystem services and sustainability. Because soil microbial communities play a major role in many processes on which ecosystem services and sustainability depend, characterization of soil community structure in novel perennial crop systems is necessary to understand potential shifts in function and crop responses. Here, we characterized soil fungal community composition at two depths (0–10 and 10–30 cm) in replicated, long-term plots containing one of three different cropping systems: a tilled three-crop rotation of annual crops, a novel perennial crop monoculture ( Intermediate wheatgrass , which produces the grain Kernza ? ), and a native prairie reconstruction. The overall fungal community was similar under the perennial monoculture and native vegetation, but both were distinct from those in annual agriculture. The mutualist and saprotrophic community subsets mirrored differences of the overall community, but pathogens were similar among cropping systems. Depth structured overall communities as well as each functional group subset. These results reinforce studies showing strong effects of tillage and sampling depth on soil community structure and suggest plant species diversity may play a weaker role. Similarities in the overall and functional fungal communities between the perennial monoculture and native vegetation suggest Kernza ? cropping systems have the potential to mimic reconstructed natural systems.
机译:在农业系统中使用常年作物物种可能会增加生态系统服务和可持续性。由于土壤微生物社区在许多生态系统服务和可持续发展所依赖的过程中发挥着重要作用,因此在新的多年生作物系统中的土壤群落结构的表征是必要了解功能和作物反应的潜在变化。在这里,我们在复制的长期地块中以两个深度(0-10和10-30cm)在含有三种不同的种植系统中的一个:每年作物的耕种三作物旋转,这是一项新的多年生作物单一栽培(中级小麦草,产生谷物Kernza?)和原生大草原重建。整个真菌群落在多年生单一栽培和本土植被下类似,但两者都与年度农业中的那些不同。相互主义和嗜血癖的社区亚群镜像整体社区的差异,但病原体在种植系统中是相似的。深度结构化整体社区以及每个功能组子集。这些结果加强了耕作和采样深度对土壤群落结构的强烈影响的研究,并提出植物物种多样性可能发挥较弱的作用。常年单一栽培与原生植被之间的整体和功能性真菌社区的相似性表明了Kernza?裁剪系统具有模拟重建的自然系统的潜力。

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