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Agricultural Soil Management Practices Differentially Shape the Bacterial and Fungal Microbiomes of Sorghum bicolor

机译:农业土壤管理实践差异地塑造高粱双子的细菌和真菌微生物

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Soils play important roles in biological productivity. While past work suggests that microbes affect soil health and respond to agricultural practices, it is not well known how soil management shapes crop host microbiomes. To elucidate the impact of management on microbial composition and function in the sorghum microbiome, we performed 16S rRNA gene and ITS2 amplicon sequencing and metatranscriptomics on soil and root samples collected from a site in California’s San Joaquin Valley that is under long-term cultivation with (i) standard (ST) or no tilling (NT) and (ii) cover cropping (CC) or leaving the field fallow (NO). Our results revealed that microbial diversity, composition, and function change across tillage and cover type, with a heightened response in fungal versus bacterial communities. Surprisingly, ST harbored greater microbial alpha diversity than NT, indicating that tillage may open niche spaces for broad colonization. Across management regimes, we observed class-level taxonomic level shifts. In addition, we found significant functional restructuring across treatments, including enrichment for microbial lipid and carbohydrate transport and metabolism and cell motility with NT. Differences in carbon cycling were also observed, with increased prevalence of glycosyltransferase and glycoside hydrolase carbohydrate active enzyme families with CC. Lastly, treatment significantly influenced arbuscular mycorrhizal fungi, which had the greatest prevalence and activity under ST, suggesting that soil practices mediate known beneficial plant-microbe relationships. Collectively, our results demonstrate how agronomic practices impact critical interactions within the plant microbiome and inform future efforts to configure trait-associated microbiomes in crops.IMPORTANCE While numerous studies show that farming practices can influence the soil microbiome, there are often conflicting results on how microbial diversity and activity respond to treatment. In addition, very little has been published on how the corresponding crop plant microbiome is impacted. With bacteria and fungi known to critically affect soil health and plant growth, we concurrently compared how the practices of no and standard tillage, in combination with either cover cropping or fallow fields, shape soil, and plant-associated microbiomes between the two classifications. In determining not only the response to treatment in microbial diversity and composition, but for activity as well, we demonstrate here the significance of agronomic practice in modulating plant-microbe interactions, as well as encourage future work on the mechanisms involved in community assemblages supporting similar crop outcomes.
机译:土壤在生物生产力中发挥着重要作用。虽然过去的工作表明微生物会影响土壤健康并对农业实践作出反应,但尚不众名人知土壤管理如何塑造作物宿主微生物。为了阐明管理对高粱微生物组中的微生物组成和功能的影响,我们在加利福尼亚州的San Joaquin山谷中的部位收集的土壤和根样品上进行了16S rRNA基因及其2扩增子测序和MetaTransfressomics,这些谷在长期培养下( i)标准(ST)或没有耕种(NT)和(II)覆盖种植(CC)或离开现场休耕(否)。我们的研究结果表明,耕作和覆盖型微生物多样性,组成和功能变化,具有在真菌与细菌群体的响应增加。令人惊讶的是,ST患了比NT更大的微生物α多样性,表明耕作可能打开Niche空间以进行广泛的定植。跨管理制度,我们观察到课程水分分类水平转变。此外,我们发现跨治疗的显着功能性重构,包括用于微生物脂质和碳水化合物的富集和NT的碳水化合物运输和代谢和细胞运动。还观察到碳循环的差异,随着糖基转移酶和糖苷水解酶碳水化合物活性酶系列的含量增加而增加。最后,治疗显着影响了丛枝菌根真菌,其在ST下具有最大的流行和活动,这表明土壤施法介导已知的有益植物 - 微生物关系。统称,我们的结果表明,农艺实践如何影响植物微生物组内的关键相互作用,并告知未来努力在农作物中配置特征相关的微生物菌。分类,而众多研究表明,农业实践会影响土壤微生物的影响,如何对微生物进行矛盾的结果多样性和活动应对治疗。此外,还对相应的作物植物微生物组影响有何发表。通过众所周知的细菌和真菌来影响土壤健康和植物的生长,我们同时将NO和标准耕作的做法与两种分类之间的覆盖作物或休耕领域,形状土壤和植物相关的微生物组合进行了比较。在确定不仅对微生物多样性和组成中治疗的响应,而且对于活动也是如此,我们展示了农艺实践在调节植物微生物互动方面的意义,以及鼓励未来的工作涉及相似的社区组合的机制作物结果。

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