Stavridou Evangelia, Karamichali Ioanna, Lagiotis Georgios, Patsea Elena, Osathanunkul Maslin, Madesis Panagiotis
Institute of Applied Biosciences, Centre for Research and Technology, 57001 Thermi, Greece.
A.S. "PELEKANOS", Epar.Od. Lemou-Vronterou, 53077 Prespes, Greece.
Biology (Basel). 2022 Oct 31;11(11):1595. doi: 10.3390/biology11111595.
Leguminous crops play a key role in food production and agroecosystem sustainability. However, climate change and agricultural intensification have a significant impact on the available arable land, soil microbiome functions, and ultimately, crop productivity. The "Prespa bean" ( L.) is an important leguminous crop for the agricultural economy of the rural areas surrounding the lake, Mikri Prespa, which is of significant ecological importance. The seasonal effects on soil microbiome structure, diversity and functions associated with the runner bean cultivation were investigated using 16S rRNA amplicon sequencing. The results indicated that the presence of the runner bean differentially shaped the soil microbial community structure. The runner bean was implicated in the recruitment of specific bacteria, by favouring or excluding specific classes or even phyla. Soil functions involved in nutrient availability and carbon metabolism, among other pathways, were associated with microbiome-plant interactions. The temporal relative abundance shifts could be explained by the impact of soil organic matter, the fertilization regime, and the equilibrium in carbon metabolic processes. This research has shown the effect of runner bean cultivation on the soil microbiome which, in future, may potentially contribute to research into sustainable agricultural productivity and the protection of soil ecosystem services.
豆科作物在粮食生产和农业生态系统可持续性方面发挥着关键作用。然而,气候变化和农业集约化对可用耕地、土壤微生物群落功能以及最终的作物生产力产生了重大影响。“普雷斯帕豆”(L.)是围绕米克里·普雷斯帕湖的农村地区农业经济的重要豆科作物,具有重要的生态意义。利用16S rRNA扩增子测序研究了与菜豆种植相关的土壤微生物群落结构、多样性和功能的季节效应。结果表明,菜豆的存在对土壤微生物群落结构产生了不同的影响。菜豆通过促进或排除特定的类甚至门,参与了特定细菌的招募。除其他途径外,与养分有效性和碳代谢有关的土壤功能与微生物群落 - 植物相互作用有关。时间上的相对丰度变化可以用土壤有机质的影响、施肥制度以及碳代谢过程中的平衡来解释。这项研究表明了菜豆种植对土壤微生物群落的影响,未来可能有助于可持续农业生产力研究和土壤生态系统服务保护。