Wentzien Nuria M, Fernández-González Antonio J, Villadas Pablo J, Valverde-Corredor Antonio, Mercado-Blanco Jesús, Fernández-López Manuel
Soil and Plant Microbiology Department, Estación Experimental del Zaidín, Consejo Superior de Investigaciones Científicas (CSIC), 18008 Granada, Spain.
Crop Protection Department, Instituto de Agricultura Sostenible (CSIC), 14004 Córdoba, Spain.
Comput Struct Biotechnol J. 2023 Jul 16;21:3575-3589. doi: 10.1016/j.csbj.2023.07.015. eCollection 2023.
Soil health and root-associated microbiome are interconnected factors involved in plant health. The use of manure amendment on agricultural fields exerts a direct benefit on soil nutrient content and water retention, among others. However, little is known about the impact of manure amendment on the root-associated microbiome, particularly in woody species. In this study, we aimed to evaluate the effects of ovine manure on the microbial communities of the olive rhizosphere and root endosphere. Two adjacent orchards subjected to conventional (CM) and organic (OM) management were selected. We used metabarcoding sequencing to assess the bacterial and fungal communities. Our results point out a clear effect of manure amendment on the microbial community. Fungal richness and diversity were increased in the rhizosphere. The fungal biomass in the rhizosphere was more than doubled, ranging from 1.72 × 10 ± 1.62 × 10 (CM) to 4.54 × 10 ± 8.07 × 10 (OM) copies of the gene g soil. Soil nutrient content was also enhanced in the OM orchard. Specifically, oxidable organic matter, total nitrogen, nitrate, phosphorous, potassium and sulfate concentrations were significantly increased in the OM orchard. Moreover, we predicted a higher abundance of bacteria in OM with metabolic functions involved in pollutant degradation and defence against pathogens. Lastly, microbial co-occurrence network showed more positive interactions, complexity and shorter geodesic distance in the OM orchard. According to our results, manure amendment on olive orchards represents a promising tool for positively modulating the microbial community in direct contact with the plant.
土壤健康与根系相关微生物群是影响植物健康的相互关联因素。在农田中施用粪肥对土壤养分含量和保水性等方面有直接益处。然而,关于粪肥施用对根系相关微生物群的影响,尤其是对木本植物的影响,人们了解甚少。在本研究中,我们旨在评估羊粪对橄榄根际和根内微生物群落的影响。我们选择了两个相邻的果园,分别采用常规管理(CM)和有机管理(OM)。我们使用宏条形码测序来评估细菌和真菌群落。我们的结果表明粪肥施用对微生物群落有明显影响。根际真菌的丰富度和多样性增加。根际真菌生物量增加了一倍多,范围从1.72×10±1.62×10(CM)到4.54×10±8.07×10(OM)个基因g土壤拷贝。有机果园的土壤养分含量也有所提高。具体而言,有机果园中可氧化有机物、总氮、硝酸盐、磷、钾和硫酸盐的浓度显著增加。此外,我们预测有机管理果园中具有参与污染物降解和抵御病原体代谢功能的细菌丰度更高。最后,微生物共现网络显示有机果园中存在更多的正相互作用、更高的复杂性和更短的测地线距离。根据我们的结果,在橄榄园施用粪肥是一种有前景的工具,可正向调节与植物直接接触的微生物群落。