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Impact of short-term application of seaweed fertilizer on bacterial diversity and community structure, soil nitrogen contents, and plant growth in maize rhizosphere soil

机译:海藻肥对玉米根际土壤细菌多样性和群落结构,土壤氮含量和植物生长的影响

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The effects of the short-term application of Ascophyllum nodosum-fermented seaweed fertilizer on the bacterial community, soil nitrogen contents, and plant growth in maize rhizosphere soil were evaluated. The changes in the bacterial community composition and nitrogen contents including those of total nitrogen (TN), nitrate nitrogen (NO3--N) and ammonium nitrogen (NH4+-N) in rhizosphere soils in response to treatment with seaweed fertilizer were determined. Furthermore, soil enzymatic activity and crop biomass were analyzed. The relative abundance of the dominant phyla varied regularly with fertilization, and bacterial alpha-diversity was apparently influenced by seaweed fertilizer amendment. The TN contents of all soil samples decreased gradually, and the NO3--N and NH4+-N contents of the soils treated with seaweed fertilizer were much higher than those of the control soils. Similarly, the enzymatic activities of dehydrogenase, nitrite reductase, urease, and cellulase in the soil were significantly increased on day 3, day 8, and day 13 after the application of seaweed fertilizer to the maize rhizosphere soil. However, there was no difference in the activity of soil sucrase between the treatment group and the control group. In this study, the growth of maize seedlings was confirmed to be greatly promoted by the utilization of seaweed fertilizer. These results deepen our understanding of plant-microbe interactions in agroecosystems and should benefit the wide use of seaweed fertilizer in sustainable agricultural production.
机译:评估了脑脊液中脑脊液发酵海藻施肥对玉米根际土壤细菌群落,土壤氮含量和植物生长的影响。确定细菌群落组合物和氮含量的变化,包括总氮(TN),硝酸氮(NO3 - N)和根际土壤中氮气(NH4 + -N)的氮气氮(NH 4 + -N)响应于海藻肥料治疗。此外,分析了土壤酶活性和作物生物质。优势植物的相对丰度定期受精施肥,细菌α-多样性显然受到海藻肥料修正的影响。所有土壤样品的TN含量逐渐降低,用海藻肥治疗的土壤的NO3 - N和NH4 + -N含量远高于对照土壤的土壤。类似地,在将海藻施肥施用到玉米根际土壤之后,土壤中脱氢酶,亚硝酸盐还原酶,脲酶和纤维素酶的酶活性显着增加。然而,治疗组与对照组之间的土壤蔗糖酶活性没有差异。在这项研究中,证实玉米幼苗的生长得到了海藻肥的利用率大大促进。这些结果深化了我们对农业体系中的植物微生物相互作用的理解,并应使广泛使用海藻肥在可持续农业生产中。

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