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首页> 外文期刊>Biotechnology & Biotechnological Equipment >Utilization of marigold ( Tagetes erecta ) flower fermentation wastewater as a fertilizer and its effect on microbial community structure in maize rhizosphere and non-rhizosphere soil
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Utilization of marigold ( Tagetes erecta ) flower fermentation wastewater as a fertilizer and its effect on microbial community structure in maize rhizosphere and non-rhizosphere soil

机译:利用万寿菊(Tagetes Eerecta)花发酵废水作为肥料的肥料及其对玉米根际和非根际土壤微生物群落结构的影响

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Marigold (Tagetes erecta L.) flowers can be used to produce lutein, but the production process generates fermentation wastewater, which is rich in lactic acid. Currently, most fermentation wastewater treatment methods are relatively expensive and time-consuming. To develop a practical marigold flower fermentation wastewater treatment method, in this study, we treated the fermentation wastewater with calcium oxide to prepare a neutralization solution, which was then used to irrigate maize that in turn exhibited a significant increase in growth. Then, we investigated soil pH, conductivity and enzyme activity, as well as microbial community and diversity of the maize rhizosphere and non-rhizosphere soil. Compared with the control group, the neutralization solution had no significant effect on soil pH and four kinds of enzyme (soil urease, catalase, sucrase and acid phosphatase) activity, but the electrical conductivity of the treatment group increased by 24.3%. The 16s rDNA and ITS rDNA sequencing results showed that the neutralization solution treatment influenced the diversity and abundance of bacteria and fungi in the non-rhizosphere samples, as well as the number of bacterial species in rhizosphere soil. The effect of neutralization solution treatment on bacteria was greater than that on fungi. Proteobacteria and Ascomycota were the predominant bacterial and fungal phyla in maize rhizosphere soil. The relative abundance of Paenibacillus, Bacillus and Penicillium genera significantly increased in non-rhizosphere soils. We hereby present a potential method for treating marigold flower fermentation wastewater for fertilizer utilization and show that the neutralization solution promotes maize growth and influences the soil microbial structure.
机译:万寿菊(Tagetes Eerecta L.)花卉可用于生产叶黄素,但生产过程产生发酵废水,富含乳酸。目前,大多数发酵废水处理方法相对昂贵且耗时。为了开发实用的万寿菊花发酵废水处理方法,在本研究中,我们将发酵废水与氧化钙进行处理以制备中和溶液,然后用来灌溉玉米,反过来呈现出显着增加的生长增加。然后,我们研究了土壤pH,电导率和酶活性,以及​​玉米根际和非根际土壤的微生物群落和多样性。与对照组相比,中和溶液对土壤pH和四种酶(土壤释放酶,蔗糖酶和酸性磷酸酶)活性没有显着影响,但治疗组的电导率增加了24.3%。 16S RDNA及其RDNA测序结果表明,中和溶液处理影响了非根际样品中的细菌和真菌的多样性和丰度,以及根际土壤中的细菌种类。中和溶液对细菌的影响大于真菌的效果。植物细菌和Ascomycota是玉米根际土壤中的主要细菌和真菌植物。非根际土壤的佩恩虫草,芽孢杆菌和青霉菌属的相对丰度显着增加。我们在此提出了一种治疗万寿菊花发酵废水的潜在方法,用于施肥利用,表明中和溶液促进玉米生长并影响土壤微生物结构。

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