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Soil acidification amendments change the rhizosphere bacterial community of tobacco in a bacterial wilt affected field

机译:土壤酸化修正改变细菌枯萎的烟草的根际细菌群落

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摘要

Application of soil amendments has been wildly used to increase soil pH and control bacterial wilt. However, little is known about causal shifts in the rhizosphere microbial community of crops, especially when the field naturally harbors the disease of bacterial wilt to tobacco for many years due to long-term continuous cropping and soil acidification. In this study, biochar (CP), lime (LM), oyster shell powder (OS) and no soil amendment additions (Control; CK) were assessed for their abilities to improve the soil acidification, change the composition of rhizosphere soil bacterial communities and thus control tobacco bacterial wilt. The results showed that oyster shell powder significantly increased soil pH by 0.77 and reduced the incidence of tobacco bacterial wilt by 36.67% compared to the control. The Illumina sequencing -based community analysis showed that soil amendment applications affected the composition of rhizosphere bacterial community and increased the richness and diversity. In contrast, the richness and diversity correlated negatively to disease incidence. Using LEfSe analyses, 11 taxa were found to be closely related with disease suppression, in which Saccharibacteria, Aeromicrobium, and Pseudoxanthomonas could be potential indicators of disease suppression. Our results suggested that the suppression of bacterial wilt after the application of soil amendments (especially oyster shell powder) was attributed to the improved soil pH and increased bacterial richness and diversity.
机译:土壤修正案的应用已经疯狂地用于增加土壤pH和控制细菌枯萎病。然而,由于长期连续种植和土壤酸化,对农作物的根际微生物群落中的因果移植群中的因果变化很少,特别是当田间自然遭受烟草的疾病。在本研究中,评估生物炭(CP),石灰(LM),牡蛎壳粉(OS)和没有土壤修正案添加(对照; CK),以改善土壤酸化的能力,改变根际土壤细菌社区的组成和因此控制烟草细菌枯萎病。结果表明,与对照相比,牡蛎壳粉在0.77的土壤pH值显着增加,并将烟草细菌枯萎的发病率降低了36.67%。基于illumina测序的群落分析表明,土壤修正应用影响了根际细菌群落的组成,增加了丰富和多样性。相比之下,丰富性和多样性与疾病发病率负相关。使用lefse分析,发现11个分类群与疾病抑制密切相关,其中糖化菌,航空粒子和假瘤瘤可能是疾病抑制的潜在指标。我们的研究结果表明,在施用土壤修正案(特别是Oyster壳粉末)后抑制细菌枯萎病,归因于改善的土壤pH和增加的细菌丰富和多样性。

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