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首页> 外文期刊>Journal of Biosciences and Medicines >Integrated Biological Control of Tobacco Bacterial Wilt (&i&Ralstonia solanacearum&/i&) and Its Effect on Rhizosphere Microbial Community
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Integrated Biological Control of Tobacco Bacterial Wilt (&i&Ralstonia solanacearum&/i&) and Its Effect on Rhizosphere Microbial Community

机译:烟草细菌枯萎的综合生物控制(& I& ralstonia solanacearum& / i&)及其对根际微生物群落的影响

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Biological control agents and soil amendments have been applied to control tobacco bacterial wilt, but the mechanism is not well-known. In the present study, a field experiment was performed to investigate the soil physicochemical properties, disease index (DI) and disease incidence of tobacco bacterial wilt, and rhizosphere microbial community. The results show that the control efficacy of single application of antagonistic bacteria and calcium cyanamide was 46.43% and 51.92%, respectively. While the combined control efficacy of antagonistic bacteria and calcium cyanamide was 65.79%. Besides, the combined application of antagonistic bacteria and calcium cyanamide could increase soil pH, total N alkaline N, and exchangeable Ca, which were negatively associated with the microbial diversity, soil-borne pathogenic microorganisms, and incidence of tobacco bacterial wilt. Additionally, the combination of antagonistic bacteria and calcium cyanamide can improve the proportion of some antagonistic microbial species, and these antagonistic microbial species were inversely associated with the DI of tobacco bacterial wilt. In conclusion: The integrated measure may influence soil microbial communities through enhancing soil physicochemical properties and rebuild healthy soil microbial community structure to mitigate tobacco bacterial wilt. The current study presented valuable insights into the mechanisms enhancing soil health in the integrated measure.
机译:已经应用生物对照剂和土壤修正用于对照烟草细菌枯萎病,但该机制尚不清楚。在本研究中,进行田间实验以研究烟草细菌枯萎病和根际微生物群落的土壤理化性质,疾病指数(DI)和疾病发病率。结果表明,单一施用拮抗细菌和氰酰胺的控制疗效分别为46.43%和51.92%。虽然拮抗细菌和氰酰胺钙的合并控制效果为65.79%。此外,拮抗细菌和氰酰胺的组合施用可以增加土壤pH,总N碱性N和可更换的Ca,其与微生物多样性,土壤传播的致病微生物和烟草细菌枯萎病的发病率负相关。另外,拮抗细菌和氰酰胺的组合可以提高一些拮抗微生物物种的比例,并且这些拮抗微生物物种与烟草细菌枯萎的DI逆转。总之:综合措施可以通过增强土壤理化性质和重建健​​康土壤微生物群落结构来影响土壤微生物群体,以减轻烟草细菌枯萎病。目前的研究表明了对综合措施中土壤健康的机制有价值的见解。

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