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[枯草芽孢杆菌Tpb55根部浇灌与烟草根际细菌多样性变化的相关性]

[Correlation between root irrigation of Bacillus subtilis Tpb55 and variation of bacterial diversity in tobacco rhizosphere].

作者信息

Han Teng, Zhang Limeng, Gao Jiaming, Kong Jiaming, Feng Chao, Wang Jing, Zhang Chengsheng

出版信息

Wei Sheng Wu Xue Bao. 2016 May 4;56(5):835-45.

Abstract

OBJECTIVE

The impact of inoculation with the biocontrol agent Bacillus subtilis on bacterial communities in rhizospheric soil of Nicotiana tabacum was assessed by using 454 pyrosequencing technology. The control effect of Tpb55 on tobacco black shank was also studied.

METHODS

Two treatments were done as follows: irrigating root with Bacillus subtilis strain Tpb55 inoculants (108 CFU/mL) and the control. Soil samples from tobacco rhizosphere were collected at 0d, 10d and 22 d after the treatment. Genomic DNA of soil samples was extracted and amplified for the 16S rDNA V1-V3 tags, and then the tags were sequenced by 454 sequencing. Qiime was used to analyze soil bacterial diversities.

RESULTS

A total of 41207 high quality sequences were obtained from all samples, which were classified into 25 phyla. The dominant bacteriophyta were Actinobacteria, Proteobacteria and Acidobacteria in all samples. The content of Actinobacteria was decreased gradually in the development of disease, whereas Proteobacteria showed an opposite tendency. Acidobacteria revealed a marked increase andexceeded control in content after inoculation with Tpb55. The control showed a significant decline in Bacillaceae, as well as Oxalobacteraceae which was known as an indicator for bacterial diversity. However, Bacillaceae showed an increasing tendency and Oxalobacteraceae was relatively constant in Tpb55 treatment. The Chao 1, ACE and Shannon index of treatment showed a constant improvement of variety and richness. In 10 d and 22 d after Tpb55 inoculation, the number of sequences with high homology of V1-V3 regions of Tpb55 16S rDNA was 31 and 45, respectively. The disease index of tobacco black shank in inoculated tobacco (5.29) was significantly lower than the control (38.52).

CONCLUSION

Tpb55 could improve the diversity of soil bacterial community and ecosystem stability, which presented a possible reason for its biocontrol efficacy on tobacco black shank.

摘要

目的

采用454焦磷酸测序技术评估生防菌枯草芽孢杆菌接种对烟草根际土壤细菌群落的影响。同时研究Tpb55对烟草黑胫病的防治效果。

方法

进行如下两种处理:用枯草芽孢杆菌菌株Tpb55菌剂(108 CFU/mL)浇灌根部和对照处理。处理后0天、10天和22天采集烟草根际土壤样品。提取土壤样品的基因组DNA,扩增16S rDNA V1-V3标签,然后通过454测序对标签进行测序。使用Qiime分析土壤细菌多样性。

结果

所有样品共获得41207条高质量序列,分为25个门。所有样品中优势菌门为放线菌门、变形菌门和酸杆菌门。放线菌门的含量在病害发展过程中逐渐降低,而变形菌门呈现相反趋势。接种Tpb55后酸杆菌门含量显著增加且超过对照。对照中芽孢杆菌科以及作为细菌多样性指标的草酸杆菌科显著下降。然而,在Tpb55处理中芽孢杆菌科呈增加趋势,草酸杆菌科相对稳定。处理的Chao 1、ACE和香农指数显示多样性和丰富度不断提高。在接种Tpb55后10天和22天,与Tpb55 16S rDNA的V1-V3区域具有高度同源性的序列数分别为31和45。接种烟草的烟草黑胫病病情指数(5.29)显著低于对照(38.52)。

结论

Tpb55可提高土壤细菌群落多样性和生态系统稳定性,这是其对烟草黑胫病具有生防效果的可能原因。

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