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感染扰乱了整个烟草作物生态位的微生物群落结构以及土壤中的氮代谢。

Infection Disturbed the Microbiome Structure Throughout the Whole Tobacco Crop Niche as Well as the Nitrogen Metabolism in Soil.

作者信息

Wang Zhaobao, Zhang Yuzhen, Bo Guodong, Zhang Yanping, Chen Yu, Shen Minchong, Zhang Peng, Li Guitong, Zhou Jie, Li Zhengfeng, Yang Jianming

机构信息

Energy-Rich Compounds Production by Photosynthetic Carbon Fixation Research Center, Shandong Key Lab of Applied Mycology, College of Life Sciences, Qingdao Agricultural University, Qingdao, China.

Tobacco Research Institute of Chinese Academy of Agricultural Sciences, Qingdao, China.

出版信息

Front Bioeng Biotechnol. 2022 Jun 21;10:903555. doi: 10.3389/fbioe.2022.903555. eCollection 2022.

Abstract

Infections of result in huge agricultural and economic losses. As known, the proposal of effective biological measures for the control of soil disease depends on the complex interactions between pathogens, soil microbiota and soil properties, which remains to be studied. Previous studies have shown that the phosphorus availability increased pathobiome abundance and infection of rhizosphere microbial networks by . Similarly, as a nutrient necessary for plant growth, nitrogen has also been suggested to be strongly associated with infection. To further reveal the relationship between soil nitrogen content, soil nitrogen metabolism and pathogens, we investigated the effects of infection on the whole tobacco niche and its soil nitrogen metabolism. The results demonstrated that infection resulted in a reduction of the ammonium nitrogen in soil and the total nitrogen in plant. The microbes in rhizosphere and the plant's endophytes were also significantly disturbed by the infection. which is involved in nitrogen metabolism significantly decreased. Moreover, the load of microbial nitrogen metabolism genes in the rhizosphere soil significantly varied after the infection, resulting in a stronger denitrification process in the diseased soil. These results suggest that the application management strategies of nitrogen fertilizing and a balanced regulation of the rhizosphere and the endophytic microbes could be promising strategies in the biological control of soil-borne secondary disasters.

摘要

[病原体名称]感染会导致巨大的农业和经济损失。众所周知,制定有效的土壤病害生物防治措施取决于病原体、土壤微生物群和土壤性质之间的复杂相互作用,这仍有待研究。先前的研究表明,有效磷的增加会提高[病原体名称]的丰度以及根际微生物网络的感染率。同样,作为植物生长必需的养分,氮也被认为与[病原体名称]感染密切相关。为了进一步揭示土壤氮含量、土壤氮代谢与[病原体名称]之间的关系,我们研究了[病原体名称]感染对整个烟草生态位及其土壤氮代谢的影响。结果表明,[病原体名称]感染导致土壤中铵态氮和植物中总氮含量降低。根际微生物和植物内生菌也受到感染的显著干扰。参与氮代谢的[相关物质名称]显著减少。此外,感染后根际土壤中微生物氮代谢基因的负荷显著变化,导致病土中的反硝化过程增强。这些结果表明,氮肥的施用管理策略以及对根际和内生微生物的平衡调控可能是防治土传次生灾害的有效策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9f23/9253565/310af6bd280a/fbioe-10-903555-g002.jpg

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