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施用生石灰对酸化植烟土壤细菌群落结构和代谢功能的影响

Effects of quicklime application on bacterial community structure and metabolic function in acidified tobacco-planting soil

  • 摘要: 土壤酸化是导致烟草青枯病发生和流行的重要因素。利用不同量的生石灰改良酸化植烟土壤,分析生石灰对酸化土壤细菌群落结构和代谢功能的影响以及土壤细菌群落与环境因子的关系。结果表明,适量生石灰(1 200~1 500 kg/hm2)可提高酸化土壤细菌群落的Sobs、Shannon、Ace和Chao1等多样性指数, 提升土壤中放线菌门(Actinobacteria)、绿弯菌门(Chloroflexi)和黏球菌门(Myxococcota)的相对丰度,增加能量代谢、萜类和多酮类代谢、翻译、折叠、分类与降解功能的基因丰度,降低膜运输功能的基因丰度。因此,适量生石灰(1 200~1 500 kg/hm2)可改善酸化土壤细菌群落结构和代谢功能,确定了土壤pH、交换性钙、交换性镁和可交换铝含量是影响土壤细菌群落的重要因子。

     

    Abstract: Soil acidification is an important factor leading to the occurrence and spread of tobacco bacterial wilt. In this experiment, different amounts of quicklime were used to improve acidified tobacco-planting soil, and the effects of quicklime on structure and metabolic function of bacterial community in acidified soil and the relationships between soil bacterial community and environmental factors were analyzed.?The results showed that the appropriate amount of quicklime (1 200-1 500 kg/hm2) improved the Sobs, Shannon, Ace and Chao1 indexes of the bacterial community in acidified soil and the relative abundance of Actinobacteria, Chloroflexi and Myxococcota; increased the abundance of genes related to energy metabolism and the metabolism, translation, folding, sorting, and degradation of terpenoids and polyketides; while decreased the abundance of genes related to membrane transport. Therefore, an appropriate amount of quicklime (1 200-1 500 kg/hm2) could improve the structure and metabolic function of the bacterial community in acidified soil, and soil pH, exchangeable calcium, magnesium and aluminum contents were identified as important factors affecting soil bacterial community.

     

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