Centro de Pesquisa E Desenvolvimento de Recursos Genéticos Vegetais, Instituto Agronômico, Campinas, São Paulo, Brazil.
Centro de Café Alcides Carvalho, Instituto Agronômico (IAC), Campinas, São Paulo, Brazil.
Curr Microbiol. 2023 Mar 8;80(4):130. doi: 10.1007/s00284-023-03236-w.
The analysis of large-scale sequence data has revealed that plants over time recruit certain microbes that are efficient colonizers of the rhizosphere. This enrichment phenomenon is especially seen in annual crops, but we suggest that there could have been some type of enrichment in perennial crops such as coffee plants. To verify this hypothesis, we performed a metagenomic and chemical analysis in rhizosphere with three different plant ages (young, mature, and old) and cultivated on the same farm. We verified that from mature to old plants, there was a decrease in diversity, particularly Fusarium and Plenodomus, while there was an increase in Aspergillus, Cladosporium, Metarhizium, and Pseudomonas. We also detected that the abundance of anti-microbials and ACC-deaminase grows as plants age, although denitrification and carbon fixation had reduced abundances. In summary, we detected an enrichment in the microbial community, especially in the great increase in the participation of Pseudomonas, passing from 50% of the relative abundance as the plants get older. Such enrichment can occur through the dynamics of nutrients such as magnesium and boron.
大规模序列数据分析揭示,随着时间的推移,植物会招募某些对根际具有高效定植能力的微生物。这种富集现象在一年生作物中尤为明显,但我们认为,多年生作物(如咖啡树)可能也存在某种类型的富集。为了验证这一假说,我们在同一农场中,对具有三种不同树龄(幼龄、成熟和老龄)的咖啡树的根际进行了宏基因组和化学分析。我们验证到,从成熟到老龄的过程中,多样性减少,尤其是镰孢菌属和 Plenodomus 减少,而曲霉属、枝孢属、金龟子绿僵菌和假单胞菌属增加。我们还检测到,随着植物年龄的增长,抗微生物和 ACC 脱氨酶的丰度增加,尽管反硝化和固碳的丰度降低。总之,我们检测到微生物群落的富集,特别是 Pseudomonas 的参与度大大增加,从植物成熟时的相对丰度的 50%增加到老龄时的 90%以上。这种富集可能是通过镁和硼等营养物质的动态变化发生的。