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碳纳米溶胶诱导植物有益微生物群落的组装。

Carbon nanosol-induced assemblage of a plant-beneficial microbiome consortium.

机构信息

Beijing Life Science Academy, Beijing, 102200, China.

China Tobacco Gene Research Center, Zhengzhou Tobacco Research Institute of CNTC, Zhengzhou, 450001, China.

出版信息

J Nanobiotechnology. 2023 Nov 20;21(1):436. doi: 10.1186/s12951-023-02213-6.

Abstract

Carbon nanosol (CNS) is a carbon-based nanomaterial that promotes plant growth; however, its functional mechanisms and effects on the microbiome are not fully understood. Here, we explored the effects of CNS on the relationship between the soil, endophytic microbiomes and plant productivity. CNS treatment increased the fresh biomass of tobacco (Nicotiana tabacum L.) plants by 27.4% ± 9.9%. Amplicon sequencing analysis showed that the CNS treatment significantly affected the composition and diversity of the microbial communities in multiple ecological niches associated with tobacco, especially the bulk soil and stem endophytic microbiome. Furthermore, the application of CNS resulted in enhanced network connectivity and stability of the microbial communities in different niches, particularly in the soil, implying a strengthening of certain microbial interactions. Certain potentially growth-promoting root endophytic bacteria were more abundant under the CNS treatment. In addition, CNS increased the abundance of some endophytic microbial functional genes known to enhance plant growth, such as those associated with nutrient metabolism and the plant hormone biosynthesis pathways. We isolated two bacterial strains (Sphingopyxis sp. and Novosphingobium sp.) that were enriched under CNS treatment, and they were confirmed to promote tobacco plant growth in vitro. These results suggested that CNS might, at least in part, promote plant growth by enriching beneficial bacteria in the microbiome.

摘要

碳纳米溶胶(CNS)是一种促进植物生长的碳基纳米材料,但它的功能机制及其对微生物组的影响尚未完全阐明。在这里,我们探讨了 CNS 对土壤、内生微生物组和植物生产力之间关系的影响。CNS 处理使烟草(Nicotiana tabacum L.)植株的鲜生物量增加了 27.4%±9.9%。扩增子测序分析表明,CNS 处理显著影响了与烟草相关的多个生态位中微生物群落的组成和多样性,特别是土壤和茎内生微生物组。此外,CNS 的应用导致不同生境中微生物群落的网络连接性和稳定性增强,特别是在土壤中,这意味着某些微生物相互作用得到了加强。在 CNS 处理下,某些潜在的促生长根内生细菌更为丰富。此外,CNS 增加了一些已知能促进植物生长的内生微生物功能基因的丰度,如与营养代谢和植物激素生物合成途径相关的基因。我们分离到了两种在 CNS 处理下富集的细菌菌株(Sphingopyxis sp.和 Novosphingobium sp.),并证实它们在体外能促进烟草植株的生长。这些结果表明,CNS 可能至少部分通过富集微生物组中的有益细菌来促进植物生长。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0da2/10658824/7223ead3e059/12951_2023_2213_Fig1_HTML.jpg

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