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促植物生长真菌通过重塑根际真菌微生物群和招募益生菌类群来提高烟草产量和改善化学成分。

Plant growth-promoting fungi improve tobacco yield and chemical components by reassembling rhizosphere fungal microbiome and recruiting probiotic taxa.

作者信息

Shi Mingzi, Hao Shanghua, Wang Yuhe, Zhang Sen, Cui Guangzhou, Zhang Bin, Zhou Wang, Chen Hongge, Wang Mingdao

机构信息

College of Life Science, Henan Agricultural University, Henan, 450046, China.

Department of Genomic and Computational Biology, University of Massachusetts Chan Medical School, Worcester, MA, 01605, USA.

出版信息

Environ Microbiome. 2024 Nov 1;19(1):83. doi: 10.1186/s40793-024-00629-7.

Abstract

BACKGROUND

Tobacco production faces ongoing challenges due to soil degradation, leading to a persistent decline in yield. Plant growth-promoting fungi (PGPF) have been recognized as an environmentally friendly agricultural strategy. However, many commercial PGPF products exhibit instability due to insufficient environmental compatibility.

RESULTS

In this study, Penicillium sp. PQxj3 was isolated and assessed for its potential to enhance tobacco productivity under field conditions. The results demonstrated that Penicillium sp. PQxj3 treatment significantly promoted the tobacco growth and improved the crop yield. The height of tobacco in Penicillium sp. PQxj3 treatment group significantly increased by 50.19% and 24.05% compared with CK at exuberant and maturity period (P < 0.05). The average yield of tobacco significantly increased by 36.16% compared to CK (P < 0.05). Fungal microbiome analysis revealed that phylogenetically similar probiotic taxa were recruited by Penicillium sp. PQxj3 and reassembled tobacco rhizosphere fungal microbiome. The key chemical indicators of tobacco such as alkaloid, total sugar, and phosphorus were significantly enhanced in Penicillium sp. PQxj3 treatment. The recruited probiotic taxa (Penicillium brasilianum, Penicillium simplicissimum, Penicillium macrosclerotiorum and Penicillium senticosum) were significantly associated with alkaloid, total sugar etc. (P < 0.05), which were identified as the key drivers for improving the chemical components of tobacco. Transcriptome analysis indicated that Penicillium sp. PQxj3 promoted up-regulation of key functional genes involved in alkaloid, indoleacetic, and gibberellin biosynthesis pathways.

CONCLUSION

In summary, this study assessed the biopromotion mechanism of PGPF Penicillium sp. PQxj3 linking chemical traits, rhizosphere fungal microbiome, and transcriptome profiling. The findings provide a fundamental basis and a sustainable solution for developing fungal fertilizers to enhance agricultural sustainability.

摘要

背景

由于土壤退化,烟草生产面临持续挑战,导致产量持续下降。促进植物生长的真菌(PGPF)已被视为一种环境友好型农业策略。然而,许多商业PGPF产品由于环境兼容性不足而表现出不稳定性。

结果

在本研究中,分离出了青霉属菌株PQxj3,并评估了其在田间条件下提高烟草生产力的潜力。结果表明,青霉属菌株PQxj3处理显著促进了烟草生长并提高了作物产量。在旺盛期和成熟期,青霉属菌株PQxj3处理组的烟草高度与对照相比分别显著增加了50.19%和24.05%(P<0.05)。烟草平均产量比对照显著增加了36.16%(P<0.05)。真菌微生物组分析表明,青霉属菌株PQxj3招募了系统发育相似的益生菌类群,并重新组装了烟草根际真菌微生物组。青霉属菌株PQxj3处理显著提高了烟草的生物碱、总糖和磷等关键化学指标。招募的益生菌类群(巴西青霉、简单青霉、大硬皮青霉和刺孢青霉)与生物碱、总糖等显著相关(P<0.05),被确定为改善烟草化学成分的关键驱动因素。转录组分析表明,青霉属菌株PQxj3促进了参与生物碱、吲哚乙酸和赤霉素生物合成途径的关键功能基因的上调。

结论

总之,本研究评估了PGPF青霉属菌株PQxj3在连接化学性状、根际真菌微生物组和转录组图谱方面的生物促进机制。这些发现为开发真菌肥料以增强农业可持续性提供了基础依据和可持续解决方案。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4b2c/11531166/f0671129699a/40793_2024_629_Fig1_HTML.jpg

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