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丛枝菌根真菌和生物炭联合应用对 L. 根际真菌群落的影响

Combined Application Effects of Arbuscular Mycorrhizal Fungi and Biochar on the Rhizosphere Fungal Community of L.

机构信息

Schools of Life Sciences, Anhui Agricultural University, Hefei 230036, P.R. China.

National Engineering Laboratory of Crop Stress Resistance Breeding, Anhui Agricultural University, Hefei 230036, P.R. China.

出版信息

J Microbiol Biotechnol. 2023 Aug 28;33(8):1013-1022. doi: 10.4014/jmb.2303.03026. Epub 2023 Jun 26.

Abstract

Arbuscular mycorrhizal fungi (AMF) are widespread soil endophytic fungi, forming mutualistic relationships with the vast majority of land plants. Biochar (BC) has been reported to improve soil fertility and promote plant growth. However, limited studies are available concerning the combined effects of AMF and BC on soil community structure and plant growth. In this work, a pot experiment was designed to investigate the effects of AMF and BC on the rhizosphere microbial community of L. Using Illumina high-throughput sequencing, we showed that inoculation of AMF and BC had a significant impact on soil microbial community composition, diversity, and versatility. Increases were observed in both plant growth (the plant height by 8.6%, shoot fresh weight by 12.1%) and root morphological traits (average diameter by 20.5%). The phylogenetic tree also showed differences in the fungal community composition in . In addition, Linear discriminant analysis (LDA) effect size (LEfSe) analysis revealed that 16 biomarkers were detected in the control (CK) and AMF treatment, while only 3 were detected in the AMF + BC treatment. Molecular ecological network analysis showed that the AMF + BC treatment group had a more complex network of fungal communities, as evidenced by higher average connectivity. The functional composition spectrum showed significant differences in the functional distribution of soil microbial communities among different fungal genera. The structural equation model (SEM) confirmed that AMF could improve the microbial multifunctionality by regulating the rhizosphere fungal diversity and soil properties. Our findings provide new information on the effects of AMF and biochar on plants and soil microbial communities.

摘要

丛枝菌根真菌(AMF)是广泛分布的土壤内生真菌,与绝大多数陆生植物形成共生关系。生物炭(BC)已被报道可改善土壤肥力并促进植物生长。然而,关于 AMF 和 BC 对土壤群落结构和植物生长的综合影响的研究有限。在这项工作中,设计了一个盆栽实验来研究 AMF 和 BC 对 L 的根际微生物群落的影响。使用 Illumina 高通量测序,我们表明,AMF 和 BC 的接种对土壤微生物群落组成、多样性和多功能性有显著影响。观察到植物生长(植物高度增加 8.6%,地上鲜重增加 12.1%)和根系形态特征(平均直径增加 20.5%)的增加。系统发育树也显示了 在真菌群落组成上的差异。此外,线性判别分析(LDA)效应大小(LEfSe)分析显示,在对照(CK)和 AMF 处理中检测到 16 个生物标志物,而在 AMF+BC 处理中仅检测到 3 个生物标志物。分子生态网络分析表明,AMF+BC 处理组的真菌群落网络更复杂,平均连接性更高。功能组成谱显示,不同真菌属之间土壤微生物群落的功能分布存在显著差异。结构方程模型(SEM)证实,AMF 通过调节根际真菌多样性和土壤性质来提高微生物多功能性。我们的研究结果为 AMF 和生物炭对植物和土壤微生物群落的影响提供了新信息。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d113/10468682/e5733e9e1d05/jmb-33-8-1013-f1.jpg

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