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中国东北黑土中真菌群落及共生网络模式对堆肥改良的响应

Response of Fungal Communities and Co-occurrence Network Patterns to Compost Amendment in Black Soil of Northeast China.

作者信息

Yang Wei, Jing Xuyuan, Guan Yupeng, Zhai Cheng, Wang Tao, Shi Dengyu, Sun Wenpeng, Gu Siyu

机构信息

College of Resources and Environment, Northeast Agricultural University, Harbin, China.

Institute of Crop Research, Heilongjiang Academy of Land Reclamation Sciences, Jiamusi, China.

出版信息

Front Microbiol. 2019 Jul 9;10:1562. doi: 10.3389/fmicb.2019.01562. eCollection 2019.

Abstract

In agroecosystems, fungi not only attract attention as crop pathogens, but also play crucial roles in nutrient cycling as decomposers and arbuscular mycorrhizal mutualists. Consequently soil fungi strongly influence agroecosystem function, and are conspicuously influenced by agricultural practices. We examined the effects of four compost rates (0, 11.25, 22.5, and 45 Mg ha) on soil fungal community compositions and network patterns in soybean at seedling, flowering, and mature stage in a field experiment in black soil of Northeast China. Miseq sequencing was used to characterize the soil fungal community. Our results revealed that soil fungal richness was unaffected by compost addition, while soil fungal community composition was significantly influenced by compost addition across the growing season. Among the combined "top 20" fungal OTUs, 15 OTUs positively responded to compost addition, while 10 negatively responded. The abundance of predicted pathotroph was greatly decreased by the 45 Mg ha compost addition. Network analysis indicated that the fungal networks in compost amended soils were more complex and harbored more positive links than the control. Fungal network harbored more positive links among saprotroph-saprotroph and saprotroph-symbiotroph in moderate level of compost amended soils than other networks. In conclusion, this study revealed that compost addition impacted positively both the soil fungal communities and network patterns within a single growing season. Thus, compost addition could be a good practice to enhance the soil fungal community and function and ultimately soil health and quality.

摘要

在农业生态系统中,真菌不仅作为作物病原体受到关注,还作为分解者和丛枝菌根共生体在养分循环中发挥关键作用。因此,土壤真菌强烈影响农业生态系统功能,并显著受到农业实践的影响。我们在中国东北黑土的田间试验中,研究了四种堆肥施用量(0、11.25、22.5和45 Mg ha)对大豆苗期、花期和成熟期土壤真菌群落组成及网络模式的影响。采用Miseq测序对土壤真菌群落进行表征。我们的结果表明,堆肥添加对土壤真菌丰富度没有影响,而在整个生长季节中,堆肥添加对土壤真菌群落组成有显著影响。在组合的“前20”真菌操作分类单元(OTU)中,15个OTU对堆肥添加呈正向响应,而10个呈负向响应。45 Mg ha的堆肥添加使预测的病原菌丰度大幅降低。网络分析表明,与对照相比,堆肥改良土壤中的真菌网络更复杂,且具有更多的正向连接。在中等堆肥改良水平的土壤中,腐生菌-腐生菌和腐生菌-共生菌之间的真菌网络比其他网络具有更多的正向连接。总之,本研究表明,在单一生长季节内,堆肥添加对土壤真菌群落和网络模式均有积极影响。因此,添加堆肥可能是增强土壤真菌群落和功能、最终改善土壤健康和质量的良好措施。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/23d3/6629936/88ec6b6e4a54/fmicb-10-01562-g001.jpg

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