数字农科院2.0

Network Analysis Reveals The Strengthening Of Microbial Interaction In Biological Soil Crust Development In The Mu Us Sandy Land, Northwestern China

文献类型: 外文期刊

作者: Zhou, H; Gao, Y; Jia, XH; Wang, MM; Ding, JJ; Cheng, L; Bao, F; Wu, B

作者机构:

关键词: Biological soil crusts; Microbial interaction; Bacterial and fungal communities; Network analysis; Random matrix theory (RMT); Semi-arid regions

期刊名称: SOIL BIOLOGY & BIOCHEMISTRY

ISSN: 0038-0717

年卷期: 2020 年 144 卷

页码:

收录情况: JCR(2021版) ; EI(2021版)

摘要: Although studies examining changes in the structure and diversity of microbial communities in biological soil crusts (BSCs) have increased, microbial interactions in BSCs are not currently fully understood. In this study, we applied a random matrix theory (RMT)-based network approach to construct bacterial, fungal and bacteria-fungal interaction networks for the four developmental stages of BSCs (bare sand, physical crusts, algae crusts and moss crusts) in the Mu Us Sandy Land, northwestern China. Our results showed that Firmicutes, Proteobacteria, Cyanobacteria and Actinobacteria were the keystone phylum in bacterial networks in the four developmental stages, respectively. Ascomycota was the keystone phylum in the fungal networks in all stages, and Basidiomycota was a further keystone phylum in the algae and moss crust networks. With the development of BSCs, complexity in bacterial and fungal networks increased, becoming more clustered and connected, indicating a strengthened pattern in microbial interactions with BSC development. Positive links dominated in all networks, showing that microbial synergism was important in the development of BSCs. Interestingly, with the development of BSCs, the proportion of negative links in bacterial networks increased and they decreased in fungal networks, suggesting more inter-community competition was present in the bacterial communities and less inter-community competition was present in the fungal communities. Environmental factors, especially total carbon and total organic carbon, constrained most bacterial and fungal communities, respectively. Our findings provided a new insight into understanding BSC developmental mechanisms and ecological functions in a desert ecosystem composed of a sandy land landscape in arid and semi-arid regions.

分类号:

  • 相关文献

[1]Manure Application Increases Soil Bacterial and Fungal Network Complexity and Alters Keystone Taxa. Wang, Peixin,Wang, Xiquan,Nie, Jiangwen,Wang, Yue,Zang, Huadong,Peixoto, Leanne,Yang, Yadong,Zeng, Zhaohai. 2021

[2]Differentiate responses of soil nutrient levels and enzymatic activities to freeze-thawing cycles in different layers of moss-dominated biocrusts in a temperate desert. Qing Zhang,Jiwen Li,Shujun Zhang,Yonggang Li,Nan Wu,Xiaobing Zhou,Benfeng Yin,Yuanming Zhang. 2023

[3]Soil organic carbon changed by grazing determinates the abundance, diversity and composition of aerobic methanotroph communities in cyanobacteria-dominated biological soil crusts in desert steppes. Kai Tang,Chao Zheng,Fan Yang,Zhen Wang,Fuying Feng. 2023

[4]Snow depth has greater influence on moss biocrusts' soil multifunctionality than the number of freeze-thaw cycles. Benfeng Yin,Jiwen Li,Qing Zhang,Shujun Zhang,Ziyi Liu,Xiaobing Zhou,Nan Wu,Yuanming Zhang. 2024

[5]Wgcna Analysis Of Salt-Responsive Core T.ranscriptome Identifies Novel Hub G enes In Rice. Xie, Hongjun,Hu, Peisong,Wei, Xiangjin,Zhu, Mingdong,Zhu, Mingdong,Yu, Yaying,Hui, Suozhen,Dossa, Komivi,Zeng, Xiaoshan,Tang, Guohua,Yu, Yinghong,Wang, Jianlong. 2019

[6]Long-Term Phosphorus Deficiency Decreased Bacterial-Fungal Network Complexity And Efficiency Across Three Soil Types In China As Revealed By Network Analysis. Ma, L, Zhang, JB, Li, ZQ, Xin, XL, Guo, ZB, Wang, DZ, Li, DC, Zhao, BZ. 2020

[7]Effects of long-term bare fallow during the winter-wheat growth season on the soil chemical properties, fungal community composition, and the occurrence of maize fungal diseases in North China. Wang Y.,Ji L.,Li Q.,Wu Y.,Li C.,Kong L.,Wang X.. 2021

[8]Indigenous functional microbial communities for the preferential degradation of chloroacetamide herbicide S-enantiomers in soil. Han L., Liu T., Fang K., Li X., You X., Li Y., Wang X., Wang J.. 2022

[9]Changes In Microbial Community Structure During Pig Manure Composting And Its Relationship To The Fate Of Antibiotics And Antibiotic Resistance Genes. Liu, YW, Cheng, DM, Xue, JM, Weaver, L, Wakelin, SA, Feng, Y, Li, ZJ. 2020

[10]Composition, Predicted Functions, And Co-Occurrence Networks Of Fungal And Bacterial Communities_ Links To Soil Organic Carbon Under Long-Term Fertilization In A Rice-Wheat Cropping System. Chen, J, Guo, QK, Liu, DH, Hu, C, Sun, JW, Wang, XB, Liang, GQ, Zhou, W. 2020

作者其他论文 更多>>