Ecological niche imprints the structure and network of microbial communities in Lonicera japonica Thunb

粳稻 利基 生态位 生态学 生物 地理 植物 栖息地
作者
Zhaoyu Zhang,Yingda Dong,Xiaohong Chen,Guozhuang Zhang,Conglian Liang,Yuxin Zhou,Ziying Huang,Liping Shi,Shilin Chen,Linlin Dong,Guangfei Wei
出处
期刊:Research Square - Research Square [Research Square (United States)]
标识
DOI:10.21203/rs.3.rs-5358616/v1
摘要

Abstract Background and aims Plant-associated microbiomes play pivotal roles in promoting plant health, productivity, and resistance to diseases. However, the differential adaptability of microorganisms to different microenvironments in Lonicera japonica remains unclear, which hinders their application in agriculture. Methods Here, the structure and network of bacterial and fungal communities in six compartment niches (bulk soil, rhizosphere soil, root, stem, leaf, and flower) of L. japonica were explored using three host ecotypes. Results Results demonstrated that the structure and assembly of microbiomes along the soil–plant continuum were primarily governed by compartment niches rather than host ecotypes. Bacterial diversity and network complexity incrementally decreased from the soil to the root and flower; however, fungal diversity and network complexity gradually decreased from the soil to the stem but increased from the stem to the leaf and flower. The bacterial keystone taxa Proteobacteria, Pseudomonas, Pantoea, Kluyvera, and Enterobacter were dominated in endosphere samples. Meanwhile, the core fungal keystone taxa Cryptococcus, Alternaria, and Erysiphe were dominated by endosphere samples. However, Mortierella and Fusarium were dominated by rhizosphere soil. Conclusion Microbiota was mainly derived from bulk soil and then filtered in each compartment niches. This finding provides empirical evidence for host selection and soil–plant–microbiome interaction along the soil–plant continuum.
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