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May 2, 20260 citations

Characteristics of the rhizosphere microbial communities of different mulberry varieties in saline soil.

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MWMingrui WangHarbin University of Science and TechnologyXLXing LiuWenzhou UniversitySLShuangshuang LiuWenzhou University

Key Points

  • This research aims to understand the differences in rhizosphere microbial communities of salt-tolerant and salt-sensitive mulberry varieties in saline soils.
  • Used high-throughput sequencing to analyze rhizosphere microbiota
  • Compared microbial communities of GX3 (salt-tolerant) and A18 (salt-sensitive) varieties
  • Included bare soil as a control to assess plant-driven effects
  • Identified 1236 bacterial OTUs and 396 fungal OTUs across samples
  • GX3 enriched beneficial genera like Nocardioides, enhancing nutrient cycling
  • A18 showed inhibited beneficial fungi and nitrogen cycle inefficiencies under salinity

Abstract

Mulberry is a common crop with different varieties of resistance. Understanding the differences in rhizosphere soil microbial community characteristics among different salt-tolerant mulberry varieties in saline soils is important for the rational development and utilization of coastal saline soils. Using high-throughput sequencing, we compared the rhizosphere microbiota of salt-tolerant variety Guoxuan3 (GX3) and the salt-sensitive variety A18 in coastal saline soils, with bare soil as a control. Bare, unplanted soil (CK) collected from the same field was used as a baseline control to distinguish plant-driven effects from background soil microbial structure. The results revealed that 1236 bacterial OTUs and 396 fungal OTUs were identified from the mulberry rhizosphere samples. The dominant bacteria in the mulberry rhizosphere were Proteobacteria and Actinobacteria, while the dominant fungi were Ascomycota and Basidiomycota. Significant differences in microbial composition were observed between varieties. The salt-tolerant GX3 specifically enriched Rozellomycota and key genera, including Nocardioides, Aspergillus, and Fusicolla in its rhizosphere. Mulberry varieties shape distinct rhizosphere microbiomes. Salt-tolerant GX3 recruits beneficial bacteria like Nocardioides, Georgenia, Azoarcus through organic acids, enhancing nutrient cycling and stress resistance. Salt-sensitive A18 inhibits beneficial fungi such as Calcarisporiella, accumulates phenolics, and enriches nitrifying Nitrospira, indicating nitrogen cycle inefficiency under salinity. Plant salt tolerance links to rhizosphere microbiome shaping, highlighting the need to consider both bacterial and fungal communities for coastal saline soil phytoremediation, aiding marginal ecosystem utilization.

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Cite This Study

Wang et al. (2026) studied this question.

synapsesocial.com/papers/69f5945c71405d493afff286https://doi.org/10.1038/s41598-026-48685-y
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