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Article

Differences in the Structure and Function of the Gut Microbiota of the Earthworm (Amynthas aspergillum) Under Different Habitat Conditions

1
College of Animal Science and Technology, Guangxi University, Nanning 530004, China
2
State Key Laboratory of Non-Food Biomass Energy Technology, Institute of Biological Science and Technology, Guangxi Academy of Sciences, Nanning 530007, China
*
Author to whom correspondence should be addressed.
Life 2026, 16(10), 1648; https://doi.org/10.3390/life16101648
Submission received: 12 August 2026 / Revised: 10 September 2026 / Accepted: 15 September 2026 / Published: 30 September 2026
(This article belongs to the Special Issue Microorganisms as Animal Health Promoters)

Abstract

This study aims to explore the shaping mechanism of habitat heterogeneity on its gut microecology and to clarify the structural differences and functional succession patterns of gut microbiota of an earthworm Amynthas aspergillum under artificial breeding versus natural habitats. A total of 175 A. aspergillum specimens and their corresponding soil samples were collected from seven typical habitats in Guangxi: fertile farmland, barren farmland, plantation forest, primary forest, artificial grassland, wasteland slope, and a breeding farm. 16S rRNA high-throughput sequencing was employed to analyze the gut microbiota structure. PICRUSt2 was used to predict metabolic functions, and the correlation between soil physicochemical factors and community characteristics was analyzed. There were only 25 core shared OTUs found across the seven habitats, indicating a strong habitat specificity of the gut microbiota in A. aspergillum. The fertile farmland group exhibited the highest species richness (Chao1) and diversity (Shannon) among all groups (p < 0.05). Although rich in organic matter, the breeding farm group showed the highest Simpson dominance index. Actinomycetota, Pseudomonadota, Chloroflexota, and Bacillota were the dominant shared phyla in all groups. LEfSe analysis revealed that the wasteland slope habitat specifically enriched the stress-tolerant genus Mycobacterium, while the breeding farm was dominated by the anaerobic fermentation-capable genus Clostridium. Functional prediction indicated that the primary forest group had the most complex microbial metabolic network, while the breeding farm group exhibited a “functional simplification” trend focused on basic carbohydrate metabolism, which was significantly correlated with the soil C/N ratio. Soil physicochemical factors, particularly the intensity of anthropogenic disturbance and the composition of organic matter, are the key forces driving the assembly of A. aspergillum gut microbiota through environmental filtering. Artificial monoculture breeding leads to the functional degradation of the gut microecology.
Keywords: Amynthas aspergillum; gut microbiota; habitat heterogeneity; community assembly; functional prediction; ecological breeding Amynthas aspergillum; gut microbiota; habitat heterogeneity; community assembly; functional prediction; ecological breeding

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MDPI and ACS Style

Li, X.; Lin, B.; Peng, L.; Qin, Y.; Ban, R. Differences in the Structure and Function of the Gut Microbiota of the Earthworm (Amynthas aspergillum) Under Different Habitat Conditions. Life 2026, 16, 1648. https://doi.org/10.3390/life16101648

AMA Style

Li X, Lin B, Peng L, Qin Y, Ban R. Differences in the Structure and Function of the Gut Microbiota of the Earthworm (Amynthas aspergillum) Under Different Habitat Conditions. Life. 2026; 16(10):1648. https://doi.org/10.3390/life16101648

Chicago/Turabian Style

Li, Xuesong, Bo Lin, Lixin Peng, Yangmei Qin, and Rongdian Ban. 2026. "Differences in the Structure and Function of the Gut Microbiota of the Earthworm (Amynthas aspergillum) Under Different Habitat Conditions" Life 16, no. 10: 1648. https://doi.org/10.3390/life16101648

APA Style

Li, X., Lin, B., Peng, L., Qin, Y., & Ban, R. (2026). Differences in the Structure and Function of the Gut Microbiota of the Earthworm (Amynthas aspergillum) Under Different Habitat Conditions. Life, 16(10), 1648. https://doi.org/10.3390/life16101648

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