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May 29, 2026Insects0 citationsOpen Access

Comparative Analysis of Gut Microbiota in Eri Silkworm (Samia ricini) Larvae Fed on Different Food Plants

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YGYu GuoXLXr LiuYWYalei Wang

Key Points

  • This research aims to explore how different host plant diets influence gut microbiota and growth in Eri silkworm larvae.
  • Insects were fed leaves from Ricinus communis, Ailanthus altissima, and Manihot esculenta.
  • Growth performance and digestive enzyme activities were measured across dietary groups.
  • Bacterial community structures were analyzed using β-diversity and dominant genera were identified.
  • The Ricinus group showed the best growth performance compared to others.
  • Midgut lipase activity was significantly higher in the Ricinus group than in the Ailanthus group.
  • Increased bacterial richness was noted in the Ricinus group while Ailanthus group displayed higher bacterial diversity.

Abstract

Diet plays a critical role in shaping the composition of gut microbiota in insects. Samia ricini, an economically important Lepidoptera insect, is a polyphagous herbivore that offers a useful model for studying dietary effects on the animal gut microbiome. Here, we fed S. ricini larvae with different food plants, Ricinus communis, Ailanthus altissima, and Manihot esculenta leaves to investigate how host plant species influence growth performance, digestive enzyme activities, and the gut microbial community. Our results showed that the Ricinus group exhibited better growth performance. Regarding digestive enzymes, the midgut lipase activity was significantly higher in the Ricinus group than in the Ailanthus group, while no significant differences were observed in α-amylase, cellulase, or trypsin activities among the three groups. Compared to the Manihot group, the Ricinus group showed increased bacterial richness, while the Ailanthus group showed increased bacterial diversity. β-diversity analysis further revealed distinct microbial community structures among all three dietary groups. Specifically, Acinetobacter, Mammaliicoccus, Roseateles, Methylobacterium, Agrobacterium, Faecalibacterium, and Segatella were the dominant bacterial genera. Functional prediction revealed that gut microbes enriched in the Ricinus group were associated with terpenoid/polyketide metabolism, xenobiotics biodegradation, and glycan biosynthesis, whereas those involved in carbohydrate metabolism and biosynthesis of other secondary metabolites were higher in the Manihot group. Spearman correlation analysis indicated that Methylobacterium, Methylorubrum, and Agrobacterium were significantly positively correlated with larval weight, while Staphylococcus and CyanothecePCC-7424 exhibited negative correlations. Collectively, these findings suggest a potential association between different plant-derived diets, gut microbiota composition, and host growth performance, highlighting the pivotal role of diet in shaping insect gut microbial communities.

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Cite This Study

Guo et al. (2026) studied this question.

synapsesocial.com/papers/6a192e95fab5b468c4417acahttps://doi.org/10.3390/insects17060553
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

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