Gut Microbiomes of Two Bamboo Locusts Reveal Divergent Metabolic Potentials

ABSTRACT The yellow‐spined bamboo locust ( Ceracris kiangsu ) and the green‐spined bamboo locust ( Ceracris nigricornis ) are two common bamboo‐feeding forestry pests in China. C. kiangsu has stronger migratory capacity and causes greater damage, yet comparative studies of their gut microbiota are lacking. Here, we profiled the gut microbial communities of female C. kiangsu from six geographic populations using 16S rRNA gene amplicon sequencing (Illumina MiSeq) and compared these data with publicly available gut microbiome datasets of female C. nigricornis from NCBI. At the phylum level, the gut microbiota of both species was dominated by Firmicutes and Proteobacteria. At the genus level, dominant taxa included Klebsiella and Achromobacter . Despite these similarities, the two species differed significantly in microbial diversity. Alpha‐diversity indices showed highly significant differences in richness and diversity ( p < 0.01), and beta‐diversity analyses (PCoA) revealed clear separation of community structure between species (PERMANOVA, p < 0.001). Functional prediction using PICRUSt2 indicated that, at KEGG Level 2, pathways related to carbohydrate and lipid metabolism were significantly enriched in C. kiangsu compared with C. nigricornis . At KEGG Level 3, C. kiangsu also showed higher predicted abundances of starch and sucrose metabolism, glycolysis/gluconeogenesis, the pentose phosphate pathway, and pyruvate metabolism. Collectively, these results reveal distinct gut microbial communities and predicted functional profiles between the two species. The enrichment of predicted carbohydrate‐ and lipid‐related pathways in C. kiangsu generates a testable hypothesis that its gut microbiota may be associated with host energy metabolism, but direct links to flight performance or ecological fitness require further experimental validation.

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Publication Details

Journal
Ecology and Evolution
Published
2026-08-28
DOI
https://doi.org/10.1002/ece3.74143
Primary Topic
Insect symbiosis and bacterial influences
Type
article
Field-Weighted Citation Impact
0.00

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article

Gut Microbiomes of Two Bamboo Locusts Reveal Divergent Metabolic Potentials

Hong‐Yu Liao, Ye-Song Ren, Dao‐Hong Zhu, Yang Zeng et al.
Ecology and Evolution
Insect symbiosis and bacterial influences
article

Gut Microbiomes of Two Bamboo Locusts Reveal Divergent Metabolic Potentials

Hong‐Yu Liao, Ye-Song Ren, Dao‐Hong Zhu, Yang Zeng, Xi Cheng, Hai‐Tao Huang, Meng‐Zhi Jin
article en

Abstract

ABSTRACT The yellow‐spined bamboo locust ( Ceracris kiangsu ) and the green‐spined bamboo locust ( Ceracris nigricornis ) are two common bamboo‐feeding forestry pests in China. C. kiangsu has stronger migratory capacity and causes greater damage, yet comparative studies of their gut microbiota are lacking. Here, we profiled the gut microbial communities of female C. kiangsu from six geographic populations using 16S rRNA gene amplicon sequencing (Illumina MiSeq) and compared these data with publicly available gut microbiome datasets of female C. nigricornis from NCBI. At the phylum level, the gut microbiota of both species was dominated by Firmicutes and Proteobacteria. At the genus level, dominant taxa included Klebsiella and Achromobacter . Despite these similarities, the two species differed significantly in microbial diversity. Alpha‐diversity indices showed highly significant differences in richness and diversity ( p < 0.01), and beta‐diversity analyses (PCoA) revealed clear separation of community structure between species (PERMANOVA, p < 0.001). Functional prediction using PICRUSt2 indicated that, at KEGG Level 2, pathways related to carbohydrate and lipid metabolism were significantly enriched in C. kiangsu compared with C. nigricornis . At KEGG Level 3, C. kiangsu also showed higher predicted abundances of starch and sucrose metabolism, glycolysis/gluconeogenesis, the pentose phosphate pathway, and pyruvate metabolism. Collectively, these results reveal distinct gut microbial communities and predicted functional profiles between the two species. The enrichment of predicted carbohydrate‐ and lipid‐related pathways in C. kiangsu generates a testable hypothesis that its gut microbiota may be associated with host energy metabolism, but direct links to flight performance or ecological fitness require further experimental validation.

Ecology and EvolutionVol. 16(9)
Central South University of Forestry and Technology (CN), Central South University (CN), Hunan University of Humanities, Science and Technology (CN), Loudi Central Hospital (CN)
Central South University, Central South University of Forestry and Technology, Graduate Research and Innovation Projects of Jiangsu Province
Openalex Percentile: Top 10%
Insect symbiosis and bacterial influences
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