# The Community Structure of Aerobic Anoxygenic Photosynthetic Bacteria in Biocrusts on Tropical Coral Islands and Their Application in Ecological Restoration, South China Sea

**Authors:** Jing Wen, Zhimao Mai, Jie Li, Lin Wang, Si Zhang

PMC · DOI: 10.3390/microorganisms13061265 · Microorganisms · 2025-05-29

## TL;DR

This study explores the role of aerobic anoxygenic photosynthetic bacteria in biocrusts on tropical coral islands and their potential for ecological restoration.

## Contribution

The study reveals the community structure and functional role of AAPB in biocrusts, offering insights for coral island restoration.

## Key findings

- AAPB abundance and richness increase with biocrust formation, while diversity decreases.
- Pseudomonadota dominates AAPB communities, with distinct family and genus compositions in biocrusts compared to bare soil.
- Isolated AAPB strains, especially Skermanella and Erythrobacter, show strong exopolysaccharide and sand-binding abilities.

## Abstract

Biological soil crusts (referred to as biocrusts) constitute prominent components within the ecosystem of tropical coral islands in the South China Sea, covering approximately 6.25% of the island’s terrestrial surface. Biocrusts are the key to the restoration of the island ecosystem. It is widely acknowledged that phototrophic microorganisms profoundly contribute to biocrust formation and development. They provide fixed carbon and nitrogen and produce exopolysaccharides for the BSC ecosystems. Although aerobic anoxygenic phototrophic bacteria (AAPB) are an important functional group of phototrophic microorganisms, the community characteristics of AAPB in coral island biocrusts and their role in the formation of biocrusts have rarely been reported. In this study, we employed amplifications of the pufM gene to characterize the AAPB communities of biocrusts on a tropical coral island. The outcomes revealed a discernible augmentation in both the abundance and richness of AAPB concurrent with the formation of biocrusts, concomitantly with a decrement in diversity. Within the AAPB communities, the Pseudomonadota (Proteobacteria) phylum emerges as the prevailing dominion, indicating marked differentiations in terms of family and genus compositions between the biocrust and bare soil. Canonical correlation analysis has unveiled a robust and meaningful correlation between the AAPB composition and the attributes of the soil, including total nitrogen, total organic carbon, total phosphorus, pH, and calcium content. Furthermore, co-occurrence network patterns shift with biocrust formation, enhancing stability. Meanwhile, keystone taxa analysis revealed specific OTUs associated with each soil type, with genus Brevundimonas as the main group. Furthermore, pure-culture AAPB strains isolated from biocrusts exhibited a panorama of diversity, predominantly belonging to Pseudomonadota. Particularly, the Skermanella and Erythrobacter genera demonstrated strong exopolysaccharide secretion and sand-binding capabilities. This study sheds light on the significant functional role of AAPB in tropical coral island biocrusts, expanding our understanding of their contribution to ecosystem services, and providing valuable insights for ecological restoration efforts on coral islands.

## Linked entities

- **Genes:** pufM (photosynthetic reaction center subunit M) [NCBI Gene 6138854]
- **Chemicals:** calcium (PubChem CID 5460341)
- **Species:** Pseudomonadota (taxon 1224), Brevundimonas (taxon 41275), Skermanella (taxon 204447), Erythrobacter (taxon 1041)

## Full-text entities

- **Chemicals:** calcium (MESH:D002118), nitrogen (MESH:D009584), phosphorus (MESH:D010758), exopolysaccharide (-), carbon (MESH:D002244)
- **Species:** Erythrobacter (genus) [taxon 1041], phototrophic bacterium (species) [taxon 52958], Skermanella (genus) [taxon 204447]

## Full text

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## Figures

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## References

72 references — full list in the complete paper: https://tomesphere.com/paper/PMC12195347/full.md

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Source: https://tomesphere.com/paper/PMC12195347