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Bioenergy cropping reduces the spatiotemporal scaling of soil bacterial biodiversity
Article de revue scientifique   Open Access   Avec comité de lecture

Bioenergy cropping reduces the spatiotemporal scaling of soil bacterial biodiversity

Zhencheng Ye, Jialiang Kuang, Colin Bates, Arthur Escalas, Daliang Ning, Liyou Wu, Suo Liu, Sihang Deng, Jiesi Lei, Xiangwen Chen, …
Advanced Science, Vol.13(29)
2026
PMCID: PMC13205762
PMID: 41841597

Résumé

species‐time‐area relationship bioenergy cropping spatial scaling bacterial diversity species-time-area relationship temporal scaling Soil Microbiology Biodiversity Bacteria Soil RNA, Ribosomal, 16S Phylogeny Agriculture Oklahoma Biofuels
Widespread bioenergy cropping can transform landscapes, strongly affecting biodiversity. However, the impact of bioenergy cropping on the spatiotemporal scaling of soil biodiversity remains virtually unknown, despite its profound implications for the functioning of the ecological community. Here, we investigated how bioenergy cropping influenced the spatiotemporal scaling of soil bacterial biodiversity in marginal soils (sandy loam and clay loam soils) in Oklahoma, USA. We detected strong, significant species-time-area relationships (STARs) and phylogenetic-time-area relationships (PTARs) in bacterial communities and their lineages, suggesting that STARs and PTARs exist in microbial ecology within the studied system. Also, spatiotemporal scaling rates (the slopes of STAR and PTAR models) varied substantially among bacterial lineages and were positively correlated with their 16S rRNA gene copy numbers, a genomic trait indicative of microbial growth potentials. Strikingly, bioenergy cropping significantly reduced spatiotemporal scaling rates by 6.8%-14.1%, with a more pronounced reduction observed in sandy loam soils, where those rates were significantly lower than in clay loam soils. The heterogeneity of soil phosphorus and carbon resulted in variations in bacterial spatiotemporal scaling rates. Collectively, our findings suggest that bioenergy cropping may alleviate rapid shifts in soil biodiversity across space and time, thereby stabilizing soil biodiversity and supporting its role as part of sustainable land management and climate mitigation strategies.

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