Fungal β-glucosidase gene and corresponding enzyme activity are positively related to soil organic carbon in unmanaged woody plantations
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Publisher
Springer Science and Business Media LLC
Link
https://link.springer.com/content/pdf/10.1007/s42832-024-0238-2.pdf
Reference54 articles.
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2. Bailey, V.L., Smith, J.L., Bolton, H. Jr, 2002. Fungal-to-bacterial ratios in soils investigated for enhanced C sequestration. Soil Biology & Biochemistry 34, 997–1007.
3. Baldrian, P., 2014. Distribution of extracellular enzymes in soils: Spatial heterogeneity and determining factors at various scales. Soil Science Society of America Journal 78, 11–18.
4. Barbi, F., Bragalini, C., Vallon, L., Prudent, E., Dubost, A., Fraissinet-Tachet, L., Marmeisse, R., Luis, P., 2014. PCR primers to study the diversity of expressed fungal genes encoding lignocellulolytic enzymes in soils using high-throughput sequencing. PLoS One 9, e116264.
5. Barbi, F., Prudent, E., Vallon, L., Buée, M., Dubost, A., Legout, A., Marmeisse, R., Fraissinet-Tachet, L., Luis, P., 2016. Tree species select diverse soil fungal communities expressing different sets of lignocellulolytic enzyme-encoding genes. Soil Biology & Biochemistry 100, 149–159.
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