Items where Author is "Sun, Jiarui"Group by: Item Type | Date Number of items: 6. 2026Clarke, A.-B. C., Ansale, C. R., Banayag, L., Bayang, S., Bothma, S., Chittarath, K., Juruena, M., Karamura, G., Lapis-Gaza, H. R., Limbaga, C., Lyons, R., Sun, J., Viljoen, A., Mostert, D., Saidi, N. B., Suhaimi, N. S. M., Pattison, A. B. and Dennis, P. G. (2026) Core rhizosphere bacteria associated with banana (Musa spp.) across multiple continents. Applied Soil Ecology, 223 . p. 107107. https://doi.org/10.1016/j.apsoil.2026.107107 Clarke, A.-B. C., Ansale, C. R., Banayag, L., Bayang, S., Bothma, S., Chittarath, K., Juruena, M., Karamura, G., Lapis-Gaza, H. R., Limbaga, C., Lyons, R., Sun, J., Viljoen, A., Mostert, D., Saidi, N. B., Suhaimi, N. S. M., Pattison, A. B. and Dennis, P. G. (2026) Towards a global core mycobiome of banana (Musa spp.). Applied Soil Ecology, 223 , 107040. https://doi.org/10.1016/j.apsoil.2026.107040 Cofre, M. V., Sun, J., Williams, W., Lyons, R., O’Reagain, P., Schmidt, S. and Dennis, P. G. (2026) Impacts of grazing management on biocrust microbiomes and their potential to input and cycle nutrients. Biology and Fertility of Soils, 62 (1). pp. 139-153. https://doi.org/10.1007/s00374-025-01963-9 2025Lyons, R., Clarke, A.-B. C., Lapis-Gaza, H. R., Sun, J., Birt, H. W. G., Pattison, A. B. and Dennis, P. G. (2025) Landuse affects the likelihood of soil colonization by a key plant pathogen. Agriculture, Ecosystems & Environment, 393 . p. 109814. https://doi.org/10.1016/j.agee.2025.109814 2024Clarke, A.-B. C., Lapis-Gaza, H. R., Irvine-Brown, S., Lyons, R., Sun, J., Pattison, A. B. and Dennis, P. G. (2024) Moderate Phosphorus Addition to Field-Grown Bananas Enhanced Soil Microbial Enzyme Activities but Had Negligible Impacts on Bacterial, Fungal, and Nematode Diversity. Applied Microbiology, 4 (4). pp. 1582-1599. https://doi.org/10.3390/applmicrobiol4040108 Birt, H. W. G., Pattison, A. B., Carrillo, Y., Lieske, S. N., Lyons, R., Lapis-Gaza, H. R., Sun, J. and Dennis, P. G. (2024) Relative to rainforests and grasslands, banana and sugarcane soils have half the microbial biomass and highly distinct bacterial and fungal communities. Applied Soil Ecology, 204 . p. 105750. https://doi.org/10.1016/j.apsoil.2024.105750 |
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