Search results
Results: 108
Number of items: 108
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Kaniganti, S., Palakolanu, S. R., Thiombiano, B., Damarasingh, J., Bommineni, P. R., Che, P., Sharma, K. K., Jones, T., Bouwmeester, H., & Bhatnagar-Mathur, P. (2025). Developing Striga resistance in sorghum by modulating host cues through CRISPR/Cas9 gene editing. Plant Cell Reports, 44(4), Article 90. https://doi.org/10.1007/s00299-025-03474-1 -
Shimels, M. Z., Rendine, S., Ruyter-Spira, C., Rich, P. J., Ejeta, G., & Bouwmeester, H. J. (2025). The role of strigolactone structural diversity in the host specificity and control of Striga, a major constraint to sub-Saharan agriculture. Plants People Planet, 7(2), 318-330. https://doi.org/10.1002/ppp3.10549 -
Zhang, J., Wang, B., Xu, H., Liu, W., Yu, J., Wang, Q., Yu, H., Wei, J.-W., Dai, R., Zhou, J., He, Y., Zou, D., Yang, J., Ban, X., Hu, Q., Meng, X., Liu, Y.-X., Wang, B., Hu, B., ... Bai, Y. (2025). Root microbiota regulates tiller number in rice. Cell, 188(12), 3152-3166.e16. https://doi.org/10.1016/j.cell.2025.03.033 -
Arcieri, F., Giudice, G., Guerriero, M., Delvento, C., Schilder, M., Giancaspro, A., Curci, P. L., Rameau, C., Ricciardi, L., Lotti, C., Bouwmeester, H., Haider, I., & Pavan, S. (2025). Additional file 2 of Field resistance to Orobanche crenata in pea (Pisum sativum L.): beyond strigolactones [Data set]. Figshare. https://doi.org/10.6084/m9.figshare.30314410
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Zhong, Y., Wang, Y., Pan, X., Wang, R., Li, D., Ren, W., Hao, Z., Shi, X., Guo, J., Ramarojaona, E., Schilder, M., Bouwmeester, H., Chen, L., Yu, P., Yan, J., Chu, J., Xu, Y., Liu, W., Dong, Z., ... Li, X. (2025). ZmCCD8 regulates sugar and amino acid accumulation in maize kernels via strigolactone signalling. Plant Biotechnology Journal, 23(2), 492-508. https://doi.org/10.1111/pbi.14513 -
Taylor, T., Daksa, J., Shimels, M. Z., Etalo, D. W., Thiombiano, B., Walmsey, A., Chen, A. J., Bouwmeester, H. J., Raaijmakers, J. M., Brady, S. M., & Kawa, D. (2024). Evaluating Mechanisms of Soil Microbiome Suppression of Striga Infection in Sorghum. BIO-PROTOCOL, 14(17), Article e5058. https://doi.org/10.21769/bioprotoc.5058 -
Klein, M., Bisot, C., Oyarte Gálvez, L., Kokkoris, V., Shimizu, T. S., Dong, L., Weedon, J. T., Bouwmeester, H., & Kiers, E. T. (2024). The potential of strigolactones to shift competitive dynamics among two Rhizophagus irregularis strains. Frontiers in Microbiology, 15, Article 1470469. https://doi.org/10.3389/fmicb.2024.1470469 -
Kawa, D., Thiombiano, B., Shimels, M. Z., Taylor, T., Walmsley, A., Vahldick, H. E., Rybka, D., Leite, M. F. A., Musa, Z., Bucksch, A., Dini-Andreote, F., Schilder, M., Chen, A. J., Daksa, J., Etalo, D. W., Tessema, T., Kuramae, E. E., Raaijmakers, J. M., Bouwmeester, H., & Brady, S. M. (2024). The soil microbiome modulates the sorghum root metabolome and cellular traits with a concomitant reduction of Striga infection. Cell Reports, 43(4), Article 113971. https://doi.org/10.1016/j.celrep.2024.113971 -
Barilo, A., Engelen, A., Wilken, S., Bouwmeester, H., & Muyzer, G. (2024). Shifts in sulphur-cycling bacteria in the rhizobiome support the adaptation of Caulerpa prolifera to elevated sulphide levels. Frontiers in Marine Science, 11, Article 1445441. https://doi.org/10.3389/fmars.2024.1445441
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