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Plant Physiology|October 12, 2022
ZAXINONE SYNTHASE 2 regulates growth and arbuscular mycorrhizal symbiosis in riceAbdugaffor Ablazov, Cristina Votta, Valentina Fiorilli, et al.
Scientific Reports|December 29, 2024
Effect of exogenous treatment with zaxinone and its mimics on rice root microbiota across different growth stagesTeresa Mazzarella, Matteo Chialva, Leonardo Perez de Souza, et al.
Molecular Plant|August 25, 2020
Efficient Mimics for Elucidating Zaxinone Biology and Promoting Agricultural ApplicationsJian You Wang, Muhammad Jamil, Pei-Yu Lin, et al.
Communications Biology|October 26, 2021
Multi-omics approaches explain the growth-promoting effect of the apocarotenoid growth regulator zaxinone in riceJian You Wang, Saleh Alseekh, Tingting Xiao, et al.
Nature Communications|February 20, 2019
The apocarotenoid metabolite zaxinone regulates growth and strigolactone biosynthesis in riceJian You Wang, Imran Haider, Muhammad Jamil, et al.
Science Advances|August 28, 2024
OsCYP706C2 diverts rice strigolactone biosynthesis to a noncanonical pathway branchChangsheng Li, Imran Haider, Jian You Wang, et al.
Science Advances|November 2, 2022
Canonical strigolactones are not the major determinant of tillering but important rhizospheric signals in riceShinsaku Ito, Justine Braguy, Jian You Wang, et al.
Nature Communications|August 12, 2024
Chromosome-scale pearl millet genomes reveal CLAMT1b as key determinant of strigolactone pattern and Striga susceptibilityHendrik N J Kuijer, Jian You Wang, Salim Bougouffa, et al.
Plant, Cell & Environment|June 26, 2024
Zaxinone Synthase overexpression modulates rice physiology and metabolism, enhancing nutrient uptake, growth and productivityAbdugaffor Ablazov, Muhammad Jamil, Imran Haider, et al.
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