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Additional file 2 of Genome-wide analysis of UDP-glycosyltransferase gene family and identification of a flavonoid 7-O-UGT (AhUGT75A) enhancing abiotic stress in peanut (Arachis hypogaea L.)

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posted on 2024-08-14, 09:44 authored by Lei Ouyang, Yue Liu, Ruonan Yao, Dongli He, Liying Yan, Yuning Chen, Dongxin Huai, Zhihui Wang, Bolun Yu, Yanping Kang, Huifang Jiang, Yong Lei, Boshou Liao, Xin Wang
Supplementary Material 2: Table S1. Primers used in this study. Table S2. Idenfication and physical properties of Family-1 UDP-glycosyltransferases members in Arachis hypogaea. Table S3. Functionally characterized UGTs from other plant species. Table S4. The number of UGTs identified for each phylogenetic group in different plant species. *gymnosperm-divergent groups (G-DVs) *free-sporing plant divergent groups (FS-DVs) *Outgroup (OG). Table S5. The relative expansion and contraction ratio of UGT group in different plants. *gymnosperm-divergent groups (G-DVs) *free-sporing plant divergent groups (FS-DVs) *Outgroup (OG). Table S6. The Ka/Ks ratios for duplicated AhUGT genes in Arachis hypogaea. Table S7. Idenfication and physical properties of UGT members in two ancestral diploid peanuts. Table S8. Orthologous UGT gene pairs between Arachis hypogaea and Arachis duranensis. *The size of the colinearity region. Table S9. Orthologous UGT gene pairs between Arachis hypogaea and Arachis ipaensis. *The size of the colinearity region. Table S10. Orthologous UGT gene pairs between Arachis hypogaea and Glycine max. *The size of the colinearity region. Table S11. Orthologous UGT gene pairs between Arachis hypogaea and Arabidopsis thaliana. *The size of the colinearity region. Table S12. Orthologous UGT gene pairs between Arachis hypogaea and Gossypium hirsutum. *The size of the colinearity region. Table S13. Prediction of cis-acting elements in the promoter regions of AhUGT genes. Table S14. Summary of cis-acting elements in the promoter of AhUGT genes. Table S15. Transcript levels of AhUGTs in various tissues and different developmental stages. RNA-seq data were derived from peanutbase website database. The values represent Fragment Per Kilobase Million. Table S16. Transcriptional level of AhUGTs in response to cold or drought stress. The RNA-data were derived from Peanut Genome Resource. Plants grown under normal condition (CK) were used as control. Table S17. Transcriptional level of AhUGTs after cold stress at different treatment time point. RNA-seq data were derived from NCBI. Table S18. 29 common up-regulated AhUGTs in response to drought or cold stress from the two RNA-seq data. Table S19. Functionally characterized UGT73 subfamily members in plant species

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earmarked fund for China Agricultural Research System Agricultural Science and Technology Innovation Program of Chinese Academy of Agricultural Sciences National Natural Science Foundation of China

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