Additional file 2 of Nano-selenium enhances melon resistance to Podosphaera xanthii by enhancing the antioxidant capacity and promoting alterations in the polyamine, phenylpropanoid and hormone signaling pathways
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https://figshare.com/articles/dataset/Additional_file_2_of_Nano-selenium_enhances_melon_resistance_to_Podosphaera_xanthii_by_enhancing_the_antioxidant_capacity_and_promoting_alterations_in_the_polyamine_phenylpropanoid_and_hormone_signaling_pathways/26627488
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Additional file 2: Table S1. UPLC-MS/MS conditions for the detection of JA, SA, IAA and polyamine. Table S2. Primers used for quantitative real time PCR of selected genes involved in secondary metabolism. Table S3. Effects of Nano-Se on stem weights of melon cultivars of with different resistances to powdery mildew. Table S4. Anatomical structural characteristics of melon leaves inoculated with P. xanthii (1 and 10 dpi) with or without Nano-Se pretreatment. Table S5. Statistics of the RNA-Seq data generated by the Illumina HiSeq Platform in the study. Table S6. Functional annotations on the genes against public database. Table S7. KEGG enrichment analysis of DEGs in the 0 S ck vs. 0 S Nano-Se. Table S8. KEGG enrichment analysis of DEGs in the 0 R ck vs. 0 R Nano-Se. Table S9. KEGG enrichment analysis of DEGs in the 0 S ck vs. 10 S ck. Table S10. KEGG enrichment analysis of DEGs in the 0 R ck vs. 10 R ck. Table S11. KEGG enrichment analysis of DEGs in the 10 S ck vs. 10 S Nano-Se. Table S12. KEGG enrichment analysis of DEGs in the 10 R ck vs. 10 R Nano-Se. Table S13. FPKM values of candidate DEGs involved in the secondary metabolism biosynthetic pathway during P. xanthii powdery mildew infection.
创建时间:
2023-10-16



