Fig. 5. KEGG enrichments of DEGs.Published as part of Gao, Xiaoyang, Zhang, Xuan, Chen, Wen, Li, Jing, Yang, Wenjing, Zhang, Xingwang, Li, Shengying & Liu, Changning, 2020, Transcriptome analysis of Paris polyphylla var. yunnanensis illuminates the biosynthesis and accumulation of steroidal saponins in rhizomes and leaves, pp. 1-9 in Phytochemistry (112460) 178 on page 5, DOI: 10.1016/j.phytochem.2020.112460, http://zenodo.org/record/829312
Fig. 3. Content analyses of steroidal saponins (A) and phytosterols in different organs of A. asphod...
Panax notoginseng is famous for its important therapeutic effects. Saponins are bioactive compounds ...
Fig. 4. Key 1H–1H COSY, HMBC, and NOESY correlations of compound 3.Published as part of Liu, Yang, L...
Gao, Xiaoyang, Zhang, Xuan, Chen, Wen, Li, Jing, Yang, Wenjing, Zhang, Xingwang, Li, Shengying, Liu,...
Fig. 6. Overview of DEGs related to Paris saponin biosynthesis pathway. (a) DEGs encoding enzymes in...
Fig. 4. An overview of DEG expression patterns and GO enrichments. (a) Heatmap of expression values ...
Fig. 2. Genes involved in Paris saponin biosynthesis. (a) Genes participated in the MVA and MEP path...
Fig. 1. The bioactive compound content and transcriptome characters. (a) Total content of three typi...
Fig. 3. DEG statistics. (a) Venn diagram of DEGs from the four paired comparisons. (b) The number of...
Fig. 7. QRT-PCR validation of RNA-Seq data. Expression profiles of eight selected genes were determi...
AbstractParis polyphylla Smith var. yunnanensis (Franch.) Hand.-Mazz. is a rhizomatous, herbaceous, ...
Fig. 9. Plausible biosynthetic pathways of compounds 1–7.Published as part of Liu, Yang, Liu, Mei-Yo...
AbstractParis polyphylla Smith var. yunnanensis (Franch.) Hand.-Mazz. is a rhizomatous, herbaceous, ...
Fig. 1. Chemical structures of compounds 1–14.Published as part of Liu, Yang, Liu, Mei-You, Bi, Lin-...
Fig. 5. Key 1H–1H COSY, HMBC, and NOESY correlations of compound 4.Published as part of Liu, Yang, L...
Fig. 3. Content analyses of steroidal saponins (A) and phytosterols in different organs of A. asphod...
Panax notoginseng is famous for its important therapeutic effects. Saponins are bioactive compounds ...
Fig. 4. Key 1H–1H COSY, HMBC, and NOESY correlations of compound 3.Published as part of Liu, Yang, L...
Gao, Xiaoyang, Zhang, Xuan, Chen, Wen, Li, Jing, Yang, Wenjing, Zhang, Xingwang, Li, Shengying, Liu,...
Fig. 6. Overview of DEGs related to Paris saponin biosynthesis pathway. (a) DEGs encoding enzymes in...
Fig. 4. An overview of DEG expression patterns and GO enrichments. (a) Heatmap of expression values ...
Fig. 2. Genes involved in Paris saponin biosynthesis. (a) Genes participated in the MVA and MEP path...
Fig. 1. The bioactive compound content and transcriptome characters. (a) Total content of three typi...
Fig. 3. DEG statistics. (a) Venn diagram of DEGs from the four paired comparisons. (b) The number of...
Fig. 7. QRT-PCR validation of RNA-Seq data. Expression profiles of eight selected genes were determi...
AbstractParis polyphylla Smith var. yunnanensis (Franch.) Hand.-Mazz. is a rhizomatous, herbaceous, ...
Fig. 9. Plausible biosynthetic pathways of compounds 1–7.Published as part of Liu, Yang, Liu, Mei-Yo...
AbstractParis polyphylla Smith var. yunnanensis (Franch.) Hand.-Mazz. is a rhizomatous, herbaceous, ...
Fig. 1. Chemical structures of compounds 1–14.Published as part of Liu, Yang, Liu, Mei-You, Bi, Lin-...
Fig. 5. Key 1H–1H COSY, HMBC, and NOESY correlations of compound 4.Published as part of Liu, Yang, L...
Fig. 3. Content analyses of steroidal saponins (A) and phytosterols in different organs of A. asphod...
Panax notoginseng is famous for its important therapeutic effects. Saponins are bioactive compounds ...
Fig. 4. Key 1H–1H COSY, HMBC, and NOESY correlations of compound 3.Published as part of Liu, Yang, L...