{"database":"biostudies-literature","file_versions":[],"scores":null,"additional":{"submitter":["Wei F"],"funding":["National Natural Science Foundation of China","Independent Research Project of Guangxi Key Laboratory of Medicinal Resources Protection and Genetic Improvement","Guangxi Key R&D Plan Project"],"pagination":["1523"],"full_dataset_link":["https://www.ebi.ac.uk/biostudies/studies/S-EPMC12595809"],"repository":["biostudies-literature"],"omics_type":["Unknown"],"volume":["25(1)"],"pubmed_abstract":["BACKGROUND : Platostoma palustre (Blume) A. J. Paton is a medicinal and edible plant in China, and polysaccharide is its main functional component, composed of various monosaccharides. This study aims to investigate the biosynthesis and regulatory mechanisms of polysaccharides in P. palustre. RESULTS: The results showed that increased red light intensity promoted the growth of P. palustre, and an increase in light intensity to a certain degree increased the concentrations of monosaccharides. Transcriptome sequencing showed that a total of 55 differentially expressed genes (DEGs) encoding enzymes involved in polysaccharide biosynthesis were identified as key functional genes. The pathways for polysaccharide biosynthesis in P. palustre were also reconstructed. Weighted gene coexpression netw"],"journal":["BMC plant biology"],"pubmed_title":["Multi-omics analysis reveals insights into the key genes involved in polysaccharide biosynthesis induced by red light intensity in Platostoma palustre."],"pmcid":["PMC12595809"],"funding_grant_id":["KL2025ZZ04","GuikeAB24010015","82260750"],"pubmed_authors":["Quan C","Xu M","Wei F","Tang D"],"additional_accession":[]},"is_claimable":false,"name":"Multi-omics analysis reveals insights into the key genes involved in polysaccharide biosynthesis induced by red light intensity in Platostoma palustre.","description":"BACKGROUND : Platostoma palustre (Blume) A. J. Paton is a medicinal and edible plant in China, and polysaccharide is its main functional component, composed of various monosaccharides. This study aims to investigate the biosynthesis and regulatory mechanisms of polysaccharides in P. palustre. RESULTS: The results showed that increased red light intensity promoted the growth of P. palustre, and an increase in light intensity to a certain degree increased the concentrations of monosaccharides. Transcriptome sequencing showed that a total of 55 differentially expressed genes (DEGs) encoding enzymes involved in polysaccharide biosynthesis were identified as key functional genes. The pathways for polysaccharide biosynthesis in P. palustre were also reconstructed. Weighted gene coexpression netw","dates":{"release":"2025-01-01T00:00:00Z","publication":"2025 Nov","modification":"2026-06-05T13:35:53.838Z","creation":"2026-05-17T03:12:04.572Z"},"accession":"S-EPMC12595809","cross_references":{"pubmed":["41204071"],"doi":["10.1186/s12870-025-07451-4"]}}