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Metabolite Diversity and Carbohydrate Distribution in ssp. L. Cultivars: A UPLC-MS/MS Approach. | LitMetric

Metabolite Diversity and Carbohydrate Distribution in ssp. L. Cultivars: A UPLC-MS/MS Approach.

Biology (Basel)

National Key Laboratory of Crop Genetics & Germplasm Enhancement and Utilization, College of Horticulture, Nanjing Agricultural University, Nanjing 210095, China.

Published: July 2024

AI Article Synopsis

  • Pak choi shows diverse phenotypic and morphological traits that influence its carbohydrate content, analyzed through UPLC-MS/MS across various cultivars.
  • A total of 513 metabolites were identified, with monosaccharides being the most common, while Suzhouqing exhibited the highest number of differentially accumulated metabolites compared to Xiangqingcai.
  • Significant metabolite differences were noted between cultivars, with key carbohydrate pathways identified, highlighting potential for improved nutritional and agricultural practices.

Article Abstract

Pak choi exhibits a wide range of phenotypic and morphological variations, significantly impacting its carbohydrate composition. This study aimed to analyze these variations by employing UPLC-MS/MS technology on eight biological replicates of seven Pak choi cultivars. The untargeted metabolic analysis identified 513 metabolites, focusing on 16 key carbohydrates, including monosaccharides, disaccharides, and polysaccharides. Monosaccharides were the most prevalent, which were followed by di-, poly-, and oligosaccharides. Suzhouqing had the highest number of differentially accumulated metabolites (DAMs), while Xiangqingcai had the least. Notably, the cultivars Xiangqingcai, Suzhouqing, and Aijiaohuang showed significant metabolite differentiation. The study found 114 metabolites that differed significantly between Suzhouqing and Aijiaohuang, of which 69 were upregulated and 45 were downregulated. In Xiangqingcai and Aijiaohuang, 66 metabolites were upregulated and 49 were downregulated. Between Xiangqingcai and Suzhouqing, 80 metabolites were downregulated and 53 were upregulated. Key carbohydrate digestion and absorption pathways were identified alongside the most enriched flavonoid biosynthesis pathway in Xiangqingcai and Suzhouqing. The findings highlight the considerable carbohydrate variation among Pak choi cultivars, providing valuable insights for targeted carbohydrate extraction and improving nutritional and agricultural practices.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11351843PMC
http://dx.doi.org/10.3390/biology13080568DOI Listing

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