Comparative Analysis of Polyphenolic Compounds in Different Amaranthus Species: Influence of Genotypes and Harvesting Year

Author:

Bang Jun-Hyoung1ORCID,Jo Ick-Hyun2ORCID,Sebastin Raveendar1,Jeong Won Tea3,Oh Sangtaek4,Heo Tae-Young4ORCID,Sung Jeehye5ORCID,Hyun Tae kyung1,So Yoon-Sup6,Yu Ju-Kyung6,AlGarawi Amal Mohamed7,Hatamleh Ashraf Atef7ORCID,Sung Gi-Ho89,Chung Jong-Wook1ORCID

Affiliation:

1. Department of Industrial Plant Science and Technology, Chungbuk National University, Cheongju 28644, Republic of Korea

2. Department of Crop Science and Biotechnology, Dankook University, Cheonan 31116, Republic of Korea

3. Residual Agrochemical Assessment Division, National Institue of Agricultural Science, Rural Development Administration, Wanju 55365, Republic of Korea

4. Department of Information Statistics, Chungbuk National University, Cheongju 28644, Republic of Korea

5. Department of Food Science and Biotechnology, Andong National University, Andong 36729, Republic of Korea

6. Department of Crop Science, Chungbuk National University, Cheongju 28644, Republic of Korea

7. Department of Botany and Microbiology, College of Science, King Saud University, P.O. Box 2455, Riyadh 11451, Saudi Arabia

8. Biomedical Institute of Mycological Resource, International St. Mary’s Hospital, College of Medicine, Catholic Kwandong University, Incheon 22711, Republic of Korea

9. Department of Convergence Science, College of Medicine, Catholic Kwandong University, Gangneung 25601, Republic of Korea

Abstract

Amaranth is a nutritionally valuable crop, as it contains phenolic acids and flavonoids, yielding diverse plant secondary metabolites (PSMs) like phytosterol, tocopherols, and carotenoids. This study explored the variations in the contents of seventeen polyphenolic compounds within the leaves of one hundred twenty Amaranthus accessions representing nine Amaranthus species. The investigation entailed the analysis of phenolic content across nine Amaranthus species, specifically A. hypochondriacus, A. cruentus, A. caudatus, A. tricolor, A. dubius, A. blitum, A. crispus, A. hybridus, and A. viridis, utilizing ultra performance liquid chromatography with photodiode array detection (UPLC-PDA). The results revealed significant differences in polyphenolic compounds among accessions in which rutin content was predominant in all Amaranthus species in both 2018 and 2019. Among the nine Amaranthus species, the rutin content ranged from 95.72 ± 199.17 μg g−1 (A. dubius) to 1485.09 ± 679.51 μg g−1 (A. viridis) in 2018 and from 821.59 ± 709.95 μg g−1 (A. tricolor) to 3166.52 ± 1317.38 μg g−1 (A. hypochondriacus) in 2019. Correlation analysis revealed, significant positive correlations between rutin and kaempferol-3-O-β-rutinoside (r = 0.93), benzoic acid and ferulic acid (r = 0.76), and benzoic acid and kaempferol-3-O-β-rutinoside (r = 0.76), whereas gallic acid showed consistently negative correlations with each of the 16 phenolic compounds. Wide variations were identified among accessions and between plants grown in the two years. The nine species and one hundred twenty Amaranthus accessions were clustered into six groups based on their seventeen phenolic compounds in each year. These findings contribute to expanding our understanding of the phytochemical traits of accessions within nine Amaranthus species, which serve as valuable resources for Amaranthus component breeding and functional material development.

Funder

National Research Foundation of Korea

Publisher

MDPI AG

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