Comparative Metabolomics Profiling Reveals Key Metabolites and Associated Pathways Regulating Tuber Dormancy in White Yam (Dioscorea rotundata Poir.)

被引:3
|
作者
Nwogha, Jeremiah S. [1 ,2 ,3 ]
Wosene, Abtew G. [1 ]
Raveendran, Muthurajan [2 ]
Obidiegwu, Jude E. [3 ]
Oselebe, Happiness O. [4 ]
Kambale, Rohit [2 ]
Chilaka, Cynthia A. [5 ]
Rajagopalan, Veera Ranjani [2 ]
机构
[1] Jimma Univ, Coll Agr & Vet Med, Dept Hort & Plant Sci, POB 307, Jimma, Ethiopia
[2] Tamil Nadu Agr Univ, Ctr Plant Mol Biol & Biotechnol, Dept Plant Biotechnol & Biochem, Coimbatore 641003, India
[3] Natl Root Crops Res Inst, Yam Res Programme, Umudike 440001, Nigeria
[4] Ebonyi State Univ, Dept Crop Prod & Landscape Management, Abakaliki 480282, Nigeria
[5] Queens Univ Belfast, Inst Global Food Secur, Sch Biol Sci, 19 Chlorine Gardens, Belfast BT9 5DL, North Ireland
关键词
metabolites; differential-accumulation; energy; antioxidant; metabolism; molecular-mechanism; dormancy; regulation; SEED-GERMINATION; SUGAR METABOLISM; DROUGHT STRESS; SOYBEAN SEEDS; AMINO-ACIDS; L; GROWTH; WHEAT; MECHANISMS; POLYAMINES;
D O I
10.3390/metabo13050610
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Yams are economic and medicinal crops with a long growth cycle, spanning between 9-11 months due to their prolonged tuber dormancy. Tuber dormancy has constituted a major constraint in yam production and genetic improvement. In this study, we performed non-targeted comparative metabolomic profiling of tubers of two white yam genotypes, (Obiaoturugo and TDr1100873), to identify metabolites and associated pathways that regulate yam tuber dormancy using gas chromatography-mass spectrometry (GC-MS). Yam tubers were sampled between 42 days after physiological maturity (DAPM) till tuber sprouting. The sampling points include 42-DAPM, 56-DAPM, 87DAPM, 101-DAPM, 115-DAPM, and 143-DAPM. A total of 949 metabolites were annotated, 559 in TDr1100873 and 390 in Obiaoturugo. A total of 39 differentially accumulated metabolites (DAMs) were identified across the studied tuber dormancy stages in the two genotypes. A total of 27 DAMs were conserved between the two genotypes, whereas 5 DAMs were unique in the tubers of TDr1100873 and 7 DAMs were in the tubers of Obiaoturugo. The differentially accumulated metabolites (DAMs) spread across 14 major functional chemical groups. Amines and biogenic polyamines, amino acids and derivatives, alcohols, flavonoids, alkaloids, phenols, esters, coumarins, and phytohormone positively regulated yam tuber dormancy induction and maintenance, whereas fatty acids, lipids, nucleotides, carboxylic acids, sugars, terpenoids, benzoquinones, and benzene derivatives positively regulated dormancy breaking and sprouting in tubers of both yam genotypes. Metabolite set enrichment analysis (MSEA) revealed that 12 metabolisms were significantly enriched during yam tuber dormancy stages. Metabolic pathway topology analysis further revealed that six metabolic pathways (linoleic acid metabolic pathway, phenylalanine metabolic pathway, galactose metabolic pathway, starch and sucrose metabolic pathway, alanine-aspartate-glutamine metabolic pathways, and purine metabolic pathway) exerted significant impact on yam tuber dormancy regulation. This result provides vital insights into molecular mechanisms regulating yam tuber dormancy.
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页数:35
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