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Fatty Acid and Associated Gene Expression Analyses of Three Tree Peony Species Reveal Key Genes for α-Linolenic Acid Synthesis in Seeds.
Zhang, Qing-Yu; Yu, Rui; Xie, Li-Hang; Rahman, Md Mahbubur; Kilaru, Aruna; Niu, Li-Xin; Zhang, Yan-Long.
Affiliation
  • Zhang QY; College of Landscape Architecture and Arts, Northwest A&F University, Xianyang, China.
  • Yu R; College of Landscape Architecture and Arts, Northwest A&F University, Xianyang, China.
  • Xie LH; College of Landscape Architecture and Arts, Northwest A&F University, Xianyang, China.
  • Rahman MM; Department of Biological Sciences, East Tennessee State University, Johnson City, TN, United States.
  • Kilaru A; Department of Biological Sciences, East Tennessee State University, Johnson City, TN, United States.
  • Niu LX; College of Landscape Architecture and Arts, Northwest A&F University, Xianyang, China.
  • Zhang YL; College of Landscape Architecture and Arts, Northwest A&F University, Xianyang, China.
Front Plant Sci ; 9: 106, 2018.
Article in En | MEDLINE | ID: mdl-29459881
ABSTRACT
The increasing demand for healthy edible oil has generated the need to identify promising oil crops. Tree peony (Paeonia section Moutan DC.) is a woody oil crop with α-linolenic acid (ALA) contributing for 45% of the total fatty acid (FA) content in seeds. Molecular and genetic differences that contribute to varied FA content and composition among the wild peony species are, however, poorly understood. Analyses of FA content and composition during seed development in three tree peony species (Paeonia rockii, P. potaninii, and P. lutea) showed varied FA content among them with highest in P. rockii, followed by P. potaninii, and P. lutea. Total FA content among these species increased with seed development and reached its maximum in its final stage. Seed FA composition analysis of the three species also revealed that ALA (C183) was the most abundant, followed by oleic (C181) and linoleic (C182) acids. Additionally, quantitative real-time RT-PCR analyses of 10 key seed oil synthesis genes in the three tree peony species revealed that FAD3, FAD2, ß-PDHC, LPAAT, and Oleosin gene expression levels positively correlate with total FA content and rate of accumulation. Specifically, the abundance of FAD3 transcripts in P. rockii compared with P. potaninii, and P. lutea suggests that FAD3 might play an important role in synthesis of ALA via phosphatidylcholine-derived pathway. Overall, comparative analyses of FA content and composition in three different peony species revealed a correlation between efficient lipid accumulation and lipid gene expression during seed development. Further characterization and metabolic engineering of these key genes from peonies will allow for subsequent improvement of tree peony oil quality and production.
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Full text: 1 Collection: 01-internacional Database: MEDLINE Type of study: Risk_factors_studies Language: En Journal: Front Plant Sci Year: 2018 Document type: Article

Full text: 1 Collection: 01-internacional Database: MEDLINE Type of study: Risk_factors_studies Language: En Journal: Front Plant Sci Year: 2018 Document type: Article