Combinations of mutant FAD2 and FAD3 genes to produce high oleic acid and low linolenic acid soybean oil

被引:0
|
作者
Anh-Tung Pham
J. Grover Shannon
Kristin D. Bilyeu
机构
[1] University of Missouri,Division of Plant Sciences
[2] University of Missouri,Division of Plant Sciences, University of Missouri
[3] University of Missouri,Delta Research Center
来源
关键词
Linolenic Acid Content; Oleic Acid Content; Soybean Line; High Oleic Acid; Palmitic Acid Content;
D O I
暂无
中图分类号
学科分类号
摘要
High oleic acid soybeans were produced by combining mutant FAD2-1A and FAD2-1B genes. Despite having a high oleic acid content, the linolenic acid content of these soybeans was in the range of 4–6 %, which may be high enough to cause oxidative instability of the oil. Therefore, a study was conducted to incorporate one or two mutant FAD3 genes into the high oleic acid background to further reduce the linolenic acid content. As a result, soybean lines with high oleic acid and low linolenic acid (HOLL) content were produced using different sources of mutant FAD2-1A genes. While oleic acid content of these HOLL lines was stable across two testing environments, the reduction of linolenic acid content varied depending on the number of mutant FAD3 genes combined with mutant FAD2-1 genes, on the severity of mutation in the FAD2-1A gene, and on the testing environment. Combination of two mutant FAD2-1 genes and one mutant FAD3 gene resulted in less than 2 % linolenic acid content in Portageville, Missouri (MO) while four mutant genes were needed to achieve the same linolenic acid in Columbia, MO. This study generated non-transgenic soybeans with the highest oleic acid content and lowest linolenic acid content reported to date, offering a unique alternative to produce a fatty acid profile similar to olive oil.
引用
收藏
页码:503 / 515
页数:12
相关论文
共 50 条
  • [1] Combinations of mutant FAD2 and FAD3 genes to produce high oleic acid and low linolenic acid soybean oil
    Anh-Tung Pham
    Shannon, J. Grover
    Bilyeu, Kristin D.
    [J]. THEORETICAL AND APPLIED GENETICS, 2012, 125 (03) : 503 - 515
  • [2] Identification of FAD2 and FAD3 genes in Brassica napus genome and development of allele-specific markers for high oleic and low linolenic acid contents
    Qingyong Yang
    Chuchuan Fan
    Zhenhua Guo
    Jie Qin
    Jianzhong Wu
    Qingyuan Li
    Tingdong Fu
    Yongming Zhou
    [J]. Theoretical and Applied Genetics, 2012, 125 : 715 - 729
  • [3] Identification of FAD2 and FAD3 genes in Brassica napus genome and development of allele-specific markers for high oleic and low linolenic acid contents
    Yang, Qingyong
    Fan, Chuchuan
    Guo, Zhenhua
    Qin, Jie
    Wu, Jianzhong
    Li, Qingyuan
    Fu, Tingdong
    Zhou, Yongming
    [J]. THEORETICAL AND APPLIED GENETICS, 2012, 125 (04) : 715 - 729
  • [4] Novel FAD3 Mutant Allele Combinations Produce Soybeans Containing 1% Linolenic Acid in the Seed Oil
    Bilyeu, Kristin
    Gillman, Jason D.
    LeRoy, Allen R.
    [J]. CROP SCIENCE, 2011, 51 (01) : 259 - 264
  • [5] Functional characterization and expression profile of microsomal FAD2 and FAD3 genes involved in linoleic and α-linolenic acid production in Leucas cephalotes
    Choudhary, Ashish Kumar
    Mishra, Girish
    [J]. PHYSIOLOGY AND MOLECULAR BIOLOGY OF PLANTS, 2021, 27 (06) : 1233 - 1244
  • [6] Functional characterization and expression profile of microsomal FAD2 and FAD3 genes involved in linoleic and α-linolenic acid production in Leucas cephalotes
    Ashish Kumar Choudhary
    Girish Mishra
    [J]. Physiology and Molecular Biology of Plants, 2021, 27 : 1233 - 1244
  • [7] Biotechnology of α-linolenic acid in oilseed rape(Brassica napus)using FAD2 and FAD3 from chia(Salvia hispanica)
    XUE Yu-fei
    Inkabanga Tseke ALAIN
    YIN Neng-wen
    JIANG Jia-yi
    ZHAO Yan-ping
    LU Kun
    LI Jia-na
    DING Yan-song
    ZHANG Shi-qing
    CHAI You-rong
    [J]. Journal of Integrative Agriculture, 2023, 22 (12) : 3810 - 3815
  • [8] Biotechnology of α-linolenic acid in oilseed rape (Brassica napus) using FAD2 and FAD3 from chia (Salvia hispanica)
    Xue, Yu-fei
    Alain, Inkabanga Tseke
    Yin, Neng-wen
    Jiang, Jia-yi
    Zhao, Yan-ping
    Lu, Kun
    Li, Jia-na
    Ding, Yan-song
    Zhang, Shi-qing
    Chai, You-rong
    [J]. JOURNAL OF INTEGRATIVE AGRICULTURE, 2023, 22 (12) : 3810 - 3815
  • [9] Landscape of Sequence Variations in Homologous Copies of FAD2 and FAD3 in Rapeseed (Brassica napus L.) Germplasm with High/Low Linolenic Acid Trait
    Wu, Haoxue
    Zhang, Xiaohan
    Chen, Xiaoyu
    Li, Kang
    Xu, Aixia
    Huang, Zhen
    Dong, Jungang
    Yu, Chengyu
    [J]. PHYTON-INTERNATIONAL JOURNAL OF EXPERIMENTAL BOTANY, 2024, 93 (03) : 627 - 640
  • [10] Differential transcriptional activity of SAD, FAD2 and FAD3 desaturase genes in developing seeds of linseed contributes to varietal variation in α-linolenic acid content
    Rajwade, Ashwini V.
    Kadoo, Narendra Y.
    Borikar, Sanjay P.
    Harsulkar, Abhay M.
    Ghorpade, Prakash B.
    Gupta, Vidya S.
    [J]. PHYTOCHEMISTRY, 2014, 98 : 41 - 53