Literature DB >> 30536486

Identification, characterization and field testing of Brassica napus mutants producing high-oleic oils.

Shuangyi Bai1, Steven Engelen2, Peter Denolf2, James G Wallis1, Katherine Lynch1, Jesse D Bengtsson1, Michel Van Thournout2, Boris Haesendonckx2, John Browse1.   

Abstract

Producing healthy, high-oleic oils and eliminating trans-fatty acids from foods are two goals that can be addressed by reducing activity of the oleate desaturase, FAD2, in oilseeds. However, it is essential to understand the consequences of reducing FAD2 activity on the metabolism, cell biology and physiology of oilseed crop plants. Here, we translate knowledge from studies of fad2 mutants in Arabidopsis (Arabidopsis thaliana) to investigate the limits of non-GMO approaches to maximize oleic acid in the seed oil of canola (Brassica napus), a species that expresses three active FAD2 isozymes. A series of hypomorphic and null mutations in the FAD2.A5 isoform were characterized in yeast (Saccharomyes cerevisiae). Then, four of these were combined with null mutations in the other two isozymes, FAD2.C5 and FAD2.C1. The resulting mutant lines contained 71-87% oleic acid in their seed oil, compared with 62% in wild-type controls. All the mutant lines grew well in a greenhouse, but in field experiments we observed a clear demarcation in plant performance. Mutant lines containing less than 80% oleate in the seed oil were indistinguishable from wild-type controls in growth parameters and seed oil content. By contrast, lines with more than 80% oleate in the seed oil had significantly lower seedling establishment and vigor, delayed flowering and reduced plant height at maturity. These lines also had 7-11% reductions in seed oil content. Our results extend understanding of the B. napusFAD2 isozymes and define the practical limit to increasing oil oleate content in this crop species.
© 2018 The Authors The Plant Journal © 2018 John Wiley & Sons Ltd.

Entities:  

Keywords:  FAD2; fatty acids; high-oleic oil; seed lipid metabolism; seed oil; triacylglycerol

Year:  2019        PMID: 30536486      PMCID: PMC6604813          DOI: 10.1111/tpj.14195

Source DB:  PubMed          Journal:  Plant J        ISSN: 0960-7412            Impact factor:   6.417


  25 in total

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5.  Simultaneous silencing of FAD2 and FAE1 genes affects both oleic acid and erucic acid contents in Brassica napus seeds.

Authors:  Qi Peng; Yan Hu; Ran Wei; Yuan Zhang; Chunyun Guan; Ying Ruan; Chunlin Liu
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8.  Developmental and growth temperature regulation of two different microsomal omega-6 desaturase genes in soybeans.

Authors:  E P Heppard; A J Kinney; K L Stecca; G H Miao
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9.  Plant genetics. Early allopolyploid evolution in the post-Neolithic Brassica napus oilseed genome.

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10.  Comparative deep transcriptional profiling of four developing oilseeds.

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  9 in total

1.  The biochemistry of headgroup exchange during triacylglycerol synthesis in canola.

Authors:  Shuangyi Bai; James G Wallis; Peter Denolf; Steven Engelen; Jesse D Bengtsson; Michel Van Thournout; Jo Dierickx; Boris Haesendonckx; John Browse
Journal:  Plant J       Date:  2020-02-19       Impact factor: 6.417

Review 2.  Molecular Approaches Reduce Saturates and Eliminate trans Fats in Food Oils.

Authors:  James G Wallis; Jesse D Bengtsson; John Browse
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3.  Allelic Variation in Zmfatb Gene Defines Variability for Fatty Acids Composition Among Diverse Maize Genotypes.

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4.  Characterization and validation of olive FAD and SAD gene families: expression analysis in different tissues and during fruit development.

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Journal:  Mol Biol Rep       Date:  2020-05-28       Impact factor: 2.742

5.  Engineering the stereoisomeric structure of seed oil to mimic human milk fat.

Authors:  Harrie van Erp; Fiona M Bryant; Jose Martin-Moreno; Louise V Michaelson; Govindprasad Bhutada; Peter J Eastmond
Journal:  Proc Natl Acad Sci U S A       Date:  2019-09-30       Impact factor: 11.205

6.  A novel quantitative trait locus on chromosome A9 controlling oleic acid content in Brassica napus.

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Journal:  Plant Biotechnol J       Date:  2019-05-16       Impact factor: 9.803

7.  The impact of reducing fatty acid desaturation on the composition and thermal stability of rapeseed oil.

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8.  Concerted increases of FAE1 expression level and substrate availability improve and singularize the production of very-long-chain fatty acids in Arabidopsis seeds.

Authors:  Shijie Ma; Chang Du; David C Taylor; Meng Zhang
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9.  Cleaved amplified polymorphic sequences (CAPS) marker for identification of two mutant alleles of the rapeseed BnaA.FAD2 gene.

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  9 in total

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