农业科学学报(英文)2024,Vol.23Issue(6) :1864-1878.DOI:10.1016/j.jia.2023.05.013

Heterogeneous expression of stearoyl-acyl carrier protein desaturase genes SAD1 and SAD2 from Linum usitatissimum enhances seed oleic acid accumulation and seedling cold and drought tolerance in Brassica napus

Jianjun Wang Yanan Shao Xin Yang Chi Zhang Yuan Guo Zijin Liu Mingxun Chen
农业科学学报(英文)2024,Vol.23Issue(6) :1864-1878.DOI:10.1016/j.jia.2023.05.013

Heterogeneous expression of stearoyl-acyl carrier protein desaturase genes SAD1 and SAD2 from Linum usitatissimum enhances seed oleic acid accumulation and seedling cold and drought tolerance in Brassica napus

Jianjun Wang 1Yanan Shao 1Xin Yang 1Chi Zhang 1Yuan Guo 1Zijin Liu 1Mingxun Chen1
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作者信息

  • 1. State Key Laboratory of Crop Stress Biology for Arid Areas/National Yangling Agricultural Biotechnology & Breeding Center/Shaanxi Key Laboratory of Crop Heterosis/College of Agronomy,Northwest A&F University,Yangling 712100,China
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Abstract

Flax(Linum usitatissimum L.)is a versatile crop and its seeds are a major source of unsaturated fatty acids.Stearoyl-acyl carrier protein desaturase(SAD)is a dehydrogenase enzyme that plays a key role in oleic acid biosynthesis as well as responses to biotic and abiotic stresses.However,the function of SAD orthologs from L.usitatissimum has not been assessed.Here,we found that two LuSAD genes,LuSAD1 and LuSAD2,are present in the genome of L.usitatissimum cultivar'Longya 10'.Heterogeneous expression of either LuSAD1 or LuSAD2 in Arabidopsis thaliana resulted in higher contents of total fatty acids and oleic acid in the seeds.Interestingly,ectopic expression of LuSAD2 in A.thaliana caused altered plant architecture.Similarly,the overexpression of either LuSAD1 or LuSAD2 in Brassica napus also resulted in increased contents of total fatty acids and oleic acid in the seeds.Furthermore,we demonstrated that either LuSAD1 or LuSAD2 enhances seedling resistance to cold and drought stresses by improving antioxidant enzyme activity and nonenzymatic antioxidant levels,as well as reducing membrane damage.These findings not only broaden our knowledge of the LuSAD functions in plants,but also offer promising targets for improving the quantity and quality of oil,and the abiotic stress tolerance of oil-producing crops,through molecular manipulation.

Key words

LuSAD/oleic acid/cold tolerance/drought tolerance/Linum usitatissimum/Brassica napus

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基金项目

National Science and Technology Innovation of China(2030)(2022ZD04010)

国家重点研发计划(2022YFD1200400)

Key Research and Development Program of Shaanxi Province,China(2022NY-158)

Ph D Startup Fund of Northwest A&F University,China(Z1090121052)

Yang Ling Seed Industry Innovation Center,China(K3031122024)

出版年

2024
农业科学学报(英文)
中国农业科学院农业信息研究所

农业科学学报(英文)

CSTPCD
影响因子:0.576
ISSN:2095-3119
参考文献量57
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