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

被引:156
作者
Peng, Qi [1 ,2 ]
Hu, Yan [1 ]
Wei, Ran [1 ]
Zhang, Yuan [2 ]
Guan, Chunyun [1 ]
Ruan, Ying [2 ]
Liu, Chunlin [1 ]
机构
[1] Hunan Agr Univ, Hunan Prov Key Lab Crop Germplasm Innovat & Utili, Hunan Prov Inst Oil Crops, Changsha 410128, Hunan, Peoples R China
[2] Hunan Agr Univ, Dept Dev Biol, Life Sci & Technol Coll, Changsha 410128, Hunan, Peoples R China
关键词
Brassica napus; Double-gene; Fusion fragment; RNAi; Fatty acid; Modification; AGROBACTERIUM-TUMEFACIENS; NAPIN GENE; RAPESEED; TRANSFORMATION; EXPRESSION; OIL; ARABIDOPSIS; INHERITANCE; L; SUPPRESSION;
D O I
10.1007/s00299-010-0823-y
中图分类号
Q94 [植物学];
学科分类号
071001 [植物学];
摘要
The fatty acid composition in the seed oil was significantly modified following the introduction of transgenes. To further enhance the desirable characteristics of rapeseed oil, it would be beneficial to develop a new approach for the simultaneous silencing of two or more target genes. Our goals in the current study were to (1) increase oleic acid to more than 75%, (2) reduce polyunsaturated fatty acids (PUFA) to about 10% and erucic acid to zero, and (3) accomplish these changes in a single-transformation event. In a single transformation, two fragments amplified from the fatty acid (Delta 12)-desaturase 2 (BnaFAD2) and fatty acid elongase 1 (BnaFAE1) genes of Brassica napus were linked together to form a fusion fragment. The fusion fragment was then used to assemble unique intron-spliced hairpin interfering constructs. In the transgenic plant FFRP4-4, the expression of BnaFAD2 and BnaFAE1 genes was completely inhibited. The composition of oleic acid in FFRP4-4 rose to 85%, PUFA dropped to 10% and erucic acid was undetectable. All hybrid F-1 seeds obtained from the reciprocal crossing of FFRP4-4 and GX-parents (with different genetic backgrounds) contained more than 80% oleic acid, about 10% PUFA and very low, or undetectable, erucic acid. The results confirmed that the fusion fragment silencing construct can simultaneously and effectively silence the target genes on a consistent basis. The strategy provides a useful tool for detecting gene function and advancing genetic engineering techniques for the improvement of agricultural crops.
引用
收藏
页码:317 / 325
页数:9
相关论文
共 49 条
[1]
Ackman R.G., 1990, CANOLA RAPESEED PROD, P81, DOI [DOI 10.1007/978-1-4615-3912-4_6, 10.1007/978-1-4615-3912-4_6]
[2]
Endogenous and synthetic microRNAs stimulate simultaneous, efficient, and localized regulation of multiple targets in diverse species [J].
Alvarez, JP ;
Pekker, I ;
Goldshmidt, A ;
Blum, E ;
Amsellem, Z ;
Eshed, Y .
PLANT CELL, 2006, 18 (05) :1134-1151
[3]
BADE JB, 1995, SPRINGER LAB MANUAL, P30
[4]
Browse J, 1998, Plant lipid biosynthesis: Fundamentals and agricultural applications, P131
[5]
Altering fatty acid composition in oil seed crops [J].
Burton, JW ;
Miller, JF ;
Vick, BA ;
Scarth, R ;
Holbrook, CC .
ADVANCES IN AGRONOMY, VOL 84, 2004, 84 :273-306
[6]
Chen Wei, 2006, Zhiwu Shengli yu Fenzi Shengwuxue Xuebao, V32, P665
[7]
Enhancing plant seed oils for human nutrition [J].
Damude, Howard G. ;
Kinney, Anthony J. .
PLANT PHYSIOLOGY, 2008, 147 (03) :962-968
[8]
GENETIC CONTROL OF FATTY ACID BIOSYNTHESIS IN RAPESEED ( BRASSICA NAPUS L) [J].
DOWNEY, RK ;
CRAIG, BM .
JOURNAL OF THE AMERICAN OIL CHEMISTS SOCIETY, 1964, 41 (07) :475-&
[9]
Functional dissection of a napin gene promoter: Identification of promoter elements required for embryo and endosperm-specific transcription [J].
Ellerstrom, M ;
Stalberg, K ;
Ezcurra, I ;
Rask, L .
PLANT MOLECULAR BIOLOGY, 1996, 32 (06) :1019-1027
[10]
ESKIN NAM, 1996, EDIBLE OIL FAT PRODU, P1