Scientia Agricultura Sinica ›› 2006, Vol. 39 ›› Issue (03): 463-439 .

• CROP GENETICS & BREEDING·GERMPLASM RESOURCES • Previous Articles     Next Articles

Expression of Rhizopus arrhizus Δ6-Fatty Acid Desaturase Gene in Transgenic Rapeseed

,,,,,,   

  • Received:2005-06-20 Revised:2005-09-27 Online:2006-03-10 Published:2006-03-10

Abstract: 【Objective】 This study is to detect the expression of Rhizopus arrhizus Δ6-fatty acid desaturase gene RAD6 in transgenic rapeseed and provide the primary basis for the future application of gene engineering to GLA production. 【Method】 RAD6 was amplified and subcloned introduced expression vector pCPN2301 to generate a recombinant plasmid pCPNRAD6 under the control of CaMV35S promoter, which was subsequently transformed into Brassicu napus H165 by the Agrobacterium-mediated cotylendon node genetic transformation. The expression of target gene was detected by GC analysis. 【Result】 PCR, GUS staining, DNA dot and southern blot analysis of the transgenic plants showed that the target gene has been integrated into rape genome. Northern blot results proved that the target gene was expressed at mRNA level, and GC analysis indicated that RAD6 expressed in transgenic rapes with the accumulation ofγ-linolenic acid and octadecatetraenoic acid. However, with modification of sequences flanking AUG codon according to the Kozak sequence, a novel fragment (RAD6-1) of Rhizopus arrhizus Δ6-fatty acid desaturase gene was obtained and then transformed into Brassicu napus H165 for expression. As a result, compared with the transgenic rapeseed containing RAD6, the expression level ofΔ6-fatty acid desaturase gene was increased accordingly. 【Conclusion】 The expression system of Rhizopus arrhizus Δ6-fatty acid desaturase gene RAD6 in transgenic rapeseed was primarily constructed.

Key words: Rhizopus arrhizus, Δ6-fatty acid desaurase gene, Rapeseed, γ-linolenic acid, Octadecatetraenoic acid

[1] CHAO ChengSheng,WANG YuQian,SHEN XinJie,DAI Jing,GU ChiMing,LI YinShui,XIE LiHua,HU XiaoJia,QIN Lu,LIAO Xing. Characteristics of Efficient Nitrogen Uptake and Transport of Rapeseed at Seedling Stage [J]. Scientia Agricultura Sinica, 2022, 55(6): 1172-1188.
[2] LIU ShuJun,LI DongChu,HUANG Jing,LIU LiSheng,WU Ding,LI ZhaoQuan,WU YuanFan,ZHANG HuiMin. Effects of Straw Returning and Potassium Fertilizer on Soil Aggregate and Potassium Distribution Under Rapeseed-Rice Rotation [J]. Scientia Agricultura Sinica, 2022, 55(23): 4651-4663.
[3] BAI Fei,BAI GuiPing,WANG ChunYun,LI Zhen,GONG DePing,HUANG Wei,CHENG YuGui,WANG Bo,WANG Jing,XU ZhengHua,KUAI Jie,ZHOU GuangSheng. Effects of Tillage Depth and Shading on Root Growth and Nutrient Utilization of Rapeseed [J]. Scientia Agricultura Sinica, 2022, 55(14): 2726-2739.
[4] YUAN Yuan,WANG Bo,ZHOU GuangSheng,LIU Fang,HUANG JunSheng,KUAI Jie. Effects of Different Sowing Dates and Planting Densities on the Yield and Stem Lodging Resistance of Rapeseed [J]. Scientia Agricultura Sinica, 2021, 54(8): 1613-1626.
[5] LI XiaoYong,GU ChiMing,LIU Kang,LIAO Xing,HUANG Wei,YANG ZhiYuan,QIN Lu. Effects of Nitrogen Application Rate on Nitrogen Use Efficiency, Yield and Quality of Late Sowing Rapeseed [J]. Scientia Agricultura Sinica, 2021, 54(17): 3726-3736.
[6] BAI ChenYang,HE HanZi,JIA CaiHua,LI XiaoHua,REN YiLin,YE Jun,WANG Bo,KUAI jie,ZHOU GuangSheng. Effect of the Mechanical Harvesting Methods on the Key Traits of Rapeseed [J]. Scientia Agricultura Sinica, 2021, 54(14): 2991-3003.
[7] KUAI Jie,LI Zhen,WANG Bo,LIU Fang,YE Jun,ZHOU GuangSheng. Effects of Density and Row Spacing on Seedling Traits of Rapeseed and Seed Yield [J]. Scientia Agricultura Sinica, 2021, 54(11): 2319-2332.
[8] Jun LI,Xia-ying LI,Jing-qian WANG,Shanshan Zhai,Zi-yan CHEN,Hong-fei GAO,YunJing LI,Gang WU,Xiu-jie ZHANG,Yu-hua WU. Development and Application of Plasmid Reference Molecule for Genetically Modified Rapeseed Screening [J]. Scientia Agricultura Sinica, 2020, 53(7): 1322-1337.
[9] ZHANG ShunTao,LU JianWei,CONG RiHuan,REN Tao,LI XiaoKun,LIAO ShiPeng,ZHANG YueQiang,GUO ShiWei,ZHOU MingHua,HUANG YiGuo,CHENG Hui. Effect of Rapeseed Rotation on the Yield of Next-Stubble Crops [J]. Scientia Agricultura Sinica, 2020, 53(14): 2852-2858.
[10] JIANG QianHong,LU ZhiFeng,ZHAO HaiYan,GUO JunJie,LIU WenBo,LING Ning,GUO ShiWei. Potential Analysis of Reducing Chemical Nitrogen Inputs While Increasing Efficiency by Organic-Inorganic Fertilization in Winter Rapeseed Producing Areas of the Middle and Lower Reaches of the Yangtze River [J]. Scientia Agricultura Sinica, 2020, 53(14): 2907-2918.
[11] BU RongYan,CHENG Yi,WANG Hui,HAN Shang,HU RongGen,YU Zhong,LI Min,CHENG WenLong,SUN YiXiang,WANG JiaBao,WU Ji. Investigation of Present Fertilization Status and Fertilizer Utilization Rate on Rapeseed in Anhui Province [J]. Scientia Agricultura Sinica, 2020, 53(10): 2034-2044.
[12] HAO YiNing,WANG ZhiGao,HE Rong,JU XingRong,YUAN Jian. Quality Improvement of Rapeseed Meal Based on Static-State Fermented with Mixed Microorganisms [J]. Scientia Agricultura Sinica, 2020, 53(10): 2066-2077.
[13] ZhengKe WU,GuoHua LIU,Yang LI,AiJuan ZHENG,WenHuan CHANG,ZhiMin CHEN,HuiYi CAI. Optimization of Solid State Fermentation for Rapeseed Meal with Mixed Strains [J]. Scientia Agricultura Sinica, 2019, 52(24): 4603-4612.
[14] SONG ChuWei, CAO HongXin, ZHANG WenYu, ZHANG WeiXin, CHEN WeiTao, FENG ChunHuan, GE SiJun. Modeling the Effects of Post-Anthesis Waterlogging Stress Under Different Fertilizer Levels on Rapeseed Yield and Its Formation [J]. Scientia Agricultura Sinica, 2018, 51(4): 662-674.
[15] KUAI Jie,WANG JiJun,ZUO QingSong,CHEN HongLin,GAO JianQin,WANG Bo,ZHOU GuangSheng,FU TingDong. Effects and Mechanism of Higher Plant Density on Directly-Sown Rapeseed in the Yangtze River Basin of China [J]. Scientia Agricultura Sinica, 2018, 51(24): 4625-4632.
Viewed
Full text


Abstract

Cited

  Shared   
  Discussed   
No Suggested Reading articles found!