高油酸油菜研究进展及其前景展望

高油酸油菜研究进展及其前景展望

作者:张振乾, 肖钢, 谭太龙, 官春云, Zhang Zhenqian, Xiao Gang, Tan Tailong,Guan Chunyun

作者单位:湖南农业大学农学院/国家油料改良中心湖南分中心,410128,湖南长沙

刊名:

作物杂志

英文刊名:CROPS

年,卷(期):2009,(5)

引用次数:0次

参考文献(66条)

1.Iwona Rudkowska.Catherine E Roynette.Dilip K Nakhasi Phytosterols mixed with medium-chain triglycerides and high-oleic canola oil decrease plasma lipids in overweight men 2006

2.S M Crundy Composition of monounsaturated fatty acids and carbohydrates for lowering plasma cholesterol 1986

3.Robert J Nicolosi.Benjamin WooLfrey.Thomas A Wilson Decreased aortic early atherosclerosis and associated risk factors in hypercholesterolemic hamsters fed a high-or mid-oleic acid oil compared to a high-linoleic acid oil 2004

4.Stephen T Talcott.Christopher E Duncan.David Del Pozo-Insfran Polyphenolic and antioxidant changes during storage of normal,mid,and high oleic acid peanuts 2005

5.J F Miller.D C Zimmermann.B A Vick Genetic control of high oleic acid content in sunflower oil 1987

6.Bertrand Matthaus High oleic low linolenic rapeseed oil as altemative to common used frying oils 2007

7.Harald K(a)b Marktanalyse:industrielle einsatzm glichkeiten von high oleic

pflanzen(o)len.Fachagentur Nachwachsende Rohstoffe e V.Gülzow (Hrsg) 2001

8.官春云油菜转基因育种进展 2002(8)

9.D L Auld.M K Heikkinen.D A Ericksen Rapeseed Mutants with Reduced Levels of Polyunsaturated Fatty Acids and Increased Levels of Oleic Acid 1992

10.A Schierhoh.B Rǖcker.H C Becker Inheritance of high oleic acid mutations in winter oilseed rape (Brassica napus L 2001

11.Christian Mollers Development of high oleic acid oilseed rape 2002

12.A Schierholt.H C Becker.W Ecke Mapping a high oleic acid mutation in winter oilseed rape (Brassica napusL.) 2000

13.C Mollers.A Schierholt Genetic variation of palmitate and oil content in a winter oilseed rape doubled haploid population segregating for oleate content 2002

14.索文龙.戚存扣甘蓝型油菜油酸含量的主基因+多基因遗传分析 2007(5)

15.费维新.陈凤祥.李强生甘蓝型油菜高油酸材料的正反交遗传研究 2007(7)

16.伍新玲利用诱变技术改良油菜脂肪酸组成及油酸含量遗传研究 2004

17.戴晓峰油菜脂肪酸合成关键基因的克隆与脂肪酸积累模式研究 2006

18.A Schierhoft.H C Becker Enviromental variability and heritability of high oleic acid content in

winter oilseed rape (Brassiea napusL.) 2001

19.Leonardo Velaaco.M Jose.Fernandez-Martinez Inheritance of increased oleic acid concentration in high erucic acid Ethiopian Mustard 2003

20.马霓高油酸的甘蓝型油菜与诸葛菜属间杂交新材料的细胞学和遗传学研究 2006

21.肖钢.张宏军.彭琪甘蓝型油菜油酸脱氢酶基因(fad/2)多个拷贝的发现及分析 2008(9)

22.L Velasco.A Nabloussi.A De Haro Fernández-Martámez.Development of high-oleic,low-linolenic acid Ethiopian-mustard (Brassica carinata) germplasm 2003

23.A Schierholt.H C Backer Genetic and environmental variability of high oleic acid content in

winter oilseed rape

24.K Gurpreet.S K Banga.S S Bangs Introgression of desaturation suppressor gene(s) from Brassica napus L.To enhance oleic acid content in Brassica juncea L.Coss

25.N Izquierdo.L Aguirrezábal.F Andrade Night temperature affects fatty acid composition in sunflower oil depending on the hybrid and the phenological stage 2002

26.A Baux.P Sergy.D Pellet Pilot production of High-oleic low-linolenic (HOLL) winter oilseed rape

in Switzerland 2007

27.Z Flagella.T Rotunno.E Tarantino Changes in seed yield and oil fatty acid composition of high oleic sunflower (Helianthus annuus L.) hybrids in relation to the sewing date and the water regime 2002

28.官梅.李枸高油酸油菜品系农艺性状研究 2008(1)

29.S Albrecht.C Mollers.G Robbelen Selection for fatty acid composition in microspore-derived embryoids (MDE) of rapeseed,Brassica napus (L.) 1994

30.D W Zhang.Z H Chen.W B Li Changes of fatty acids during the in vitro-development of fertilized ovary and pollen-derived embryoids of Brassica juncea 1988

31.S Albrecht.C Mollers.G Robbelen Selection in vitro for erucic acid content in segregating populations of microspere derived embryoids of Brassica napus 1995

32.Christian Mollers.Beate Rǖcker.Dieter Stelling In vitro selection for oleic and linoleic acid content in segregating populations of microspore derived embryos of Brassica napus 2000

33.王爱云.李枸.胡大有油菜远缘杂交育种研究进展 2005(6)

34.姜慧芳.任小平.黄家权野生花生脂肪酸组成的遗传变异及远缘杂交创造高油酸低棕榈酸花生新种质 2009(1)

35.王爱云.李枸.胡大有芥菜型油菜与诸葛菜属间杂种的获得及鉴定 2008(1)

36.蔺兴武.吴建国.石春海远缘杂交油菜核不育系的创建及其细胞学和形态学研究 2005(3)

37.Y López.H L Nadaf.O D Smith Fritz.Isolation and characterization of the △12-fatty acid desaturase in peanut (Arachis hypogaea L.) and search for polymorphisms for the high oleate trait in Spanish market-type lines 2000

38.F Barro.J F Eacobar.M D L Vega Doubled haploid lines of Brassica carinata with modified erucic acid content through mutagenesis by EMS treatment of isolated microspores 2001

39.G Robbelen Mutation breeding for quality improvement:a case study for oilseed crops.Plant

40.B Rǖcker.G Robbelen Development of high oleic acid rapeseed 1995

41.官春云2004年加拿大油菜研究情况简介 2005(3)

42.官春云.刘春林.陈社员辐射育种获得油菜高油酸材料 2006(11)

43.Guo-Qing Tang.William P Novitzky.H Carol Griffin Oleate desaturase enzymes of soybean:evidence of regulation through differential stability and phosphorylation 2005

44.陶芳.朱苏文.范军玉米FAD2基因的克隆及序列分析 2006(6)

45.M L Hernandez.M Mancha.J M Martinez-Rivaa Molecular cloning and characterization of genes encoding two microsomaI oleate dezaturases(FAD2) from olive 2005(12)

46.A J Kinney Genetic modification of the storage lipids of plants 1994

47.A J Kinney Development of genetically engineered oilseeds:from molocular biology to agronomics 1997

48.Dongmei Yin.Shizheng Deng.Kehui Zhan High-Oleic Peanut Oils Produced by HpRNA-Mediated Gene Silencing of Oleate Desaturase 2007

49.M Patel.S Jung.K Moore High-aleate peanut mutants result from a MITE insertion into the FAD2 genc 2004

50.P A Stoutjesdijk.C Hurlestone.S P Singh High-oleic acid Australian Brassica napus and B.juncea varieties produced by co-suppression of endogenous D12-desaturases 2000(6)

51.W D Hiz.N S Yadav.R S Reiter Reducing Polyunsaturation in oils of transgenic canola and soybean 1995

52.Indira Sivaramam.Neelakantan Arumugam.Y S Sodhi Development of high oleic and Iow linoleic acid transgenics in a zero erucic acid Brassica juncea L.(Indian mustard) line by antisense suppression of the fad2 gene 2004(4)

53.陈苇.李劲峰.董云松甘蓝型油菜Fad2基因的RNA干扰及无筛选标记高油酸含量转基因油菜新种质的获得

2006(6)

54.I Sivaraman.N Arumugam.Y S Sodhi Development of high oleic acid and low linoleic acid transgenics in a zero erucic acid Brassica juncea L.(Indian mustard)line by antisense suppression of the fad2 gene 2004

55.Shanlin Yu.Lijuan Pan.Qingli Yang Comparison of the △12 fatty acid desaturase gene between high-oleic and normal-oleic peanut genotypes 2008

56.Devinder Sandhu.Jessie L Alt.Curtis W Scherder Enhanced Oleic Acid Content in the Soybean Mutant M23 Is Associated with the Deletion in the Fad2-1 a Gene Encoding a Fatty Acid Desaturase 2007

57.Y López.H L Nadaf.O D Smith Expressed variants of △12-fatty acid desaturase for the high oleate trait in spanish market-type peanut lines 2002

58.B Laga.J Seurinck.T Verhoye Molecular breeding for high oleic and low linolenic fatty acid composition in Brassica napus 2004

59.P Tanhuanpaa.J Vilkki Market-assisted selection of oleic acid content in spring turnip rape 1999

60.P K Tanhuanpaa.J P Vilkki.H J Vilkki Mapping of a QTL for oleic acid concentration in spring

61.Pirjo Tanhuanpaa.Juha Vilkki.Mauno Vihinen Mapping and cloning of FAD2 gene to develop allele-specific PCR for oleic acid in spring turnip rape (Brassica rapa ssp.oleifera) 1998

62.Xueyi Hu.Mandy Sullivan-Gilbert.Manju Gupta Mapping of the loci controlling oleic and linolenic acid contents and development of fad2 and fad3 allele-specific markers in canola (Brassica napus L 2006

63.周永明油菜品质遗传改良的进展和动态 1996(1)

https://www.360docs.net/doc/ac14144640.html,ura Maber.Wayne Burton.Phil Salisbury High Oleic,low linolenic (HOLL) specialty canola development in Australia 2007

65.Jean Pierre.Despeghel Heinrich.Busch Claude Sciaccaluga欧洲第一个高油酸低亚麻酸冬油菜品种一"SPLENDOR" 2007

66.戴晓峰.肖玲.武玉花植物脂肪酸去饱和酶及其编码基因研究进展 2007(1)

相似文献(3条)

1.期刊论文殷冬梅.杨海棠.台国琴.杨秋云.崔党群.YIN Dong-mei.YANG Hai-tang.TAI Guo-qin.YANG Qiu-yun.

CUI Dang-qun花生油酸脱氢酶基因遗传转化体系的建立与表达分析-中国农业科学2009,42(5)

[目的]培育高油酸的花生新种质.[方法]以根癌农杆菌为介导将含有油酸脱氢酶基因的植物双元表达载体pFGC/2nd转入花生外植体丛生芽,通过卡那霉素筛选,器官发生再生转化植株;荧光定量PCR检测转基因植株.[结果]丛生芽外植体于OD600为0.6的农杆菌菌液中浸泡8~10 min后,在MS培养基上暗培养3 d效果较好.诱导筛选培养3个月左右,共得到16株转化植株,其中11个转基因植株经PCR检测呈阳性,说明外源基因已整合进入受体植物.进一步的荧光定量PCR检测显示,有4个植株基本上不表达或表达量很低.[结论]建立花生丛生芽遗传转化体系;RNA干扰对内源的油酸脱氢酶基因产生了抑制作用.

2.期刊论文李桂民.宋凯.冯凯.闻珊珊.刘立侠.许守民.LI Gui-min.SONG Kai.FENG Kai.WEN Shan-shan.LIU Li-

xia.XU Shou-min无筛选标记基因高油酸花生高效载体的构建-东北师大学报(自然科学版)2007,39(2)

提高油酸的相对含量,增加油酸 /亚油酸(O/ L)的比值,已成为目前油料作物品质改良的重要内容.ahFAD2B是编码花生微粒体ω 6-脂肪酸脱氢酶的主要基因,根据双链RNA介导的基因沉默原理,设计和构建了可以抑制花生种子油酸脱氢酶基因ahFAD2B表达的载体,从而提高了油酸的含量,改善了花生油脂肪酸的组成.进一步将该构建组装到一个双右侧边界(DRB)的共转化载体中,用该载体来转化花生,以期从转基因后代中筛选无抗生素标记基因的高油酸花生材料.

3.学位论文蔡一荣农杆菌介导的高油酸大豆遗传转化方法的建立2006

大豆遗传转化一直是限制大豆转基因研究的主要障碍。虽然国内外开展了很多年,并且建立起几种转化途径,可是都没有获得实质性的突破。所以为了使大豆基因工程育种工作更优更快发展,探索建立一套高效的转化途径对于大豆遗传转化有着重要的意义。 本实验以吉林省主推大豆品种吉林35为材料,应用双链RNA基因沉默技术,利用根癌农杆菌EHA105介导大豆种子特异的油酸脱氢酶基因FAD2-1转化大豆。本实验根据近年来大豆遗传转化的研究进展,建立和优化了三种大豆遗传转化方法和系统:美国Iowa大学等成熟的农杆菌介导的大豆子叶节转化系统;刘海坤等新近报道的一种胚尖转化系统;根据张举仁等的玉米茎尖转化法,建立了大豆农杆菌介导茎尖直接转化系统。在实验过程中对比了子叶节、胚尖和茎尖三套大豆转化体系,分析了三套转化方法的效率和优缺点,并在此基础上获得了转基因大豆植株。 实验结果表明,胚尖转化体系的再生效率比子叶节转化体系的高,对筛选剂—卡那霉素较为敏感,再生周期短,易获得抗性植株。胚尖转化体系比子叶节转化体系有许多优势,是今后大豆遗传转化优先选择的转化体系之一。茎尖转化体系相比较前两者来说,操作相对容易,获得转化苗快,但是,后期筛选工作量比较大。 本实验对农杆菌介导的大豆遗传转化方法的进行了改良和创新,优化和建立了一套效率较高的大豆遗传转化体系。本实验研究的主要目标是筛选得到转基因的高油酸大豆材料,同时也希望通过这项研究建立起一整套成熟的大豆转化体系,为本实验室大豆遗传转化和转基因大豆研究提供基础。

本文链接:https://www.360docs.net/doc/ac14144640.html,/Periodical_zwzz200905001.aspx

下载时间:2010年4月27日

相关文档
最新文档