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玉米转基因受体胚性愈伤组织的培养与遗传变异的研究
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摘要
以5010、502、S_2、S_4、农大五个玉米自交系为材料,进行幼胚培养,通过愈伤组织的诱导、继代、分化和植株再生试验,对影响玉米幼胚愈伤组织诱导率和胚性率的因素进行了分析;优化了一套诱导、继代和植株再生的方案;从细胞学、生化指标、分化植株的苗期以及成熟期性状的角度对继代各代胚性愈伤组织的遗传变异进行了研究,并拍摄到了一些变异类型的图片;分析了2,4-D的效用及其作用机制,研究结果表明,2,4-D为诱导和继代必需,但同时又是变异的主要诱发因素,在玉米幼胚诱导培养期使用2.0mg/L,胚性愈伤组织继代期使用1.0mg/L,后期继代适当地逐代降低使用浓度,对减少变异的累积,维持无性系的遗传稳定有利;高频继代可促进愈伤组织胚性生长、降低继代过程中愈伤组织分化,同时高频继代亦是造成遗传不稳定的因素之一,随继代次数增加,分化率下降,再生植株的变异率增加,以20天为继代周期比较有效;探讨了胚性愈伤组织长期继代的遗传稳定性规律,初步确立了利用本试验材料建立高效转基因受体的方法,认为在3~5代,为无性系稳定的世代,可用作转基因的稳定受体;6~10代,胚性细胞系呈少量的变异,是相对稳定的代系,可作一般的转基因受体;11~20代,为大量变异、分离的高代代系,遗传背景复杂不稳定,不宜作转基因受体。
Callus were induced from immature embryos of inbred line of maize 5010, 502, S2 , S4 , and Nongda ,effects of different factors on the rate of inducement of embryogenic callus (EC.) were analyzed by inducing , culturing, differentiating and plant regenerating, the variation of EC. was studied by cytology biochemical traits of young plants and mature plants in fields . some variations were recorded by photos .The effect and mechanism of 2,4-D was fully analyzed . it shows that the 2,4-D is necessary for inducement and culturing ,but it is also the main factor which results in variation.using 2.0mg/L in inducement ,1.0mg/L in culturing and later reducing the concentration of 2,4-D gradually is benefit for genetic stability ,high frequency culturing can promote the growth of callus and reduce the differentiation in culturing. at the same time ,it is one of the factors which leads to the unstable of genetic .with the frequency of culturing increasing ,the rate of differentiating reduces ,and the variation of plants increases,20 days frequency is adaptive .Rules of EC.'s genetic stability are firstly discussed ,and the way of establishing efficient transgenic recipients is found .using the materials in the experiment .it is stable in 3-5th generations ,they can be used as transgenic recipients ,the 6~10th ones also can be used but is inferior ,and it can't be used in 11~20th generations because of its high frequency variation.
引文
[1]. KongQing(孔青), XuN-Y(徐乃瑜), LinQ(林琼).A study on the introduction of exogenous DNA and variation of wheat.Journal of Wuhan Botanical Research(武汉植物学研究),1992,4:339~344
    [2]. Fromm ME, Morrish F, Amostrong C,etai.inheritance and expression of chimeric genes in the progeny of transgenic maize plants.Bio/Technotogy, 1990,8: 833~839
    [3].以玉米幼胚为受体的外源基因转化研究,广东农业科学,1995(3):14~16
    [4]. Waiters DA ,Vetsch CS ,poyys DE ,etal ,Transformation and inheritance of a hygromycin phosphotransferase gene in maize plants ,Plant Molbiol, 1992,18:189-200
    [5]. Gordon—Kamm WJ ,Spencer MT, Mangano ML .etal .Transformation of maize cells and regeneration of fertile transgenic plants .Plant cell, 1990,2:603~608
    [6].王国英等 用基因枪将Bt毒蛋白基因转入玉米及转基因植株再生[J] 中国科学(B辑),1995,25(1):71~76
    [7]. Boulton MI,etal Specificity of Agrobaeterium Mediated—Delivery of maize streak virus DNA to members of the Gramineae (J) Plant Mol Biol, 1989,12:31-40
    [8]. Grimsley N, etal Agrobacterium-mediated delivery of in factious maize steak virus into maize plants[J]. Nature, 1987,325:177-179
    [9]. Schlappi Mand Hohn B Competence of immature Maize embryos foe Agerobacterium Mediated gene transfer(J) Plant Cell,1992,4:7-16
    [10]. Shen WH, etal T-DNA transfer to maize cells Histochemical investigation of β-glucurpmoda seactivityin,maizetissues(J)ProcNatlAcadSci, USA, 1993,90:1488-1492
    [11]. Frame BR, etal Agro bacterium tume faciens-mediated transformation of maize embryos using a standard binary vector system(J) PlantPhysiol,2002,129(1): 13-22
    [12]. Ishida Y, etal High efficiency transformation of maize(ZeamaysL)med iated by Agrobacterium tumefaciens (j)Nat Biotechnol, 1996,14(6):745-750
    [13]. Zhao Z-Y, teal High throughout genetic trans formation mediated by Agrobacterium tume faciens in maize(J)MolBreed,2002,8(4):323-333
    
    
    [14].丁群星等 用子房注射法将Bt毒蛋白基因导入玉米的研究[J] 中国科学(B辑),1993,23(7):705~713
    [15]. Klen TM Gentical transformation of maize cells particle bardment [J] PlantPhysiol,1989,91:440~444
    [16]. Koziel MG Field performance of elite transgenetie maize plants express in ganin secticidal proe inderived bacillus turing iensis [J]Biotechnolong1993,11:184-200
    [17]. HuangL(黄璐),WeiZ-M(卫志明).Differenees in regenera-tion capacity between five elite varieties of maize (ZeamaysL.) and the DNA differences between embryogenic callu sandnonem bryogenic callus.Acta Phytophy siologica Siniea(植物生理学报),1999,4:332—338
    [18]. Xie Y-J(黄友菊).A study on induction and regeneration of EC. inmaize .Hereditas (Beijing) (遗传),1987,3:11—13
    [19].周逢勇、王国英、谢友菊、崔传志,郭三雄、戴景瑞,玉米自交系遗传转化体系的建立,科学通报,1998 43(23),2517~2520。
    [20].杜娟,余云舟,张领兵,季静,王刚,玉米自交系Ⅱ型胚性愈伤组织诱导及遗传转化初报,吉林农业大学学报,2000,22(4),41~44。
    [21]. HeP(何平),ShenL-S(沈利爽),LuC-F(陆朝福).Genetiean alysis and mapping the anther culture response geneinrice .Acta Genetica Sinica(遗传学报),1998,4:337—34
    [22]. GREENCF,PHILLIPS RL Plant regeneration from tissue cultures of maize[J] CropScience, 1975,15:417-418
    [23].傅作申,徐振彪,母秋华 玉米幼胚愈伤组织诱导及植株再生[J] 玉米科学,1998,6(3):32-34
    [24].周洪生 甜玉米胚愈伤组织的诱导、继代、植株再生的研究[J] 作物学报,1993,19(1)56-62
    [25].张宏,等 玉米原生质体培养及可育植株的再生[J] 作物学报,1998,24(4):197-502
    4] 蒋有绎,等玉米幼胚基因型差异的研究[J] 北京农业科学,1991,9(5):11-12
    [26].傅作申,等 玉米春油75幼胚愈伤组织的诱导及植株再生简报[J] 吉林农业科学,1996(4):90-93
    [27].葛亚新,等 同核异质玉米幼胚的离体培养[J] 北京农业大学学
    
    报,1994,20(4):397-400
    [28].谢友菊,陈鹂,戴景瑞 玉米体细胞胚状体诱导及其植株再生的研究[J] 遗传学报,1986,13(2):113-119
    [29].李学红,苏玲,张举仁 玉米芽尖培养和丛生芽发生[J] 山东大学学报(自然科学版),1997,32(4):461-465
    [30].LiX-Y(李效宇),XuL-Z(徐龙珠),ZhangG-F(张根发).High frequency induction of somatic embryogenesis in young inflorescences culture of Maize. Acta Botanica Boreali-Occidentalia Sinica(西北植物学报),1997,17(3):405~409
    [31].LiX-H(李学红),ZhangJ-R(张举仁).Studies on direct production of maleand femal einflores cencebystemtip culture in Maize.Science China(SeriesC)[(中国科学(C辑)),1999,29(2):186~193
    [32]. RayDS, GhoshPD. Somatic Embryo genesis and plant Regeneration from Cultured leaf Explants of Zeamays L. Annals of Botany, 1990,66:497~500
    [33]. Grimsley N, etal Agrobacterium-mediated delivery of in factious maize steak virus into maize plants[J]. Nature, 1987,325:177-179
    [34]. Hodges TKK,Imbrie CW, Becwar MR(1986) Genotype specificity of somatic embryo genesis and regeneration in maize Bio/Technol,4:219~223
    [35]. Lichtenstein C,DraperJ(1985),Genetic engineering of plant In Glover DM(ed)DUNCAND RWILLIAMSME the production of callus capable of plant regeneration from immature embryos of numerous Zea mays genotypes[J]Planta, 1985,165:322-332
    [36].LiuJH(刘纪华),ShiJC(施介村)(1996).Studies on selection of valuable some clonal mutants in silage maize Acta BotSin(植物学报),38:839~842(in Chinese)
    [37].谢友菊,戴景瑞,郝琨 玉米胚性愈伤组织诱导和植株再生的研究[J] 遗传,1987,9(3):11-13
    [38].王毅,谢友菊,戴景瑞 玉米体细胞胚状体的发生和植株再生[J] 北京农业大学学报,1989,15(2):13-19
    [39].李世润,张举仁,陈惠民 玉米胚性愈伤组织诱导和植株再生的研究[J] 山东大学学报(自然科学版),1990,25(1):116-123
    
    
    [40].胡彦民,季良越,韦小敏 玉米幼胚离体培养的影响因素研究[J] 河南农业大学学报,2000,34(1):305-308
    [41].李世润,张举仁,陈惠民 玉米胚性愈伤组织诱导和植株再生的研究[J] 山东大学学报(自然版),1990(25):116-124
    [42].张举仁,高树芳,于家驹,王兴安 玉米耐盐愈伤组织的筛选及植株再生植物学报,1991,33(11):887-893
    [43].李慧芬,李芬,等 玉米优良自交系E—28愈伤组织继代及再生 吉林农业大学学报,1999,21(2):10-12
    [44].向太和,杨剑波,吴家道 水稻、玉米胚性悬浮细胞系的有效建立 安徽农业科学,1996,24(1):1-3,8
    [45]. DUNCAND RWILLIAMSME The production of callus capable of plant regeneration from immature embryos of numerous Zeamays genotypes [J] Planta, 1985,165:322-332
    [46]. LUC,VASILIK, OZIAS-AKINSP Somatic embryo genesis in Zeamays [J] The oret ApplGenet, 1982,62:109-112
    [47]. LUC,VASILV, VASILIK Improved efficiency of somatic embryo genesis and plant regeneration in tissue cultures of maize[J] Theoret ApplGenet,1980,65:285-189
    [48]. Fromm,ME,etal Stable transformation of maize after genetransfer by electroporation [J] Natural 986,319(27):791-793
    [49]. Armstrong Cletal, Establishment and maintenance of friable, embryogenic maize callus and the involvement of Lproline [J]Planta,1985,164:207~214
    [50]. Welter Meetal, Morphotype of friable embrogenic maize callus[J] Plant Cell Reports, 1995,14:725~729
    [51]. Armstrong Cletal. Improved tissue culture response of anelite maize inbred through back cross breeding, and identification of chromosoma legions improvement for regeneration by RELP analysis[J] TheroapplGenet, 1992,84:755~762
    [52]. Duncan Dretal.The production of callus capable of plant regeneration from immature embryos of numerous Zeamays (L)genotype[J] Planta, 1985,165:322~332
    [53].柯遐义、张秀文、石和平、陈春洪、李宝健、周洪生,甜玉米胚愈伤组织的诱导继代,植株再生的研究,作物学报,1993,19(1):54~61。
    
    
    [54].周洪生,甜玉米胚愈伤组织的诱导,继代植株再生的研究,作物学报,1993,19(1):54-61
    [55].12、刘世强,尹庆良,张欣,侯秀英,玉米愈伤组织的诱导、分化及细胞分离培养,辽宁农业科学,1992(2):22~26。
    [56].TanZ-B(谭振波),LiuX(刘昕)CaoM-Q(曹鸣庆).The progress in maize genetic transformation.Biotechnology Bul-letin(生物技术通报),2000(6):9~12
    [57].原亚萍,母秋华,费玉峰,王金余,常规玉米自交系及其杂交种幼胚培养反应的研究,吉林农业大学学报。1997,19(1):16~20。
    [58].夏燕莉,潘光堂,刘玉珍、母贵琴,玉米幼胚培养基因型间差异性分析初报1J。四川农业大学学报 2001,19(1) 24~26。
    [59].YeX-G(叶兴国),XuH-J(徐惠君),XuQ-F(徐琼芳).Genetic analysis and combing ability evaluation of the anther culture response in common wheat. Scientia Agricultura Sinica(中国农业科学),1997 (6) :49—54
    [60]. Armstrong CEGREEN Establishment and maintenance of friable embryogenie maize callus and the involvement of Leporine[J]Planta1985,164:207-214
    [61].孙世孟.玉米胚性愈伤组织发生频率及其遗传规律的研究[J].莱阳农学院学报,1995,12(3):173-176.
    [62].刘世强.玉米愈伤组织的诱导、分化及细胞分离培养[J].辽宁农业科学,1992,(2):22-27.
    [63].李书平.小麦离体培养若干相关因素的研究[J].辽宁农业科学,1995,5:20-23.[64].陈英,曹毅,周先礼,等.玉米幼胚组织培养及其植株再生的研究[J].四川大学学报(自然版),1999,36(6):1125-1128.
    [64].黄璐,卫志明.不同基因型玉米的再生能力和胚性与非胚性愈伤组织DNA的差异[J].植物生理学报,1999,25(4):332-338.
    [65]. Nmcowen, D johnson,K Armstrong etal. Mapping genes conditioning invitroandro genesis in maize using RFLP analysis[J] TheorAppl Genet,1992,84:720-724
    [66].周洪生,玉米种子大全,中国农业出版社,2000:143~148
    [67].杜娟,王刚,玉米自交系叶片培养及再生植株的研究[J],吉林农业大学学报 2001,23(3):34~36
    
    
    [68].黄健秋,巴志明,玉米幼胚高效再生系统的建立植物生理学报[J],2001,27(6):489~494
    [69].石太渊,杨国立,杜艳艳,玉米体细胞培养中不同基因型和外质体的反应,国外农学杂粮作物,1999,19(5):11~14
    [70].孟详启,蒋有泽,李春红,赵克勇,玉米幼胚体细胞无性系植株再生及其移栽技术的研究,北京农学院学报,1993,8(1):101~104
    [71].崔凯荣,戴若兰,植物体细胞胚发生的分子生物学,科学出版社,2000:13~25
    [72].李浚明,植物组织培养教程,北京农业大学出版社,1992:109~111
    [73].孙敬三,钱迎倩 植物细胞学研究方法 北京:科学出版社,1987 60~773
    [74].路铁刚,王义琛,郑国红豆草体细胞胚胎发生早期过氧化物酶和酯酶同工酶谱的变化西北植物学报,1990,10(1):17~224
    [75].李继耕 栽培玉米起源的同工酶研究 遗传学报,1980,7(3):2236
    [76].梅慧生 植物同工酶研究的某些进展 植物生理学通讯,1981,(3):1~7
    [77].王中仁,植物等位酶分析,科学出版社,1998:10~14
    [78].植物生理实验技术 广西大学植物生理教研室,2001:16
    [79].向凤宁,张举仁,陈惠民,郑晓键,玉米胚性愈伤组织的长期继代及染色分析,西北植物学报 1994,14(3),157~163
    [80].许智宏,植物生物技术,上海科学技术出版社 1998:184~199
    [81].李竞雄,宋国明,植物细胞遗传学,科学出版社,1997:330~340;342
    [82]. Phillips ,R. L. and Peschke ,V.M.1988 in Plant Transposable Elements ,Nelson O led, Plenum Press ,New York and London. P. 305
    [83].陈一华,陈正华,植物离体培养细胞的类减数分裂,遗传HERE-DIAS(Beijing)1996,18(6):32~36

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