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1.
中国鸭茅主栽品种DNA指纹图谱构建   总被引:1,自引:0,他引:1  
利用SSR标记和SCoT标记构建了我国主栽的21个鸭茅品种的DNA指纹图谱。从180对SSR引物和80个SCoT引物中,筛选出多态性高、谱带清晰的SSR引物和SCoT引物各24个。24对SSR引物在供试材料中共检测到186个条带,其中多态性条带为175个,品种特异条带6个,平均多态性比率94.03%,多态性信息量均值0.845,Shannon指数变幅0.4479~0.6549,基因多样性指数变幅0.2946~0.4633,可鉴别的品种数2~21个;利用24个SCoT引物在供试材料中共检测到321个条带,其中多态性条带为249个,品种特异条带6个,平均多态性比率76.33%,多态性信息量均值0.907,Shannon指数变幅0.2588~0.6329,基因多样性指数变幅0.1695~0.4451,可鉴别的品种数1~21个;5对SSR引物和5个SCoT引物在10个品种上具有唯一特征谱带,最终综合各项指标筛选出5个引物(A01E14、A01K14、B03E14、D02K13和SCoT23)上的37个条带用于鸭茅品种DNA指纹图谱构建,数据库中每个品种均具有唯一DNA指纹编码,构建的DNA指纹数据可用于鸭茅品种真伪鉴定,为品种权保护提供了科学依据。  相似文献   

2.
水稻基因组DNA用Psf I酶切同时与人工接头连接后,使用选择性引物进行PCR扩增,琼脂糖凝胶电泳检测所构建的水稻DNA指纹图谱。结果表明在JXl7和ZYQ8问以及5种野生稻间均存在DNA多态性片段。  相似文献   

3.
SRFA法构建水稻DNA指纹图谱   总被引:16,自引:0,他引:16  
水稻基因组DNA用PstⅠ酶切同时与人工接头连接后,使用选择性引物进行PCR扩增,琼脂糖凝胶电泳检测所构建的水稻DNA指纹图谱。结果表明在JX17和ZYQ8间以及5种野生稻间均存在DNA多态性片段。  相似文献   

4.
RAPD用于生物鉴定具有快速、简便、经济等优点。但是,由于该法所用引物通常为9-10个寡聚核苷酸,与PCR使用特异引物相比,其Tm值相对较低,扩增反应易受外界条件影响,重复性较差。SRFA技术采用设计有限制内切酶位点的人工合成接头与引物互补,弥补了RAPD法的上述不足。Fig.1为SRFA的技术路线。为提高连接效率,在同一试管内,用PstI酶解基因组DNA,并与人工接头连结,制备SRFA扩增的模板。合成与接头序列相应的引物。对5上野生稻品种和籼、粳稻各一个栽培品种SRFA刊物放增。Fig.2表示:每种材料均能获得约10条以得一条(1.3kb)片段,用引物2可得2条(1.1kb、0.7kb)片段。与FAPD法相比,SRFA法增加20%的多态性。栽培稻与野生稻之间在多态性没有差异,说明两乾亲缘关系非常接近。五种野生稻的图谱可分为两类:江西、湖南、广西的与籼稻相近,广东、云南的与粳稻相近。当然,这还有待其它方面的研究来验证。接头的设计要求避免自身连续,与目的的自然连续后不能再被PstI切开。引物包括不变序列和选择序列两部分,前者与接头互补,后者为数个隋机序列。因此,SRFA法除了重复性好以外,还可通过增加(或减少)选择序列的数目扩增较少(或多)的产物片段,满足不同的需要。每一对设计有不同限制酶切位点的接头和引物可扩增出一个特异的DNA指纹图谱,与RAPD法相比,SRFA法操作稍显繁琐,模板DNA用量大、质量要求高,由于酶切和连续,成本也相对较高。  相似文献   

5.
DNA指纹图谱法及其应用   总被引:1,自引:0,他引:1  
DNA指纹图谱法是利用卫星DNA作探针,探测不同生物的卫星区,产生相应的DNA指纹图谱的杂交方法。它是八十年代中期发展起来的最新技术。短暂几年,该法得到迅速发展和完善,并在法医学、人类遗传学以及鸟类和其它哺乳类的遗传研究中得到广泛应用。  相似文献   

6.
DNA指纹图谱对新品种选育、种质资源保存和管理具有重要的意义。然而,利用SSR标记构建红麻DNA指纹图谱的研究仍十分有限。在本研究中,利用课题组开发并筛选出的131对SSR引物,分析不同来源的96份红麻种质资源,包括红麻品种审定的区试对照品种福红952。结果表明,131对引物共扩增出375条带,平均每对引物扩增出2.6条带。以遗传相似系数0.614为切割线时,可以分为2个类群,52个为类群P1,44个为类群P2;以遗传相似系数0.710做切割线,可分为5个亚群。利用这131对引物标记所得的数据成功绘制了一份85个品种独特的指纹图谱,其中福红952可被HcEMS238引物特异识别。其他11份因存在遗传相似性高的现象,未被识别。上述结果为红麻品种的真实性鉴定及遗传多样性分析提供依据。  相似文献   

7.
为了克服单纯依据形态特性鉴定品种的局限性, 我们开展了莲品种DNA指纹图谱构建研究, 旨在对其品种的快速准确鉴定及专利权保护等起一定作用。本研究以圆明园保存的72个莲品种为实验材料, 用来自不同地点的1,409份野生莲(Nelumbo nucifera)和58份美洲黄莲(N. lutea)群体样本作遗传背景参照。从104对核微卫星引物(nSSR)中筛选出15对, 从17对叶绿体微卫星(cpSSR)引物中筛选出2对, 共17对引物作为72个莲品种DNA指纹鉴定的条码。15对nSSR引物共检测到94个等位基因(平均6.27个), 其中11个属于美洲黄莲, 65个属于野生莲, 18个不能区分; 多态信息含量(PIC)介于0.3899-0.8023之间 (平均0.5748)。2对cpSSR引物共检测到13个单倍型, 其中9个属于野生莲, 4个属于美洲黄莲。全部17对引物标记结果显示, 共有19个品种含有美洲黄莲遗传组分, 其中8个母系来源于美洲黄莲; 有36个品种(涉及12对引物)具有至少1个特有基因型; 最少8对引物组合可完全区分开68个品种。有2组共4个品种组内全部17对引物均不能区分。本研究通过核心引物组合法使68个莲品种获得特异性DNA指纹。推荐13对nSSR和2对cpSSR共15对引物作为莲品种鉴定的核心条码, 并建议将形态特征与DNA指纹相结合作为莲品种的鉴定标准。  相似文献   

8.
木薯商业品种的指纹图谱构建   总被引:4,自引:2,他引:2  
利用SSR分子标记技术构建10个木薯商业品种的指纹图谱。通过基因组多态性分析,从已定位于木薯连锁群的44对SSR引物中筛选到22对扩增效果好的引物,经统计分析发现,用其中4对引物ssry-13、ssry-19、ssry-23和ssry-45的组合能够建立该组木薯商业品种的指纹图谱,品种鉴定的置信概率达到99.9985%。  相似文献   

9.
动物的双亲判别与DNA指纹图谱   总被引:1,自引:1,他引:1  
房继明 《兽类学报》1994,14(1):63-68
在亲缘识别和婚配选择等动物行为学研究中,需要知道动物之间的亲缘关系。通过分析以往的各种双亲判别方法,如蛋白电泳和血清学技术等,其中DNA指纹图谱法被认为是目前最好的。这种方法已在许多种动物(狗、猫、小家鼠、家燕、蓠雀、天鹅等)和人的研究中得到应用。DNA指纹图谱方法的基本原理是这样,两个动物的DNA 片断具有完全相同的碱基排序的情形从理论上讲其可能性极小,所以每个个体(除同卵双生子外)的DNA经提取、酶切、凝胶电泳、RNA或DNA探针杂交和放射性自显影后所形成的条带分布应该是有区别的、具有个体的特异性,这些条带就是DNA指纹图谱。动物个体DNA 指纹图谱中的每一条带,除了偶然发生的基因突变, 都可以从父母双方、或父方、或母方找到。据此,本文介绍了如何使用DNA指纹图谱进行包括父方和母方亲代判别的方法,如条带比较法和相似性系数法。  相似文献   

10.
牛鞭草品种EST-SSR指纹图谱构建及遗传多样性分析   总被引:1,自引:0,他引:1  
为探讨牛鞭草(Hemarthria spp.)品种间的遗传多样性,从86对EST-SSR引物中筛选出8对引物对牛鞭草属6个品种进行指纹图谱的构建及遗传多样性分析。结果表明,8对EST-SSR引物对牛鞭草属6个品种共扩增出193条清晰条带,多态性条带161条,多态性比例为83.4%。每条引物的多态信息含量(PIC)为0.480~0.695,平均为0.602。UPGMA聚类分析表明,牛鞭草属6个品种在相似系数为0.652处可分为两大类群。8对EST-SSR引物均能将6个品种完全区分开,以3对EST-SSR引物扩增的电泳图谱为基础,建立了牛鞭草属6个品种的指纹图谱标准模式图,每个品种都有唯一的指纹图谱。牛鞭草属6个品种的平均Nei’s基因多样性指数为0.333,平均Shannon信息指数为0.496,品种间的相似系数介于0.399~0.782之间。可见,牛鞭草属植物品种的遗传多样性较丰富,种间差异明显。  相似文献   

11.
结球甘蓝游离小孢子胚胎发生   总被引:12,自引:0,他引:12  
以结球甘蓝品种“强夏”为材料进行游离小孢子培养,对与胚胎发生关系密切的因子进行探讨。研究结果表明,在盛花前期取材最适宜;单核晚期至双核期的小孢子才能发育成胚状体;含17%蔗糖的培养液在培养初期有利于小孢子存活;培养3d后胚胎诱导则以14%蔗糖浓度为最好;高浓度(17%)蔗糖培养3d后添加低浓度(11%)蔗糖培养液能大大提高胚胎发生能力,比一直在14%蔗糖培养液培养的提高282.4%,比更新培养液培养的提高126.1%。  相似文献   

12.
结球甘蓝(Brassica oleracea var.capitata)和青花菜(Brassica oleracea var.italica)小孢子胚再生植株频率低是目前影响游离小孢子培养技术有效应用的关键问题之一,研究其小孢子胚植株再生频率的影响因素,提高胚再生植株频率,对促进游离小孢子培养技术在甘蓝类蔬菜育种中更好地应用具有重要意义。该文以结球甘蓝中甘11和青花菜TI-111等基因型为试材,对影响游离小孢子胚再生成植株的固体培养基类型、琼脂浓度、胚的类型及胚在液体培养基中的滞留时间等因素进行了研究。结果表明:游离小孢子培养25天的子叶胚在琼脂浓度为1%–1.25%的B5培养基上植株再生频率最高。进一步通过8个不同基因型对上述实验结果进行了验证,结果显示,游离小孢子培养25天的子叶胚在1%琼脂浓度的B5培养基上植株再生频率达77.8%–97.2%。  相似文献   

13.
结球甘蓝和青花菜小孢子胚植株再生   总被引:3,自引:0,他引:3  
结球甘蓝(Brassica oleracea var. capitata)和青花菜(Brassica oleracea var. italica)小孢子胚再生植株频率低是目前影响游离小孢子培养技术有效应用的关键问题之一, 研究其小孢子胚植株再生频率的影响因素, 提高胚再生植株频率, 对促进游离小孢子培养技术在甘蓝类蔬菜育种中更好地应用具有重要意义。该文以结球甘蓝中甘11和青花菜TI-111等基因型为试材, 对影响游离小孢子胚再生成植株的固体培养基类型、琼脂浓度、胚的类型及胚在液体培养基中的滞留时间等因素进行了研究。结果表明: 游离小孢子培养25天的子叶胚在琼脂浓度为1%–1.25%的B5培养基上植株再生频率最高。进一步通过8个不同基因型对上述实验结果进行了验证, 结果显示, 游离小孢子培养25天的子叶胚在1%琼脂浓度的B5培养基上植株再生频率达77.8%–97.2%。  相似文献   

14.
By manipulation of various growth regulators and physical conditions,plants have been regenerated from excised roots, stem segments,cotyledons, leaves, and callus cultures of red cabbage (Brassicaoleracea var. capitata) grown under in vitro conditions. Shootbuds were induced on isolated root segments (1 cm long) culturedon Murashige and Skoog's medium and the frequency of bud formationwas greatly enhanced by the addition of kinetin (0.5 part 10–6).Callus obtained from the seeds, cotyledons, and hypocotyl segmentscultured on a medium fortified with 2,4-D (1 part 10–6),kinetin (0.1 part 10–6), and coconut milk (10%, v/v) hasbeen repeatedly subcultured. The callus is slow growing, andon transference to a kinetin (2 parts 10–6) and IAA (2parts 10–6) medium underwent morphogenesis to give riseto plants. The significance of the propagation of red cabbageby in vitro culture is pointed out.  相似文献   

15.
Hall DI  Smith IK 《Plant physiology》1983,72(3):654-658
Cabbage (Brassica oleracea var capitata) leaves were used as a source of cystine lyase. Diethylaminoethyl-cellulose chromatography resolved two peaks of activity, designated I and II.  相似文献   

16.
综述了国内外结球甘蓝裂球性状及鉴定方法的研究进展,从裂球的遗传因素、叶片解剖特征、生理生化特性等方面分析了结球甘蓝裂球发生的原因,并提出了防治裂球的栽培措施.  相似文献   

17.
Cabbage belonging to Brassicaceae family is one of the most important vegetables cultivated worldwide. The economically important part of cabbage crop is head, formed by leaves which may be of splitting and non-splitting types. Cabbage varieties showing head splitting causes huge loss to the farmers and therefore finding the molecular and structural basis of splitting types would be helpful to breeders. To determine which anatomical characteristics were related to head-splitting in cabbage, we analyzed two contrasting cabbage lines and their offspring using a field emission scanning electron microscope. The inbred line “747” is an early head-splitting type, while the inbred line “748” is a head-splitting-resistant type. The petiole cells of “747” seems to be larger than those of “748” at maturity; however, there was no significant difference in petiole cell size at both pre-heading and maturity stages. The lower epidermis cells of “747” were larger than those of “748” at the pre-heading and maturity stages. “747” had thinner epidermis cell wall than “748” at maturity stage, however, there was no difference of the epidermis cell wall thickness in the two lines at the pre-heading stage. The head-splitting plants in the F1 and F2 population inherited the larger cell size and thinner cell walls of epidermis cells in the petiole. In the petiole cell walls of “747” and the F1 and F2 plants that formed splitting heads, the cellulose microfibrils were loose and had separated from each other. These findings verified that anomalous cellulose microfibrils, larger cell size and thinner-walled epidermis cells are important genetic factors that make cabbage heads prone to splitting.  相似文献   

18.
Transgenic broccoli (Brassica oleracea var. italica) was produced by two Agrobacterium tumefaciens-mediated transformation methods. One used flowering stalk explants from mature plants; the other used hypocotyl and petiole explants from in vitro-grown seedlings. Several hundred transformants containing a Bacillus thuringiensis -endotoxin gene (CryIA(c)-type) and the neomycin phosphotransferase gene were recovered. Rooted transformants were obtained in as little as 3 months using seedling explants. Transgenic cabbage was also obtained by the seedling explant method. Parameters important for high efficiency regeneration and transformation rates included use of a tobacco nurse cell layer, sealing of petri dishes with a porous surgical tape instead of Parafilm, preculture of seedling explants and appropriate length of co-cultivation with Agrobacterium. Advantages and disadvantages of each transformation procedure are discussed.  相似文献   

19.
Agrobacterium rhizogenes A4M70GUS-mediated transformation of Savoy cabbage (Brassica oleracea L. var. sabauda) and two local lines of cabbage (B. oleracea L. var. capitata) was obtained using hypocotyl and cotyledon explants. The percentage of explants which formed roots was very high in all genotypes: 92.3 % in Savoy Gg-1, 64.4 % in cabbage P22I5, and 87.2 % in P34I5. Spontaneous shoot regeneration of excised root cultures grown on the hormone-free medium occurred in all three genotypes. In cabbage lines P22I5 and P34I5 shoot regeneration was higher (9.3 and 2.6 % respectively) than in Savoy cabbage Gg-1 (1.3 %). Transgenic nature of hairy root-derived plants was evaluated by GUS histological test and PCR analysis. All the tested cabbage shoots were GUS positive whilst in a Savoy cabbage GUS expression was registered only in 55 % of tested clones. PCR analysis demonstrated the presence of the GUS gene in regenerated shoot clones and in T1 progeny.  相似文献   

20.
A simple and rapid protocol was established for repetitive somatic embryogenesis and subsequent plant regeneration in two important Brassica oleracea varieties, cabbage and cauliflower. Direct regeneration of somatic embryos (SEs) was achieved from immature zygotic embryos cultured on B5 plant growth regulator (PGR)-free (B5-0) induction medium and on B5 medium supplemented with 1 mg l?1 2,4-dichlorophenoxyacetic acid (2,4-D) (B5-D). Zygotic embryos of both cabbage and cauliflower at the cotyledonary (C) stage (1.8 mm long) incubated on B5-0 medium displayed the highest embryo-forming capacities (EFCs) of 11.84 and 11.95, respectively. Secondary somatic embryos (SSEs) appeared on the cabbage and cauliflower’s primary embryos at a high frequency (83.3 and 87.5 %, respectively), and this process continued in a repetitive way on PGR-free Murashige and Skoog (MS-0) medium. The embryogenic potential of the cultures with a gradual diminution was maintained for 10 months (ten cycles). A total of 20 % of the mature SSEs from cabbage and 55 % from cauliflower spontaneously regenerated plantlets on MS-0 medium. The addition of 1 mg l?1 6-benzyladenine (BA) or 6-furfurylaminopurine (Kin) in the regeneration medium significantly improved somatic embryo conversion into plantlets by up to 56 % in cabbage and 79 % in cauliflower. Regenerated plants acclimated successfully to ex vitro conditions and displayed morphological and reproductive characteristics similar to seed-derived plants. Effective recurrent somatic embryogenesis may be an appropriate practical solution for clonal propagation and genetic modifications of cabbage and cauliflower.  相似文献   

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