首页 | 本学科首页   官方微博 | 高级检索  
相似文献
 共查询到19条相似文献,搜索用时 93 毫秒
1.
甘蔗原生质体的体细胞胚胎发生   总被引:1,自引:0,他引:1  
用甘蔗(台糖134)花粉植株叶外植体产生的愈伤组织,作为分离原生质体的材料。原生质体以液体浅层培养的方式培养在修改的 MS 培养基上,经培养后一周内,观察到第一次细胞分裂,约5—6周后,形成了愈伤组织。将胚性细胞团组成的愈伤组织转移到除去或降低2,4-D浓度,但含有 BA 的分化培养基上,约2—3周后,有的愈伤组织发育了胚芽鞘,另一些愈伤组织分化出胚根或根。系统观察了这些原生质体在分裂和愈伤组织形成过程中的体细胞胚胎发生。  相似文献   

2.
鹰嘴紫云英甲硫氨酸抗性系原生质体培养及植株再生   总被引:1,自引:0,他引:1  
本研究建立了鹰嘴紫云英(AstragaluscicerL.)甲硫氨酸抗性系原生质体再生植株的实验体系。以茎切段诱导的松软愈伤组织为材料,通过酶法游离出大量有活力的原生质体。原生质体经培养持续细胞分裂形成了愈伤组织,并分化出再生苗。比较了不同培养基、培养密度对原生质体形成细胞分裂和再生的影响。结果表明,原生质体以2×105个/ml的植板密度,在附加2.0mg/L2,4-二氯苯氧乙酸(2,4-D)、0.2mg/L6-苄氨基嘌呤(6-BA)、200mg/L水解酪蛋白、2%蔗糖和0.3mol/L甘露醇DPD培养基中培养后,其分裂频率达38.3%。原生质体培养形成的愈伤组织仍具有对甲硫氨酸的抗性。转移到附加10mg/LKT、0.5mg/LNAA的MS分化培养基上,获得大量的再生苗。  相似文献   

3.
番茄子叶原生质体再生植株   总被引:3,自引:0,他引:3  
从番茄2—3周苗龄的子叶游离原生质体,在 MS 液体培养基中(附加2,4-D 1,6-BA 0.1mg/l)培养;在培养过程中经常不断添加新鲜培养液。6周后将细胞团移到半固体 MS 培养基上(附加成份同上,琼脂0.3%)。然后将肉眼可见的愈伤组织再移入 MS 固体培养基上,愈伤组织长到直径为5 mm 大小时,转到 MS 分化培养基上(附加6-BA 2 mg/1,[AA 0.2 mg/l)诱导分化,得到了再生植株。比较了固体培养、悬浮培养和双层培养三种方法,观察原生质体生长情况,以双层培养为好。  相似文献   

4.
从发根农杆菌A4转化的荒漠植物—璐驼刺毛状根愈伤组织中分离的原生质体培养的结果表明,酶解新转代7~10d的淡黄色松软愈伤组织,可获得大量有活力的原生质体。原生质体在附加有1.5mg.L-1 2,4.D、0.2mg.L-1 6.BA、0.3m01.L-1甘露醇、2%(W/V)蔗糖和500mg·L-1水解酪蛋白的DPD培养基中进行液体浅层培养可持续分裂。培养基的最适渗透压为(450±3)mOsm·kg-1,原生质体的最适植板密度为4×10^5个.mL-1。制备原生质体的愈伤组织以低温(4℃)预处理后,原生质体的产率和分裂频率均提高,分裂频率最高可达50%。原生质体分裂形成的愈伤组织转移在附加1-2mg.L-1 6-BA(或KT)和0.2mg·L-1NAA的MS培养基上培养后,可以分化并获得再生植株。纸电泳检测表明,原生质体再生的愈伤组织和分化植株仍然含有毛状根转化系的特异产物——冠瘿碱。  相似文献   

5.
以在MSB培养基(MS无机盐,B 5有机成份附加2mg/L 2.4-D)中继代一年的87-l籼型花粉愈伤组织和由籼型水稻株系81-3在改良的RY一2培养基中继代半年的悬浮培养物游离原生质体,分别在RY 2和KPR培养基中进行液体浅层培养或琼脂糖包埋培养,并在琼脂糖包埋培养时饲喂以粳型广亲和材料02428的悬浮培养细胞或除去}王胞的调渗悬浮液。原生质体植板率达8.7%-12.5%。将3—4周后形成的肉眼可见的小愈伤组织转移到台o.5mg/L 2.4-D的N6固体培养基上增殖,待愈伤组织长到直径达2—3mm大小时,分别或串换使用三种不同激素水平的分化培养基,最终由籼型株系81-3的原生质体再生了植株,而87-1籼型花粉胚性愈伤组织原生质体只再生了愈伤组织。  相似文献   

6.
玉米原生质体的植株再生   总被引:6,自引:1,他引:5  
以玉米花粉诱导产生的胚性愈伤组织,在 N6基本培养基附加激动素2 mg/l,6-苄基氨基嘌呤1mg/l,2,4-D 0.3 mg/l,水解酪蛋白500 mg*l 及谷酰胺250 mg/l 的培养基上进行转代培养。用转代培养一年半后的胚性愈伤组织分离原生质体,原生质体培养在附加激动素0.2 mg/l,6-苄基氨基嘌呤0.1 mg/l,2,4-D 0.5 mg/1,水解酪蛋白200 mg/l,谷酰胺100 mg/l及椰乳296的原生质体培养基 Z_2中。培养4—6天后,原生质体的再生细胞进行第一次分裂;培养3星期后发育成肉眼可见的小愈伤组织。此后,需添加降低糖浓度的同样原生质体培养基 Z_2共两次。待再生愈伤组织长到直径2—4 mm 大小时,把它们先后转经第一及第二(即Z_3及 Z_4)分化培养基上诱导器官分化。最后在 Z_4分化培养基上同时有胚状体的发生及植株的分化。  相似文献   

7.
沙葱叶基愈伤组织原生质体再生体系的建立   总被引:4,自引:0,他引:4  
沙葱是一种具有抗旱抗寒、抗病性和适应性强等生理特性的荒漠植物.为开发利用其固有的遗传资源,本研究利用细胞工程技术建立了沙葱(Allium mongolicum Regel)叶基愈伤组织原生质体的分离、培养和植株再生实验体系.研究结果表明,酶法分离原生质体的产率和分裂频率明显取决于用于制各原生质体的愈伤组织的状态.转代培养7~10d的松软愈伤组织可分离出大量有活性的.在附加2.0mg/L2,4-D、0.2mg/L激动素、500 mg/L水解乳蛋白、0.4 mol/L甘露醇和2%蔗糖的MS培养基中进行液体浅层培养,4~5 d后出现第一次原生质体分裂;7~10d出现第二次分裂.结果显示原生质体的分裂频率大约为5%;4周后,可见到小愈伤组织.当将原生质体分裂形成的愈伤组织转移到附加2.0mg/L6-苄氨基嘌呤(或激动素)和0.4mg/L萘乙酸(NAA)的MS固体培养基上,并在低光照条件下培养后,从愈伤组织上分化出了不定芽,进而发展成小植株,并移栽成活.本研究对沙葱抗逆遗传品质用于经济植物遗传改良的研究奠定了可行的实验基础.  相似文献   

8.
从甘蔗嫩叶外植体诱导愈伤组织,经继代培养后,挑选胚性愈伤组织,转入MS3液体培养基,进行悬浮培养,当培养物分离出小粒状的细胞团,细胞变得小而圆时,用于分离原生质体,原生质体以琼脂糖固化的培养方式培养于MRP1培养基中,由原生质体再生的愈伤组织有两种类型,挑选粒状,坚实的再和愈伤组织转移到N6分化培养基上,“新台糖1号“再生的愈伤组织,在含有KT0.5mg/L的培养基中,分化出绿芽并长成完整的植株。  相似文献   

9.
毛花猕猴桃原生质体再生植株   总被引:12,自引:0,他引:12  
从毛花猕猴桃(Actinidia eriantha Benth.)试管培养的实生苗新展开叶片分离的原生质体,培养在液体MS(除去NH4NO3)附加2,4-D 1.0 m g/L和葡萄糖0.4 m ol/L的培养基上。培养3周后植板率达到19.4% 。在未添加新鲜培养基的情况下,原生质体再生的细胞可持续分裂,并于3个月时长成2 m m 大小的愈伤组织。将该愈伤组织转移到附加玉米素0.5 m g/L和IAA 0.1 m g/L的固体MS培养基上,分化出苗。试管苗经诱导生根,长成完整小植株  相似文献   

10.
以胡萝卜(Daucus L.var.sativa DC.)根的中央木质部切段为外植体诱导了松软的愈伤组织。用酶法从这种愈伤组织分离出大量有活力的原生质体。当在补加有0.11毫克/升玉米素和0.18毫克/升萘乙酸的C81V培养基中进行液体浅层培养时,原生质体能再生新细胞壁,进行连续分裂,产生大量小愈伤组织。再转移到含有1毫克/升的激动素和0.2毫克/升萘乙酸的MS固体培养基上后,愈伤组织继续长大,并分化出小植株。从原生质体开始培养到形成再生植株的时间为1个半月至2个月。  相似文献   

11.
Protoplasts were isolated from spongy calli in a well growing state. Protoplasts were induced to undergo sustained divisions and to form colonies in the liquid C81V medium supplemented with 2,4-D and kinetin. When protoplast derived colonies were transferred onto agarsolidified medium, the spongy, white calli developed. After being subcultured on N6 medium plus 6BA and IBA, the light-yellow, granular embryogenic calli emerged on the protoplast regenerated callus surface. A large number of plantlets were obtained on MS medium with NAA and IBA via somatic embryogenesis Cytological observation on the donor calli used for protoplast isolation and plantlets regenerated from protoplasts were carried out. Remarkable variation of nucleus morphology and chromosome numbers were observed in donor calli. However, the cytological abnormalities in plantlets regenerated from protoplasts were comparatively less seen. The reason are discussed.  相似文献   

12.
光棘豆悬浮细胞原生质体培养再生小植株(简报)   总被引:1,自引:0,他引:1  
迄今为止,药用植物原生质体培养再生植株的报道还不多。光棘豆(Oxytropis leptophylla)是多年生豆科植物,可饲用,是一种常用的野生中草药。全株入药有清热解毒功能,用于治疗痈疤肿毒。已有研究表明,光棘豆具有离体培养时愈伤组织增殖快、植株再生频率高的特点。进行原生质体培养再生植株的研究将有助于光棘豆的改良和驯化,为其开发利用提供基础。本文首次报道了光棘豆悬浮细胞原生质培养再生小植株的结果。  相似文献   

13.
To search for an alternative method for protoplast culture, regenerable embryogenic calli were obtained from anther culture of three wheat cultivars, Karl 92, Jinghua #1, and Pavon 76. Protoplasts were isolated directly from the haploid embryogenic calli and cultured in modified PMI and LM8P media without going through cell suspension culture. After 8–11 days of subculture, the embryogenic calli produced the maximum yield of protoplasts and cell division was at the highest frequency when plated at a density of 3–4 × 105 protoplasts ml−1. Frequency of colony formation varied from 0.2% to 0.5% for Jinghua #1 and from 0.1% to 2% for Pavon 76, while Karl 92 failed to produce colonies, even though its embryogenic calli were friable and fast-growing on the maintenance medium. Green haploid plantlets of Jinghua #1 and Pavon 76 have been regenerated from protoplasts, which were cultured on a differentiation medium first and then on a rooting medium. This revised version was published online in June 2006 with corrections to the Cover Date.  相似文献   

14.
Large populations of mesophyll protoplasts were released from the leaves of 1.5–2 month old sterile seedlings, with a high protoplast yield (3.7× 10 6g-1FW) after protoplast purification. The purified protoplasts were cultured in a modified K8p liquid medium supplemented with 0.5 mg/L 2,4-D, 1 mg/L NAA and 0.5 mg/L BA. Higher density (1× 106/ml) in the initial culture of protoplasts is favourable to the division of cultured mesophyll protoplasts of this woody species among the densities tested. The protoplasts started to divide after 6 days of culture, and achieved 26.8% division frequency by 14 days. Sustained divisions resulted in mass production of cell colonies and small calli in 8 weeks. The calli further grew to 2–3mm on the gelrite-solidified K8 medium supplemented with 0.2 mg/L NAA aud 0.5 mg/L BA. Then, they were transferred onto the MSB proliferation medium with 0.1 mg/L NAA and 0.25 mg/L BA, where compact and cream-coloured calli were formed. Shoot formation was initiated on MSB differentiation medium coraming 0.5 mg/L IAA, 1 mg/L each of BA and ZT. It was observed that the frequency of shoot formation was about 28.7%. Whole plantlets were regenerated upon transferring 3 cm shoots to 1/2MS medium with 0.5mg/L IBA and 0.1mg/L BA, from which they were already transplanted into pots and grew well in the phytotron of Shanghai Institute of Plant Physiology.  相似文献   

15.
细叶黄芪叶肉原生质体植株再生   总被引:1,自引:0,他引:1  
从细叶黄芪(Astragalus tenuis)外植体愈伤组织分化出的再生苗叶片分离原生质体。原生质体培养在改良 K8p 培养基中形成了愈伤组织。增殖后的愈伤组织转入分化培养基中分化出苗。幼苗在生根培养基中长出不定根,再生成为完整植株。再生苗叶肉原生质体在 AY培养基中,种子无菌苗叶肉原生质体在改良 K8p 或 AY 培养基中均不能形成愈伤组织。较低的2,4-D 浓度有利于原生质体愈伤组织的形成和分化,过高的2,4-D 浓度对愈伤组织的形成和分化有不利的影响。  相似文献   

16.
Protoplasts were isolated from suspension cultures of various cell lines of Duboisia myoporoides R. Br. There were differences among cell lines with respect to optimal conditions for protoplast isolation including the amount and kind of enzymes and the osmoticum concentration. Protoplasts isolated from one cell line were successfully cultured and induced to form cell colonies in liquid modified B5 medium. Addition of conditioned medium, coconut milk and glucose as an osmoticum to protoplast culture medium as well as maintenance of high protoplast density in culture (> 105/ml) were essential to obtain protocolony formation. Reduction of osmoticum concentration and deletion of coconut milk and conditioned medium from the culture medium were necessary to allow further colony development leading to cellus formation. Intact plants regenerated from calli derived from protoplasts were successfully transferred to pots.  相似文献   

17.
甘蔗原生质体的植株再生   总被引:1,自引:1,他引:0  
从甘蔗(Saccharum officinarum L.)嫩叶外植体诱导愈伤组织,经继代培养后,挑选胚性愈伤组织,转入MS3 液体培养基,进行悬浮培养。当培养物分离出小粒状的细胞团,细胞变得小而圆时,用于分离原生质体。原生质体以琼脂糖固化的培养方式培养于MRP1 培养基中。由原生质体再生的愈伤组织有两种类型。挑选粒状、坚实的再生愈伤组织转移到N6 分化培养基上,“新台糖1 号”再生的愈伤组织,在含有KT 0.5 m g/L的培养基中,分化出绿芽并长成完整的植株。而“粤糖57-423”和“US66-56-9”再生的愈伤组织,在加有0.1% 的活性炭的培养基中,前者分化出白化苗,后者分化出根  相似文献   

18.
We report regeneration of fertile plants from barley (Hordeum vulgare L. cv. Igri) protoplasts isolated from regenerable suspension cultures initiated from anther-derived embryogenic callus. Plants were routinely regenerated from these suspension cultures, which maintained their regenerative capacity for several months. It was first possible to isolate protoplasts from suspensions after three months of culture and after four months protoplasts capable of division could be isolated. Protoplasts maintained the regenerative capacity of the donor cells and formed embryogenic callus. Green plants were regenerated from protoplast-derived calli, although the proportion of albino plantlets was high. Viable regenerants were transferred to soil and fertile plants were recovered.Abbreviations 2,4-D 2,4-dichlorophenoxyacetic acid - 6-BAP 6-benzylaminopurine - PP Protoplasts  相似文献   

19.
Renate Lührs  Horst Lörz 《Planta》1988,175(1):71-81
Cell-suspension cultures were initiated from embryogenic calli of various barley cultivars. Seven fast-growing suspension lines were obtained from four different cultivars (cvs. Dissa, Emir, Golden Promise and Igri). Two of these cell suspensions showed morphogenic capacity. From a cell suspension of cv. Dissa, albino plantlets were regenerated when aggregates were cultured on solid medium. Aggregates of cv. Igri usually stopped differentiation at the globular stage, but occasionally formed scutellum-like structures. Five suspension lines were used for protoplast isolation and culture. Dividing protoplasts were obtained from all lines, but with cv. Igri a few divisions only and no further development were observed. Protoplasts from the various lines differed in the time of first division (2–14 d), division frequency (0.09–70.9%) and efficiency of colony formation (0.09–7.3%). Protoplasts isolated from the morphogenic cell suspension of cv. Dissa developed compact calli which sporadically regenerated albino plantlets.Abbreviations CC, MS, N6, SH, Kao8p culture media; see Material and methods - cv chltivar - dicamba 3,6-dichloro-o-anisic acid - 2,4-D 2,4-dichlorophenoxyacetic acid - picloram 4-amino-3,5,6-trichloropicolinic acid  相似文献   

设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号