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1.
白及种子萌发与快速繁殖技术的研究   总被引:7,自引:0,他引:7  
将不同胚龄的白及种子接种到不同培养基中进行培养,对白及种子萌发率、萌发时间、丛生芽增殖、生根等方面进行了研究。结果表明:白及种子萌发率与其胚龄及有胚率成正相关,萌发时间则与胚龄及有胚率成负相关;胚龄16周的种子在1 g/L花宝1号 2 g/L花宝2号的培养基上萌发率可达84%;胚龄等于或大于20周的种子萌发率不受培养基成分的影响,均可达100%,萌发时间只需7 d;丛生芽增殖的最佳培养基为1/2 MS 4.0 mg/L6-BA 0.2 mg/L NAA 100 g/L CM,其增殖倍数达4.41倍;诱导生根较好的培养基为1/2 MS 0.2 mg/L NAA,生根率达90%。  相似文献   

2.
兰属种间杂交胚拯救研究初报   总被引:1,自引:0,他引:1  
取兰属大花蕙兰为母本、墨兰为父本进行种间杂交并进行杂种胚拯救研究。结果显示,子房离体培养明显优于胚珠离体培养,是胚抢救培养的有效手段。不同取材时间及在不同培养基中子房培养情况差异明显。在授粉后60 d子房离体培养即可获得成功,但以授粉后90 d子房离体培养最佳,萌发率高,达80%。子房培养的最适培养基为VW+BA 0.2 mg/L+NAA 0.2 mg/L+蛋白胨3 g/L+水解酪蛋白500 mg/L+椰子汁10%。  相似文献   

3.
枸杞花药愈伤组织悬浮培养条件下胚状体发生与植株再生   总被引:15,自引:0,他引:15  
采用枸杞花药进行离体培养,建立细胞系,诱导植株再生,结果在含不同激素的4种培养基上都诱导出了愈伤组织,诱导率为17%~169%。愈伤组织在MS 2,4D05mg/L的固体培养基上,经2~3次培养后,获颗粒状胚性愈伤组织,颗粒状胚性愈伤组织转入含相同成分的液体培养基中进行振荡培养,24h后获得大量单细胞。单细胞液经过多次继代培养,建立起稳定的悬浮系。悬浮细胞在液体培养基中培养8~10d可获得含有大量胚状体的愈伤组织块,收集悬浮培养物转移到MS 6BA02mg/L的固体培养基上,胚状体能够萌发形成大量绿色小芽,小芽转入生根培养基(MS NAA02mg/L)中20d后得到完整植株。植株根尖细胞经细胞学鉴定为单倍体。  相似文献   

4.
为提高姜花属种间杂交胚挽救中幼胚萌发率,以白姜花×金姜花的胚珠为试材,研究不同胚珠发育时期、不同培养基及低温处理果实对幼胚萌发率的影响.结果表明,白姜花×金姜花胚挽救的适宜培养基是MS+0.1 mg/L BA十0.1 mg/L NAA;接种时期以60 d的幼胚培养效果最佳;低温处理果实3~6 d能有效提高幼胚的萌发率.  相似文献   

5.
培养于含有生长素的MS培养基上的水稻无菌幼苗(7d龄)根切段可直接发生体细胞胚。在含2,4D2.2mg·L-1和NAA1.8mg·L-1或含2,4D3.1mg·L-1的MS培养基上,8d后就可观察到附着于根切段上的胚。2,4 D0.55mg·L-1+KT0.2mg·L-1的培养基可促使体细胞胚的成熟和萌动,再转入含IAA1mg·L-1和6-BA2mg·L-1的1/2MS培养基上可再生小植株,并在盆栽后长成能育植株。早期体细胞胚的过氧化物酶活性较高,后随体胚成熟而下降,到萌动时又提高。  相似文献   

6.
云南大叶茶体细胞胚发生及体细胞胚苗形成体系的建立   总被引:9,自引:0,他引:9  
利用云南大叶茶(Camellia sinensis var.assamica Kitamura)胚性细胞系(CL_1)中悬浮培养物,建立了高频率同步化体细胞胚发生及体胚苗形成体系。以改良的MS为基本培养基,将CL_1中培养物由液体保持培养基(0.1mg/L 2,4-D 0.5mg/L 6-BA)继代转入液体诱导培养基(0.05mg/L 2,4-D 0.50mg/L6-BA),暗培养诱导28d,转入不含任何激素的液体分化培养基中再培养28d,获得了不同发育时期的体细胞胚,其发生频率为81.5%。不同发育时期的体细胞胚用不同目的细胞筛收集,在液体生长培养基(1/2 MS 1.0mg/L GA_3 0.5mg/L 6-BA)中培养发育成熟。ABA有利于高质量体细胞胚的形成。20~70月大小的体细胞胚在固体生长培养基中成苗转换率为75%。在液体悬浮培养条件下观察记录了体细胞胚发育过程,证实其过程与合子胚的形态发生过程相似。  相似文献   

7.
以何首乌茎尖、茎段为外植体,经体细胞胚发生途径,进行胚性愈伤组织诱导、体细胞胚的诱导、植株再生的研究.并采用临时压片法对体细胞胚的发育过程进行观察.结果表明愈伤组织诱导最适培养基为Ms+6-BA 2.0 mg/L+NAA 0.5 mg/L,体细胞胚诱导最适培养基为MS+6-BA 1.0 mg/L+NAA 0.2 mg/L.将产生的体细胞胚首先接种于MS基本培养基使其充分发育后转入MS+6-BA 2.0 mg/L培养基中诱导出芽,出芽率高于直接采用Ms+6-BA 2.0 mg/L培养基诱导.体细胞胚的发育过程是首先在愈伤组织表面形成许多瘤状突起即胚性细胞团,胚性细胞团继续发育成球形胚、盾形胚,球形胚、盾形胚成熟后发育成植株.  相似文献   

8.
细胞质遗传影响作物正反杂交F1性状。印度南瓜×中国南瓜不存在生殖隔离,而其反交:中国南瓜×印度南瓜存在杂交不亲和性障碍,制约了中国南瓜和印度南瓜正反远缘杂交细胞质遗传效应的研究和中国南瓜优良细胞质基因的转育进程。本研究选用抗病中国南瓜高代自交材料MO与核心印度南瓜亲本MA配置中×印南瓜杂交组合,以幼胚为试材,筛选外植体最佳接种时期、最佳灭菌接种方式,以及最适培养基成分,建立中印南瓜杂种幼胚培养体系,并对杂种后代进行分子标记真实性鉴定。通过试验,确定中印南瓜MO×MA亚种间杂交胚胎拯救的最佳接种时期为授粉后25 d。果实采收之后,先在室内剥出幼胚,用2%NaClO浸泡5 min,除去内种皮;再将幼胚转移至超净工作台内,先用75%酒精消毒幼胚30 s,无菌水清洗1次,再利用2%NaClO浸泡5 min,之后用无菌水清洗3次,准备接种。该外植体灭菌流程,幼胚接种后污染率低(39%)、萌发率高(24%)、接种操作方便。幼胚接种于No.8培养基:MS基础培养基+3.0 mg/L 6-BA+0.5 mg/L 2,4-D+0.2 mg/L NAA+20 g/L蔗糖+0.68%琼脂,胚萌发效果最好,萌发率为25%。暗培养在培养过程中作用不明显。选择在双亲中显示共显性差异的SSR标记,对再生植株进行杂种真实性鉴定,分别有23个差异引物和8个差异引物在6个E0单株中表现为杂合带型和父本MA带型,表明父本DNA已渗入杂种,6个E0单株为真杂种,为通过中国南瓜和印度南瓜远缘杂交转育中国南瓜细胞质基因奠定基础。  相似文献   

9.
水母雪莲体细胞胚胎发生及其植株再生   总被引:7,自引:0,他引:7  
杨金玲  赵德修等 《西北植物学报》2001,21(2):252-256,T001
水母雪莲(Saussurea medusa Maxim.)茎和叶片的切段接种于MS+2mg/L NAA 0.5mmg/L 6-BA的培养基上,20d后产生黄褐色的愈伤组织,经过几个月的继代培养,愈伤组织仍保持旺盛的增殖能力,但部分由黄褐色逐渐变为红色,将红色愈伤组织转到MS+0.1mg/L NAA+0.2mg/L 6-BA 5mg/L GA3的培养基上,30d后可分化出大量的体细胞胚,体细胞胚成熟后转到1/2MS+0.2mg/L IAA 0.5%活性炭的培养基上,30d后可长出2-4cm的根,带根的小苗经锻炼后移栽到土壤中,成活率达76%,细胞组织学观察表明,发育成熟的体细胞胚具有胚根,胚轴和胚芽的完整结构,具有独立的维管系统。  相似文献   

10.
江西铅山红芽芋胚性愈伤组织的包埋玻璃化超低温保存   总被引:2,自引:0,他引:2  
为长期安全保存江西铅山红芽芋种质资源,本文以江西铅山红芽芋的胚性愈伤组织为对象,研究了包埋玻璃化冻存过程中各因素对细胞活力和愈伤组织成活率的影响,优化建立了江西铅山红芽芋胚性愈伤组织包埋玻璃化超低温保存体系。将约0.2 g胚性愈伤组织块包埋成海藻酸钙凝胶珠后,在25℃下转入MS+2 mg/L TDZ+1 mg/L NAA+0.75 mol/L蔗糖的培养基中于14 h/d光周期下预培养1 d;预培养后的胚性愈伤组织块用2 mol/L甘油和0.4 mol/L蔗糖的混合物在25℃下装载40 min;采用PVS2在25℃下脱水30 min,更换PVS2后直接投入液氮保存1 d;再将胚性愈伤组织块置于37℃恒温水浴中化冻3 min,然后用MS+2 mg/L TDZ+1 mg/L NAA+1.2 mol/L蔗糖的液体培养基洗涤3次,每次10 min;洗涤后的胚性愈伤组块转入MS+2 mg/L TDZ+1mg/L NAA固体培养基上先暗培养7 d再转到14 h/d光周期中培养。7 d后胚性愈伤组织块开始恢复生长,并且在30 d内分化出胚状体;将胚状体再次转入MS+2 mg/L TDZ+1 mg/L NAA固体培养基上,60 d后形成完整的植株。红芽芋胚性愈伤组织包埋玻璃化超低温保存后的平均成活率约为60%,并且红芽芋胚性愈伤组织冻后再生苗没有发生形态性状和染色体数目的变异,此结果为长期安全保存江西铅山红芽芋种质资源奠定了良好的基础。  相似文献   

11.
Haploid plants were regenerated in vitro from unpollinated ovules of niger (Guizotia abyssinica (L. f.) (Cass.) on Murashige and Skoog nutrient medium (MS) supplemented with 10 μM naphthaleneacetic acid or 10 μM NAA + 1.5 μM kinetin and 30 g/l sucrose. Gamborg (B5) medium was the best for plant regeneration (in comparison with MS, Nitsch and Nitsch (NN), and Chu (N6) media) from cultured ovules, and 6.66 and 7.33 ovules of JNC-6 and Ootacamund cultivars were involved in direct plant regeneration on this medium. Matured ovules (ovules collected one day before anthesis or on the day of anthesis) only responded to cultural regimes and involved in direct plantlet development. Cytological preparation of root tips and chloroplast counts in the guard cells of leaf stomata of regenerated plants confirmed their haploid nature. This text was submitted by the authors in English.  相似文献   

12.
由枸杞髓部组织诱导出胚性愈伤组织,并由此愈伤组织建立起稳定的细胞悬浮系。从悬浮细胞游离的原生质体在改良KM培养基(1.5 mg/L 6_BA,0.5 mg/L NAA和0.5 mg/L 2,4_D)中进行液体浅层培养,3~4 d后出现第一次分裂,第7 d统计分裂频率为50.3%,15 d左右可形成细胞团,3~4周后形成肉眼可见的愈伤组织,愈伤组织植板率为1.25%。将细胞团转移到液体分化培养基(MS+6_BA 1.5 mg/L+2,4_D 0.2 mg/L) 8~10 d可形成大量胚状体,及时将胚性愈伤组织块转移到固体分化培养基上(MS+6_BA 0.2 mg/L),可形成大量绿芽,分化率54.17%。绿芽在生根培养基(MS+NAA 0.2 mg/L)可形成完整植株,移栽后成活良好。  相似文献   

13.
D. A. Graves  J. M. Stewart 《Planta》1988,175(2):254-258
Cotton fibers are single elongated cells that develop from epidermal cells of the ovule. The chronology of fiber differentiation was investigated using cultured ovules. Epidermal cells differentiate into fiber cells approx. 3 d before anthesis. When ovules were cultured on a defined medium, fiber growth could be initiated on ovules any time between 2 d preanthesis and the time of anthesis by adding indole-3-acetic acid and gibberellic acid to the medium. In the absence of phytohormones, fibers did not grow, and when ovules between 2 d preanthesis and anthesis were cultured without hormones past the day of anthesis and hormones then added, most ovules failed to produce fibers. The results define the timing of fiber differentiation from epidermal cells, and also define a window of time when differentiated cells are capable of further development. During this window, fiber cells are latent awaiting appropriate stimulation which in the intact plant is apparently associated with anthesis.Abbreviations GA3 gibberellic acid - IAA indole-3-acetic acid  相似文献   

14.
Two cultivars of Brassica napus, Altex and Canadian twins, were used as materials. Protoplasts isolated from petioles of plants grown in vitro were cultured in Nitsch medium supplemented with 0.5mg/L BA, 0.5mg/L NAA, lmg/L 2,4-D, 100mg/L serine, 800mg/L glutamine, 4% sucrose and 0.4mol/L mannitol. After 2 days of culture, the first division was observed. The division frequency estimated after 10 days of culture was 30-60%. One week after transferring onto MS medium containing 6mg/L GA3. and 3mg/L BA, protoplast-derived calli regenerated into shoots. The regeneration frequency of the two cultivars was 24% and 31% respectively. It was found that the protoplasts isolated from petioles could float on the surface of the 3% sucrose contained solution which was very favourable both to purification, and culture of the protoplasts.  相似文献   

15.
Young ovules from 3 cultivars and undeveloped ovules in mature fruits from 8 cultivars of loose skin mandarin of Citrus were cultured on 4 different media respectively to induce embryogenic calli. Results showed that the combination of EME(MT + 500 mg/L malt extract) and MKT (EME + 10 mg/L KT) media performed well in the induction of embryogenic calli from young ovules; MGS(EME + 1 mg/L GA3 + 40 mg/L sulfate adenine) medium was better than MDB (MT + 0.01 mg/L 2,4-D + 0.1 mg/L BA) medium in inducing calli from the undeveloped ovules, and the darkness was conducive to the induction of embryogenic calli. There was no chromosome number variation in the induced calli. All of the examined cells were diploid with 2n = 2x = 18 chromosomes.  相似文献   

16.
铁皮石斛无菌播种产业化繁育技术研究   总被引:2,自引:0,他引:2  
以铁皮石斛的蒴果为外植体,采用种子→原球茎→完整植株→移栽的途径快速成苗进行工厂化生产,对各阶段培养基进行筛选,以及其他一些影响因子进行比较研究。结果表明:人工授粉后生长60~180d的铁皮石斛种子在离体条件下均能萌发,其中授粉150~180d种子的萌发效果最好,萌发率为87.2%~94.4%,适宜的萌发培养基为MS+6-BA 1.0mg/L+NAA 0.1mg/L+马铃薯汁200g/L+AC 1.0g/L;原球茎增殖的最佳培养基为MS+6-BA 1.5mg/L+NAA 0.1mg/L+香蕉汁100g/L+AC 1.0g/L,繁殖系数约为20倍/50d;原球茎在MS+6-BA 1.0mg/L+NAA 0.1mg/L+马铃薯汁200g/L+AC 1.0g/L培养基上进行分化培养,分化的同时还能进行一定的增殖;将已分化的芽苗转接到壮苗培养MS+6-BA 0.5mg/L+NAA 0.2mg/L+香蕉汁100g/L+AC 1.0g/L上培养1代后,转接到生根培养基1/2MS+NAA 0.8mg/L+无机盐A 0.2~0.5mg/L+香蕉汁100g/L+AC 1.0g/L上,培养50~70d后,生根率100%,无机盐A可以有效地控制愈伤或原球茎的形成,明显提高生根苗的数量和质量。在桂林地区,生根苗以3~5月和9~10为最佳移栽期,以通过高温处理并堆沤腐熟的松树皮为基质,移栽成活率可达90%。  相似文献   

17.
Hypocotyl protoplasts from oil rape, Brassica napus L. cv. Isuzu were cultured in the dark at 25°C in a modified Nitsch and Nitsch medium containing 13% sucrose, 5 g/l Ficoll, 0.5 mg/l BAP, 1 mg/l NAA and 0.5 mg/l 2–4 D. Protoplasts floated on the surface of the medium and developed into microcolonies 0.5 mm in diameter in 4–6 weeks. The microcolonies also remained on the surface of the medium. Transfer to MS medium supplemented with 200 mg/l casein hydrolysate, 5mg/l BAP, 0.5 mg/l NAA and solidified with 0.6% agarose induced shoot regeneration in 3–4 weeks.Abbreviations BAP 6-benzylaminopurine - NAA 1-naphthaleneacetic acid - 2,4-D 2,4 — dichlorophenoxyacetic acid  相似文献   

18.
激素对洋桔梗植株再生的影响及生根培养的研究   总被引:9,自引:3,他引:6  
李群  刘光勇  王丽 《广西植物》2004,24(1):40-42
以MS为基本培养基 ,附加不同浓度的 6 BA、KT、NAA和IBA诱导洋桔梗叶片外植体的再生植株。结果表明 :MS +6 BA 0 .5~ 1 .0mg/L(单位下同 ) +NAA 0 .2和MS +6 BA 0 .5~ 1 .0 +IBA 0 .2培养基都能诱导外植体产生愈伤组织 ,但 6 BA的浓度必须小于 1 .0mg/L ,否则会导致组织的严重玻璃化 ;MS +KT 1 .0~2 .0 +NAA 0 .2或MS +KT 1 .0~ 2 .0 +IBA 0 .2培养基也能诱导外植体产生愈伤组织 ,愈伤组织出现的时间较早且质地较好 ,适合分化。继代培养时 ,MS培养基中仅加 6 BA 0 .5mg/L或KT 0 .5mg/L ,即能获得较高的分化率。生根培养研究中 ,培养液为 1 /2MS+5 0g/L糖 +IBA 2mg/L的前处理 ,生根效果较好 ,生根率接近基质生根培养的生根率。  相似文献   

19.
罗汉果组培繁殖的技术要点   总被引:2,自引:0,他引:2  
报道罗汉果组培繁殖的各项主要技术要点,包括组培条件、培养基的配制、外植体的选取与消毒、接种与培养、种源保存、炼苗与移栽、苗木包装与运输等。提出了5种培养基参考配方,即茎段诱导培养:MS+BA0.5~1.0mg/L+IAA(NAA)0.05~0.1mg/L+白糖3%+琼脂4.5g/L,pH5.8;茎尖诱导培养:MS+BA0.5~1.0mg/L+NAA0.05~0.1mg/L+椰子水100mL+白糖3%+琼脂4.5mg/L,pH5.8;继代培养(丛生芽方式):MS+BA0.3~0.7mg/L+NAA0.05/IAA0.1mg/L+白糖3%+琼脂4.5mg/L,pH5.8;继代培养(微型扦插方式):MS+BA0.1mg/L+IAA0.3mg/L+活性炭0.07g/L+白糖3%+琼脂4.5mg/L,pH5.8;生根培养:MS+BA0.07mg/L+IBA0.15mg/L+IAA0.1mg/L+活性炭0.1g/L+白糖3%+琼脂4.5mg/L,pH5.8。分析了外植体培养过程中可能出现的不良状况的原因并提出预防措施,明确了炼苗移栽的适宜条件并制定出相应的管理方法。形成了一套较为完整的罗汉果组培苗繁殖生产技术规程。  相似文献   

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