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1.
甘蓝型油菜子叶和下胚轴再生植株无性系建立   总被引:4,自引:1,他引:3  
以甘蓝型油菜(Brassica napus L.)豫油2号和6257的子叶和下胚轴为材料,在不同激素配比的MS培养基上诱导出了愈伤组织。将经过继代的部分愈伤转入分化培养基,分化结果表明:除基因型、外植体和分化培养基的激素配比对分化率有影响外,诱导愈伤培养基的激素配比对分化率也至关重要。豫油2号的子叶和下胚轴在最适诱导培养基(ZT 1+NAA0.5+2,4-D 0.2 mg/L)和最适分化培养基(ZT4+IAA 0.2 mg/L)组合中的愈伤分化率分别为12.5%和75%;6257的子叶和下胚轴在其最适诱导培养基(KT 2+NAA1+2,4-D 0.2 mg/L)和最适分化培养基(6-BA 4+IAA 0.02 mg/L)组合中的愈伤分化率分别为50%和37.5%。将其最适诱导培养基中的愈伤组织继代达8个月以上,建立了不同继代愈伤的再生植株无性系。  相似文献   

2.
以吉粳88为材料,通过对不同培养基和激素的筛选,确定最佳的再生体系。结果表明:NMB培养基为吉粳88最适的愈伤组织诱导培养基。通过L9(33)正交实验研究最适激素浓度配比,筛选出吉粳88愈伤组织诱导的最佳激素配比为2.0 mg/L 2,4-D+0.2 mg/L 6-BA+0.10 mg/L NAA。在添加2.0 mg/L 6-BA+0.5 mg/L NAA的NMB基本培养基条件下,吉粳88的分化率最高,成培苗率也最高。  相似文献   

3.
杂种白杨离体再生体系的建立   总被引:4,自引:1,他引:3  
以杂种白杨'717杨'(Populus tremula×Populus alba)和'353杨'(Populus tremula×Populus tremuloides)的叶片为材料,研究不同基因型、激素组合对叶片分化和不定芽生根的影响.结果表明:'717杨'叶片最适分化培养基是MS+0.5 mg/L 6-BA+0.2 mg/L NAA,'353杨'叶片最适分化培养基是MS+0.5 mg/L 6-BA+0.2 mg/L NAA+0.01 mg/L TDZ;最佳生根培养基为1/2 MS+0.2 mg/L IBA+0.2 mg/L NAA,生根率达100%;叶片培养的最佳位置是自茎尖展叶的1~3片叶;20 mg/L卡那霉素可以抑制'717杨'和'353杨'叶片的诱导分化,40 mg/L卡那霉素可以抑制'717杨'和'353杨'不定芽的生根.  相似文献   

4.
以甘蓝型油菜野油19号的下胚轴和带柄子叶为外植体,研究其下胚轴和带柄子叶在不同浓度激素配比下的分化率及再生频率的变化。该品系的油菜下胚轴和带柄子叶在1.5 mg/L的2,4-D中预培养4 d后,转入分化培养基中,其愈伤组织形成早,发生快,再生频率和分化频率均较高。其中,下胚轴转入MS+3 mg/L 6-BA+0.1 mg/L NAA培养基中的分化率和再生频率最高,再生频率达到86.67%;带柄子叶外植体的再生频率要比下胚轴的再生频率低,在MS+4 mg/L 6-BA+0.3 mg/L NAA的分化培养基中芽的再生频率为46.67%。本研究初步建立了甘蓝型油菜野油19号的高频率再生体系。  相似文献   

5.
甘蓝型油菜高效离体再生体系的建立   总被引:2,自引:0,他引:2  
以甘蓝型油菜(Brassica napusL.)HC8为材料,从无菌苗苗龄、预培养基激素浓度、预培养天数、6-BA及NAA的浓度等方面对影响油菜组织培养的因素进行了分析研究,建立了甘蓝型油菜品系HC8的离体再生技术体系。结果表明,该油菜组织培养的最佳苗龄为5 d;最佳预培养时间为5 d,最佳2,4-D浓度为1.0 mg/L;子叶最佳诱导培养基为MS+2.0 mg/L 6-BA+0.05 mg/LNAA+3.5 mg/L AgNO3或MS+3.0 mg/L 6-BA+0.1 mg/L NAA+3.5 mg/L AgNO3,该条件下子叶愈伤组织诱导率最高可达100%,再生频率及分化频率分别可达88.0%和108.33%;下胚轴最佳诱导培养基为MS+4.0 mg/L 6-BA+0.05 mg/L NAA+3.5 mg/L AgNO3,子叶愈伤组织诱导率最高可达95.24%,再生频率及分化频率分别可达81.82%和104.55%;最佳生根培养基为MS+0.5 mg/L NAA,生根率最高为90.0%。  相似文献   

6.
目前转基因技术已成为植物定向遗传改良的重要手段,而建立稳定高频的离体再生系统是实现遗传转化的基础和前提.本试验以25 ~30 d苗龄的金养麦(Fagopyrum dibotrys)无菌苗叶片、茎节间、叶柄为外植体进行愈伤组织诱导与植株再生研究.结果表明:叶片在MS +2,4-D 4.0 mg/L +6-BA 1.0 mg/L培养基上愈伤组织诱导率达到89%.茎节间在MS +2,4-D 2.0 mg/L +6-BA 2.0 mg/L培养基上愈伤组织诱导率为87%.叶柄在MS +2,4-D 4.0 mg/L +6-BA 2.0 mg/L+ IBA 0.2 mg/L培养基上的最高诱导率仅为54%.愈伤组织分化不定芽的适宜培养基为MS +6- BA2.0 mg/L +TDZ0.2 mg/L +NAA0.2 mg/L;金荞麦不定芽在1/2 MS +NAA 0.5 mg/L的培养基上生根效果最好.组培再生植株经炼苗后移栽到田间成活率达80%以上,且生长表现正常.高频完整再生体系的建立,为金荞麦进一步遗传操作和扩大药材资源奠定了基础.  相似文献   

7.
杉木再生系统的比较研究   总被引:5,自引:0,他引:5  
通过对杉木(Cunninghamia lanceolata Hook)再生系统的比较研究,建立了子叶、下胚轴、茎段和针叶等四个再生体系。子叶在附含1mg/L BA和0.1mg/L NAA的DCR培养基中再生频率为93.7%±0.45%,平均芽数为3.76±0.25;下胚轴在附含2mg/L BA和0.2mg/L NAA的DCR培养基中再生频率为96.2%±0.35%,平均芽数为17.4±0.18;茎段在附含1mg/L BA和0.1mg/L NAA的DCR培养基中再生频率达100%,平均芽数为3.28±0.11;针叶在附含1.5mg/L BA和0.1mg/L NAA的DCR培养基中再生频率达84.5%±0.45%,平均芽数仅为1.42±0.08。不定芽在附含0.2mg/L BA和0.02mg/L NAA的DCR培养基中有效伸长。芽苗经预处理后在附含0.3mg/L IBA的1/2 DCR培养基中生根效果最佳。  相似文献   

8.
龙华  黄衡宇 《广西植物》2009,29(1):78-82
以湖北双蝴蝶带芽茎段、不带芽茎段及叶片为外植体,以MS为基本培养基,通过添加不同的植物生长物质种类和浓度配比,建立湖北双蝴蝶组培快繁体系。结果如下:在所有实验方案中,带芽茎段的出愈率最高,是理想的离体快繁材料。较适宜的初代培养基为MS+BA2.0mg/L+蔗糖3.0%,增殖培养基为MS+BA2.0mg/L+NAA0.1mg/L+蔗糖3.0%,而根的诱导则在1/2MS+NAA0.5mg/L+蔗糖1.5%的培养基上进行较为适宜。同时对组织培养过程中湖北双蝴蝶植株再生的方式进行了讨论。  相似文献   

9.
以登峰芥蓝为试材,取无菌苗的茎段、下胚轴为外植体分别进行组织培养研究。结果表明:MS+6-BA 3.0 mg/L+NAA 0.2 mg/L为下胚轴最适诱导培养基,MS+6-BA 5.0 mg/L+NAA 0.2 mg/L为带腋芽茎段最适诱导培养基;最适宜的不定芽增殖培养基为MS+6-BA 3.0 mg/L+NAA 0.2 mg/L;试管苗在1/2MS+NAA 0.1 mg/L+IBA 0.2 mg/L培养基中进行生根培养效果最好;经炼苗后组培苗移栽成活率达96.6%。  相似文献   

10.
观赏羽衣甘蓝高频再生体系的建立   总被引:3,自引:0,他引:3  
观赏羽衣甘蓝是一种赏食兼用的耐冻优良景观植物.为了通过基因工程手段赋予其抗虫性,并进一步提高其低温耐受性,获得新的抗性种质,本研究以优良育种品系为试材,详细探讨了影响离体培养不定芽再生的因素,建立了高效再生体系.以8份不同类型羽衣甘蓝基因型的带柄子叶、子叶、下胚轴为外植体,研究了不同基因型、不同外植体、不同的培养基激素浓度配比及添加AgNO3对不定芽诱导的影响.结果表明:无论基因型及使用的培养基,带柄子叶均为最佳外植体;不同的基因型、不同外植体其最佳的芽诱导培养基不同;筛选出两份材料,其带柄子叶分别在L6(MS+6-BA 1.0 mg/L+NAA 0.1mg/L)及L3(MS+6-BA 1.5 mg/L)培养基中不定芽诱导率为100%,下胚轴诱导率最高也能达88.33%;培养基中添加4 mg/L AgNO3不利于羽衣甘蓝的不定芽诱导;再生株生根以MS+NAA 0.1 mg/L效果好,生根率可达100%.  相似文献   

11.
Procedures for callus induction, plantlet regeneration, andAgrobacterium-mediated transformation ofBrassica juncea were optimized by studying several factors, including explant types, and various plant growth regulators and adjuvants, such as silver nitrate, sucrose and agar. The highest shoot regeneration frequency was obtained from hypocotyl and cotyledonary petiole explants on MS medium containing 3 mg/L benzylaminopurine (BA) and 2 mg/L α-naphthaleneacetic acid (NAA). Transformation was affected by a number of factors, including explant type, selection agents, preculture duration, pre-selection conditions, and coculture temperature. Transformation efficiencies for hypocotyl and cotyledonary petiole explants were at 65% and 69%, respectively.  相似文献   

12.
白菜(Brassica campestris Lssp.chinensis Makino)起源于欧洲的野生芸薹,有许多变种和类型,是我国尤其是长江流域及南方各省普遍栽培的重要蔬菜种类之一,在农业生产中占有重要的地位。由于白菜的植株再生频率同其他芸薹属作物相比较低,因此,影响了基因工程技术在白菜品种改良上的应用。虽  相似文献   

13.
An efficient in vitro method for multiple shoot bud induction and regeneration has been developed in Artemisia annua L. using leaf and stem explants in various concentrations and combinations of plant growth regulators to evaluate the frequency of regeneration. The sources of explants as well as plant growth regulators in the medium were found to influence the multiple shoot induction. The result shows that the stem segment cultured on Murashige and Skoog (MS) medium supplemented with 0.1 mg/l thidiazuron (TDZ) gave a perfect shoot formation (100%) and good shoot multiplication (57 shoots/explant) after 2 weeks of culture. Healthy regenerated shoots were elongated and rooted in MS medium without hormones. The artemisinin content in plants regenerated from stem explants using 0.1 mg/l TDZ was (3.36 +/- 0.36) microg/mg dry weight and two-fold higher than that of in vitro grown plants of the same age [(1.73 -/+ 0.23) microg/mg DW]. This system exhibited a potential for a rapid propagation of shoots from the stem explant and makes it possible to develop a clonal propagation of A. annua.  相似文献   

14.
In this work we report a new method forin vitro chili pepper (Capsicum annuum L.) plant regeneration based on shoot formation from wounded hypocotyls. Chili pepper seeds were surface sterilized and germinated on agar (0.8%) at 25 ± 2°C in the dark. Five factors that may influence shoot regeneration were studied: age of seedlings, hypocotyl wounding site, time elapsed between wounding the hypocotyls and decapitation of seedlings, culture media and cultivars. In order to study the influence of the first three factors on shoot regeneration, the apical, middle or basal hypocotyl regions of seedlings of cv. Mulato Bajio at different stages of development (9, 15, 16, 21 and 28 d old) were wounded with a syringe needle, and the seedlings were cultured on MS semisolid medium without growth regulators at 25 ± 2°C under a 16/8 h light/dark photoperiod (daylight fluorescent lamps; 35 mol m-2 s--1) until decapitation. The seedlings were decapitated (3 mm below the cotyledons) at different times after wounding (0, 2, 4, 10, 12 and 14 d), and each explant was evaluated for bud and shoot formation ( 5 mm in length) at the wounded site after 30 d of incubation. In general, seedlings at the stage of curved hypocotyl (9 d old) wounded in the apical region of hypocotyl were the best explants for shoot regeneration when inoculated on culture medium without growth regulators. Decapitation after wounding also influenced the shoot regeneration efficiency, with 10–14 d being the best period. Up to 90% shoot regeneration in cv. Mulato Bajio was obtained under these conditions. Statistically significant differences were observed for shoot formation among 21 cultivars tested. Regeneration of whole plants was achieved by rooting the shoots with indole-3-butyric acid pulses of 60 mg L–1 for 3 h and then subculturing on MS medium without growth regulators.  相似文献   

15.
改良菜心离体培养植株再生体系的研究(简报)   总被引:4,自引:0,他引:4  
This investigation has developed an efficient and fast method for plant regeneration from petiole of cotyledon explants of Brassica campestris L. subsp. chinensis Makino var. parachinensis Tsen et Lee. A medium was designed for B. campestris subsp. chinensis var. parachinensis to obtain the high frequency of shoot regeneration, which contained BAP 2 mg/L, NAA 0.75-1.0 mgL and 7.5 mg/L AgNO3 solution to the half of NH4+ concentration's MS basic medium. 60 mL/L coconut milk were added to all of media. In this method, frequency of shoot regeneration of "youqing caixin" reached as high as 91.2% and the number of shoots per explant reached as high as 4.7 plants. The result showed that there was a positive correlation between frequency of shoot regeneration and number of shoots per explant. The little shoots could be observed five days after inoculation and were formed directly. The inducing rate of roots of the shoots reached as high as 100% and the rate of viability of transferred mature plant reached higher than 95%. The regeneration period from petiole with cotyledon to a seedling was shorten to about 49 days. Factors influencing in vitro explant regeneration were studied.  相似文献   

16.
菜心(Brassica campestris L.subsp.chinensis Makino var.parachinensis Tsen et Lee)为十字花科芸薹属芸薹种中国白菜亚种中的一个变种,又名“菜薹”。它是我国南方特产蔬菜之一,在蔬菜的周年供应上有重要地位。目前迫切需要培育抗病虫、抗逆和具有其他优良农艺性状的新品种,以提高菜心的  相似文献   

17.
提高榨菜离体培养植株再生频率   总被引:11,自引:0,他引:11  
采用榨菜“浙桐1号”品种为材料,以MS为基本培养基,通过对不同植物生长调节剂的组合和不同外植体等主要因素的筛选,大幅度提高了榨菜离体培养植株再生频率。结果表明,2mg/L6.BA 0.2mg/L2,4-D的组合较为适宜,其不定芽再生频率可达50%,且外植体以下胚轴为好:而CPPU和2,4-D的适宜组合为1.5mg/L 0.2mg/L,其不定芽再生频率高达66.67%,最适外植体为带柄子叶。同时,研究结果显示,添加0.25~1mg/L的GA,对榨菜已分化的不定芽的伸长有抑制作用;子叶柄和下胚轴外植体的分化具有极性现象。  相似文献   

18.
诱导茶树成熟胚培育成幼苗的研究   总被引:1,自引:0,他引:1  
以茶树品种——农抗早的成熟胚为外植体离体培养,初次研究了2,4-D、6-BA等不同植物激素对茶树成熟胚诱导成幼苗的影响。结果表明,在合适的激素组合条件下,愈伤组织诱导为97%,在附加2.5mg/L 6-BA 0.5mg/L NAA的MS培养基上,愈伤组织的芽分化率为14.2%,附加1.5mg/L NAA的1/2 MS培养基,幼苗的根分化率为5%。  相似文献   

19.
Among the major factors affected plant regeneration in Brasica parachinensis, a combination of BAP (bacterial alhaline phosphatase) and NAA, at a concentration of 2 mg/L and 1 mg/L respectively, could raise 26.8% of the regeneration rate. It was also found that Ag- NO3 or ABA when supplemented in the culture medium could increase the plant regeneration rate by 79. 0% and 32.30% respectively, indicating that AgNO3 was superior to ABA as a single factor. With a combination of AgNO3 (4 mg/L) and ABA (0. 5 mg/L) added to MS medium already supplemented with ABA 2.0 mg/L and NAA 1.0 mg/L the authors had achieved remarkable results in frequency increase of 89.0%, 84.3% and 86.0% in three explant varieties of B. parachinensis, viz "49-19', "60D' and "70D', respectively. Among the three explants (cotyledon, hypocotyl and petiole with cotyledon), petiole with cotyledon possessed the highest capability for plant regeneration. In addition the age of seedlings and mode of inoculations also influenced the frequency of plant regeneration.' Histological observation evidenced that the mode of plant regeneration in B. parachinensis was of organogenesis. Adventitions buds derived from the cells of vascular parenchyma at the cut surface of petioles. Mature plants were developed after the plantlets were transferred into the plot.  相似文献   

20.
亚麻遗传转化体系的建立及几丁质酶基因导入的研究   总被引:14,自引:0,他引:14  
报道了亚麻遗传转化体系的建立和几丁质酶基因对亚麻遗传转化的研究。亚麻下胚轴切段培养在不同激素浓度的MS培养基上,诱导分化出不定芽。最佳的激素组合是MS+BA1mg/L+IAA0.5mg/L,分化频率可达97%。亚麻的下胚轴经带有几丁质 根癌农杆菌感染后,在含有100mg/L卡那霉素的选择分化培养基上,14 ̄21d就能产生抗生小芽,小芽进一步伸长后可在100mg/L卡那霉素的MS选择生根培养基(MS  相似文献   

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