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1.
以二倍体和四倍体白菜细胞质雄性不育系的子叶为外植体,采用正交设计研究TDZ(0.1、0.5、1.0 mg·L-1)、NAA(0.1、0.5、0.8 mg·L-1)和AgNO3(0、5、10mg·L-1)三因素三水平诱导不定芽的结果表明:二倍体的不定芽再生优化培养基为MS 1.0 mg·L-1TDZ 0.8mg·L-1NAA 5 mg·L-1AgNO3(其再生率为80.7%),三因素影响的顺序为:NAA>AgNO3>TDZ;四倍体的不定芽再生优化培养基为MS 0.5 mg·L-1 TDZ 0.5 mg·L-1 NAA 10 mg·L-1 AgNO3(再生率为83.3%),三因素影响的顺序为:AgNO3>NAA>TDZ.后者所需TDZ/IAA的比值低于前者.  相似文献   

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乌桕不同外植体高效再生探索   总被引:1,自引:0,他引:1  
以乌桕的成熟胚、胚乳、叶片和茎段为外植体,建立高效、稳定的组培快繁再生体系,并成功获得其再生苗.结果表明:(1)全胚乳带胚的愈伤组织诱导率达90%,其愈伤组织继续在MS+1.0 mg·L-1 NAA+1.0 mg·L-1 6-BA培养基上培养,不定芽最多达15个/外植体.(2)去胚乳的胚不加调节剂则胚直接萌动成苗,萌动率和成苗率可达100%;去胚乳的胚在MS+0.05 mg·L-1 NAA+0.3 mg·L-1 6-BA最佳培养基中培养,其胚轴处可直接诱导不定芽,最多达6个/外植体.(3)无菌苗叶片在MS+0.5 mg·L-1 NAA+0.5 mg·L-1 6-BA培养基中诱导的有效不定芽数最高达18个/外植体,诱导率达90%.(4)茎段在MS+0.05 mg·L-1 NAA+0.1~0.3 mg·L-1 6-BA培养基上不定芽的诱导率较高(100%),直接诱导的不定芽数最多达17个/外植体.(5)芽苗在1/2MS+0.5 mg·L-1 IBA上生根率达到100%,但根系较细弱,而在MS+1.0 mg·L-1镧稀土中的生根率达100%,且根系粗壮;生根的小苗练苗移栽后温室内成活率为89.2%,移栽到室外沙质土壤中的成活率为68.9%.  相似文献   

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芨芨草(Achnatherum splendens(Trin.)Nevski)种子消毒并在MS培养基上萌发获得无菌苗,以幼苗的叶鞘和胚轴为外植体诱导愈伤组织,经继代后进一步诱导不定芽及生根.研究结果表明,诱导愈伤组织最适合的培养基为B5 1.5 mg·L-12,4-D 0.5 mg·L-1NAA;诱导芽分化较适合的培养基为B5 0.5 mg·L-1 6-BA 0.2 mg·L-1 NAA;1/4B5 1.0 mg·L-1NAA 0.2 mg·L-1 IBA 1.0 g·L-1活性炭培养基则有利于芨芨草试管苗的生根.本实验建立了完整的芨芨草植株再生体系,移栽成活率高.  相似文献   

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以泰山酸枣叶片为外植体,以WPM为基本培养基,研究了植物生长调节剂种类、浓度及培养方法等因素对离体叶片不定芽再生的影响,结果表明:不定芽启动的最佳培养基激素组合为1.0 mg·L-1 TDZ+0.5 mg·L-1 IAA;不定芽诱导伸长最佳培养基的激素组合为0.1 mg·L-1 IAA+0.5 mg·L-1 GA3.暗培养是不定芽再生的必需条件,在最适宜的不定芽再生培养基上,叶片连续光培养,不定芽不能再生;叶片先进行暗培养3周后转入光下培养,叶片不定芽再生效果最好,再生率最高可达100%.  相似文献   

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菊花叶盘片转基因再生体系的优化选择   总被引:6,自引:0,他引:6  
以菊花(Dendranthema morifolium)无菌苗叶片为外植体,在芽诱导培养基上直接诱导植株再生,优化选择菊花转基因再生体系.筛选出了能直接诱导芽再生的培养基(MS 6-BA3 mg·L-1 NAA 1 mg·L-1).茎段在有IBA和NAA的1/2MS培养基上诱导生根.生根的小苗在温室里生长良好.  相似文献   

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影响椪柑上胚轴再生不定芽的几个生理因素   总被引:2,自引:0,他引:2  
探讨几种因素对椪柑实生苗上胚轴再生不定芽影响的结果表明,在6-BA 1 mg·L-1和NAA0.1 mg·L-1下,椪柑上胚轴切段的出芽率达到61.1%,每个上胚轴上的不定芽数也同时达到最大(7.10个);黑暗处理20d后转入光照条件下培养可提高椪柑上胚轴切段不定芽的再生率;上胚轴水平放置于培养基中有利于不定芽的再生,形态学下端插入培养基有利于不定芽的生长.再生的不定芽在附加NAA0.1~1 mg·L-1的1/2MT培养基中生根并再生椪柑植株.  相似文献   

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以中药金钱草 (LysimachiachristinaeHance)的茎段为外植体于MS附加不同激素配比的培养基上 ,探讨丛生芽诱导及生根培养的条件。在MS +6 -BA 0 .5~ 1.5mg·L-1+IBA 0 .2~ 0 .5mg·L-1和MS +6 -BA 1.5mg·L-1+NAA 0 .5mg·L-1的培养基上均可获得良好的丛生芽诱导 ,苗的生长迅速 ,繁殖系数高 ;在MS或MS +IBA 0 .1mg·L-1培养基上易于诱导生根。丛生芽诱导率和生根率均为 10 0 %。  相似文献   

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香石竹叶片离体再生体系的建立   总被引:2,自引:1,他引:1  
以香石竹(Dianthus caryophyllus Linn.)无菌苗叶片为外植体,从不同细胞分裂素及其他激素配合使用等方面进行筛选,建立香石竹叶片离体再生体系.结果表明,不同的细胞分裂素影响叶片不定芽分化频率,其中较低浓度的6-BA(0.5 mg·L-1)和TDZ(0.001 mg·L-1)配合使用能有效诱导香石竹叶片不定芽分化;添加一定浓度的PP333(4 mg·L-1)可提高叶片不定芽分化频率和平均芽数.香石竹叶片不定芽分化的适宜培养基为:MS 0.002mg·L-1TDZ 0.5 mg·L-16-BA 0.2 mg·L-1IAA 4 mg·L-1PP333;壮苗培养基为:MS 0.2 mg·L-1 6-BA 0.2 mg·L-1IAA;生根培养基为:1/2 MS.不定芽诱导频率达到42.61%,平均芽数为4.53个.  相似文献   

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通过愈伤组织诱导途径, 建立了快速高效的茶条槭再生体系。成熟种子在MS+1.0 mg·L-1 6-BA的培养基中萌发, 以茎段作为外植体, 在WPM+0.002-0.01 mg·L-1 TDZ+0.1 mg·L-1 6-BA中培养3周诱导形成愈伤组织, 诱导频率平均为98.0%。愈伤组织转入WPM+0.01 mg·L-1 TDZ+0.1 mg·L-1 6-BA培养基中得到再生芽, 分化频率为42.0%,平均每块愈伤产生再生芽10个左右。转到WPM+0.3 mg·L-1 IBA的培养基上的再生芽均可生根并长成完整植株, 小苗移栽成活率达到89.0%。实验还建立了愈伤组织中没食子酸的提取和HPLC检测方法。对深绿色愈伤组织连续培养2个继代后, 没食子酸含量达到2.8%。  相似文献   

10.
以大叶蚁塔茎尖作为外植体诱导出无菌苗,再以无菌苗的嫩叶诱导不定芽发生,研究了其离体培养和不定芽再生的过程,成功建立了低成本的快速繁殖技术体系。结果表明:(1)无菌苗增殖培养基为MS+BA 1.0mg·L-1+NAA 0.1 mg·L-1,培养30 d,增殖率稳定为3.80;(2)叶片可直接诱导再生出不定芽,其最佳培养基为MS+ZT 1.0 mg·L-1+NAA 0.1 mg·L-1,诱导率达95%,分化幼苗众多;(3)生根培养基为1/2MS+NAA1 mg·L-1+蔗糖20 g·L-1时,生根率达95%。  相似文献   

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In experiments on Black Sea skates (Raja clavata), the potential of the receptor epithelium of the ampullae of Lorenzini and spike activity of single nerve fibers connected to them were investigated during electrical and temperature stimulation. Usually the potential within the canal was between 0 and –2 mV, and the input resistance of the ampulla 250–400 k. Heating of the region of the receptor epithelium was accompanied by a negative wave of potential, an increase in input resistance, and inhibition of spike activity. With worsening of the animal's condition the transepithelial potential became positive (up to +10 mV) but the input resistance of the ampulla during stimulation with a positive current was nonlinear in some cases: a regenerative spike of positive polarity appeared in the channel. During heating, the spike response was sometimes reversed in sign. It is suggested that fluctuations of the transepithelial potential and spike responses to temperature stimulation reflect changes in the potential difference on the basal membrane of the receptor cells, which is described by a relationship of the Nernst's or Goldman's equation type.I. P. Pavlov Institute of Physiology, Academy of Sciences of the USSR, Leningrad. I. M. Sechenov, Institute of Evolutionary Physiology and Biochemistry, Academy of Sciences of the USSR, Leningrad. Pacific Institute of Oceanology, Far Eastern Scientific Center, Academy of Sciences of the USSR, Vladivostok. Translated from Neirofiziologiya, Vol. 12, No. 1, pp. 67–74, January–February, 1980.  相似文献   

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Evolution of living organisms is closely connected with evolution of structure of the system of regulations and its mechanisms. The functional ground of regulations is chemical signalization. As early as in unicellular organisms there is a set of signal mechanisms providing their life activity and orientation in space and time. Subsequent evolution of ways of chemical signalization followed the way of development of delivery pathways of chemical signal and development of mechanisms of its regulation. The mechanism of chemical regulation of the signal interaction is discussed by the example of the specialized system of transduction of signal from neuron to neuron, of effect of hormone on the epithelial cell and modulation of this effect. These mechanisms are considered as the most important ways of the fine and precise adaptation of chemical signalization underlying functioning of physiological systems and organs of the living organism  相似文献   

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