An efficient protocol for plant regeneration from protoplasts of hydroxyproline(HYP)resistant cell line of Onoblychis viciaefolia was established. In SH medium supplemented with 1 mg/L 2, 4-dichlorophenoxy-acetic acid...An efficient protocol for plant regeneration from protoplasts of hydroxyproline(HYP)resistant cell line of Onoblychis viciaefolia was established. In SH medium supplemented with 1 mg/L 2, 4-dichlorophenoxy-acetic acid (2,4-D), 0.5 mg/L kinetin (KT) and 0.2 mg/L naphthalene acetic acid (NAA), the division frequency of protoplastderived cells reached uP to over 60 %, and microcalli were obtained in 5-6 wk. Upon transferring them on agar solidified MS medium plus 2 mg/L indole-3-acetic acid (IAA), shoots were induced. After cultivating them on MS medium with or without IAA, roots were regenerated.Chromosome number of all protoplast-regenerated plants examined were normal (2n=28). The protoplast-derived calli and plants grew vigorously on the medium containing 10 mmol/L HYP.展开更多
Plant cell culture in bioreactors is an enabling tool for large scale production of clonal elite plants in agriculture, horticulture, forestry, pharmaceutical sectors, and for biofuel production. Advantages of bioreac...Plant cell culture in bioreactors is an enabling tool for large scale production of clonal elite plants in agriculture, horticulture, forestry, pharmaceutical sectors, and for biofuel production. Advantages of bioreactors for plant cell culture have resulted in various types of bioreactors differing in design, operating technologies, instrumentations, and construction of culture vessels. In this review, different types of bioreactors for clonal propagation of plants and secondary metabolites production are discussed. Mechanical and biochemical parameters associated with bioreactor design, such as aeration, flow rate, mixing, dissolved oxygen, composition of built-up gas in the headspace, and pH of the medium, are pivotal for cell morphology, growth, and development of cells within tissues, embryos, and organs. The differences in such parameters for different bioreactor designs are described here, and correlated to the plant materials that have been successfully cultured in different types of bioreactors.展开更多
本研究以羊草(L eym us ch inensis)与灰色赖草(L eym us cinereus)杂种F1代幼穗为外植体诱导愈伤组织,在3.0 m g/L 2,4-D+M S培养基上继代1次后,转入不同浓度激素(2,4-D、IAA、KT)配比和不同浓度蔗糖的M S液体培养基进行振荡培养,建立...本研究以羊草(L eym us ch inensis)与灰色赖草(L eym us cinereus)杂种F1代幼穗为外植体诱导愈伤组织,在3.0 m g/L 2,4-D+M S培养基上继代1次后,转入不同浓度激素(2,4-D、IAA、KT)配比和不同浓度蔗糖的M S液体培养基进行振荡培养,建立杂种F1代细胞悬浮系和植株再生体系.结果表明,细胞悬浮培养时,M S+1.0 m g/L2,4-D+0.1 m g/L KT+4%蔗糖的液体培养基最佳;悬浮细胞分化时,1.0 m g/L 2,4-D+0.1 m g/L KT+4%蔗糖+M S和1.0 m g/L 2,4-D+4%蔗糖+M S培养的悬浮细胞在1.0 m g/L NAA+0.5 m g/L KT+M S分化培养基上的绿苗分化率分别达到83%和80%.细胞悬浮系及再生体系的建立为杂种F1代育性恢复的研究奠定了基础.展开更多
文摘An efficient protocol for plant regeneration from protoplasts of hydroxyproline(HYP)resistant cell line of Onoblychis viciaefolia was established. In SH medium supplemented with 1 mg/L 2, 4-dichlorophenoxy-acetic acid (2,4-D), 0.5 mg/L kinetin (KT) and 0.2 mg/L naphthalene acetic acid (NAA), the division frequency of protoplastderived cells reached uP to over 60 %, and microcalli were obtained in 5-6 wk. Upon transferring them on agar solidified MS medium plus 2 mg/L indole-3-acetic acid (IAA), shoots were induced. After cultivating them on MS medium with or without IAA, roots were regenerated.Chromosome number of all protoplast-regenerated plants examined were normal (2n=28). The protoplast-derived calli and plants grew vigorously on the medium containing 10 mmol/L HYP.
文摘Plant cell culture in bioreactors is an enabling tool for large scale production of clonal elite plants in agriculture, horticulture, forestry, pharmaceutical sectors, and for biofuel production. Advantages of bioreactors for plant cell culture have resulted in various types of bioreactors differing in design, operating technologies, instrumentations, and construction of culture vessels. In this review, different types of bioreactors for clonal propagation of plants and secondary metabolites production are discussed. Mechanical and biochemical parameters associated with bioreactor design, such as aeration, flow rate, mixing, dissolved oxygen, composition of built-up gas in the headspace, and pH of the medium, are pivotal for cell morphology, growth, and development of cells within tissues, embryos, and organs. The differences in such parameters for different bioreactor designs are described here, and correlated to the plant materials that have been successfully cultured in different types of bioreactors.
文摘本研究以羊草(L eym us ch inensis)与灰色赖草(L eym us cinereus)杂种F1代幼穗为外植体诱导愈伤组织,在3.0 m g/L 2,4-D+M S培养基上继代1次后,转入不同浓度激素(2,4-D、IAA、KT)配比和不同浓度蔗糖的M S液体培养基进行振荡培养,建立杂种F1代细胞悬浮系和植株再生体系.结果表明,细胞悬浮培养时,M S+1.0 m g/L2,4-D+0.1 m g/L KT+4%蔗糖的液体培养基最佳;悬浮细胞分化时,1.0 m g/L 2,4-D+0.1 m g/L KT+4%蔗糖+M S和1.0 m g/L 2,4-D+4%蔗糖+M S培养的悬浮细胞在1.0 m g/L NAA+0.5 m g/L KT+M S分化培养基上的绿苗分化率分别达到83%和80%.细胞悬浮系及再生体系的建立为杂种F1代育性恢复的研究奠定了基础.