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Influences of antibiotics on plantlet regeneration via organogenesis in Ioblolly pine (Pinus taeda L.)
引用本文:TANGWei LatoyaHarris RonaldJ.Newton. Influences of antibiotics on plantlet regeneration via organogenesis in Ioblolly pine (Pinus taeda L.)[J]. 林业研究, 2003, 14(3): 185-190. DOI: 10.1007/BF02856827
作者姓名:TANGWei LatoyaHarris RonaldJ.Newton
作者单位:DepartmentofBiology,HowellScienceComplex,EastCarofinaUniversity,Greenville,NC27858-4353,USA
摘    要:Three antibiotics ampicillin, carbenicillin, and cefotaxime were evaluated for their effects on induction, growth, and differentiation of organogenic calli, as well as rooting of regenerated shoots of three Ioblolly pine (Pinus taeda L.) genotypes. Of the antibiotics administered, cefotaxime maximally increased the frequency of callus formation and growth rate of organogeni ccalli, carbenicillin maximally increased the frequency of shoot regeneration and the average number of adventitious shoots per piece of organogenic callus, ampicUlin maximally decreased the rooting frequency of regenerated shoots and mean number of roots per regenerated shoot, in comparison with antibiotic-free media. Compared with the control, ampicillin minimally increased the frequency of callus formation, cefotaxime minimally increased the frequency of shoot regeneration, and carbenicillin minimally decreased the rooting frequency of regenerated shoots in three Ioblolly pine genotypes tested. All three antibiotics increased the frequencies of callus formation and shoot regeneration, and reduced the rooting frequency ot regenerated shoots suggested that the establishment of an efficient Agrobacterium tumefaciens-mediated transformation protocol for stable integration of foreign genes into Ioblolly pine need to select a suitable antibiotic. This investigation could be useful for optimizing genetic transformation of conifers.

关 键 词:火炬松 抗生素 器官发生 植株再生 愈伤组织 诱导 生长 遗传转化
收稿时间:2002-05-29

Influences of antibiotics on plantlet regeneration via organogenesis in loblolly pine (Pinus taeda L.)
Tang Wei,Latoya Harris,Ronald J. Newton. Influences of antibiotics on plantlet regeneration via organogenesis in loblolly pine (Pinus taeda L.)[J]. Journal of Forestry Research, 2003, 14(3): 185-190. DOI: 10.1007/BF02856827
Authors:Tang Wei  Latoya Harris  Ronald J. Newton
Affiliation:(1) Department of Biology, Howell Science Complex, East Carolina University, 27858-4353 Greenville, NC, USA
Abstract:Three antibiotics ampicillin, carbenicillin, and cefotaxime were evaluated for their effects on induction, growth, and differentiation of organogenic calli, as well as rooting of regenerated shoots of three loblolly pine (Pinus taeda L.) genotypes. Of the antibiotics administered, cefotaxime maximally increased the frequency of callus formation and growth rate of organogenic calli, carbenicillin maximally increased the frequency of shoot regeneration and the average number of adventitious shoots per piece of organogenic callus, ampicillin maximally decreased the rooting frequency of regenerated shoots and mean number of roots per regenerated shoot, in comparison with antibiotic-free media. Compared with the control, ampicillin minimally increased the frequency of callus formation, cefotaxime minimally increased the frequency of shoot regeneration, and carbenicillin minimally decreased the rooting frequency of regenerated shoots in three loblolly pine genotypes tested. All three antibiotics increased the frequencies of callus formation and shoot regeneration, and reduced the rooting frequency of regenerated shoots suggested that the establishment of an efficientAgrobacterium tumefaciens-mediated transformation protocol for stable integration of foreign genes into loblolly pine need to select a suitable antibiotic. This investigation could be useful for optimizing genetic transformation of conifers. Biography: TANG Wei (1964-), male, Ph. Doctor, Research associate, Department of Biology, Howell Science Complex, East Carolina University, Greenville, NC 27858 4353, USA. Responsible editor: Chai Ruihai
Keywords:Antibiotic   Pinus taeda L.  Rooting ability  Shoot regeneration
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