Micropropagation protocol for Antigonon leptopus an important ornamental and medicinal plant

IF 3.5 Q3 Biochemistry, Genetics and Molecular Biology Journal of Genetic Engineering and Biotechnology Pub Date : 2018-12-01 DOI:10.1016/j.jgeb.2018.03.008
Zenna Fawzia Ghareeb , Lobna S. Taha
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引用次数: 12

Abstract

The effect of some factors on in vitro consecutive micropropagation behavior of Antigonon leptopus was examined including those of culture establishment, shootlets multiplication, rooting and acclimatization stages. The highest percent of aseptic cultures and survival of explants (100%) were obtained as a result of using Clorox 10% for 3 min followed by MC 0.1% for 2 min while, using each of them individually (Clorox 20% or MC 0.1%) for 5 min caused the highest percent of shoot formation. During the multiplication stage, the highest percent of shoot formation was reached to 100% with repeating culture of explants (two times) on MS medium supplemented with 2ip at 1.0 and IBA at 0.2 mg/l. The highest numbers of shootlets/explant were obtained when 2.0 mg/l of BAP or 0.5 mg/l BA + 0.2 mg/l of IBA were added to MS culture medium. Culturing the explants on MS medium supplemented with 2ip at 0.5 or 1.0 mg/l each combined with 0.2 mg/l of IBA showed the longest shootlets. Reducing the strength of culture media to ½ or ¾ had promotion effect on rooting formation of shootlets. The best results of plant acclimatization (survival percent, plant height and root length) were obtained by using sand or peat moss soil. The amplified DNA fragments using B7, B9 and C19 primers for mother and micropropagated plants showed that the produced pattern by primer B7 had a maximum number of 10 bands of DNA fragments with molecular size ranging between 1025.57 and 176.36 bp, micropropagated plants showed 95.2% similarity in relation to mother plant.

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一种重要的观赏和药用植物——钩藤的微繁技术
研究了培养建立阶段、小枝增殖阶段、生根阶段和驯化阶段等因素对leptopus离体连续微繁行为的影响。无菌培养率最高,外植体成活率为100%,分别用高乐氏20%和高乐氏0.1%处理3 min,再用高乐氏0.1%处理2 min;分别用高乐氏20%和高乐氏0.1%处理5 min,外植体成芽率最高。在增殖阶段,外植体在添加2ip浓度为1.0和IBA浓度为0.2 mg/l的MS培养基上重复培养2次,芽形成率最高,达到100%。MS培养基中添加2.0 mg/l BAP或0.5 mg/l BA + 0.2 mg/l IBA时,苗/外植体数量最高。外植体在添加2ip(0.5或1.0 mg/l)和IBA(0.2 mg/l)的MS培养基上培养,嫩芽最长。将培养基强度降低到1 / 2或3 / 4对小枝生根有促进作用。沙土和泥炭藓土的植物驯化效果最好(成活率、株高和根长)。用B7、B9和C19引物扩增母株和微繁植株的DNA片段,结果表明,引物B7扩增的DNA片段最多有10个条带,分子大小在1025.57 ~ 176.36 bp之间,微繁植株与母株的相似性为95.2%。
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来源期刊
Journal of Genetic Engineering and Biotechnology
Journal of Genetic Engineering and Biotechnology Biochemistry, Genetics and Molecular Biology-Biotechnology
CiteScore
5.70
自引率
5.70%
发文量
159
审稿时长
16 weeks
期刊介绍: Journal of genetic engineering and biotechnology is devoted to rapid publication of full-length research papers that leads to significant contribution in advancing knowledge in genetic engineering and biotechnology and provide novel perspectives in this research area. JGEB includes all major themes related to genetic engineering and recombinant DNA. The area of interest of JGEB includes but not restricted to: •Plant genetics •Animal genetics •Bacterial enzymes •Agricultural Biotechnology, •Biochemistry, •Biophysics, •Bioinformatics, •Environmental Biotechnology, •Industrial Biotechnology, •Microbial biotechnology, •Medical Biotechnology, •Bioenergy, Biosafety, •Biosecurity, •Bioethics, •GMOS, •Genomic, •Proteomic JGEB accepts
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