Effect of Cytokinins on the Vegetative Propagation of Olea europaea L. (cv. Koroneiki)

Q4 Agricultural and Biological Sciences Plant Cell Biotechnology and Molecular Biology Pub Date : 2023-08-03 DOI:10.56557/pcbmb/2023/v24i3-48330
F. Chamandoosti
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Abstract

The study was carried out in soil born diseases laboratory, Iranian Research Institute of Plant Protection during Mar 2022 to Sep 2022. The Single node explants (prepared from young certificated scions from Fadak garden in Qom province) of Koroneiki olive scions cultured on DKW medium. Culture media were free from PGRs in establishment stage. After the mentioned stage, explant cultured on DKW media fortified with PGRs, in order to presentation a simple and repeatable method for shoot multiplication which is one of the important method for In Vitro olive propagation by examining three item included, the mean shoot length, the mean shoot number and the mean leaf number per explants. PGRs included 1 – 4 mg/l ZEA, KIN, 2ip, TDZ and BA. ZEA and KIN to be superior to other cytokinin in terms of mean shoot length and mean shoot numbers, respectively. All of investigated item especially the mean shoot number and the mean shoot length increased when the concentrations of PGRs increased. The influence of other cytokines (2ip, BA and TDZ) on three above investigated items was different. Supplemented DKW media with 4 mg/l 2ip resulted the maximum number leaf per explants. Callusing and low growth of micro shoots on explants were the dominant responses on DKW media plus 3 mg/l BA. In addition, few weak micro shoots regenerated on DKW media with 4 mg/l TDZ.
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细胞分裂素对油橄榄无性繁殖的影响。Koroneiki)
该研究于2022年3月至2022年9月在伊朗植物保护研究所土壤病害实验室进行。在DKW培养基上培养的Koroneiki橄榄接穗的单节外植体(由来自库姆省Fadak花园的年轻认证接穗制备)。培养基在建立阶段没有PGR。在上述阶段之后,将外植体在添加PGRs的DKW培养基上培养,通过检测平均芽长、平均芽数和每个外植体的平均叶数三个项目,以提供一种简单、可重复的芽增殖方法,这是橄榄离体繁殖的重要方法之一。PGRs包括1–4 mg/l ZEA、KIN、2ip、TDZ和BA。ZEA和KIN在平均芽长和平均芽数方面分别优于其他细胞分裂素。所有研究项目,尤其是平均芽数和平均芽长,都随着PGRs浓度的增加而增加。其他细胞因子(2ip、BA和TDZ)对上述三个研究项目的影响不同。添加4mg/l 2ip的DKW培养基可获得每个外植体的最大叶片数。在添加3mg/l BA的DKW培养基上,愈伤组织和微芽在外植体上的低生长是主要的反应。此外,在添加4mg/l TDZ的DKW介质上,很少有弱微芽再生。
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来源期刊
Plant Cell Biotechnology and Molecular Biology
Plant Cell Biotechnology and Molecular Biology Agricultural and Biological Sciences-Horticulture
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