Impact of Various IBA Concentrations on Rooting in Apical Shoot Cutting and Stem Cuttings of Callistemon lanceolatus (Sm.) Sweet in Polytunnel Conditions

Packialakshmi, M, N. Naveena, R. S. Vishnuprabha, Benisha S, Harshavardhini K, Jayapradha J.S., Nikhil Balu Rajput
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Abstract

The study was undertaken to identify the optimal concentration of IBA and type of cuttings suitable for propagation of Callistemon lanceolatus and it was conducted at the Vanavarayar Institute of Agriculture, Pollachi, Coimbatore, India from December 2022 to September 2023. The experiment addressed the challenges of seed propagation, such as their seed capsules need to be activated by fire and the unpredictable nature of seed germination, which results in high progeny diversity due to genetic recombination. The investigation focused on apical and stem cuttings subjected to fifteen different treatments with three replications each; the Tukey test was used for statistical analysis; the cuttings were treated with various concentrations of Indole-3-butyric acid (IBA) and placed under polytunnel conditions; observations were made after 45 days, measuring sprouting percentage, rooting percentage, mean number of leaves, shoot length, mean number of roots, and root length per cutting. In light of these issues, the study explored clonal propagation as an alternative for mass multiplication of elite trees. The results of the study depicted that the maximum rooting percentage and root length were observed in T6 (73.28±8.87%) and (12.54±0.00cm) due to the exogenous application of auxin. On the whole, the result of this investigation suggest that apical shoot cuttings with IBA at 6000ppm can be made to induce maximum rooting and to produce high quality planting stock material for clonal propagation in Callistemon lanceolatus.
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不同浓度的 IBA 对多菌室条件下甜叶菊(Callistemon lanceolatus (Sm.) Sweet)顶端嫩枝插条和茎插条生根的影响
这项研究的目的是确定 IBA 的最佳浓度和适合繁殖 Callistemon lanceolatus 的插条类型,研究于 2022 年 12 月至 2023 年 9 月在印度哥印拜陀 Pollachi 的 Vanavarayar 农业研究所进行。该实验解决了种子繁殖的难题,如种子蒴果需要用火激活,种子发芽的不可预测性导致基因重组造成后代的高度多样性。调查的重点是对插条和茎进行 15 种不同的处理,每种处理有 3 次重复;统计分析采用 Tukey 检验;插条用不同浓度的吲哚-3-丁酸(IBA)处理,并置于多隧道条件下;45 天后进行观察,测量萌芽率、生根率、平均叶片数、芽长、平均根数和每根插条的根长。鉴于这些问题,该研究探索了克隆繁殖作为大量繁殖精英树木的替代方法。研究结果表明,由于外源施用了辅助素,T6(73.28±8.87%)和(12.54±0.00 厘米)的生根率和根长最大。总之,该研究结果表明,用 6000ppm 的 IBA 进行顶端扦插可诱导最大生根量,并可为 Callistemon lanceolatus 的克隆繁殖提供高质量的种植材料。
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