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Factors affecting plant regeneration from leaf tissues of Buddleia species.

机译:影响醉鱼草属植物叶片组织再生的因素。

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The effects of genotype, basal medium, plant growth regulator (PGR), dark treatment, and antibiotics on shoot regeneration of two Buddleia cultivars, B. davidii 'Potters Purple' and Buddleia 'Lochinch', were investigated. In vitro shoots were regenerated from leaf tissues in either Murashige and Skoog (MS) or woody plant medium (WPM) media supplemented with benzyladenine (BA). In general, more shoots were regenerated in WPM medium than in MS medium. Dark treatment for 3 to 5 weeks dramatically increased shoot regeneration. Addition of indole-3-butyric acid (IBA) or naphthalene acetic acid (NAA) significantly enhanced the regeneration rate and shoots of each explant. The maximum regeneration rate (100%) of B. davidii 'Potters Purple' was achieved when cultured in WPM containing 5 micro M BA plus 5 micro M IBA. The maximum regeneration rate (98.4%) of Buddleia 'Lochinch' was found in WPM supplemented with 20 micro M BA plus 4 micro M IBA. Carbenicillin at 250 to 500 mg.L-1 and cefotaxime at 125 to 250 mg.L-1, individually or combined, promoted shoot regeneration. Interactions between genotype and medium or PGRs were found. In vitro shoots were easily rooted in half-strength MS medium with or without NAA. Rooted plants were transferred to potting mix and grown in the greenhouse. This research will facilitate genetic improvement and fast propagation of Buddleia species using biotechnology.
机译:研究了基因型,基础培养基,植物生长调节剂(PGR),深色处理和抗生素对两个醉鱼芽孢杆菌B. davidii'Potters Purple'和Buddleia'Lochinch'的芽再生的影响。在Murashige和Skoog(MS)或补充了苄基腺嘌呤(BA)的木本植物培养基(WPM)培养基中,从叶片组织中再生出嫩芽。通常,在WPM培养基中再生的芽比在MS培养基中再生的芽更多。 3到5周的黑暗处理可以显着提高芽的再生。加入吲哚-3-丁酸(IBA)或萘乙酸(NAA)可以显着提高每种外植体的再生速率和枝条。当在含有5 micro M BA和5 micro M IBA的WPM中培养时,达到了B. davidii'Potters Purple'的最大再生率(100%)。在补充了20 micro M BA和4 micro M IBA的WPM中,醉鱼草(Ludinchia'Lochinch)的最大再生率(98.4%)被发现。 250到500 mg.L-1的羧苄青霉素和125到250 mg.L-1的头孢噻肟分别促进或联合促进芽再生。发现基因型和培养基或PGR之间的相互作用。体外芽很容易生根于有或没有NAA的半强度MS培养基中。将生根的植物转移到盆栽混合物中,并在温室中生长。这项研究将利用生物技术促进虎杖物种的遗传改良和快速繁殖。

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