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首页> 外文期刊>Plant Cell, Tissue and Organ Culture >Somatic embryogenesis and plant regeneration of Lilium ledebourii (Baker) Boiss., an endangered species
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Somatic embryogenesis and plant regeneration of Lilium ledebourii (Baker) Boiss., an endangered species

机译:濒危物种百日草百合的体细胞胚发生和植物再生

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A somatic embryogenesis (SE) protocol was established for the regeneration of Lilium ledebourii (Baker) Boiss. whole plants using new vegetative bulblet microscales and transverse thin cell layers (tTCLs) of young bulblet roots as the explant sources. Bulblets were induced from bulb scale explants cultured for at least 3 months in the dark on Murashige and Skoog (MS) medium containing 3% sucrose, 0.8% agar, and different concentrations of α-naphthaleneacetic acid (NAA), 6-benzyladenine (BA), and thidiazuron. Embryo-like structures were obtained from tTCL explants of 3-month-old bulblets (excised from bulb scale explants) following culture on solid MS medium containing 3% sucrose and various concentrations of NAA and BA for 3 months in the dark. Both the explant source and the type of plant growth regulators affected the differentiation of somatic embryos. The highest percentage (65.55%) of embryogenesis was obtained from bulblet microscale tTCLs cultured on solid MS medium containing 0.54 μM NAA and 0.44 μM BA. Plants with normal shoots and roots were obtained following a 3-month culture of embryos on growth regulator-free MS medium at 25 ± 1°C under a 16/8-h light/dark photoperiod (light intensity 40 μmol m−2 s−1, cool-white fluorescent light). The plants were successfully acclimatized in the growth chamber.
机译:建立了体细胞胚发生(SE)方案,用于再生百合(Baker)Boiss。整个植物都使用新的植物鳞茎微尺度和幼小鳞茎根的横向薄细胞层(tTCL)作为外植体来源。从鳞茎外植体在含有3%蔗糖,0.8%琼脂和不同浓度的α-萘乙酸(NAA),6-苄基腺嘌呤(BA)的Murashige和Skoog(MS)培养基中在黑暗中培养至少3个月,诱导出鳞茎)和噻虫龙。在黑暗中,在含有3%蔗糖和各种浓度的NAA和BA的固体MS培养基上培养3个月大的tTCL外植体(从鳞茎外植体中剔除)后,获得了胚状结构。外植体来源和植物生长调节剂的类型都影响体细胞胚的分化。从在含有0.54μMNAA和0.44μMBA的固体MS培养基上培养的球茎微尺度tTCL中获得最高百分比(65.55%)的胚胎发生。在无生长调节剂的MS培养基上于25±1°C,16 / 8-h光照/黑暗光周期(光强度40μmolm s-下)进行3个月的胚胎培养后,获得具有正常芽和根的植物。 2 s -1 ,冷白色荧光灯)。使植物成功地在生长室中适应。

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