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首页> 外文期刊>Plant Growth Regulation >Thidiazuron-induced shoot-bud formation on root segments of Albizzia julibrissin is an apex-controlled, light-independent and calcium-mediated response
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Thidiazuron-induced shoot-bud formation on root segments of Albizzia julibrissin is an apex-controlled, light-independent and calcium-mediated response

机译:噻唑隆诱导的白花蛇舌草根节上芽芽的形成是一种先端控制,光独立和钙介导的反应

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Root segments or entire roots of Albizziajulibrissin formed shoot-buds; the former were more responsive thanthe latter. The regeneration capacity of root segments increased with anincreasing distance from the meristem. Shoot regeneration on N6mineral formulation required either a cytokinin (BAP) or thidiazuron (TDZ); thelatter was more effective than the former, inducing a higher number of shoots ata low concentration (0.1 μM) in the light as well as in thedark. The frequency of shoot formation was reduced when the auxin inhibitorsmaleic hydrazide (MH) or triiodobenzoic acid (TIBA) were included, indicating anindirect role of auxin in shoot morphogenesis. Inhibitors of calcium uptake(lanthanum) and calmodulin, trifluoperazine (TFP) or chlorpromazine (CPZ) atvery low levels, resulted in inhibition to reduction in frequency of shootmorphogenesis. This indicates that TDZ-induced shoot formation may be acalcium-mediated response. Increasing the level of calcium in the medium did notpromote shoot formation in the presence of TDZ (0.1 μM). At areduced level of calcium, which was ineffective in the presence of low TDZ (0.1μM), shoot-buds appeared when the concentration of TDZ wasraised to 1.0 μM. This provides indirect evidence that TDZmodulates the tissue level of calcium needed for shoot formation.
机译:Albizziajulibrissin的根段或整个根形成芽芽。前者比后者反应更快。根节的再生能力随着离分生组织距离的增加而增加。 N6矿物质制剂的芽再生需要细胞分裂素(BAP)或噻唑隆(TDZ);后者比前者更有效,在光照和黑暗条件下都诱导出较高数量的芽,且浓度低(0.1μM)。当加入生长素抑制剂顺丁烯二酰肼(MH)或三碘苯甲酸(TIBA)时,减少了芽的形成频率,表明生长素在芽形态发生中具有间接作用。钙摄取(镧)和钙调蛋白,三氟拉嗪(TFP)或氯丙嗪(CPZ)的抑制剂含量过低,会抑制芽形态发生的频率降低。这表明TDZ诱导的芽形成可能是钙介导的反应。在TDZ(0.1μM)存在的情况下,增加培养基中钙的含量不会促进芽的形成。在降低的钙水平下(在低TDZ(0.1μM)时无效),当TDZ浓度提高至1.0μM时,芽芽出现。这提供了间接证据,即TDZ调节了芽形成所需的组织钙水平。

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