首页> 外文期刊>Plant Cell, Tissue and Organ Culture: An International Journal on in Vitro Culture of Higher Plants >Brassinosteroid increases the cytokinin efficiency to induce direct somatic embryogenesis in leaf explants of Coffea arabica L. (Rubiaceae)
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Brassinosteroid increases the cytokinin efficiency to induce direct somatic embryogenesis in leaf explants of Coffea arabica L. (Rubiaceae)

机译:芸苔类化合物增加了细胞分裂素效率,以诱导Coffea Arabica L.(Rubiaceae)的叶片外植体中的直接体细胞胚胎发生

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摘要

The combination of different plant growth regulators can result in beneficial effects in the induction of in vitro morphogenetic pathways. The present study reports the effect of 24-epibrassinolid (24-epiBR; brassinosteroid) when added alone and in association with N-6-(2-isopentnyl) adenine (2-iP; cytokinin) in the induction of direct somatic embryogenesis in Coffea arabica. Leaf explants were cultivated in a modified Murashige and Skoog (MS) medium with 0 or 10 mu M 2-iP and different concentrations (0.01, 0.10 or 1.0 mu M) of 24-epiBR. Explants cultured on MS medium supplemented with 1.0 mu M 24-epiBR in association with 2-iP produced 6.8 times more somatic embryos than the explants cultured with only 2-iP. Histological analyses also provided evidence that the supplementation of brassinosteroids in the culture medium could have influenced somatic embryogenesis differentiation. Somatic embryos obtained in the presence of brassinosteroid and cytokinin were better structured morpho-histologically as compared to those obtained in the medium with just cytokinin. This study opens new perspectives for the use of brassinosteroids in the somatic embryogenesis of C. arabica, so as to optimize the in vitro regeneration systems used in genetic improvement programs in C. arabica productive systems.
机译:不同植物生长调节剂的组合可导致体外形态发生途径诱导的有益效果。本研究报告了单独添加的24-Epibrassinolid(24-Epibr; BrassinoSteroid)的效果并与N-6-(2-异戊烷)腺嘌呤(2-IP;胞嘧啶)联合在诱导Coffea中的直接体细胞胚胎发生中阿拉伯里卡。叶片外植体在修饰的Murashige和Skoog(MS)培养基中培养,0或10μm2-IP和不同浓度(0.01,0.10或1.0μm)的24-Epibri。在与2-IP相关联的培养物的MS培养基上培养的外植体,比仅用2-IP培养的外植体产生6.8倍的体细胞胚胎。组织学分析还提供了证据表明,培养基中的芸苔类固醇的补充可能会影响细胞胚胎发生分化。与培养基中获得的那些,在芸苔类固醇和细胞素蛋白酶的存在下获得的体细胞胚状物在培养基中获得的含量更好。本研究开辟了在C.阿拉伯察带的体细胞胚胎发生器中使用芸苔类固醇的新视角,以优化C.阿拉伯族生产系统中遗传改善计划中使用的体外再生系统。

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