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Biofertilization with Azospirillum brasilense improves in vitro culture of Handroanthus ochraceus, a forestry, ornamental and medicinal plant

机译:巴西固氮螺菌的生物施肥改善了林业,观赏植物和药用植物Hand鱼的体外培养

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Biofertilization with plant growth-promoting rhizobacteria is a potential alternative to plant productivity. Here, in vitro propagation of Handroanthus ochraceus (yellow lapacho), a forest crop with high economic and environmental value, was developed using the Azospirillum brasilense strains Cd and Az39 during rhizogenesis. Epicotiles of in vitro plantlets were multiplied in Woody Plant Medium (WPM). For rooting, elongated shoots were transferred to auxin-free Murashige-Skoog medium with Gamborg's vitamins and WPM, both at half salt concentration (1/2MSG and 1/2WPM), and inoculated with Cd or Az39 at the base of each shoot. Anatomical studies were performed using leaves cleared and stained with safranin for optical microscopy and leaves and roots metalized with gold-palladium for scanning electron microscopy (SEM). In 1/2WPM auxin-free medium, A. brasilense Cd inoculation produced 55% of rooting, increased root fresh and dry weight (45% and 77%, respectively), and led to lower stomata size and density with similar proportion of open and closed stomata. Both strains selectively increased the size or density of glandular trichomes in 1/2MSG. Moreover, bacteria were detected on the root surface by SEM. In conclusion, the difference in H. ochraceus response to A. brasilense inoculation depends on the strain and the plant culture media. Cd strain enhanced rooting in auxin-free 1/2WPM and produced plantlets with features similar to those expected in ex vitro plants. This work presents an innovative in vitro approach using beneficial plant-microorganism interaction as an ecologically compatible strategy in plant biotechnology.
机译:具有促进植物生长的根际细菌的生物肥是植物生产力的潜在替代方法。在这里,在根际发生过程中,使用巴西假单胞菌Cd和Az39菌株开发了经济和环境价值高的森林作物Hand鱼(Handroanthus ochraceus,黄色lapacho)的体外繁殖。在木本植物培养基(WPM)中繁殖体外苗的表观金属。为了生根,将伸长的枝条转移到不含甘菊素的维生素和WPM的无生长素的Murashige-Skoog培养基中,盐浓度均为一半(1 / 2MSG和1 / 2WPM),并在每个枝条的底部接种Cd或Az39。进行解剖学研究的方法是使用番红花清除并染色的叶片进行光学显微镜检查,并使用金钯金属化的叶片和根部进行扫描电子显微镜检查(SEM)。在1 / 2WPM无生长素的培养基中,巴西盲肠Cd接种可产生55%的生根,增加根的鲜重和干重(分别为45%和77%),并导致较低的气孔大小和密度,而开孔和闭塞的比例相似封闭的气孔。两种菌株在1 / 2MSG中选择性地增加了腺毛的大小或密度。此外,通过SEM在根表面上检测到细菌。综上所述,曲霉对巴西假单胞菌接种的反应差异取决于菌株和植物培养基。 Cd菌株增强了无生长素的1 / 2WPM的生根,并产生了具有与离体植物相似的特征的幼苗。这项工作提出了一种创新的体外方法,该方法利用有益的植物-微生物相互作用作为植物生物技术中的生态相容策略。

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