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Plant growth regulation by seed coating with films of alginate and auxin-intercalated layered double hydroxides

机译:用藻酸盐薄膜种子涂层植物生长调节和羊膜插入层状双氢氧化物

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摘要

Auxins are a class of organic substances known as plant-growth regulators, which act on plant physiology, promoting its full development. However, due to the great instability of these substances among the diversity of crops and cultivation environments, it is necessary to seek more efficient modes of application, which lead to a homogeneous distribution and promote a sustained release according to the plants demand. Seed coating, using films containing a biodegradable polymer and auxins intercalated into layered compounds, emerges as a very promising approach to a new form of growth regulator application. Thus, the presented work had three aims: (i) the synthesis and characterization of an organic–inorganic hybrid material containing a layered double hydroxide (LDH) of zinc and aluminum and the synthetic auxin 1-naphthalenoacetic acid (ZnAl-NAA-LDH), (ii) the coating of bean seeds (Phaseolus vulgaris L.) with composite films produced from mixtures of alginate polymer and ZnAl-NAA-LDH, and (iii) the evaluation of the plant response by bioassays. The hybrid ZnAl-NAA-LDH was characterized by a set of analytical techniques, including powder X-ray diffraction, thermogravimetric analysis coupled to differential scanning calorimetry and mass spectrometry, specific surface area measurement, and scanning electron microscopy. Bioassays were performed with the seeds coated with the composite film to assess the germination rate and germination speed index of the seeds, as well as biometric analyses including measurements of root area, root fresh matter, and shoot length of the plants. The bioassay performed in soil pots showed that the alginate film containing ZnAl-NAA-LDH yields an enhancement regarding root area, fresh root matter and shoot length of plants. Thus, films produced from a mixture of alginate and the hybrid material containing the growth regulator intercalated into LDH can be a viable alternative to enhance plant development, which can be included in seed management.
机译:植物素是一类称为植物生长调节剂的有机物质,其对植物生理学作出的作用,促进其全面发展。然而,由于这些物质在农作物和栽培环境的多样性之间的巨大不稳定性,有必要寻求更有效的应用模式,这导致均匀的分布,并根据植物需求促进持续释放。使用含有可生物降解的聚合物的膜和插入分层化合物的薄膜的种子涂层出现为新形式的生长调节剂应用的非常有希望的方法。因此,所提出的工作具有三个目的:(i)含有锌和铝的层状双氢氧化物(LDH)的有机 - 无机杂化材料的合成和表征,合成助体1-萘酰乙酸(Znal-Naa-LDH) (ii)(ii)用藻酸盐聚合物和Znal-Naa-LDH的混合物制备的复合薄膜的豆种子(Phaveolusulusulus L.),以及(iii)通过生物测定的植物反应的评估。杂交ZNA-NAA-LDH的特征在于一组分析技术,包括粉末X射线衍射,热重分析耦合到差分扫描量热法和质谱,比表面积测量和扫描电子显微镜。用涂有复合膜的种子进行生物测定,以评估种子的萌发率和发芽速度指数,以及生物识别分析,包括植物的根部区域,根新物质和枝条长度的测量。在土盆中进行的生物测定表明,含有ZNA-NA-LDH的藻酸盐膜产生关于根部区域,新鲜的根系和植物的芽长度的增强。因此,由藻酸盐的混合物和含有插入LDH插入的生长调节剂的混合材料产生的薄膜可以是增强植物发育的可行替代方案,其可包括在种子管理中。

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