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Plant growth promoting N-alkyltropinium bromides enhance seed germination, biomass accumulation and photosynthesis parameters of maize (Zea mays)

机译:促进植物生长促进N-烷基三吡啶铵增强玉米种子萌发,生物质积累和光合作用参数(Zea Mays)

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摘要

Tropane alkaloids have attracted increasing scientific attention as natural compounds which display interesting biological properties. Tropine, a common constituent of tropane alkaloids, is a relatively inexpensive and commonly available compound which can be transformed into the form of quaternary salt in order to increase its uptake by plants. The aim of this study was to assess the properties of quaternary N-alkyltropinium bromides with various alkyl substituents and their impact on a model crop plant (maize) in order to evaluate their applicability as potential plant growth regulators. The products were obtained with high yield (81-96%) and their structures were confirmed using NMR. Some of the obtained salts exhibited surface active properties (CMC ranging from 5.12 x 10(-2) to 2.33 x 10(-3) mg L-1). The conducted experiments confirmed the positive effect of the synthesized salts on maize, such as increased seed germination (up to 60%), higher fresh/dry biomass yield (up to 20%), enhanced electron transfer rate (up to 40%) as well as improved total chlorophyll content (up to 60%). Further studies revealed that the properties of N-alkyltropinium salts depended on the structure of the substituent introduced during quaternization. The substituent can be adjusted to either ensure rapid biodegradability (100% in case of ethylacetyl substituent) or antimicrobial properties (MIC ranging from 2 to 20 mg L-1). The obtained result suggest that N-alkyltropinium bromides potentially constitute a promising group of novel plant growth promoting agents.
机译:稀醇生物碱吸引了越来越多的科学关注,作为显示有趣的生物学性质的天然化合物。罗甾烷生物碱的常见组成普罗汀是一种相对便宜且常见的化合物,可以转化为季盐的形式,以增加植物的摄取。本研究的目的是评估季铵N-烷基三吡啶铵的性质,具有各种烷基取代基及其对模型作物植物(玉米)的影响,以评估其适用性作为潜在的植物生长调节剂。通过高产率(81-96%)获得产品,并使用NMR确认它们的结构。一些得到的盐表现出表面活性性质(CMC为5.12×10(-2)至2.33×10(-3)Mg L-1)。进行的实验证实了合成盐对玉米的积极作用,例如种子萌发(高达60%),更高的新鲜/干生物质产量(高达20%),增强的电子转移率(高达40%)为以及改善总叶绿素含量(高达60%)。进一步的研究表明,N-烷基三烷基盐的性质依赖于在季铵化期间引入的取代基的结构。可以将取代基调节至确保快速生物降解性(在乙基乙炔取代基的情况下100%)或抗微生物性质(MIC范围为2-20mg L-1)。得到的结果表明,N-烷基三烷基吡啶铵潜在地构成新型植物生长促进剂的有希望的组。

著录项

  • 来源
    《New Journal of Chemistry》 |2019年第15期|共8页
  • 作者单位

    Poznan Univ Tech Fac Chem Technol Berdychowo 4 PL-60965 Poznan Poland;

    Polish Acad Sci Inst Bioorgan Chem Noskowskiego 12-14 PL-61704 Poznan Poland;

    Polish Acad Sci Inst Bioorgan Chem Noskowskiego 12-14 PL-61704 Poznan Poland;

    Univ Life Sci Poznan Dept Agron Dojazd 11 PL-60632 Poznan Poland;

    Univ Life Sci Poznan Dept Agron Dojazd 11 PL-60632 Poznan Poland;

    Univ Life Sci Poznan Dept Biotechnol &

    Food Microbiol Wojska Polskiego 48 PL-60627 Poznan Poland;

    Poznan Univ Tech Fac Chem Technol Berdychowo 4 PL-60965 Poznan Poland;

    Poznan Univ Tech Fac Chem Technol Berdychowo 4 PL-60965 Poznan Poland;

    Poznan Univ Tech Fac Chem Technol Berdychowo 4 PL-60965 Poznan Poland;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
  • 关键词

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