Auxin-like and Cytokinin-like Effects of New Synthetic Thienopyrimidine Derivatives on the Growth and Photosynthesis of Wheat

Anatolyivna Tsygankova Victoria, YaV Andrusevich, NM Vasylenko, VM Kopich, SV Popilnichenko, SG Pilyo, VS Brovarets
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Abstract

The regulatory effect of new synthetic thienopyrimidine derivatives on the growth and photosynthesis of wheat (Triticum aestivum L.) variety Svitlana in the vegetative phase was studied. The regulatory effect of new synthetic thienopyrimidine derivatives was compared with the regulatory effect of auxin IAA (1H-indol-3-yl)acetic acid) or synthetic plant growth regulators Methyur (sodium salt of 6-methyl-2-mercapto-4-hydroxypyrimidine) and Kamethur (potassium salt of 6-methyl-2-mercapto-4-hydroxypyrimidine). After 2 weeks, morphometric parameters (such as average length of shoots and roots (mm), average biomass of 10 plants (g)) and biochemical parameters (such as content of photosynthetic pigments (µg/ml)) of wheat plants grown from seeds treated with synthetic thienopyrimidine derivatives, or auxin IAA, or synthetic plant growth regulators Methyur and Kamethur at a concentration of 10-6M, were measured and compared with similar parameters of control wheat plants grown from seeds treated with distilled water. The regulatory effect of new synthetic thienopyrimidine derivatives on the morphometric and biochemical parameters of wheat plants was similar or higher compared to the regulatory effect of auxin IAA, or synthetic plant growth regulators Methyur and Kamethur. The relationship between the chemical structure of new synthetic thienopyrimidine derivatives and their regulatory effect on the growth and photosynthesis of wheat plants was revealed. The most biologically active thienopyrimidine derivatives are proposed to be used as new synthetic physiological analogues of auxins and cytokinins to improve growth and increase photosynthesis of wheat (Triticum aestivum L.) variety Svitlana in the vegetative phase.
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新合成噻吩嘧啶衍生物对小麦生长和光合作用的类叶黄素和类细胞分裂素效应
研究了新合成噻吩嘧啶衍生物对小麦(Triticum aestivum L.)品种 Svitlana 无性期生长和光合作用的调节作用。将新合成噻吩嘧啶衍生物的调节作用与辅助素 IAA(1H-吲哚-3-基乙酸)或合成植物生长调节剂 Methyur(6-甲基-2-巯基-4-羟基嘧啶钠盐)和 Kamethur(6-甲基-2-巯基-4-羟基嘧啶钾盐)的调节作用进行了比较。)2 周后,测量了用合成噻吩嘧啶衍生物或辅助素 IAA 或浓度为 10-6M 的合成植物生长调节剂 Methyur 和 Kamethur 处理过的种子生长的小麦植株的形态参数(如芽和根的平均长度(毫米)、10 株植株的平均生物量(克))和生化参数(如光合色素的含量(微克/毫升)),并与用蒸馏水处理过的种子生长的对照小麦植株的类似参数进行了比较。新合成噻吩嘧啶衍生物对小麦植株形态和生化参数的调节作用与辅助素 IAA 或合成植物生长调节剂 Methyur 和 Kamethur 的调节作用相似或更高。研究揭示了新合成噻吩嘧啶衍生物的化学结构与其对小麦植物生长和光合作用的调节作用之间的关系。建议将生物活性最强的噻吩嘧啶衍生物用作新合成的生理类似物--植物生长素和细胞分裂素,以改善小麦(Triticum aestivum L.)品种 Svitlana 在无性阶段的生长并提高其光合作用。
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