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新型水溶性细胞分裂素衍生物及其对大麦产量和光合作用的有益影响。

New Water-Soluble Cytokinin Derivatives and Their Beneficial Impact on Barley Yield and Photosynthesis.

机构信息

Department of Chemical Biology, Faculty of Science, Palacký University, Šlechtitelů 27, CZ-783 71 Olomouc, Czech Republic.

Institute of Physics of the Czech Academy of Sciences, Na Slovance 2, CZ-182 21 Praha, Czech Republic.

出版信息

J Agric Food Chem. 2022 Jun 15;70(23):7288-7301. doi: 10.1021/acs.jafc.2c00981. Epub 2022 Jun 6.

Abstract

Solubility of growth regulators is essential for their use in agriculture. Four new cytokinin salts─6-benzylaminopurine mesylate (), 6-(2-hydroxybenzylamino)purine mesylate (), 6-(3-hydroxybenzylamino)purine mesylate (), and 6-(3-methoxybenzylamino)purine mesylate ()─were synthesized, and their crystal structures were determined to clarify structural influence on water solubility. The mesylates were several orders of magnitude more water-soluble than the parent CKs. The new salts significantly reduced chlorophyll degradation and impairment of photosystem II functionality in barley leaf segments undergoing artificial senescence and had pronounced effects on the leaves' endogenous CK pools, maintaining high concentrations of functional metabolites for several days, unlike canonical CKs. A foliar treatment with and increased the harvest yield of spring barley by up to 8% when compared to treatment with the parent CKs while also increasing the number of productive tillers. This effect was attributed to the higher bioavailability of the mesylate salts and the avoidance of dimethyl sulfoxide exposure.

摘要

生长调节剂的溶解度对于其在农业中的应用至关重要。我们合成了四种新型细胞分裂素盐——6-苄氨基嘌呤甲磺酸酯()、6-(2-羟基苄氨基)嘌呤甲磺酸酯()、6-(3-羟基苄氨基)嘌呤甲磺酸酯()和 6-(3-甲氧基苄氨基)嘌呤甲磺酸酯(),并确定了它们的晶体结构,以阐明结构对水溶性的影响。甲磺酸盐的水溶性比母体 CK 高出几个数量级。在经历人工衰老的大麦叶片片段中,这些新盐显著降低了叶绿素降解和光系统 II 功能的损伤,并对叶片的内源性 CK 库产生显著影响,可维持数天的高浓度功能代谢物,这与典型的 CK 不同。与使用母体 CK 相比,叶面喷施和可将春大麦的收获产量提高高达 8%,同时还增加了有效分蘖的数量。这种效果归因于甲磺酸盐盐更高的生物利用度和避免了二甲基亚砜的暴露。

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