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Isolation and characterization of soluble boron complexes in higher plants. The mechanism of phloem mobility of boron.

机译:高等植物中可溶性硼配合物的分离和表征。硼韧皮部迁移的机理。

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摘要

Boron (B) polyol complexes have been isolated and characterized from the phloem sap of celery (Apium graveolens L.) and the extrafloral nectar of peach (Prunus persica L.). In celery the direct analysis of untreated phloem sap by matrix-assisted laser desorption-Fourier transform mass spectrometry, with verification by high-performance liquid chromagraphy and gas chromatography-mass spectrometry, revealed that B is present in the phloem as the mannitol-B-mannitol complex. Molecular modeling further predicted that this complex is present in the 3,4 3',4' bis-mannitol configuration. In the extrafloral nectar of peach, B was present as a mixture of sorbitol-B-sorbitol, fructose-B-fructose, or sorbitol-B-fructose. To our knowledge, these findings represent the first successful isolation and characterization of soluble B complexes from higher plants and provide a mechanistic explanation for the observed phloem B mobility in these species.
机译:硼(B)多元醇络合物已从芹菜的韧皮部汁液(Apium graveolens L.)和桃的花蜜浆(Prunus persica L.)中分离出来。在芹菜中,通过基质辅助激光解吸-傅立叶变换质谱对未经处理的韧皮部汁液进行直接分析,并通过高效液相色谱和气相色谱-质谱法进行验证,结果表明韧皮部中的B以甘露醇-B-的形式存在。甘露醇复合物。分子模型进一步预测该复合物以3,4 3',4'双甘露醇构型存在。在桃的花蜜中,B以山梨糖醇-B-山梨糖醇,果糖-B-果糖或山梨糖醇-B-果糖的混合物形式存在。据我们所知,这些发现代表了高等植物中可溶性B配合物的首次成功分离和表征,并为观察到的韧皮部B在这些物种中的迁移提供了机理解释。

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