大豆中金属-氨基酸复合物的叶面吸收和转运:锰、锌、谷氨酸和组氨酸的案例研究

IF 2.9 Q1 AGRICULTURE, MULTIDISCIPLINARY
Vinicius Pires Rezende, Eduardo Santos, Gabriel Sgarbiero Montanha, Higor José Freitas Alves da Silva, Felipe Sousa Franco and Hudson Wallace Pereira de Carvalho*, 
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引用次数: 0

摘要

氨基酸和矿质营养物质的混合物已经被农民用来提高叶面施肥的效率,尽管支持这种做法的系统研究很少。我们部署了体内x射线荧光光谱装置来测量锰和锌与组氨酸和谷氨酸络合的摄取和短程运输。作为阳性对照,我们使用独立氨基酸和基于硫酸盐的微量营养素。结果表明,在高相对湿度条件下(70-86%),组氨酸和谷氨酸复合物具有与硫酸盐相似的转运性能。然而,在非最佳相对湿度(35-45%)条件下,氨基酸配合物的硫酸盐转运量是其2倍。谷氨酸复合物使处理组织中Mn浓度增加670 mg kg-1;它还能促进Mn和Zn向老叶的转移。该复合物还降低了植物毒性。因此,该研究得出结论,这种类型的生物复合物比单独的盐具有优势。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Foliar Absorption and Translocation of Metal-Amino Acid Complexes in Soybean: A Case Study of Manganese, Zinc, Glutamate, and Histidine

The mixture of amino acids and mineral nutrients has already been employed by farmers to improve the efficiency of foliar fertilization, although systematic studies to support the practice are scarce. We deployed an in vivo X-ray fluorescence spectrometry setup to measure the uptake and short-range transport of Mn and Zn complexed with histidine and glutamate. As positive controls, we used stand-alone amino acids and sulfate-based micronutrients. The results showed that under high relative humidity (70–86%), the histidine and glutamate complexes presented transport performance similar to that of sulfates. However, under nonoptimal relative humidity (35–45%), the amino acid complexes presented twice the transport of sulfates. The glutamate complex increased the concentration of Mn in the treated tissue by 670 mg kg–1; it also induced higher translocation of Mn and Zn to older leaves. The complexes also reduced the phytotoxicity. Thus, the study concludes that such types of biocomplexes offer advantages over standalone salts.

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