Kaewchangwat Narongpol, Dueansawang Sattawat, Tumcharern Gamolwan, Suttisintong Khomson
National Nanotechnology Center (NANOTEC), National Science and Technology Development Agency (NSTDA) , 111 Thailand Science Park, Thanon Phahonyothin, Tumbon Khlong Nueng, Amphoe Khlong Luang, Pathum Thani 12120, Thailand.
J Agric Food Chem. 2017 Nov 15;65(45):9828-9837. doi: 10.1021/acs.jafc.7b03809. Epub 2017 Nov 3.
Five tetradentate ligands were synthesized from l-amino acids and utilized for the synthesis of Cu(II)-chelates 1-5. The efficacy of Cu(II)-chelates as copper (Cu) source and growth stimulator in hydroponic cultivation was evaluated with Lactuca sativa. Their stability test was performed at pH 4-10. The results suggested that Cu(II)-chelate 3 is the most pH tolerant complex. Levels of Cu, Zn, and Fe accumulated in plants supplied with Cu(II)-chelates were compared with those supplied with CuSO at the same Cu concentration of 8.0 μM. The results showed that Cu(II)-chelate 3 significantly enhanced Cu, Zn, and Fe content in shoot by 35, 15, and 48%, respectively. Application of Cu(II)-chelate 3 also improved plant dry matter yield by 54%. According to the results, Cu(II)-chelate 3 demonstrated the highest stimulating effect on plant growth and plant mineral accumulation so that it can be used as an alternative to CuSO for supplying Cu in nutrient solutions and enhancing the plant growth.
从L-氨基酸合成了五种四齿配体,并用于合成铜(II)螯合物1-5。以生菜为材料,评价了铜(II)螯合物作为铜源和水培生长刺激剂的效果。在pH值4-10条件下进行了稳定性测试。结果表明,铜(II)螯合物3是最耐pH值的配合物。将供应铜(II)螯合物的植物中积累的铜、锌和铁水平与在相同铜浓度8.0μM下供应硫酸铜的植物进行了比较。结果表明,铜(II)螯合物3显著提高了地上部铜、锌和铁的含量,分别提高了35%、15%和48%。施用铜(II)螯合物3还使植物干物质产量提高了54%。根据结果,铜(II)螯合物3对植物生长和植物矿物质积累具有最高的刺激作用,因此它可以作为硫酸铜的替代品,用于在营养液中供应铜并促进植物生长。