Engineering Faculty, Environmental Engineering Department, Karabük University, Karabük, Turkey.
Plant Signal Behav. 2023 Dec 31;18(1):2064072. doi: 10.1080/15592324.2022.2064072. Epub 2022 May 2.
This research focused on the different approaches to the transport and internal chelation of metals with amino acids and organic acids in plants. Therefore, in the first phase, the plants studied were identified the characteristics of the bioaccumulation factors. were identified as hyperaccumulators (Cd, Ni), accumulators (Pb, Sn, and Se), excluders (Cr, Hg). On the other hand, the only showed the characteristic of the accumulator for Cr. In the second phase, the combined effects of amino acids and organic acids on the chelation of heavy metals in plants were tested by a multi-linear regression model. Related to our hypothesis, Amino acids; Gly and Leu (Cd), Trp and Ile (Pb), Asp, Ser, and Leu (Cr), Ser (Hg), Trp and Glu (Ni), Asp, Thr, and Gly (Sn), Asn and Leu (Se), Organic acids; Malonic and Malic acid (Cd), Malonic acid (Pb), Oxalic and Malic acid (Cr), Oxalic, Succinic, Citric and Butyric acid (Hg), Malonic and Malic acid (Ni), Malonic, Maleic, and Malic acid (Sn), Malonic and Citric acid (Se) were concluded that had combined effect for heavy metal's phytochelation ability into plants.
本研究集中于研究植物中金属与氨基酸和有机酸的不同运输和内螯合方式。因此,在第一阶段,研究了所研究植物的生物积累因子特征。鉴定为超积累植物(Cd、Ni)、积累植物(Pb、Sn 和 Se)、排除植物(Cr、Hg)。另一方面,只有 Cr 表现出积累特征。在第二阶段,通过多元线性回归模型测试了氨基酸和有机酸对植物中重金属螯合的联合效应。与我们的假设相关,氨基酸;Gly 和 Leu(Cd)、Trp 和 Ile(Pb)、Asp、Ser 和 Leu(Cr)、Ser(Hg)、Trp 和 Glu(Ni)、Asp、Thr 和 Gly(Sn)、Asn 和 Leu(Se)、有机酸;丙二酸和苹果酸(Cd)、丙二酸(Pb)、草酸和苹果酸(Cr)、草酸、琥珀酸、柠檬酸和丁酸(Hg)、丙二酸和苹果酸(Ni)、丙二酸、马来酸和苹果酸(Sn)、丙二酸和柠檬酸(Se)被认为对重金属的植物螯合能力具有联合效应。