Shi Liang, Chen Zanming, Hou Yanan, Li Jianmin, Shen Zhenguo, Chen Yahua
College of Life Sciences, Nanjing Agricultural University, Nanjing, China.
The Collaborated Lab. of Plant Molecular Ecology (between the College of Life Sciences of Nanjing Agricultural University and the Asian Natural Environmental Science Center of the University of Tokyo), Nanjing Agricultural University, Nanjing, China.
Front Plant Sci. 2023 Mar 7;14:1138281. doi: 10.3389/fpls.2023.1138281. eCollection 2023.
Microplastics (MPs) and heavy metals (HMs) co-exist in sweet potato fields of China. As the main component of agricultural field mulch and one of the most polluting and harmful HMs, the effects of polyethylene microplastics (PE MPs) and cadmium (Cd) on sweet potato and soil environment are remains unclear. Here, pot and hydroponic experiments are used to explore the effects of original and weathered PE MPs on growth and Cd uptake of sweet potatoes. The results of pot experiments reveal that compared with the control (0%), 5% of weathered PE MPs can significantly increase soil electrical conductivity (EC); both 5% of the original PE MPs and weathered PE MPs can significantly reduce the concentration of Olsen phosphorus (P) and Olsen potassium (K) in soil, inhibit plant growth, but significantly increase Cd accumulation and glutathione (GSH) level in tissues of sweet potatoes, and also induce membrane lipid peroxidation. In addition, compared to 5% weathered PE MPs, 5% original PE MPs significantly reduce soil EC, growth and peroxidase level of sweet potatoes, but significantly increase Cd concentration in leaves and stems. The results of hydroponic experiment show that original PE MPs significantly increase the P, K, and Cd adsorption compared with weathered PE MPs, and Cd increases the original PE MPs accumulation in the root cortex but decrease PE MPs accumulation in shoots. To sum up, our study investigates the differences and reasons of the effects of original and weathered PE MPs on growth and Cd absorption of sweet potatoes.
微塑料(MPs)和重金属(HMs)在中国甘薯田中共同存在。作为农田地膜的主要成分以及污染性和危害性最强的重金属之一,聚乙烯微塑料(PE MPs)和镉(Cd)对甘薯及土壤环境的影响尚不清楚。在此,通过盆栽和水培实验来探究原始和老化的PE MPs对甘薯生长及Cd吸收的影响。盆栽实验结果表明,与对照(0%)相比,5%的老化PE MPs可显著提高土壤电导率(EC);5%的原始PE MPs和老化PE MPs均能显著降低土壤中 Olsen 磷(P)和 Olsen 钾(K)的浓度,抑制植物生长,但显著增加甘薯组织中的 Cd 积累和谷胱甘肽(GSH)水平,还会诱导膜脂过氧化。此外,与5%的老化PE MPs相比,5%的原始PE MPs显著降低土壤EC、甘薯的生长和过氧化物酶水平,但显著增加叶片和茎中的Cd浓度。水培实验结果表明,与老化PE MPs相比,原始PE MPs显著增加P、K和Cd的吸附,Cd增加原始PE MPs在根皮层中的积累,但减少其在地上部的积累。综上所述,本研究探讨了原始和老化PE MPs对甘薯生长和Cd吸收影响的差异及原因。