Yellow Sea Fishery Research Institute Chinese Academy of Fishery Sciences, Nanjing Road 106, Qingdao, 266071, China.
Yellow Sea Fishery Research Institute Chinese Academy of Fishery Sciences, Nanjing Road 106, Qingdao, 266071, China.
Chemosphere. 2019 Jul;227:172-178. doi: 10.1016/j.chemosphere.2019.04.049. Epub 2019 Apr 8.
The subcellular distribution and chemical forms of lead (Pb) were examined in the red algae, Porphyra yezoensis. The algae was exposed to three different Pb treatments (0.01, 0.1 and 1.0 mg L) for up to 144 h. In the control groups, about 45% of Pb was localized in the cell wall, and 27.5% in the organelle and soluble fractions respectively. The dominant chemical forms of Pb was extracted by 80% ethanol (52.9%), while the form extracted by NaCl (1 M) was lowest. In the treatment groups, the cell wall and the organelle fraction were the main subcellular fractions for the 0.10 mg L and 1.0 mg L groups; while for the 0.01 mg L groups, Pb was approximately distributed in the cell wall, organelle and the soluble fractions. The dominant ethanol extractable form of Pb in the control and 0.01 mg L groups were replaced by less active 2% acetic acid (HAc) extractable form in the 0.1 and 1.0 mg L groups. Different from other terrestrial plants, the proportion of 1 M NaCl extractable form of the pectates and protein integrated Pb in P. yezoensis was lowest for both control and treatment groups. The strategy with deposition Pb in the cell wall and formation the precipitation of less active HAc extractable form maybe one of the mechanisms for accumulation, transportation and detoxification of Pb in P. yezoensis.
对紫菜(Porphyra yezoensis)中的铅(Pb)的亚细胞分布和化学形态进行了研究。将藻类暴露于三种不同的 Pb 处理(0.01、0.1 和 1.0 mg/L)中,时间长达 144 小时。在对照组中,约 45%的 Pb 定位于细胞壁,27.5%分别位于细胞器和可溶部分。80%乙醇(52.9%)提取的 Pb 主要化学形态,而 NaCl(1 M)提取的形态最低。在处理组中,细胞壁和细胞器部分是 0.10 和 1.0 mg/L 组的主要亚细胞部分;而对于 0.01 mg/L 组,Pb 大约分布在细胞壁、细胞器和可溶部分。对照组和 0.01 mg/L 组中 Pb 的主要乙醇可提取物形式被 0.1 和 1.0 mg/L 组中活性较低的 2%乙酸(HAc)可提取物形式所取代。与其他陆生植物不同,在对照组和处理组中,果胶和蛋白质整合 Pb 的 1 M NaCl 可提取物形式的比例均最低。将 Pb 沉积在细胞壁中并形成活性较低的 HAc 可提取物形式的沉淀,可能是紫菜中 Pb 积累、转运和解毒的机制之一。