Department of Pharmacology, Faculty of Veterinary Medicine, Kasetsart University, Bangkok, Thailand.
Department of Anatomy, Faculty of Veterinary Medicine, Kasetsart University, Bangkok, Thailand.
J Aquat Anim Health. 2024 Mar;36(1):32-44. doi: 10.1002/aah.10200. Epub 2024 Jan 10.
Using bivalves to indicate aquatic pollutants was favorable for discerning the negative effects of high levels of metal accumulation in tissue. We investigated the correlation between trace metal accumulation and the tissue oxidative response of two bivalves.
The Asian green mussel Perna viridis and the blood cockle Tegillarca granosa were sampled along with seawater and sediments from three locations around Pattani Bay, Thailand. Accumulation of nine trace metals (cadmium, cobalt, copper, chromium, nickel, manganese, iron, zinc, and lead) in seawater, sediments, and tissue and the oxidative tissue response were evaluated. Metal bioaccumulation factor, biota-sediment accumulation factor, and histopathology were also indicated.
The present study found that P. viridis and T. granosa were macroconcentrators and bioaccumulative of cadmium, and their tissue accumulation of cadmium was strongly related to lipid peroxidation activation. Perna viridis exhibited a higher oxidative response than T. granosa, as indicated by malondialdehyde, catalase, and reduced glutathione levels.
The present study indicated that P. viridis and T. granosa were macroconcentrators and bioaccumulative of cadmium, and their tissue accumulation of cadmium was strongly related to lipid peroxidation activation. Research has shown discernible negative effects of a high level of metal accumulation in tissue, and deformed and damaged tissues were present in the gills, digestive glands, intestines, and feet of P. viridis and T. granosa.
利用双壳类动物来指示水污染物,有利于辨别组织中高水平金属积累的负面影响。我们研究了两种双壳类动物的痕量金属积累与组织氧化反应之间的相关性。
从泰国攀牙湾周围的三个地点采集亚洲绿贻贝(Perna viridis)和血蛤(Tegillarca granosa),以及海水和沉积物样本。评估了海水中、沉积物中和组织中的九种痕量金属(镉、钴、铜、铬、镍、锰、铁、锌和铅)的积累情况,以及组织的氧化反应。还指示了金属生物积累因子、生物沉积物积累因子和组织病理学。
本研究发现,P. viridis 和 T. granosa 是镉的宏富集物和生物累积物,其组织中镉的积累与脂质过氧化激活密切相关。P. viridis 的氧化反应比 T. granosa 更高,表现在丙二醛、过氧化氢酶和还原型谷胱甘肽水平上。
本研究表明,P. viridis 和 T. granosa 是镉的宏富集物和生物累积物,其组织中镉的积累与脂质过氧化激活密切相关。研究表明,组织中高水平的金属积累有明显的负面影响,P. viridis 和 T. granosa 的鳃、消化腺、肠和足组织出现了畸形和损伤。