Department of Marine Biology, Microbiology and Biochemistry, School of Marine Sciences, Cochin University of Science and Technology, Cochin, 682016, Kerala, India.
National Centre for Coastal Research, Ministry of Earth Sciences, Government of India, NIOT Campus, Pallikaranai, Chennai, India.
Ecotoxicology. 2021 Jul;30(5):783-793. doi: 10.1007/s10646-021-02410-9. Epub 2021 Apr 13.
The effects of copper (Cu) toxicity on the growth, pigments, protein, carbohydrate, lipid and antioxidant enzyme activities of two endemic microalgae, Chaetoceros calcitrans and Nitzchia closterium from Cochin estuary were studied and compared. The 96 h median inhibition concentration (IC) of Cu for C. calcitrans was 143.8 µg L and that for N. closterium was 204.5 µg L. No observable effect concentration (NOEC), lowest observable effect concentration (LOEC) and chronic value of Cu on C. calcitrans were 17.93 µg L, 31.91 µg Land 24.92 µg L respectively, whereas that for N. closterium were 18.35 µg L, 36.04 µg L and 27.2 µg L respectively. Chlorophyll a and c showed significant variation from the control at NOEC in both species. Carotenoid content showed significant increase at LOEC. The chlorophyll a/c ratio significantly decreased at NOEC and LOEC of N. closterium. In N. closterium catalase (CAT) activity showed significant increase at NOEC and LOEC, but in C. calcitrans it varied significantly above LOEC. Protein content showed a significant decrease at NOEC of C. calcitrans. No significant variation was observed for N. closterium. Carbohydrate showed significant variation between the species at NOEC. Lipid content varied significantly at NOEC of C. calcitrans. Chaetoceros calcitrans was observed to be more sensitive to copper toxicity than N. closterium. The metal stress tolerance mechanism of N. closterium and its bioremediation capacity can be established in further studies. This study also provides an insight on the biochemical changes that happened at NOEC.
本研究比较了两种特有微藻(角毛藻和菱形藻)在铜毒性胁迫下的生长、色素、蛋白质、碳水化合物、脂质和抗氧化酶活性的变化。角毛藻的 96 h 半抑制浓度(IC)为 143.8 µg/L,菱形藻的 IC 为 204.5 µg/L。角毛藻的无观测效应浓度(NOEC)、最低观测效应浓度(LOEC)和慢性铜浓度分别为 17.93 µg/L、31.91 µg/L 和 24.92 µg/L,菱形藻的 NOEC、LOEC 和慢性铜浓度分别为 18.35 µg/L、36.04 µg/L 和 27.2 µg/L。在两种藻类中,NOEC 时叶绿素 a 和 c 与对照组相比均有显著变化。类胡萝卜素含量在 LOEC 时显著增加。在菱形藻中,叶绿素 a/c 比值在 NOEC 和 LOEC 时显著降低。在菱形藻中,CAT 活性在 NOEC 和 LOEC 时显著增加,但在角毛藻中,CAT 活性在 LOEC 以上时才显著变化。角毛藻的蛋白质含量在 NOEC 时显著降低。菱形藻则没有显著变化。在 NOEC 时,两种藻类的碳水化合物含量有显著差异。脂质含量在角毛藻的 NOEC 时显著变化。角毛藻对铜毒性的敏感性明显高于菱形藻。在进一步的研究中,可以建立菱形藻的金属胁迫耐受机制及其生物修复能力。本研究还为 NOEC 时发生的生化变化提供了一些见解。