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蛋白质组学分析揭示了蓝藻 Anabaena sp. NC-K1 对α-氯氰菊酯暴露的几种代谢变化。

Proteomics analysis reveals several metabolic alterations in cyanobacterium Anabaena sp. NC-K1 in response to alpha-cypermethrin exposure.

机构信息

Environmental Biotechnology Laboratory, Department of Biotechnology and Bioinformatics, North-Eastern Hill University, Shillong, Meghalaya, 793022, India.

Department of Botany, Centre of Advanced Study in Botany, Institute of Science, Banaras Hindu University, Varanasi, 221005, India.

出版信息

Environ Sci Pollut Res Int. 2022 Mar;29(13):19762-19777. doi: 10.1007/s11356-021-16611-6. Epub 2021 Oct 31.

Abstract

In the current study, the effect of the EC and LC concentrations of pyrethroid insecticide alpha-cypermethrin to cyanobacteria Anabaena sp. NC-K1 was investigated at different time exposures (1st day, 4th day and 7th day) with reference to growth, photosynthetic pigments, oxidative damage and antioxidant defence system. Superoxide dismutase (1.38-fold), peroxidase (5.04) and proline content (2.27-fold) were enhanced compared to the control. After performing 2D gel electrophoresis at 1st day EC exposure, where appropriate differences in the biochemical and physiological parameters were observed, 22 differentially accumulated proteins (20 upregulated and 2 downregulated) were selected for mass spectrometry. Out of 42 proteins identified, 20 upregulated protein spots were classified into twelve categories according to their metabolic functions. Proteins related to photosynthesis (phycobilisome rod-core linker polypeptide, rubisco), stress responses (Hsp70, Hsp40, catalase family peroxidase), translation (elongation factor Tu) and amino acid biosynthesis and metabolism (3-phosphoshikimate 1-carboxyvinyl transferase) were significantly upregulated. Additionally, proteins involved in transcription and DNA repair (Snf-2 histone linker phd ring helicase, RNA polymerase sigma factor RpoD and Holliday junction ATP-dependent DNA helicase RuvA) were considerably upregulated. Upregulation of these proteins against pesticide stress presumably maintained the photosynthesis, energy metabolism, carbohydrate metabolism, transport and signalling proteins, transcription, translation and DNA repair. Additionally, these proteins might involve in sufficient detoxification of ROS and play a crucial role in damage removal and repair of oxidized proteins, lipids and nucleic acids. Taken together, Anabaena sp. NC-K1 responded towards alpha-cypermethrin stress via modulating its proteome to maintain its cellular metabolism and homeostasis.

摘要

在本研究中,研究了拟除虫菊酯杀虫剂 alpha-氯氰菊酯对鱼腥藻 NC-K1 的 EC 和 LC 浓度在不同时间暴露(第 1 天、第 4 天和第 7 天)下对蓝藻的影响,参考了生长、光合色素、氧化损伤和抗氧化防御系统。与对照组相比,超氧化物歧化酶(增加 1.38 倍)、过氧化物酶(增加 5.04 倍)和脯氨酸含量(增加 2.27 倍)都有所增加。在第 1 天 EC 暴露时进行 2D 凝胶电泳后,观察到生化和生理参数的适当差异,选择了 22 种差异积累蛋白(20 种上调和 2 种下调)进行质谱分析。在鉴定的 42 种蛋白质中,根据其代谢功能将 20 个上调蛋白点分为 12 类。与光合作用(藻胆体棒芯连接多肽、Rubisco)、应激反应(Hsp70、Hsp40、过氧化氢酶家族过氧化物酶)、翻译(延伸因子 Tu)和氨基酸生物合成和代谢(3-磷酸莽草酸 1-羧基乙烯基转移酶)相关的蛋白质显著上调。此外,参与转录和 DNA 修复(Snf-2 组蛋白连接 phd 环螺旋酶、RNA 聚合酶 sigma 因子 RpoD 和 Holliday 结 ATP 依赖性 DNA 螺旋酶 RuvA)的蛋白质也显著上调。这些蛋白质对农药胁迫的上调可能维持了光合作用、能量代谢、碳水化合物代谢、转运和信号蛋白、转录、翻译和 DNA 修复。此外,这些蛋白质可能参与了足够的 ROS 解毒,并在氧化蛋白质、脂质和核酸的损伤清除和修复中发挥关键作用。综上所述,鱼腥藻 NC-K1 通过调节其蛋白质组对 alpha-氯氰菊酯胁迫做出反应,以维持其细胞代谢和内稳态。

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