意大利蜜蜂转铁蛋白基因AmTsf在吡虫啉胁迫下的表达分析
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国家自然科学基金面上项目(No.31101770;No.31302037);重庆市教育委员会科学技术研究重点项目(No.KJZD-K202100502);重庆市自然科学基金面上项目(No.cstc2021jcyj-msxmX0422);重庆高校创新研究群体项目(No.CXQT21013);重庆市大学生创新创业训练计划项目(国家级)(No.202110637013)


Expression Analysis of Transferrin gene AmTsf of Apis mellifera ligustica to Imidacloprid Stress
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    摘要:

    【目的】通过生物信息学方法鉴定意大利蜜蜂(Apis mellifera ligustica)转铁蛋白(AmTsf),分析该蛋白在该蜂种耐受杀虫剂吡虫啉毒性过程中发挥的作用。【方法】通过多重序列比对分析AmTsf的氨基酸序列特征和结构域组成;利用在线工具预测该蛋白的结构、细胞定位、互作蛋白网络和生物学功能,构建系统进化树分析该蛋白的系统分类和进化关系;采用实时荧光定量PCR结合铁稳态测定分析该蛋白的编码基因AmTsf在意大利蜜蜂耐受杀虫剂吡虫啉毒性过程中的应答特征和功能。【结果】AmTsf蛋白为疏水性蛋白,由712个氨基酸残基组成,相对分子质量为78.7 kDa,pI为6.77,具有信号肽和转铁蛋白家族保守的氨基酸残基,主要定位于细胞核和线粒体。环境剂量的吡虫啉暴露导致供试蜜蜂大量死亡;与对照组相比,吡虫啉暴露24 h后导致供试蜜蜂头部、胸部和中肠的Fe2+过剩,与铁稳态调节紧密相关的AmTsf在上述各组织中的表达均有统计学意义上的上调(p<0.05)。【结论】AmTsf可能通过调节铁稳态来参与意大利蜜蜂对吡虫啉毒性的耐受。

    Abstract:

    [Purposes] To identify transferrin of Apis mellifera ligustica (AmTsf) by bioinformatics, and to analyze the role of AmTsf in tolerance to toxicity of insecticide imidacloprid. [Methods] The amino acid sequence characteristics and domain composition of AmTsf were analyzed by multiple sequences alignment.Online tools predict the structure,cellular localization,interacting protein networks and biological functions of the protein. Phylogenetic tree was constructed to analyze the phyloclassification and evolutionary relationship of the protein.The response characteristics and functions of AmTsf to insecticide imidacloprid toxicity in bees were analyzed by real-time quantitative PCR combined with iron homeostasis. [Findings] Bioinformatics analysis predicted that AmTsf protein was hydrophobic, consisting of 712 amino acid residues,with a molecular weight of 78.7 kDa and pI of 6.77. A conserved amino acid residue of the signal peptide and transferrin family, primarily located in the nucleus and mitochondria. Experimental analysis found that exposure to environmental concentrations of imidacloprid caused mass bee deaths. Compared with the control group, 24 h exposure to imidacloprid resulted in excess iron ions in the head, thorax and midgut of bees. Importantly, the transferrin encoding gene AmTsf, which is closely related to the regulation of iron homeostasis, was synchronously up-regulated in all tissues with the increase of iron(p<0.05). [Conclusions] The results suggest that AmTsf may actively respond to imidacloprid toxicity tolerance in honeybees by regulating iron homeostasis.

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秦启倩,陈兰春,王菲,张毅,曾慧妮,王悦弟,许金山,李治.意大利蜜蜂转铁蛋白基因AmTsf在吡虫啉胁迫下的表达分析[J].重庆师范大学学报自然科学版,2023,(2):34-42

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  • 在线发布日期: 2023-05-22