...
首页> 外文期刊>Aquatic Toxicology >Growth, energy metabolism and transcriptomic responses in Chinese mitten crab (Eriocheir sinensis) to benzo[alpha]pyrene (BaP) toxicity
【24h】

Growth, energy metabolism and transcriptomic responses in Chinese mitten crab (Eriocheir sinensis) to benzo[alpha]pyrene (BaP) toxicity

机译:苯并α芘(BAP)毒性(Eriocheir Sinensis)中生长,能量代谢和转录组反应

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

Benzo(a)pyrene (BaP) is a highly toxic polycyclic aromatic hydrocarbon and has strong affinity to suspended materials and sediments in the aquatic environment. Most crustaceans are benthic species and are easily affected by the pollution in the sediments, but there is little information on the response mechanism of crustaceans to BaP exposure. This study compared the growth and hepatopancreas transcriptomic responses of the Chinse mitten crab (Eriocheir sinensis) exposed to 0, 0.15 (BaP1) and 0.45 mu g/L (BaP2) for 28 days. Crab survival and weight gain were reduced in the water born BaP in a dose-dependent way. The contents of hepatopancreas glycogen, triglyceride, total amino acids and lactic acid were all decreased after BaP exposure, indicating possible more energy consumption during detoxification. In the transcriptome analysis, a total of 106.65 million clean reads were obtained and assembled into 81,714 unigenes with an average length of 594 bp and N50 of 808 bp. Under 0.15 or 0.45 mu g/L BaP exposure, 922 and 1129 unigenes in crabs were significantly expressed, annotated to 676 and 802 Gene Ontology (GO) terms respectively. The "cellular process" was the leading category for both concentrations. Thirteen significantly changed pathways were identified in both Control vs BaP1 and Control vs BaP2 groups. These pathways were divided into four different parts according to their reported functions, including metabolism, environmental information processing, organismal systems and cellular processes. Nice out of thirteen pathways in BaP1 were related to metabolism, containing amino acid metabolism, phenylpropanoid biosynthesis, monobactam biosynthesis and styrene degradation. Almost all the pathways related with the biosynthesis processes were down-regulated, while the degradation pathways were up-regulated. Seven out of thirteen pathways were classified into metabolism category in BaP2. These pathways were mostly associated with stress resistance rather than supplying energy. This study indicates that both concentrations of BaP disturbed nutrient metabolism, immune response and defense system in the crabs, while exposure to a higher concentration had a greater impact on immunity system than on metabolism. This study provides a better understanding of the underlying molecular and regulatory mechanisms in crustaceans coping with BaP toxicity.
机译:苯并(A)芘(BAP)是一种高毒性的多环芳烃,对水生环境中的悬浮材料和沉积物具有很强的亲和力。大多数甲壳类动物是底栖物种,并且很容易受到沉积物中污染的影响,但是关于甲壳类动物对壳体暴露的响应机制很少的信息。该研究比较了暴露于0,0.15(BAP1)和0.45μg/ L(BAP2)28天暴露于0,0.15(BAP1)和0.45μg(BAP2)的中间手套蟹(Eriocheir Sinensis)的生长和肝肝癌转录组反应。用剂量依赖的方式,螃蟹存活和体重增加减少了水的烘烤圈。肝胆黄糖酰基甘氨酸含量,甘油三酯,总氨基酸和乳酸全部降低,在接触后均降低,表明解毒期间可能的能量消耗。在转录体分析中,获得了106.65万张清洁读数,并将其组装成81,714个未成合,平均长度为594bp和808 bp的N50。在0.15或0.45μmg/ l槽中,分别显着表达螃蟹中的922和1129个未成语,分别注释为676和80​​2个基因本体(GO)术语。 “细胞过程”是两种浓度的主要类别。在控制VS BAP1和控制VS BAP2组中鉴定了十三个显着改变的途径。根据其报告的功能,这些途径分为四个不同的部位,包括代谢,环境信息处理,有机体系统和细胞过程。 BAP1中十三条途径中的漂亮与代谢相关,含有氨基酸代谢,苯丙醇化生物合成,单根酰胺生物合成和苯乙烯降解。几乎所有与生物合成过程有关的途径都被下调,而降解途径被上调。十三次途径中的七个被分为BAP2中的代谢类别。这些途径主要与应力阻力而不是供应能量相关联。该研究表明,螃蟹中的营养营养良好的营养代谢,免疫应答和防御系统的浓度均对较高的浓度产生更大的影响而不是代谢。该研究更好地了解甲壳类动物的潜在分子和调节机制,应对烤盘毒性。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号