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Prediction of a peptidome for the ecotoxicological model Hyalella azteca (Crustacea; Amphipoda) using a de novo assembled transcriptome

机译:使用DE Novo组装的转录组预测生态毒理学模型睫毛症睫毛症(Craustacea; Amphipoda)的肽

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摘要

Due to its sensitivity to many environmental and anthropogenic stressors, including a wide range of chemical compounds, Hyalella azteca, a freshwater amphipod, has emerged as one of the most commonly used invertebrates for ecotoxicological assessment.Peptidergic signaling systems are key components in the control of organism-environment interactions, and there is a growing literature suggesting that they are targets of a number of aquatic toxicants.Interestingly, and despite its model species status in the field of ecotoxicology, little is known about the peptide hormones of H. azteca.Here, a transcriptome was produced for this species using the de novo assembler Trinity and mined for sequences encoding putative peptide precursors; the transcriptome was assembled from 460,291,636 raw reads and consists of 133,486 unique transcripts.Seventy-six sequences encoding peptide pre/preprohormones were identified from this transcriptome, allowing for the prediction of 202 distinct peptides, which included members of the allatostatin A, allatostatin B, allatostatin C, allatotropin, bursicon, CCHamide, corazonin, crustacean cardioactive peptide, crustacean hyperglycemic hormone/molt-inhibiting hormone, ecdysis-triggering hormone, eclosion hormone, elevenin, FMRFamide-like peptide, glycoprotein hormone, GSEFLamide, inotocin, leucokinin, myosuppressin, neuropeptide F, orcokinin, orcomyotropin, pigment dispersing hormone, proctolin, pyrokinin, red pigment concentrating hormone, RYamide, short neuropeptide F, SIFamide, sulfakinin, tachykinin-related peptide and trissin families.These peptides expand the known peptidome for H. azteca approximately nine-fold, forming a strong foundation for future studies of peptidergic control, including disruption by aquatic toxicants, in this important ecotoxicological model.
机译:由于其对许多环境和人为压力源的敏感性,包括各种各样的化合物,淡水Axteca,淡水Axteca,它被出现为生态毒理学评估中最常用的无脊椎动物之一.Peptimergic信号传导系统是控制中的关键部件有机体环境相互作用,并且有一个日益增长的文献表明它们是许多水生毒物的目标。兴趣的,尽管其在生态毒理学领域的模型物种状态,但关于H. Azteca的肽激素少知之甚少,使用DE Novo汇编三位一体制造该物种的转录组,用于编码推定的肽前体的序列;转录组组装从460,291,636原始读数,由133,486个独特的转录物组成。从该转录组中鉴定了编码肽前/预侵蚀族肽的133,486个序列,允许预测202个不同的肽,其中包括阿拉多抑素A,阿拉多抑素B的成员,所述Allatostatin C,Allatotropin,Bursicon,Cchamide,Corazonin,甲壳类动物肿瘤,甲壳类高血糖激素/ Molt抑制激素,蜕皮触发激素,Eclosion激素,十一型,Fmrfamide样肽,糖蛋白激素,Gseflamide,Inotocin,Leucokinin,Myosuppressin,神经肽F,Orcokinin,Orcomotropin,颜料分散激素,Procolin,Pyrokinin,红色颜料浓缩激素,雷马酰胺,短神经肽F,Sifamide,Sulfakinin,Tachykinin相关的肽和Trissin家族。这些肽将H. azteca的已知肽膨胀约9 - 为未来的消化力研究形成强大的基础,在这种重要的生态毒理学模型中,包括水生毒物的破坏。

著录项

  • 来源
    《Marine genomics》 |2018年第2018期|共22页
  • 作者单位

    Univ Hawaii Manoa Pacific Biosci Res Ctr Sch Ocean &

    Earth Sci &

    Technol Bekesy Lab Neurobiol 1993 East West Rd Honolulu HI 96822 USA;

    Univ Hawaii Manoa Pacific Biosci Res Ctr Sch Ocean &

    Earth Sci &

    Technol Bekesy Lab Neurobiol 1993 East West Rd Honolulu HI 96822 USA;

    Univ Hawaii Manoa Pacific Biosci Res Ctr Sch Ocean &

    Earth Sci &

    Technol Bekesy Lab Neurobiol 1993 East West Rd Honolulu HI 96822 USA;

    Univ Hawaii Manoa Pacific Biosci Res Ctr Sch Ocean &

    Earth Sci &

    Technol Bekesy Lab Neurobiol 1993 East West Rd Honolulu HI 96822 USA;

    Univ Massachusetts Boston Sch Environm 100 Morrissey Blvd Boston MA 02125 USA;

    Univ Massachusetts Boston Sch Environm 100 Morrissey Blvd Boston MA 02125 USA;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 遗传学;
  • 关键词

    de novo transcriptome assembly; Bioinformatics; Endocrinology; Peptidergic signaling; Sediment ecotoxicology;

    机译:de novo转录组组件;生物信息学;内分泌学;peptimergic信号传导;沉积物生态毒理学;

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