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Identification and expression of white spot syndrome virus-encoded microRNAs in infected Penaeus monodon

机译:白斑综合征病毒编码MicroRNA在感染的PenaeoS中的鉴定和表达

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摘要

White spot syndrome virus (WSSV) is the most devastating DNA virus that causes shrimp mortality worldwide. To better understand WSSV and Penaeus monodon interactions, WSSV-encoded microRNAs (wsv-miRs) were identified by small RNA cloning and next-generation sequencing. Ten wsv-miRs were identified and their expressions can be detected in WSSV-infected tissues only. These wsv-miRs and their flanking sequences can spontaneously form hairpin structure as predicted by Mfold. The expression profiles of 6 wsv-miRs increased dependent on time course of WSSV infection and slightly decreased after 48 hours WSSV challenge. The highest expression was wsv-miR-9 followed by miR-13 and -15. Computational prediction of the candidate targets of wsv-miRs revealed possible functions of wsv-miRs in the controlling of apoptosis, transcription and signaling. This finding provided insights into WSSV-host interaction.
机译:白斑综合征病毒(WSSV)是最疣的DNA病毒,导致全世界的虾死亡率。 为了更好地理解WSSV和Penaeod onodon相互作用,通过小RNA克隆和下一代测序来鉴定WSSV编码的MicroRNA(WSV-MIRS)。 鉴定了十种WSV-MIRS,并且它们的表达只能在WSSV感染的组织中检测到。 这些WSV-MIR及其侧翼序列可以自发地形成由MFOLD预测的发夹结构。 6 WSV-MIR的表达谱增加依赖于WSSV感染的时间过程,并在48小时内挑战后略微下降。 最高表达是WSV-miR-9,然后是miR-13和-15。 WSV-MIR候选靶标的计算预测显示了WSV-MIR在控制细胞凋亡,转录和信号传导中的可能功能。 这发现为WSSV-Host交互提供了深入。

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  • 来源
    《Aquaculture 》 |2019年第2019期| 共10页
  • 作者单位

    Mahidol Univ Salaya Campus Inst Mol Biosci 25-25 Phutthamonthon 4 Rd Salaya Nakhon Pathom 73170 Thailand;

    Mahidol Univ Salaya Campus Inst Mol Biosci 25-25 Phutthamonthon 4 Rd Salaya Nakhon Pathom 73170 Thailand;

    Mahidol Univ Salaya Campus Inst Mol Biosci 25-25 Phutthamonthon 4 Rd Salaya Nakhon Pathom 73170 Thailand;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 水产、渔业 ;
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