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Induction of Glutaredoxin Expression in Response to Desiccation Stress in the Foliar Nematode Aphelenchoides fragariae

机译:诱导谷胱甘肽表达对干旱胁迫的草莓叶片线虫Aphelenchoides。

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摘要

Desiccation tolerance plays an important role in the overwinter survival of the foliar nematode Aphelenchoides fragariae. Survival rates of A. fragariae were compared with those of the anhydrobiotic soil-dwelling nematode Aphelenchus avenae after desiccation (90% RH), cold (4°C) and osmotic (500 mM sucrose) stress treatments. A. fragariae formed aggregates during desiccation and showed higher survival rates than A. avenae under desiccation and osmotic stress. Analysis of transcripts with Illumina RNA-seq indicated that glutaredoxin and other antioxidant-related genes were up-regulated under desiccation stress. Quantitative RT-PCR demonstrated 2.8 fold and 1.3 fold up-regulation of a glutaredoxin gene under desiccated and osmotic stress, respectively, suggesting the participation of antioxidant mechanisms in desiccation tolerance of A. fragariae.
机译:干燥耐性在叶片线虫Aphelenchoides fragariae的越冬存活中起重要作用。在干燥(90%RH),低温(4°C)和渗透(500 mM蔗糖)胁迫处理后,比较了草莓曲霉和生活在土壤中的非生物线虫Aphelenchus avenae的存活率。在干燥和渗透胁迫下,草莓曲霉在干燥过程中形成聚集体,并显示出比燕麦曲霉更高的存活率。用Illumina RNA-seq进行的转录本分析表明,在干燥胁迫下,戊二醛毒素和其他抗氧化剂相关基因被上调。定量RT-PCR证明,在干燥和渗透胁迫下,谷氨酰胺毒素基因分别上调了2.8倍和1.3倍,这表明抗氧化机制参与了草莓角斑病的干燥耐性。

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