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首页> 外文期刊>Tree Genetics & Genomes >Transcriptome sequencing of Prunus sp rootstocks roots to identify candidate genes involved in the response to root hypoxia
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Transcriptome sequencing of Prunus sp rootstocks roots to identify candidate genes involved in the response to root hypoxia

机译:李属砧木根的转录组测序,以鉴定参与根缺氧反应的候选基因

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摘要

Root hypoxia in fruit trees affects growth, vegetative development, and reproductive development, which is reflected in low productivity, poor fruit quality, and premature decay of trees. Using Illumina Hiseq2000, we performed transcriptome analysis of roots from two different rootstocks, 'Mariana 2624' and 'Mazzard F12/1,' which are tolerant and sensitive to hypoxia, respectively. Transcriptomes from control and hypoxia-stressed plants (6, 24, and 72 h) were compared, using Prunus persica (L.) as reference genome. Hypoxic conditions altered the transcription in both genotypes. There were a high number of common differentially expressed genes (DEG) between the two genotypes for each sampling time, but also exclusive DEG for each genotype, with a few DEG that presented opposite modes of regulations during the hypoxia treatment. An important group of DEGs exclusively upregulated in the tolerant genotype are associated to enzymes of posttranslational protein modifications, such as leucine-rich repeat (LRR), kinases and ubiquitin-protein ligases, regulation of transcription, and process of oxide reduction. Singular enrichment analysis of gene ontology (GO), detected at least 115 GOs involved in the response to root hypoxia in the sensitive and/or tolerant genotypes. At least 25 GOs were identified as part of the baseline differences between the genotypes, most GO were disturbed in the sensitive genotype. The contribution from the baseline gene expression to the differential response between the Prunus genotypes is evidence that the resistant genotype is already "prepared" for a hypoxia event. An example are GO BP: 0042221 of response to chemical stimulus; BP: 0006979 of response to oxidative stress; MF: 0016209 of antioxidant activity; MF: 0016684 of oxidoreductase activity, acting on peroxide as acceptor; and MF: 0004601 of peroxidase activity, which were disturbed only in the sensitive genotype, but not in the tolerant.
机译:果树的根缺氧会影响生长,营养发育和生殖发育,这反映在生产力低下,果实质量差和树木过早腐烂上。使用Illumina Hiseq2000,我们对来自两种不同砧木的根进行了转录组分析,“ Mariana 2624”和“ Mazzard F12 / 1”分别耐缺氧并且对缺氧敏感。使用樱桃李(L.)作为参考基因组,比较了对照植物和缺氧胁迫植物(6、24和72 h)的转录组。缺氧条件改变了两种基因型的转录。在每个采样时间,两个基因型之间存在大量的共同差异表达基因(DEG),但每种基因型之间都存在排他性DEG,而少数DEG在低氧治疗期间表现出相反的调控模式。专门在耐受基因型中上调的一组重要DEG与翻译后蛋白修饰的酶相关,例如富亮氨酸重复序列(LRR),激酶和泛素蛋白连接酶,转录调节和氧化还原过程。基因本体(GO)的奇异富集分析,检测到至少115个GOs参与了敏感和/或耐受基因型对根系缺氧的反应。基因型之间基线差异的至少25个GOs被鉴定出来,大多数GO在敏感基因型中受到干扰。从基线基因表达到李子基因型之间的差异反应的贡献证明,已经为低氧事件“准备”了抗性基因型。一个例子是对化学刺激的响应的GO BP:0042221;和BP:对氧化应激反应的0009979; MF:0016209的抗氧化活性; MF:0016684的氧化还原酶活性,以过氧化物为受体; MF:过氧化物酶活性的0004601,仅在敏感的基因型中受到干扰,而在耐受的基因型中没有受到干扰。

著录项

  • 来源
    《Tree Genetics & Genomes》 |2015年第1期|11.1-11.16|共16页
  • 作者单位

    Univ La Frontera, Fac Ciencias Agr & Forestales, Programa Doctorado Ciencias Menc Biol Celular & M, Temuco, Chile|CEAF, Rengo, Chile;

    CEAF, Rengo, Chile|CRI Rayentue, Inst Invest Agr, Sect Choapinos, Rengo, Chile;

    CEAF, Rengo, Chile|CRI Rayentue, Inst Invest Agr, Sect Choapinos, Rengo, Chile;

    CEAF, Rengo, Chile|CRI Rayentue, Inst Invest Agr, Sect Choapinos, Rengo, Chile;

    CEAF, Rengo, Chile|CRI Rayentue, Inst Invest Agr, Sect Choapinos, Rengo, Chile;

    CEAF, Rengo, Chile|CRI Rayentue, Inst Invest Agr, Sect Choapinos, Rengo, Chile;

    CEAF, Rengo, Chile|Inst Invest Agr CRI La Platina, Santiago, Chile;

    CEAF, Rengo, Chile|Inst Invest Agr CRI La Platina, Santiago, Chile;

    Univ Chile, Ctr Regulac Genoma Fondap 15090007, Santiago, Chile|Univ Chile, Ctr Modelamiento Matemat, Santiago, Chile;

    Univ Chile, Ctr Regulac Genoma Fondap 15090007, Santiago, Chile|Univ Chile, Ctr Modelamiento Matemat, Santiago, Chile;

    Univ Chile, Ctr Regulac Genoma Fondap 15090007, Santiago, Chile|Univ Chile, Ctr Modelamiento Matemat, Santiago, Chile;

    CEAF, Rengo, Chile|CRI Rayentue, Inst Invest Agr, Sect Choapinos, Rengo, Chile;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Hypoxia; Prunus; qRT-PCR; RNA-Seq; Rootstock; Transcriptome sequencing;

    机译:低氧;李;qRT-PCR;RNA-Seq;砧木;转录组测序;

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