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首页> 外文期刊>Trees. Structure and Function >Transcriptome profiling of Prunus persica plants under flooding
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Transcriptome profiling of Prunus persica plants under flooding

机译:在洪水下Prunus Persica植物的转录组谱

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摘要

Soil flooding stress in fruit trees affects growth, vegetative and reproductive development, which is reflected in low productivity, poor fruit quality, and premature decay of trees. Using Illumina Hiseq2500 we performed transcriptome analysis of leaves from 'Capdeboscq' (P. persica) rootstocks, which are sensitive to hypoxia. Transcriptomes from control and flood-stressed plants (48 h) were compared, using P. persica as reference genome. The flooding conditions changed the transcription profile in 'Capdeboscq', and the RNA-seq analysis showed 2971 differentially expressed genes (DEGs), of which 1559 were up-regulated and 1412 were down-regulated. The functional scoring of DEGs was carried out by means of the software MapMan and through the identification of over-represented GOs referring to three ontological classes: biological processes, cell components and molecular function. The major up-regulated processes were those related to the secondary metabolism of lipids, sugars, and tetrapyrrole molecules whereas, for the down-regulated processes, the luminous reactions, photorespiration, metabolism of nitrate and cell wall have stood out. The transcriptome profiling of peach trees supports the development of specific molecular markers for the complete elucidation of molecular mechanisms involved in the response of P. persica under flooding, and this is essential to aid breeding programs in the selection of more tolerant genotypes.
机译:果树的土壤泛滥胁迫影响生长,植物和生殖发展,这反映在低生产率,果实质量差,树木过早的树木中。使用Illumina Hiseq2500,我们对缺氧敏感的“Capdeboshq”(P.Pyica)砧木进行了转录组分析。使用P.Sperica作为参考基因组比较来自对照和泛胁迫的植物(48小时)的转录om。洪水条件在“CapdeboshQ”中改变了转录曲线,RNA-SEQ分析显示了2971个差异表达的基因(DEGS),其中1559次上调,1412次被下调。 DEG的功能评分通过软件MAPMAN进行,并通过识别出于三种本体类别的过度代表的GOS:生物过程,细胞组分和分子功能。主要上调方法是与脂质,糖和四吡咯分子的二次代谢有关的方法,而对于下调的方法,硝酸盐和细胞壁的发光反应,光呼,代谢具有突出。桃树的转录组谱分析支持特定分子标记的开发,以完全阐明在洪水下P.Sperica响应中涉及的分子机制的完全阐明,这对于选择更耐受性基因型的育种计划至关重要。

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