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Transcriptome analysis in different rice cultivars provides novel insights into desiccation and salinity stress responses

机译:不同水稻品种的转录组分析为干燥和盐度应激反应提供了新的洞察力

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Drought and salinity are the major environmental factors that affect rice productivity. Comparative transcriptome analysis between tolerant and sensitive rice cultivars can provide insights into the regulatory mechanisms involved in these stress responses. In this study, the comparison of transcriptomes of a drought-tolerant [Nagina 22 (N22)] and a salinity-tolerant (Pokkali) rice cultivar with IR64 (susceptible cultivar) revealed variable transcriptional responses under control and stress conditions. A total of 801 and 507 transcripts were exclusively differentially expressed in N22 and Pokkali rice cultivars, respectively, under stress conditions. Gene ontology analysis suggested the enrichment of transcripts involved in response to abiotic stress and regulation of gene expression in stress-tolerant rice cultivars. A larger number of transcripts encoding for members of NAC and DBP transcription factor (TF) families in N22 and members of bHLH and C2H2 TF families in Pokkali exhibited differential regulation under desiccation and salinity stresses, respectively. Transcripts encoding for thioredoxin and involved in phenylpropanoid metabolism were up-regulated in N22, whereas transcripts involved in wax and terpenoid metabolism were up-regulated in Pokkali. Overall, common and cultivar-specific stress-responsive transcripts identified in this study can serve as a helpful resource to explore novel candidate genes for abiotic stress tolerance in rice.
机译:干旱和盐度是影响水稻生产率的主要环境因素。耐受性和敏感水稻品种之间的比较转录组分析可以为这些应激反应中涉及的调节机制提供见解。在该研究中,耐旱性[Nagina22(N22)]的转录组和具有IR64(易感品种)的盐度(Pokkali)水稻品种的比较揭示了对照和应力条件下的可变转录反应。总共801和507份转录物分别在胁迫条件下分别在N22和Pokkali水稻品种中分别差异地表达。基因本体分析表明,富含生成基因胁迫和基因表达中所涉及的转录物的富集。在N22中NAC和DBP转录因子(TF)家族的成员和Pokkali的BHLH和C 2 H 2 TF系列的成员分别在干燥和盐度应力下表现出较大数量的转录因素。在N22中升高了对硫氧吡嗪和参与苯丙砜代谢的转录物,而参与蜡和萜类代谢的转录物在Pokkali上调。本研究中鉴定的总体而言,常见的和品种特异性的应激响应性转录物可以作为探索水稻中非生物胁迫耐受性的新候选基因的有用资源。

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