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转录组分析揭示了鹰嘴豆对干旱和盐胁迫的基因型及发育阶段特异性分子反应。

Transcriptome analyses reveal genotype- and developmental stage-specific molecular responses to drought and salinity stresses in chickpea.

作者信息

Garg Rohini, Shankar Rama, Thakkar Bijal, Kudapa Himabindu, Krishnamurthy Lakshmanan, Mantri Nitin, Varshney Rajeev K, Bhatia Sabhyata, Jain Mukesh

机构信息

Functional and Applied Genomics Laboratory, National Institute of Plant Genome Research (NIPGR), Aruna Asaf Ali Marg, New Delhi, India.

International Crops Research Institute for the Semi-Arid Tropics (ICRISAT), Patancheru, Telangana, India.

出版信息

Sci Rep. 2016 Jan 13;6:19228. doi: 10.1038/srep19228.

Abstract

Drought and salinity are the major factors that limit chickpea production worldwide. We performed whole transcriptome analyses of chickpea genotypes to investigate the molecular basis of drought and salinity stress response/adaptation. Phenotypic analyses confirmed the contrasting responses of the chickpea genotypes to drought or salinity stress. RNA-seq of the roots of drought and salinity related genotypes was carried out under control and stress conditions at vegetative and/or reproductive stages. Comparative analysis of the transcriptomes revealed divergent gene expression in the chickpea genotypes at different developmental stages. We identified a total of 4954 and 5545 genes exclusively regulated in drought-tolerant and salinity-tolerant genotypes, respectively. A significant fraction (~47%) of the transcription factor encoding genes showed differential expression under stress. The key enzymes involved in metabolic pathways, such as carbohydrate metabolism, photosynthesis, lipid metabolism, generation of precursor metabolites/energy, protein modification, redox homeostasis and cell wall component biogenesis, were affected by drought and/or salinity stresses. Interestingly, transcript isoforms showed expression specificity across the chickpea genotypes and/or developmental stages as illustrated by the AP2-EREBP family members. Our findings provide insights into the transcriptome dynamics and components of regulatory network associated with drought and salinity stress responses in chickpea.

摘要

干旱和盐度是限制全球鹰嘴豆产量的主要因素。我们对鹰嘴豆基因型进行了全转录组分析,以研究干旱和盐度胁迫响应/适应的分子基础。表型分析证实了鹰嘴豆基因型对干旱或盐度胁迫的不同反应。在营养和/或生殖阶段的对照和胁迫条件下,对与干旱和盐度相关的基因型的根进行了RNA测序。转录组的比较分析揭示了鹰嘴豆基因型在不同发育阶段的基因表达差异。我们分别在耐旱和耐盐基因型中鉴定出总共4954个和5545个特异性调控的基因。相当一部分(约47%)编码转录因子的基因在胁迫下表现出差异表达。参与代谢途径的关键酶,如碳水化合物代谢、光合作用、脂质代谢、前体代谢物/能量生成、蛋白质修饰、氧化还原稳态和细胞壁成分生物合成,受到干旱和/或盐度胁迫的影响。有趣的是,转录异构体在鹰嘴豆基因型和/或发育阶段表现出表达特异性,如AP2-EREBP家族成员所示。我们的研究结果为鹰嘴豆中与干旱和盐度胁迫响应相关的转录组动态和调控网络成分提供了见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/008e/4725360/5345a00ffc1a/srep19228-f1.jpg

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