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Differential Gene Expression Reveals Candidate Genes for Drought Stress Response in Abies alba (Pinaceae)

机译:差异基因表达揭示了冷杉(干旱木科)干旱胁迫反应的候选基因

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摘要

Increasing drought periods as a result of global climate change pose a threat to many tree species by possibly outpacing their adaptive capabilities. Revealing the genetic basis of drought stress response is therefore implemental for future conservation strategies and risk assessment. Access to informative genomic regions is however challenging, especially for conifers, partially due to their large genomes, which puts constraints on the feasibility of whole genome scans. Candidate genes offer a valuable tool to reduce the complexity of the analysis and the amount of sequencing work and costs. For this study we combined an improved drought stress phenotyping of needles via a novel terahertz water monitoring technique with Massive Analysis of cDNA Ends to identify candidate genes for drought stress response in European silver fir (Abies alba Mill.). A pooled cDNA library was constructed from the cotyledons of six drought stressed and six well-watered silver fir seedlings, respectively. Differential expression analyses of these libraries revealed 296 candidate genes for drought stress response in silver fir (247 up- and 49 down-regulated) of which a subset was validated by RT-qPCR of the twelve individual cotyledons. A majority of these genes code for currently uncharacterized proteins and hint on new genomic resources to be explored in conifers. Furthermore, we could show that some traditional reference genes from model plant species (GAPDH and eIF4A2) are not suitable for differential analysis and we propose a new reference gene, TPC1, for drought stress expression profiling in needles of conifer seedlings.
机译:由于全球气候变化而导致的干旱时期增加,可能会超过其适应能力,从而对许多树种构成威胁。因此,揭示干旱胁迫响应的遗传基础可用于将来的保护策略和风险评估。然而,获得信息性基因组区域的挑战非常艰巨,尤其是对于针叶树而言,部分是由于其庞大的基因组,这限制了全基因组扫描的可行性。候选基因提供了一种有价值的工具,可以减少分析的复杂性以及测序工作量和成本。在这项研究中,我们通过新颖的太赫兹水监控技术与cDNA末端的大量分析相结合,改进了针头的干旱胁迫表型,以鉴定欧洲白枞(Abies alba Mill。)中干旱胁迫反应的候选基因。分别从六株干旱胁迫和六株水分充足的银杉幼苗的子叶构建了一个汇集的cDNA文库。这些文库的差异表达分析揭示了银冷杉中的296个干旱胁迫响应候选基因(上调247个,下调了49个),其中一个子集通过12个子叶的RT-qPCR验证。这些基因中的大多数编码当前未表征的蛋白质,并暗示了针叶树中将要探索的新基因组资源。此外,我们可以证明某些来自模型植物物种的传统参考基因(GAPDH和eIF4A2)不适合差异分析,我们提出了一个新的参考基因TPC1,用于针叶树幼苗针叶中的干旱胁迫表达谱分析。

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