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Transcriptome profiling of Vitis amurensis, an extremely cold?tolerant Chinese wild Vitis species, reveals candidate genes and events that potentially connected to cold stress

机译:极耐寒的中国野生葡萄属葡萄(Vitis amurensis)的转录组谱分析揭示了可能与寒冷胁迫有关的候选基因和事件

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Vitis amurensis Rupr. is an exceptional wildgrowing Vitis (grape) species that can safely survive a wide range of cold conditions, but the underlying cold-adaptive mechanism associated with gene regulation is poorly investigated. We have analyzed the physiochemical and transcriptomic changes caused by cold stress in a cold-tolerant accession, ‘Heilongjiang seedling’, of Chinese wild V. amurensis. We statistically determined that a total of 6,850 cold-regulated transcripts were involved in cold regulation, including 3,676 up-regulated and 3,174 down-regulated transcripts. A global survey of messenger RNA revealed that skipped exon is the most prevalent form of alternative spicing event. Importantly, we found that the total splicing events increased with the prolonged cold stress. We also identified thirty-eight major TF families that were involved in cold regulation, some of which were previously unknown. Moreover, a large number of candidate pathways for the metabolism or biosynthesis of secondary metabolites were found to be regulated by cold, which is of potential importance in coordinating cold tolerance with growth and development. Several heat shock proteins and heat shock factors were also detected to be intensively cold-regulated. Furthermore, we validated the expression profiles of 16 candidates using qRT-PCR to further confirm the accuracy of the RNA-seq data. Our results provide a genomewide view of the dynamic changes in the transcriptome of V. amurensis, in which it is evident that various structural and regulatory genes are crucial for cold tolerance/adaptation. Moreover, our robust dataset advances our knowledge of the genes involved in the complex regulatory networks of cold stress and leads to a better understanding of cold tolerance mechanisms in this extremely cold-tolerant Vitis species.
机译:葡萄是一种特殊的野生葡萄(葡萄)物种,可以在各种寒冷条件下安全生存,但是与基因调控相关的潜在冷适应机制研究却很少。我们分析了冷胁迫导致的野生野生山茱V(黑龙江种)的生理化学和转录组学变化。我们从统计学上确定,总共有6,850个冷调节转录本参与了冷调节,包括3,676份上调和3,174份下调的转录本。全球对信使RNA的调查显示,跳过的外显子是替代性变态事件的最普遍形式。重要的是,我们发现总的剪接事件随着冷应激的延长而增加。我们还确定了涉及冷调节的38个主要TF家族,其中一些以前未知。而且,发现次级代谢物的代谢或生物合成的大量候选途径受寒冷调节,这在协调寒冷耐受性与生长和发育之间具有潜在的重要性。还检测到几种热激蛋白和热激因子被强烈地冷调节。此外,我们使用qRT-PCR验证了16个候选基因的表达谱,以进一步确认RNA-seq数据的准确性。我们的研究结果提供了全基因组视图,显示了V. amurensis转录组的动态变化,其中很明显,各种结构和调控基因对于耐寒性/适应性至关重要。此外,我们强大的数据集使我们对复杂的冷应激调控网络中涉及的基因有了更深入的了解,并导致人们对这种极耐冷的葡萄树种的耐冷机制有了更好的了解。

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