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Genome Wide Transcriptional Profile Analysis of Vitis amurensis and Vitis vinifera in Response to Cold Stress

机译:为了响应冷应激山葡萄和葡萄的全基因组转录的影响分析

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摘要

Grape is one of the most important fruit crops worldwide. The suitable geographical locations and productivity of grapes are largely limited by temperature. Vitis amurensis is a wild grapevine species with remarkable cold-tolerance, exceeding that of Vitis vinifera, the dominant cultivated species of grapevine. However, the molecular mechanisms that contribute to the enhanced freezing tolerance of V. amurensis remain unknown. Here we used deep sequencing data from restriction endonuclease-generated cDNA fragments to evaluate the whole genome wide modification of transcriptome of V. amurensis under cold treatment. Vitis vinifera cv. Muscat of Hamburg was used as control to help investigate the distinctive features of V. amruensis in responding to cold stress. Approximately 9 million tags were sequenced from non-cold treatment (NCT) and cold treatment (CT) cDNA libraries in each species of grapevine sampled from shoot apices. Alignment of tags into V. vinifera cv. Pinot noir (PN40024) annotated genome identified over 15,000 transcripts in each library in V. amruensis and more than 16,000 in Muscat of Hamburg. Comparative analysis between NCT and CT libraries indicate that V. amurensis has fewer differential expressed genes (DEGs, 1314 transcripts) than Muscat of Hamburg (2307 transcripts) when exposed to cold stress. Common DEGs (408 transcripts) suggest that some genes provide fundamental roles during cold stress in grapes. The most robust DEGs (more than 20-fold change) also demonstrated significant differences between two kinds of grapevine, indicating that cold stress may trigger species specific pathways in V. amurensis. Functional categories of DEGs indicated that the proportion of up-regulated transcripts related to metabolism, transport, signal transduction and transcription were more abundant in V. amurensis. Several highly expressed transcripts that were found uniquely accumulated in V. amurensis are discussed in detail. This subset of unique candidate transcripts may contribute to the excellent cold-hardiness of V. amurensis.
机译:葡萄是世界上最重要的水果作物之一。葡萄的合适地理位置和生产力在很大程度上受到温度的限制。紫葡萄是一种野生葡萄品种,具有极高的耐寒性,超过葡萄的主要栽培品种葡萄。然而,有助于提高阿曼弧菌抗冻性的分子机制仍是未知的。在这里,我们使用了限制性内切核酸酶生成的cDNA片段的深度测序数据,以评估冷处理条件下阿穆山弧菌转录组的全基因组修饰。葡萄汉堡的马斯喀特(Muscat)被用作对照来帮助研究Am。V. amruensis在应对冷胁迫中的独特特征。在从茎尖取样的每种葡萄中,从非冷处理(NCT)和冷处理(CT)cDNA文库中测序了大约900万个标签。标签与V. vinifera cv的比对。用黑比诺(PN40024)注释的基因组在V. amruensis的每个文库中鉴定了超过15,000个转录本,在汉堡的Muscat中鉴定了超过16,000的转录本。 NCT和CT库之间的比较分析表明,当暴露于冷胁迫下时,阿曼弧菌的差异表达基因(DEG,1314转录物)比汉堡的麝香猫(2307转录物)少。常见的DEG(408个转录本)表明,某些基因在葡萄的冷胁迫过程中提供了基本作用。最强健的DEG(变化超过20倍)还显示出两种葡萄之间的显着差异,表明冷胁迫可能触发了阿穆山弧菌的物种特异性途径。 DEGs的功能类别表明,与紫杉相关的代谢,转运,信号转导和转录相关的上调转录物的比例更为丰富。详细讨论了几个独特表达在紫葡萄中积累的高表达转录本。独特的候选转录本的这一子集可能有助于阿穆山弧菌的优异耐寒性。

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