Da Silva Cecilia, Zamperin Gianpiero, Ferrarini Alberto, Minio Andrea, Dal Molin Alessandra, Venturini Luca, Buson Genny, Tononi Paola, Avanzato Carla, Zago Elisa, Boido Eduardo, Dellacassa Eduardo, Gaggero Carina, Pezzotti Mario, Carrau Francisco, Delledonne Massimo
Departamento de Biología Molecular, Instituto de Investigaciones Biológicas Clemente Estable, 11600 Montevideo, Uruguay.
Plant Cell. 2013 Dec;25(12):4777-88. doi: 10.1105/tpc.113.118810. Epub 2013 Dec 6.
The grapevine (Vitis vinifera) cultivar Tannat is cultivated mainly in Uruguay for the production of high-quality red wines. Tannat berries have unusually high levels of polyphenolic compounds, producing wines with an intense purple color and remarkable antioxidant properties. We investigated the genetic basis of these important characteristics by sequencing the genome of the Uruguayan Tannat clone UY11 using Illumina technology, followed by a mixture of de novo assembly and iterative mapping onto the PN40024 reference genome. RNA sequencing data for genome reannotation were processed using a combination of reference-guided annotation and de novo transcript assembly, allowing 5901 previously unannotated or unassembled genes to be defined and resulting in the discovery of 1873 genes that were not shared with PN40024. Expression analysis showed that these cultivar-specific genes contributed substantially (up to 81.24%) to the overall expression of enzymes involved in the synthesis of phenolic and polyphenolic compounds that contribute to the unique characteristics of the Tannat berries. The characterization of the Tannat genome therefore indicated that the grapevine reference genome lacks many genes that appear to be relevant for the varietal phenotype.
葡萄品种丹娜(Vitis vinifera cv. Tannat)主要在乌拉圭种植,用于生产高品质的红葡萄酒。丹娜浆果中多酚类化合物的含量异常高,所酿造的葡萄酒呈现出浓郁的紫色,具有显著的抗氧化特性。我们利用Illumina技术对乌拉圭丹娜克隆品种UY11的基因组进行测序,随后将从头组装与迭代映射到PN40024参考基因组相结合,以此研究这些重要特性的遗传基础。基因组重新注释的RNA测序数据通过参考引导注释和从头转录本组装相结合的方式进行处理,从而确定了5901个先前未注释或未组装的基因,并发现了1873个PN40024中不存在的基因。表达分析表明,这些品种特异性基因对参与酚类和多酚类化合物合成的酶的整体表达有很大贡献(高达81.24%),这些化合物造就了丹娜浆果的独特特性。因此,丹娜基因组的特征表明,葡萄参考基因组缺少许多似乎与品种表型相关的基因。