Massonnet Mélanie, Fasoli Marianna, Tornielli Giovanni Battista, Altieri Mario, Sandri Marco, Zuccolotto Paola, Paci Paola, Gardiman Massimo, Zenoni Sara, Pezzotti Mario
Department of Biotechnology, University of Verona, 37134 Verona, Italy.
Big & Open Data Innovation Laboratory, University of Brescia, 25123 Brescia, Italy.
Plant Physiol. 2017 Aug;174(4):2376-2396. doi: 10.1104/pp.17.00311. Epub 2017 Jun 26.
Grapevine () berry development involves a succession of physiological and biochemical changes reflecting the transcriptional modulation of thousands of genes. Although recent studies have investigated the dynamic transcriptome during berry development, most have focused on a single grapevine variety, so there is a lack of comparative data representing different cultivars. Here, we report, to our knowledge, the first genome-wide transcriptional analysis of 120 RNA samples corresponding to 10 Italian grapevine varieties collected at four growth stages. The 10 varieties, representing five red-skinned and five white-skinned berries, were all cultivated in the same experimental vineyard to reduce environmental variability. The comparison of transcriptional changes during berry formation and ripening allowed us to determine the transcriptomic traits common to all varieties, thus defining the core transcriptome of berry development, as well as the transcriptional dynamics underlying differences between red and white berry varieties. A greater variation among the red cultivars than between red and white cultivars at the transcriptome level was revealed, suggesting that anthocyanin accumulation during berry maturation has a direct impact on the transcriptomic regulation of multiple biological processes. The expression of genes related to phenylpropanoid/flavonoid biosynthesis clearly distinguished the behavior of red and white berry genotypes during ripening but also reflected the differential accumulation of anthocyanins in the red berries, indicating some form of cross talk between the activation of stilbene biosynthesis and the accumulation of anthocyanins in ripening berries.
葡萄浆果发育涉及一系列生理和生化变化,这些变化反映了数千个基因的转录调控。尽管最近的研究调查了浆果发育过程中的动态转录组,但大多数研究都集中在单一葡萄品种上,因此缺乏代表不同品种的比较数据。在此,据我们所知,我们报告了对120个RNA样本进行的首次全基因组转录分析,这些样本对应于在四个生长阶段收集的10个意大利葡萄品种。这10个品种,代表5个红皮浆果和5个白皮浆果,都种植在同一个试验葡萄园,以减少环境变异性。通过比较浆果形成和成熟过程中的转录变化,我们能够确定所有品种共有的转录组特征,从而定义浆果发育的核心转录组,以及红皮和白皮浆果品种之间差异的转录动态。结果显示,转录组水平上红皮品种之间的差异大于红皮和白皮品种之间的差异,这表明浆果成熟过程中花青素的积累对多种生物学过程的转录调控有直接影响。与苯丙烷类/类黄酮生物合成相关的基因表达在成熟过程中清楚地区分了红皮和白皮浆果基因型的行为,但也反映了红皮浆果中花青素的差异积累,表明在成熟浆果中芪类生物合成的激活与花青素积累之间存在某种形式的相互作用。