Department of Fruit Science, College of Horticulture, China Agricultural University, Beijing 100193, China.
Key Laboratory of Landscaping Agriculture, Ministry of Agriculture and Rural Affairs, College of Horticulture, Nanjing Agricultural University, Nanjing 210095, China.
Int J Mol Sci. 2022 May 30;23(11):6126. doi: 10.3390/ijms23116126.
The initiation and quality of flowering directly affect the time to market and economic benefit of cultivated strawberries, but the underlying mechanisms of these processes are largely unknown. To investigate the gene activity during the key period of floral induction in strawberries, time-course transcriptome analysis was performed on the shoot apex of the strawberry cultivar 'Benihoppe.' A total of 7177 differentially expressed genes (DEGs) were identified through pairwise comparisons. These DEGs were grouped into four clusters with dynamic expression patterns. By analyzing the key genes in the potential flowering pathways and the development of the leaf and flower, at least 73 DEGs that may be involved in the regulatory network of floral induction in strawberries were identified, some of which belong to the NAC, MYB, MADS, and SEB families. A variety of eight hormone signaling pathway genes that might play important roles in floral induction were analyzed. In particular, the gene encoding DELLA, a key inhibitor of the gibberellin signaling pathway, was found to be significantly differentially expressed during the floral induction. Furthermore, the differential expression of some important candidate genes, such as , , and , was further verified by qRT-PCR. Therefore, we used this time-course transcriptome data for a preliminary exploration of the regulatory network of floral induction and to provide potential candidate genes for future studies of flowering in strawberries.
开花的启动和质量直接影响栽培草莓的上市时间和经济效益,但这些过程的潜在机制在很大程度上尚不清楚。为了研究草莓花诱导关键时期的基因活性,我们对草莓品种‘Benihoppe’的茎尖进行了时间过程转录组分析。通过成对比较,共鉴定出 7177 个差异表达基因(DEGs)。这些 DEGs 分为四个具有动态表达模式的簇。通过分析潜在开花途径和叶片及花发育的关键基因,至少鉴定出 73 个可能参与草莓花诱导调控网络的 DEGs,其中一些属于 NAC、MYB、MADS 和 SEB 家族。分析了 8 种可能在花诱导中发挥重要作用的激素信号通路基因。特别是,编码赤霉素信号通路关键抑制剂 DELLA 的基因在花诱导过程中表现出明显的差异表达。此外,通过 qRT-PCR 进一步验证了一些重要候选基因如、、和的差异表达。因此,我们利用这些时间过程转录组数据对花诱导调控网络进行了初步探索,并为今后研究草莓开花提供了潜在的候选基因。