College of Horticulture Science and Technology, Hebei Normal University of Science and Technology, Qinhuangdao, 066000, China.
Hebei Key Laboratory of Horticultural Germplasm Excavation and Innovative Utilization, Qinhuangdao, 066000, China.
Sci Rep. 2024 Oct 7;14(1):23361. doi: 10.1038/s41598-024-75186-7.
Pedicel length is a crucial agronomic trait of cucumbers. Fruit deformation can occur When the pedicel is too long or too short. Moreover, an appropriate pedicel length is advantageous for mechanized harvesting. Therefore, it is essential to investigate the molecular regulatory mechanisms underlying cucumber pedicel length. In the current study, we obtained a short pedicel mutant through EMS mutagenesis and discovered that the reduced cell number was the primary cause of the shortened pedicel. Upon analyzing the hormone content, we found that the level of trans zeatin in the long-pedicel material was significantly higher than that in the short-pedicel material. Further transcriptome sequencing analysis revealed that differentially expressed genes were enriched in cytokinin synthesis-related pathways. Based on these results, the present study concluded that cucumber pedicel length is regulated by genes related to the cytokinin synthesis pathway and that differences in length result from differences in zeatin content and cell number.
花梗长度是黄瓜的一个重要农艺性状。当花梗过长或过短时,果实可能会变形。此外,适当的花梗长度有利于机械化收获。因此,研究黄瓜花梗长度的分子调控机制至关重要。在本研究中,我们通过 EMS 诱变获得了一个短花梗突变体,并发现减少的细胞数量是花梗变短的主要原因。在分析激素含量时,我们发现长花梗材料中的反式玉米素含量明显高于短花梗材料。进一步的转录组测序分析表明,差异表达基因富集在细胞分裂素合成相关途径中。基于这些结果,本研究得出结论,黄瓜花梗长度受与细胞分裂素合成途径相关的基因调控,长度的差异是由于玉米素含量和细胞数量的不同造成的。