Departamento de Ingeniería Genética, Unidad Irapuato, Centro de Investigación y de Estudios Avanzados del Instituto Politécnico Nacional, Irapuato 36824, Mexico.
Unidad de Genómica Avanzada, Unidad Irapuato, Centro de Investigación y de Estudios Avanzados del Instituto Politécnico Nacional, Irapuato 36824, Mexico.
Int J Mol Sci. 2022 Oct 4;23(19):11774. doi: 10.3390/ijms231911774.
During the ripening process, the pericarp of chili pepper ( spp.) fruits accumulates large amounts of carotenoids. Although the carotenoid biosynthesis pathway in the genus has been widely studied from different perspectives, the transcriptional regulation of genes encoding carotenoid biosynthetic enzymes has not been elucidated in this fruit. We analyzed RNA-Seq transcriptomic data from the fruits of 12 accessions of during the growth, development, and ripening processes using the R package named . We performed coexpression analyses between the standardized expression of genes encoding carotenoid biosynthetic enzymes (target genes (TGs)) and the genes of all expressed transcription factors (TFs). Additionally, we analyzed the promoter region of each biosynthetic gene to identify putative binding sequences for each selected TF candidate. We selected 83 TFs as putative regulators of the carotenogenic structural genes. From them, putative binding sites in the promoters of the carotenoid-biosynthesis-related structural genes were found for only 54 TFs. These results could guide the search for transcription factors involved in the regulation of the carotenogenic pathway in chili pepper fruits and might facilitate the collection of corresponding experimental evidence to corroborate their participation in the regulation of this biosynthetic pathway in spp.
在成熟过程中,辣椒( spp.)果实的果皮积累了大量的类胡萝卜素。虽然已经从不同角度广泛研究了属中的类胡萝卜素生物合成途径,但尚未阐明该果实中编码类胡萝卜素生物合成酶的基因的转录调控。我们使用名为 的 R 包分析了来自 12 个品系的果实在生长、发育和成熟过程中的 RNA-Seq 转录组数据。我们在基因编码的类胡萝卜素生物合成酶(目标基因(TGs))和所有表达转录因子(TFs)的标准化表达之间进行了共表达分析。此外,我们分析了每个生物合成基因的启动子区域,以鉴定每个选定的 TF 候选物的潜在结合序列。我们选择了 83 个 TFs 作为类胡萝卜素生物合成结构基因的潜在调节剂。其中,只有 54 个 TFs 在类胡萝卜素生物合成相关结构基因的启动子中找到了潜在的结合位点。这些结果可以指导寻找参与辣椒果实类胡萝卜素生物合成途径调控的转录因子,并有助于收集相应的实验证据来证实它们参与调节该生物合成途径。