Wei Zihao, Shang Meiqi, Jiang Zhicheng, Zhai Hong, Xing Shihan, Wang Zhen, He Shaozhen, Gao Shaopei, Zhao Ning, Zhang Huan, Liu Qingchang
Key Laboratory of Sweet Potato Biology and Biotechnology, Ministry of Agriculture and Rural Affairs/Beijing Key Laboratory of Crop Genetic Improvement/Laboratory of Crop Heterosis & Utilization and Joint Laboratory for International Cooperation in Crop Molecular Breeding, Ministry of Education, College of Agronomy & Biotechnology, China Agricultural University, Beijing, China.
Plant Biotechnol J. 2025 Jul;23(7):2627-2644. doi: 10.1111/pbi.70086. Epub 2025 Apr 10.
Carotenoid-rich orange-fleshed sweet potato (OFSP) is an important staple diet and source of nutrition in developing countries, including Africa and Asia. However, the regulation of carotenoid biosynthesis remains to be better understood. A natural allelic variation closely linked to carotenoid biosynthesis was identified in the promoter region of the IbbHLH25 gene that encodes a basic helix-loop-helix (bHLH) transcription factor, by transcriptome and haplotype analyses of different flesh colour sweet potato accessions. An 86-bp deletion reduced the transcription of the IbbHLH25 promoter in white- and yellow-fleshed sweet potatoes; however, the deletion was absent in OFSP. IbbHLH25 was highly expressed in the storage roots of carotenoid-rich sweet potato. The overexpression of IbbHLH25 significantly increased the carotenoid contents (by 2.5-fold-6.0-fold) and proportions, especially β-carotene and β-cryptoxanthin; their contents increased by 21.2-fold-55.7-fold and 4.6-fold-9.5-fold, respectively, and their proportions increased by 48.5% and 13.0%, respectively, and the silencing of IbbHLH25 had opposite effects. IbbHLH25 formed heterodimers with IbbHLH66 to directly and synergistically activate the transcription of carotenoid biosynthesis key genes IbGGPPS, IbLCYB and IbBCH. The overexpression of IbbHLH66 significantly increased the carotenoid contents (by 2.3-fold-3.8-fold) and proportions, especially β-carotene and β-cryptoxanthin; their contents increased by 15.2-fold-25.6-fold and 3.1-fold-5.1-fold, respectively, and their proportions increased by 31.1% and 9.6%, respectively. These findings expand our understanding of bHLHs in regulating carotenoid biosynthesis and suggest additional roles in affecting carotenoid component proportions, providing candidate genes for nutritional biofortification of agricultural products.
富含类胡萝卜素的橙色果肉甘薯(OFSP)是包括非洲和亚洲在内的发展中国家重要的主食和营养来源。然而,类胡萝卜素生物合成的调控仍有待深入了解。通过对不同果肉颜色甘薯种质的转录组和单倍型分析,在编码基本螺旋-环-螺旋(bHLH)转录因子的IbbHLH25基因启动子区域鉴定出一个与类胡萝卜素生物合成紧密连锁的天然等位变异。一个86bp的缺失降低了白肉和黄肉甘薯中IbbHLH25启动子的转录;然而,OFSP中不存在该缺失。IbbHLH25在富含类胡萝卜素的甘薯块根中高表达。IbbHLH25的过表达显著增加了类胡萝卜素含量(2.5倍至6.0倍)和比例,尤其是β-胡萝卜素和β-隐黄质;它们的含量分别增加了21.2倍至55.7倍和4.6倍至9.5倍,比例分别增加了48.5%和13.0%,而IbbHLH25的沉默则产生相反的效果。IbbHLH25与IbbHLH66形成异源二聚体,直接协同激活类胡萝卜素生物合成关键基因IbGGPPS、IbLCYB和IbBCH的转录。IbbHLH66的过表达显著增加了类胡萝卜素含量(2.3倍至3.8倍)和比例,尤其是β-胡萝卜素和β-隐黄质;它们的含量分别增加了15.2倍至25.6倍和3.1倍至5.1倍,比例分别增加了31.1%和9.6%。这些发现扩展了我们对bHLHs在调控类胡萝卜素生物合成方面的理解,并表明其在影响类胡萝卜素成分比例方面的额外作用,为农产品营养强化提供了候选基因。