Central Institute of Medicinal and Aromatic Plants (CSIR-CIMAP), Lucknow, India; Academy of Scientific and Innovative Research (AcSIR), Ghaziabad, 201002, India.
Central Institute of Medicinal and Aromatic Plants (CSIR-CIMAP), Lucknow, India.
Plant Physiol Biochem. 2024 Sep;214:108916. doi: 10.1016/j.plaphy.2024.108916. Epub 2024 Jul 6.
Nicotine constitutes approximately 90% of the total alkaloid content in leaves within the Nicotiana species, rendering it the most prevalent alkaloid. While the majority of genes responsible for nicotine biosynthesis express in root tissue, the influence of light on this process through shoot-to-root mobile ELONGATED HYPOCOTYL 5 (HY5) has been recognized. CONSTITUTIVE PHOTOMORPHOGENIC1 (COP1), a key regulator of light-associated responses, known for its role in modulating HY5 accumulation, remains largely unexplored in its relationship to light-dependent nicotine accumulation. Here, we identified NtCOP1, a COP1 homolog in Nicotiana tabacum, and demonstrated its ability to complement the cop1-4 mutant in Arabidopsis thaliana at molecular, morphological, and biochemical levels. Through the development of NtCOP1 overexpression (NtCOP1OX) plants, we observed a significant reduction in nicotine and flavonol content, inversely correlated with the down-regulation of nicotine and phenylpropanoid pathway. Conversely, CRISPR/Cas9-based knockout mutant plants (NtCOP1) exhibited an increase in nicotine levels. Further investigations, including yeast-two hybrid assays, grafting experiments, and Western blot analyses, revealed that NtCOP1 modulates nicotine biosynthesis by targeting NtHY5, thereby impeding its transport from shoot-to-root. We conclude that the interplay between HY5 and COP1 functions antagonistically in the light-dependent regulation of nicotine biosynthesis in tobacco.
尼古丁构成了茄属植物叶片中总生物碱含量的约 90%,使其成为最普遍的生物碱。虽然大多数负责尼古丁生物合成的基因在根组织中表达,但光通过 shoot-to-root 移动的 ELONGATED HYPOCOTYL 5(HY5)对这一过程的影响已经得到了认识。CONSTITUTIVE PHOTOMORPHOGENIC1(COP1)是光相关反应的关键调节剂,因其在调节 HY5 积累方面的作用而广为人知,但在其与光依赖性尼古丁积累的关系方面,仍在很大程度上未被探索。在这里,我们鉴定了 Nicotiana tabacum 中的 COP1 同源物 NtCOP1,并证明它能够在分子、形态和生化水平上补充拟南芥中的 cop1-4 突变体。通过开发 NtCOP1 过表达(NtCOP1OX)植物,我们观察到尼古丁和类黄酮含量显著降低,与尼古丁和苯丙烷途径的下调呈负相关。相反,基于 CRISPR/Cas9 的敲除突变体植物(NtCOP1)表现出尼古丁水平的增加。进一步的研究,包括酵母双杂交实验、嫁接实验和 Western blot 分析,表明 NtCOP1 通过靶向 NtHY5 来调节尼古丁生物合成,从而阻碍其从 shoot-to-root 的运输。我们得出结论,HY5 和 COP1 之间的相互作用在烟草中光依赖性尼古丁生物合成的调节中具有拮抗作用。