Kaur Navneet, Verma Awadhesh Kumar, Girdhar Madhuri, Kumar Anil, Siddiqui Maqsood A, Al-Khedhairy Abdulaziz A, Malik Tabarak, Mohan Anand
School of Bioengineering and Biosciences, Lovely Professional University, Phagwara, Punjab, India.
Division of Research and Development, School of Bioengineering and Biosciences, Lovely Professional University, Phagwara, Punjab, India.
Front Plant Sci. 2024 Nov 7;15:1490036. doi: 10.3389/fpls.2024.1490036. eCollection 2024.
is an economically important crop, yet weed management remains a significant challenge due to limited herbicide options. Cytochrome P450 enzymes play crucial roles in plant metabolism, including herbicide detoxification. This study aimed to identify and characterize the CYP gene family in Cannabis and investigate their potential role in herbicide metabolism. We identified 225 CYP proteins encoded by 221 genes in the Cannabis genome, classified into 9 clans and 47 families. The majority of CsCYPs were predicted to be located in endomembrane system and chromosomal mapping revealed that they were present in all the chromosomes. Motif and gene structure analysis supported the results from phylogenetic analysis. The gene duplication analysis results showed that tandem duplication plays a pivotal role in evolutionary expansion of CsCYP superfamily. Promoter analysis revealed various cis-acting elements involved in stress, light, hormone and development responses. Molecular docking simulations identified several CsCYPs with strong binding affinities to ALS-inhibiting herbicides, particularly bispyribac-sodium, propoxycarbazone-sodium, and pyriftalid. CsCYP_215, CsCYP_213, CsCYP_217 and CsCYP_14 emerged as promising candidates for herbicide metabolism. Analysis of binding site residues revealed the importance of hydrophobic and aromatic interactions in herbicide binding. This study provides the first comprehensive characterization of the CYP gene family in and offers new insights into their potential roles in herbicide metabolism. The identification of promising herbicide-metabolizing CYP candidates opens new avenues for developing herbicide-tolerant Cannabis varieties, potentially addressing key challenges in weed management and crop productivity.
是一种具有重要经济价值的作物,但由于除草剂选择有限,杂草管理仍然是一项重大挑战。细胞色素P450酶在植物代谢中发挥关键作用,包括除草剂解毒。本研究旨在鉴定和表征大麻中的CYP基因家族,并研究它们在除草剂代谢中的潜在作用。我们在大麻基因组中鉴定出由221个基因编码的225种CYP蛋白,分为9个族和47个家族。大多数CsCYPs预计位于内膜系统中,染色体定位显示它们存在于所有染色体上。基序和基因结构分析支持了系统发育分析的结果。基因重复分析结果表明,串联重复在CsCYP超家族的进化扩张中起关键作用。启动子分析揭示了参与应激、光、激素和发育反应的各种顺式作用元件。分子对接模拟确定了几种与抑制ALS的除草剂具有强结合亲和力的CsCYPs,特别是双草醚、丙酯草醚钠和唑啶草酮。CsCYP_215、CsCYP_213、CsCYP_217和CsCYP_14成为除草剂代谢的有前途的候选者。结合位点残基分析揭示了疏水和芳香相互作用在除草剂结合中的重要性。本研究首次全面表征了大麻中的CYP基因家族,并为它们在除草剂代谢中的潜在作用提供了新的见解。有前途的除草剂代谢CYP候选者的鉴定为培育耐除草剂大麻品种开辟了新途径,有可能解决杂草管理和作物生产力方面的关键挑战。