Exploring the potential role of EPSPS mutations for enhanced glyphosate resistance in Nicotiana tabacum.

IF 4.1 2区 生物学 Q1 PLANT SCIENCES Frontiers in Plant Science Pub Date : 2025-02-10 eCollection Date: 2025-01-01 DOI:10.3389/fpls.2025.1516963
Bingjie Li, Chen Chen, Mengmeng Cui, Yuhe Sun, Jing Lv, Changbo Dai
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Abstract

Glyphosate is a widely used non-selective, broad-spectrum, systemic herbicide by interfering with the biosynthesis of aromatic amino acids. However, the emergence of glyphosate-resistant weeds has driven the need for enhanced herbicide resistance in crops. In this study, we engineered two mutant variants of the tobacco EPSPS gene through amino acid substitution (TIPS-NtEPSPS and P180S-NtEPSPS). These mutated EPSPS genes were overexpressed in tobacco under the control of CaMV35S promoters. Our results demonstrate that overexpression of TIPS-NtEPSPS significantly enhances glyphosate tolerance, allowing plants to withstand up to four times the recommended dose without compromising their fitness. This research highlights the potential of the TIPS-NtEPSPS mutant to improve herbicide resistance in tobacco, offering a viable approach for effective weed management.

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探讨EPSPS突变在烟草增强草甘膦抗性中的潜在作用。
草甘膦通过干扰芳香族氨基酸的生物合成,是一种广泛使用的非选择性、广谱、全身性除草剂。然而,抗草甘膦杂草的出现促使人们需要增强作物对除草剂的抗性。在这项研究中,我们通过氨基酸置换设计了烟草 EPSPS 基因的两个突变变体(TIPS-NtEPSPS 和 P180S-NtEPSPS)。这些突变的 EPSPS 基因在 CaMV35S 启动子的控制下在烟草中过表达。我们的研究结果表明,过表达 TIPS-NtEPSPS 能显著提高草甘膦的耐受性,使植物在不影响其生长的情况下,能承受高达推荐剂量四倍的草甘膦。这项研究凸显了 TIPS-NtEPSPS 突变体提高烟草抗除草剂能力的潜力,为有效管理杂草提供了一种可行的方法。
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来源期刊
Frontiers in Plant Science
Frontiers in Plant Science PLANT SCIENCES-
CiteScore
7.30
自引率
14.30%
发文量
4844
审稿时长
14 weeks
期刊介绍: In an ever changing world, plant science is of the utmost importance for securing the future well-being of humankind. Plants provide oxygen, food, feed, fibers, and building materials. In addition, they are a diverse source of industrial and pharmaceutical chemicals. Plants are centrally important to the health of ecosystems, and their understanding is critical for learning how to manage and maintain a sustainable biosphere. Plant science is extremely interdisciplinary, reaching from agricultural science to paleobotany, and molecular physiology to ecology. It uses the latest developments in computer science, optics, molecular biology and genomics to address challenges in model systems, agricultural crops, and ecosystems. Plant science research inquires into the form, function, development, diversity, reproduction, evolution and uses of both higher and lower plants and their interactions with other organisms throughout the biosphere. Frontiers in Plant Science welcomes outstanding contributions in any field of plant science from basic to applied research, from organismal to molecular studies, from single plant analysis to studies of populations and whole ecosystems, and from molecular to biophysical to computational approaches. Frontiers in Plant Science publishes articles on the most outstanding discoveries across a wide research spectrum of Plant Science. The mission of Frontiers in Plant Science is to bring all relevant Plant Science areas together on a single platform.
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