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用于提高油料作物价值的转录工程:前瞻性展望。

Transcriptional engineering for value enhancement of oilseed crops: a forward perspective.

作者信息

Kaushal Charli, Sachdev Mahak, Parekh Mansi, Gowrishankar Harini, Jain Mukesh, Sankaranarayanan Subramanian, Pathak Bhuvan

机构信息

Department of Biological Sciences and Engineering, Indian Institute of Technology Gandhinagar, Palaj, Gujarat, India.

Biological and Life Sciences Division, School of Arts and Sciences, Ahmedabad University, Ahmedabad, Gujarat, India.

出版信息

Front Genome Ed. 2025 Jan 7;6:1488024. doi: 10.3389/fgeed.2024.1488024. eCollection 2024.

Abstract

Plant-derived oils provide 20%-35% of dietary calories and are a primary source of essential omega-6 (linoleic) and omega-3 (α-linolenic) fatty acids. While traditional breeding has significantly increased yields in key oilseed crops like soybean, sunflower, canola, peanut, and cottonseed, overall gains have plateaued over the past few decades. Oilseed crops also experience substantial yield losses in both prime and marginal agricultural areas due to biotic and abiotic stresses and shifting agro-climates. Recent genomic, transcriptomic, and metabolomics research has expanded our understanding of the genetic and physiological control of fatty acid biosynthesis and composition. Many oilseed species have inherent stress-combating mechanisms, including transcription factor regulation. Advances in genome editing tools like CRISPR/Cas9 offer precise genetic modifications, targeting transcription factors and binding sites to enhance desirable traits, such as the nutritional profile and chemical composition of fatty acids. This review explores the application of genome editing in oilseed improvement, covering recent progress, challenges, and future potential to boost yield and oil content. These advancements could play a transformative role in developing resilient, nutritious crop varieties essential for sustainable food security in a changing climate.

摘要

植物源油脂提供了20%-35%的膳食热量,是必需的ω-6(亚油酸)和ω-3(α-亚麻酸)脂肪酸的主要来源。虽然传统育种已显著提高了大豆、向日葵、油菜、花生和棉籽等主要油料作物的产量,但在过去几十年里,总体增产已趋于平稳。由于生物和非生物胁迫以及农业气候的变化,油料作物在主要和边缘农业地区的产量也遭受大幅损失。最近的基因组学、转录组学和代谢组学研究扩展了我们对脂肪酸生物合成和组成的遗传及生理控制的理解。许多油料作物物种具有内在的抗逆机制,包括转录因子调控。像CRISPR/Cas9这样的基因组编辑工具的进步提供了精确的基因修饰,可针对转录因子和结合位点来增强理想性状,如脂肪酸的营养成分和化学组成。本综述探讨了基因组编辑在油料作物改良中的应用,涵盖了提高产量和含油量方面的最新进展、挑战及未来潜力。这些进展在培育适应气候变化、对可持续粮食安全至关重要的抗逆、营养丰富的作物品种方面可能发挥变革性作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a2d1/11747156/a128b526f14b/fgeed-06-1488024-g001.jpg

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