Exploration of advanced omics tools and resources for the improvement of industrial oil crops

IF 4.2 2区 生物学 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY Plant Science Pub Date : 2024-12-31 DOI:10.1016/j.plantsci.2024.112367
Badal Mahakalkar , Virender Kumar , Sreeja Sudhakaran , Vandana Thakral , Sanskriti Vats , Rushil Mandlik , Rupesh Deshmukh , Tilak Raj Sharma , Humira Sonah
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Abstract

The rapid advancement in the field of omics approaches plays a crucial role in the development of improved industrial oil crops. Industrial oil crops are important for many sectors like food processing, biofuels, cosmetics, and pharmaceuticals, making them indispensable contributors to global economies and these crops serve as vital elements in a multitude of industrial processes. Significant improvements in genomics have revolutionized the agricultural sector, particularly in the realm of oil crops. Cutting-edge advancements have facilitated the efficient sequencing of genomes for key commercial oil crops. This breakthrough not only enhances our understanding of the genetic makeup of these crops but also empowers breeders with invaluable insights for targeted genetic manipulation and breeding programs. Moreover, integrating transcriptomics with genomic data has assisted in a new era of precision agriculture. This approach provides an in-depth understanding of molecular mechanisms involved in traits of interest, such as oil content, yield potential, and resistance to biotic and abiotic stresses. Proteomics methods are instrumental in deciphering the intricacies of protein structure, interactions, and function, while metabolomics and ionomics shed light on the intricate network of metabolites and ions within biological systems. Each omics discipline offers unique insights, and their integration holds the promise of enriching our understanding and furnishing invaluable insights for enhancing oil crops. This review delves into the efficacy and constraints of various omics approaches in the context of refining industrial oil crops. Moreover, it underscores the importance of multi-omics strategies and explores their convergence with genetic engineering techniques to cultivate superior oil crop varieties.
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经济油料作物改良的先进组学工具和资源探索。
组学方法的快速发展对改良经济油料作物的发展起着至关重要的作用。工业油料作物在食品加工、生物燃料、化妆品和制药等行业发挥着至关重要的作用,使它们成为全球经济不可或缺的贡献者,这些作物在众多工业过程中都是至关重要的元素。基因组学的重大进步已经彻底改变了农业部门,特别是在油料作物领域。尖端技术的进步促进了关键商业油料作物基因组的高效测序。这一突破不仅增强了我们对这些作物基因组成的理解,而且还为育种者提供了有针对性的遗传操作和育种计划的宝贵见解。此外,整合转录组学与基因组数据有助于精准农业的新时代。这种方法提供了对相关性状的分子机制的深入了解,如含油量、产量潜力以及对生物和非生物胁迫的抗性。蛋白质组学方法有助于破译蛋白质结构、相互作用和功能的复杂性,而代谢组学和离子学则揭示了生物系统中代谢物和离子的复杂网络。每个组学学科都提供了独特的见解,它们的整合有望丰富我们的理解,并为提高油料作物提供宝贵的见解。本文综述了不同组学方法在工业油料作物精炼中的应用效果和局限性。此外,强调了多组学策略的重要性,并探讨了其与基因工程技术的结合,以培育优质油料作物品种。
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来源期刊
Plant Science
Plant Science 生物-生化与分子生物学
CiteScore
9.10
自引率
1.90%
发文量
322
审稿时长
33 days
期刊介绍: Plant Science will publish in the minimum of time, research manuscripts as well as commissioned reviews and commentaries recommended by its referees in all areas of experimental plant biology with emphasis in the broad areas of genomics, proteomics, biochemistry (including enzymology), physiology, cell biology, development, genetics, functional plant breeding, systems biology and the interaction of plants with the environment. Manuscripts for full consideration should be written concisely and essentially as a final report. The main criterion for publication is that the manuscript must contain original and significant insights that lead to a better understanding of fundamental plant biology. Papers centering on plant cell culture should be of interest to a wide audience and methods employed result in a substantial improvement over existing established techniques and approaches. Methods papers are welcome only when the technique(s) described is novel or provides a major advancement of established protocols.
期刊最新文献
Corrigendum to "Application of Brachypodium genotypes to the analysis of type II resistance to Fusarium head blight (FHB)" [Plant Sci. 272 (2018) 255-266]. Genomics of sterols biosynthesis in plants: Current status and future prospects Impact of Molecular Regulation on Plant Oil Synthesis. SYMRK significantly affected AMF symbiosis and plant growth in maize Ghβ-LCY1 influences metabolism and photosynthetic in Gossypium hirsutum
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