Crop Wild Relatives (CWRs) in the United Arab Emirates: Resources for Climate Resilience and Their Potential Medicinal Applications.

IF 5.1 2区 医学 Q1 CHEMISTRY, MEDICINAL Drug Design, Development and Therapy Pub Date : 2025-03-03 eCollection Date: 2025-01-01 DOI:10.2147/DDDT.S497800
Ramya Manoharan, Chythra Somanathan Nair, Drishya Nishanth, Radhakrishnan Subramanian, Xiulan Xie, Maozhi Ren, Abdul Jaleel
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Abstract

Global climate change threatens the production, growth, and sustainability of plants. Crop wild relatives (CWRs) offer a practical and sustainable solution to these climatic issues by boosting genetic diversity and crop resilience. Even though CWRs are wild relatives of domesticated plants, they are nevertheless mostly neglected. This review focuses on the possible application of CWRs, which are found in the United Arab Emirates (UAE) and are known for their abiotic stress tolerance and potential medicinal properties. In olden days, traditionally, CWRs has been used as medicine for various ailments as they are rich in phytochemical compounds. However, the medicinal potential of these wild plant species is decreasing at an alarming rate due to climate change stress factors. The medicinal potential of these native crop wild plant species must be investigated because they could be a useful asset in the healthcare sector. Research on pangenomics studies of certain CWRs is also highlighted in the review, which reveals genetic variability caused due to climate change stress factors and how these genetic variability changes affect the production of secondary metabolites that have potent medicinal value. This provides insights into developing personalized medicine, in which particular CWRs plant species can be chosen or modified to generate medicinal compounds. Despite their superior medicinal properties, many CWRs in the UAE are still not well understood. Finding the desired genes coding for the biosynthesis of specific phytochemicals or secondary metabolites may help us better understand how these substances are synthesized and how to increase their production for a range of treatments.

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阿拉伯联合酋长国作物野生近缘种(CWRs):气候适应力资源及其潜在的药用价值。
全球气候变化威胁着植物的生产、生长和可持续性。作物野生近缘种(CWRs)通过提高遗传多样性和作物抗灾能力,为这些气候问题提供了切实可行的可持续解决方案。尽管CWRs是驯化植物的野生近亲,但它们大多被忽视。本文综述了产自阿拉伯联合酋长国(UAE)的CWRs的应用前景。CWRs具有非生物抗逆性和潜在的药用价值。在过去,传统上,CWRs被用作各种疾病的药物,因为它们富含植物化学化合物。然而,由于气候变化的压力因素,这些野生植物的药用潜力正在以惊人的速度下降。必须调查这些本地作物野生植物物种的药用潜力,因为它们可能是医疗保健部门的有用资产。该综述还重点介绍了某些CWRs的泛基因组学研究,揭示了气候变化应激因素引起的遗传变异以及这些遗传变异如何影响具有强大药用价值的次生代谢物的产生。这为开发个性化药物提供了见解,其中可以选择或修饰特定的CWRs植物物种以产生药用化合物。尽管它们具有优越的药用特性,但在阿联酋,许多CWRs仍然没有得到很好的理解。找到特定植物化学物质或次生代谢物生物合成所需的编码基因,可能有助于我们更好地了解这些物质是如何合成的,以及如何在一系列处理中增加它们的产量。
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来源期刊
Drug Design, Development and Therapy
Drug Design, Development and Therapy CHEMISTRY, MEDICINAL-PHARMACOLOGY & PHARMACY
CiteScore
9.00
自引率
0.00%
发文量
382
审稿时长
>12 weeks
期刊介绍: Drug Design, Development and Therapy is an international, peer-reviewed, open access journal that spans the spectrum of drug design, discovery and development through to clinical applications. The journal is characterized by the rapid reporting of high-quality original research, reviews, expert opinions, commentary and clinical studies in all therapeutic areas. Specific topics covered by the journal include: Drug target identification and validation Phenotypic screening and target deconvolution Biochemical analyses of drug targets and their pathways New methods or relevant applications in molecular/drug design and computer-aided drug discovery* Design, synthesis, and biological evaluation of novel biologically active compounds (including diagnostics or chemical probes) Structural or molecular biological studies elucidating molecular recognition processes Fragment-based drug discovery Pharmaceutical/red biotechnology Isolation, structural characterization, (bio)synthesis, bioengineering and pharmacological evaluation of natural products** Distribution, pharmacokinetics and metabolic transformations of drugs or biologically active compounds in drug development Drug delivery and formulation (design and characterization of dosage forms, release mechanisms and in vivo testing) Preclinical development studies Translational animal models Mechanisms of action and signalling pathways Toxicology Gene therapy, cell therapy and immunotherapy Personalized medicine and pharmacogenomics Clinical drug evaluation Patient safety and sustained use of medicines.
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